IDT 92HD65C

DATASHEET
SIX CHANNEL HD AUDIO CODECS
92HD65C
DUAL CAPLESS HEADPHONE AMPLIFIERS
DESCRIPTION
SOFTWARE SUPPORT
The 92HD65C is a low power optimized, high fidelity,
6-channel audio codec compatible with Intel’s High Definition (HD) Audio Interface.
•
Intuitive IDT HD Sound graphical user interface
that allows configurability and preference settings
•
12 band fully parametric equalizer
•
The 92HD65C provides high quality, HD Audio capability to
notebook and desktop PC applications.
•
FEATURES
•
•
6 Channels (2 stereo ADCs) with 24-bit resolution
•
Full HDA015-B and EuP low power support
•
•
•
•
•
•
•
Microsoft WLP premium logo compliant
•
5 analog ports with port presence detect*
•
3 integrated headphone amplifiers
•
2 Capless headphone amplifiers
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3 or 4 ports support adjustable microphone bias*
•
Dual SPDIF outputs for WLP compliant support of
simultaneous HDMI and SPDIF output
•
SPDIF Input
•
Two digital microphone inputs (mono, stereo or
quad)
•
High performance analog mixer
•
+5 V or +3.3V analog power supply
•
Digital and Analog PC Beep to all outputs
•
40-pin QFN RoHS packages
Dynamics Processing
•
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Audio inactivity transitions codec from D0 to D3 low
power mode
Resume from D3 to D0 with audio activity in < 10 msec
D3 to D0 transition with < -65dB pop/click
Port presence detect in D3 with or without bit clock
PC beep wake up in D3
Additional vendor specific modes for even lower power
•
Constant, system-level effects tuned to optimize a
particular platform can be combined with user-mode
“presets” tailored for specific acoustical environments
and applications
System-level effects automatically disabled when
external audio connections made
Enables improved voice articulation
Compressor/limiter allows higher average volume level
without resonances or damage to speakers.
IDT Vista APO wrapper
•
Enables multiple APOs to be used with the IDT Driver
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Microphone Beam Forming, Acoustic Echo
Cancellation, and Noise Suppression
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Dynamic Stream Switching
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Improved multi-streaming user experience with less
support calls
Broad 3rd party branded software including
Creative, Dolby, DTS, and SRS
Preliminary Datasheet
IDT CONFIDENTIAL
©2011 INTEGRATED DEVICE TECHNOLOGY, INC.
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V 0.91 10/11
92HD65C
92HD65C
SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
LIST OF FIGURES
Figure 1. Multi-channel capture ......................................................................................................................20
Figure 2. Multi-channel timing diagram ..........................................................................................................20
Figure 3. EAPD System level Example ..........................................................................................................24
Figure 4. Single Digital Microphone (data is ported to both left and right channels .......................................26
Figure 5. Stereo Digital Microphone Configuration ........................................................................................27
Figure 6. Quad Digital Microphone Configuration ..........................................................................................28
Figure 7. Analog PCBeep Flow Chart ............................................................................................................30
Figure 8. HD Audio Bus Timing ......................................................................................................................41
Figure 9. Common Port Configurations ..........................................................................................................43
Figure 10. 40-pin Package Functional Diagram .............................................................................................44
Figure 11. 40-pin Package Widget Diagram ..................................................................................................45
Figure 12. 40-Pin Pinout ..............................................................................................................................264
Figure 13. 40QFN Package Diagram ...........................................................................................................266
IDT CONFIDENTIAL
©2011 INTEGRATED DEVICE TECHNOLOGY, INC.
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92HD65C
92HD65C
SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
TABLE OF CONTENTS
1. DESCRIPTION ........................................................................................................................ 10
1.1. Overview ..........................................................................................................................................10
1.2. Orderable Part Numbers ..................................................................................................................10
2. DETAILED DESCRIPTION ..................................................................................................... 11
2.1. Port Functionality .............................................................................................................................11
2.2. Port Characteristics .........................................................................................................................11
2.3. Vref_Out ..........................................................................................................................................12
2.4. Jack Detect ......................................................................................................................................12
2.5. SPDIF Output ..................................................................................................................................13
2.6. SPDIF Input .....................................................................................................................................15
2.7. Analog Mixer ....................................................................................................................................16
2.8. ADC Multiplexers .............................................................................................................................16
2.9. Power Management .........................................................................................................................17
2.10. AFG D0 ..........................................................................................................................................18
2.11. AFG D1 ..........................................................................................................................................18
2.12. AFG D2 ..........................................................................................................................................18
2.13. AFG D3 ..........................................................................................................................................18
2.13.1. AFG D3cold .....................................................................................................................18
2.14. Vendor Specific Function Group Power States D4/D5 ..................................................................19
2.15. Vendor Specific Function Group Power State “D5 Kill” ..................................................................19
2.16. Low-voltage HDA Signaling ...........................................................................................................19
2.17. Multi-channel capture ....................................................................................................................19
2.18. EAPD .............................................................................................................................................21
2.19. Digital Microphone Support ...........................................................................................................24
2.20. Analog PC-Beep ............................................................................................................................28
2.20.1. PC_Beep Activity Monitor ................................................................................................29
2.21. Digital PC-Beep .............................................................................................................................31
2.22. Headphone Drivers ........................................................................................................................32
2.23. GPIO ..............................................................................................................................................32
2.23.1. GPIO Pin mapping and shared functions .........................................................................32
2.23.2. Digital Microphone/GPIO Selection .................................................................................32
2.23.3. SPDIF_OUT/GPIO/DMIC Selection .................................................................................32
2.24. HD Audio ECR 15b support ...........................................................................................................33
2.25. Digital Core Voltage Regulator ......................................................................................................33
2.26. Combo Jack ...................................................................................................................................34
3. CHARACTERISTICS ............................................................................................................... 35
3.1. Audio Fidelity ...................................................................................................................................35
3.2. Electrical Specifications ...................................................................................................................35
3.2.1. Absolute Maximum Ratings ...............................................................................................35
3.2.2. Recommended Operating Conditions ................................................................................35
3.3. 92HD65C Analog Performance Characteristics (PRELIMINARY) ..................................................................36
3.4. Capless Headphone Supply Characteristics ....................................................................................41
3.5. AC Timing Specs .............................................................................................................................41
3.5.1. HD Audio Bus Timing .........................................................................................................41
3.5.2. SPDIF Timing .....................................................................................................................42
3.5.3. Digital Microphone Timing .................................................................................................42
3.5.4. GPIO Characteristics .........................................................................................................42
4. COMMON PORT CONFIGURATIONS ................................................................................... 43
5. FUNCTIONAL DIAGRAMS ..................................................................................................... 44
5.1. Widget Diagram ...............................................................................................................................45
5.2. Configuration Default Register Settings ...........................................................................................46
6. WIDGET INFORMATION ........................................................................................................ 47
6.1. Widget List .......................................................................................................................................47
6.2. Widget Descriptions .........................................................................................................................48
6.3. Reset Key ........................................................................................................................................49
6.4. Root (NID = 00h): VendorID ............................................................................................................49
6.4.1. Root (NID = 00h): RevID ....................................................................................................50
IDT CONFIDENTIAL
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92HD65C
92HD65C
SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
6.4.2. Root (NID = 00h): NodeInfo ...............................................................................................50
6.5. AFG (NID = 01h): NodeInfo .............................................................................................................51
6.5.1. AFG (NID = 01h): FGType .................................................................................................51
6.5.2. AFG (NID = 01h): AFGCap ................................................................................................52
6.5.3. AFG (NID = 01h): PCMCap ...............................................................................................53
6.5.4. AFG (NID = 01h): StreamCap ............................................................................................54
6.5.5. AFG (NID = 01h): InAmpCap .............................................................................................55
6.5.6. AFG (NID = 01h): PwrStateCap .........................................................................................56
6.5.7. AFG (NID = 01h): GPIOCnt ...............................................................................................57
6.5.8. AFG (NID = 01h): OutAmpCap ..........................................................................................57
6.5.9. AFG (NID = 01h): PwrState ...............................................................................................58
6.5.10. AFG (NID = 01h): UnsolResp ..........................................................................................59
6.5.11. AFG (NID = 01h): GPIO ...................................................................................................59
6.5.12. AFG (NID = 01h): GPIOEn ...............................................................................................60
6.5.13. AFG (NID = 01h): GPIODir ..............................................................................................61
6.5.14. AFG (NID = 01h): GPIOWakeEn .....................................................................................62
6.5.15. AFG (NID = 01h): GPIOUnsol ..........................................................................................63
6.5.16. AFG (NID = 01h): GPIOSticky .........................................................................................64
6.5.17. AFG (NID = 01h): SubID ..................................................................................................64
6.5.18. AFG (NID = 01h): GPIOPlrty ............................................................................................65
6.5.19. AFG (NID = 01h): GPIODrive ...........................................................................................66
6.5.20. AFG (NID = 01h): DMic ....................................................................................................67
6.5.21. AFG (NID = 01h): DACMode ...........................................................................................68
6.5.22. AFG (NID = 01h): ADCMode ...........................................................................................69
6.5.23. AFG (NID = 01h): PortUse ...............................................................................................70
6.5.24. AFG (NID = 01h): ComJack .............................................................................................71
6.5.25. AFG (NID = 01h): ComJackTime .....................................................................................72
6.5.26. AFG (NID = 01h): VSPwrState .........................................................................................74
6.5.27. AFG (NID = 01h): AnaPort ...............................................................................................74
6.5.28. AFG (NID = 01h): AnaBeep .............................................................................................76
6.5.29. AFG (NID = 01h): AnaCapless .........................................................................................76
6.5.30. AFG (NID = 01h): Reset ...................................................................................................79
6.6. PortA (NID = 0Ah): WCap ................................................................................................................80
6.6.1. PortA (NID = 0Ah): PinCap ................................................................................................81
6.6.2. PortA (NID = 0Ah): ConLst .................................................................................................82
6.6.3. PortA (NID = 0Ah): ConLstEntry0 ......................................................................................83
6.6.4. PortA (NID = 0Ah): InAmpLeft ............................................................................................83
6.6.5. PortA (NID = 0Ah): InAmpRight .........................................................................................84
6.6.6. PortA (NID = 0Ah): ConSelectCtrl ......................................................................................84
6.6.7. PortA (NID = 0Ah): PwrState .............................................................................................85
6.6.8. PortA (NID = 0Ah): PinWCntrl ............................................................................................85
6.6.9. PortA (NID = 0Ah): UnsolResp ..........................................................................................86
6.6.10. PortA (NID = 0Ah): ChSense ...........................................................................................87
6.6.11. PortA (NID = 0Ah): EAPDBTLLR .....................................................................................87
6.6.12. PortA (NID = 0Ah): ConfigDefault ....................................................................................88
6.7. PortB (NID = 0Bh): WCap ................................................................................................................90
6.7.1. PortB (NID = 0Bh): PinCap ................................................................................................92
6.7.2. PortB (NID = 0Bh): ConLst .................................................................................................93
6.7.3. PortB (NID = 0Bh): ConLstEntry0 ......................................................................................94
6.7.4. PortB (NID = 0Bh): InAmpLeft ............................................................................................94
6.7.5. PortB (NID = 0Bh): InAmpRight .........................................................................................95
6.7.6. PortB (NID = 0Bh): ConSelectCtrl ......................................................................................95
6.7.7. PortB (NID = 0Bh): PwrState .............................................................................................95
6.7.8. PortB (NID = 0Bh): PinWCntrl ............................................................................................96
6.7.9. PortB (NID = 0Bh): UnsolResp ..........................................................................................97
6.7.10. PortB (NID = 0Bh): ChSense ...........................................................................................98
6.7.11. PortB (NID = 0Bh): EAPDBTLLR .....................................................................................98
6.7.12. PortB (NID = 0Bh): ConfigDefault ....................................................................................98
6.8. PortC (NID = 0Ch): WCap .............................................................................................................101
IDT CONFIDENTIAL
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92HD65C
92HD65C
SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
6.8.1. PortC (NID = 0Ch): PinCap ..............................................................................................102
6.8.2. PortC (NID = 0Ch): ConLst ..............................................................................................103
6.8.3. PortC (NID = 0Ch): ConLstEntry0 ....................................................................................104
6.8.4. PortC (NID = 0Ch): InAmpLeft .........................................................................................104
6.8.5. PortC (NID = 0Ch): InAmpRight .......................................................................................105
6.8.6. PortC (NID = 0Ch): ConSelectCtrl ...................................................................................105
6.8.7. PortC (NID = 0Ch): PwrState ...........................................................................................106
6.8.8. PortC (NID = 0Ch): PinWCntrl .........................................................................................106
6.8.9. PortC (NID = 0Ch): UnsolResp ........................................................................................107
6.8.10. PortC (NID = 0Ch): ChSense .........................................................................................108
6.8.11. PortC (NID = 0Ch): EAPDBTLLR ...................................................................................108
6.8.12. PortC (NID = 0Ch): ConfigDefault ..................................................................................109
6.9. NID = 0Dh Reserved ......................................................................................................................111
6.10. PortE (NID = 0Eh): WCap (Available only on 48-pin versions) ....................................................111
6.10.1. PortE (NID = 0Eh): PinCap (Available only on 48-pin versions) ....................................113
6.10.2. PortE (NID = 0Eh): ConLst (Available only on 48-pin versions) .....................................114
6.10.3. PortE (NID = 0Eh): ConLstEntry0 (Available only on 48-pin versions) ..........................115
6.10.4. PortE (NID = 0Eh): InAmpLeft (Available only on 48-pin versions) ................................115
6.10.5. PortE (NID = 0Eh): InAmpRight (Available only on 48-pin versions) .............................115
6.10.6. PortE (NID = 0Eh): ConSelectCtrl (Available only on 48-pin versions) ..........................116
6.10.7. PortE (NID = 0Eh): PwrState (Available only on 48-pin versions) .................................116
6.10.8. PortE (NID = 0Eh): PinWCntrl (Available only on 48-pin versions) ................................117
6.10.9. PortE (NID = 0Eh): UnsolResp (Available only on 48-pin versions) ..............................118
6.10.10. PortE (NID = 0Eh): ChSense (Available only on 48-pin versions) ...............................118
6.10.11. PortE (NID = 0Eh): EAPDBTLLR (Available only on 48-pin versions) .........................119
6.10.12. PortE (NID = 0Eh): ConfigDefault (Available only on 48-pin versions) ........................119
6.11. PortF (NID = 0Fh): WCap ............................................................................................................122
6.11.1. PortF (NID = 0Fh): PinCap .............................................................................................123
6.11.2. PortF (NID = 0Fh): ConLst .............................................................................................124
6.11.3. PortF (NID = 0Fh): ConLstEntry0 ...................................................................................125
6.11.4. PortF (NID = 0Fh): InAmpLeft ........................................................................................125
6.11.5. PortF (NID = 0Fh): InAmpRight ......................................................................................126
6.11.6. PortF (NID = 0Fh): ConSelectCtrl ..................................................................................126
6.11.7. PortF (NID = 0Fh): PwrState ..........................................................................................127
6.11.8. PortF (NID = 0Fh): PinWCntrl ........................................................................................127
6.11.9. PortF (NID = 0Fh): UnsolResp .......................................................................................128
6.11.10. PortF (NID = 0Fh): ChSense ........................................................................................129
6.11.11. PortF (NID = 0Fh): EAPDBTLLR .................................................................................129
6.11.12. PortF (NID = 0Fh): ConfigDefault .................................................................................129
6.12. NID = 10h: Reserved ...................................................................................................................132
6.13. DMic0 (NID = 11h): WCap ...........................................................................................................132
6.13.1. DMic0 (NID = 11h): PinCap ...........................................................................................133
6.13.2. DMic0 (NID = 11h): InAmpLeft .......................................................................................134
6.13.3. DMic0 (NID = 11h): InAmpRight ....................................................................................135
6.13.4. DMic0 (NID = 11h): PwrState .........................................................................................135
6.13.5. DMic0 (NID = 11h): PinWCntrl .......................................................................................136
6.13.6. DMic0 (NID = 11h): ConfigDefault .................................................................................137
6.14. DMic1Vol (NID = 12h): WCap ......................................................................................................139
6.14.1. DMic1Vol (NID = 12h): ConLst .......................................................................................141
6.14.2. DMic1Vol (NID = 12h): ConLstEntry0 ............................................................................141
6.14.3. DMic1Vol (NID = 12h): InAmpLeft ..................................................................................142
6.14.4. DMic1Vol (NID = 12h): InAmpRight ...............................................................................142
6.14.5. DMic1Vol (NID = 12h): ConSelectCtrl ............................................................................143
6.14.6. DMic1Vol (NID = 12h): PwrState ...................................................................................143
6.15. DAC0 (NID = 13h): WCap ............................................................................................................144
6.15.1. DAC0 (NID = 13h): Cnvtr ...............................................................................................145
6.15.2. DAC0 (NID = 13h): OutAmpLeft .....................................................................................147
6.15.3. DAC0 (NID = 13h): OutAmpRight ..................................................................................147
6.15.4. DAC0 (NID = 13h): PwrState .........................................................................................147
IDT CONFIDENTIAL
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92HD65C
92HD65C
SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
6.15.5. DAC0 (NID = 13h): CnvtrID ............................................................................................148
6.15.6. DAC0 (NID = 13h): EAPDBTLLR ...................................................................................149
6.16. DAC1 (NID = 14h): WCap ............................................................................................................149
6.16.1. DAC1 (NID = 14h): Cnvtr ...............................................................................................151
6.16.2. DAC1 (NID = 14h): OutAmpLeft .....................................................................................152
6.16.3. DAC1 (NID = 14h): OutAmpRight ..................................................................................153
6.16.4. DAC1 (NID = 14h): PwrState .........................................................................................153
6.16.5. DAC1 (NID = 14h): CnvtrID ............................................................................................154
6.16.6. DAC1 (NID = 14h): EAPDBTLLR ...................................................................................154
6.17. ADC0 (NID = 15h): WCap ............................................................................................................155
6.17.1. ADC0 (NID = 15h): ConLst ............................................................................................156
6.17.2. ADC0 (NID = 15h): ConLstEntry0 ..................................................................................157
6.17.3. ADC0 (NID = 15h): Cnvtr ...............................................................................................157
6.17.4. ADC0 (NID = 15h): ProcState ........................................................................................159
6.17.5. ADC0 (NID = 15h): PwrState .........................................................................................159
6.17.6. ADC0 (NID = 15h): CnvtrID ............................................................................................160
6.18. ADC1 (NID = 1Bh): WCap ...........................................................................................................160
6.18.1. ADC1 (NID = 1Bh): ConLst ............................................................................................162
6.18.2. ADC1 (NID = 1Bh): ConLstEntry0 ..................................................................................163
6.18.3. ADC1 (NID = 1Bh): Cnvtr ...............................................................................................163
6.18.4. ADC1 (NID = 1Bh): ProcState ........................................................................................164
6.18.5. ADC1 (NID = 1Bh): PwrState .........................................................................................165
6.18.6. ADC1 (NID = 1Bh): CnvtrID ...........................................................................................166
6.19. ADC0Mux (NID = 17h): WCap .....................................................................................................166
6.19.1. ADC0Mux (NID = 17h): ConLst ......................................................................................168
6.19.2. ADC0Mux (NID = 17h): ConLstEntry4 ...........................................................................168
6.19.3. ADC0Mux (NID = 17h): ConLstEntry0 ...........................................................................169
6.19.4. ADC0Mux (NID = 17h): OutAmpCap .............................................................................169
6.19.5. ADC0Mux (NID = 17h): OutAmpLeft ..............................................................................170
6.19.6. ADC0Mux (NID = 17h): OutAmpRight ...........................................................................171
6.19.7. ADC0Mux (NID = 17h): ConSelectCtrl ...........................................................................171
6.19.8. ADC0Mux (NID = 17h): PwrState ..................................................................................172
6.19.9. ADC0Mux (NID = 17h): EAPDBTLLR ............................................................................172
6.20. ADC1Mux (NID = 18h): WCap .....................................................................................................173
6.20.1. ADC1Mux (NID = 18h): ConLst ......................................................................................174
6.20.2. ADC1Mux (NID = 18h): ConLstEntry4 ...........................................................................175
6.20.3. ADC1Mux (NID = 18h): ConLstEntry0 ...........................................................................175
6.20.4. ADC1Mux (NID = 18h): OutAmpCap .............................................................................176
6.20.5. ADC1Mux (NID = 18h): OutAmpLeft ..............................................................................177
6.20.6. ADC1Mux (NID = 18h): OutAmpRight ...........................................................................177
6.20.7. ADC1Mux (NID = 18h): ConSelectCtrl ...........................................................................178
6.20.8. ADC1Mux (NID = 18h): PwrState ..................................................................................178
6.20.9. ADC1Mux (NID = 18h): EAPDBTLLR ............................................................................179
6.21. NID = 19h Reserved ....................................................................................................................180
6.22. NID = 1Ah Reserved ....................................................................................................................180
6.23. Mixer (NID = 1Bh): WCap ............................................................................................................180
6.23.1. Mixer (NID = 1Bh): InAmpCap .......................................................................................181
6.23.2. Mixer (NID = 1Bh): ConLst .............................................................................................182
6.23.3. Mixer (NID = 1Bh): ConLstEntry4 ..................................................................................182
6.23.4. Mixer (NID = 1Bh): ConLstEntry0 ..................................................................................183
6.23.5. Mixer (NID = 1Bh): InAmpLeft0 ......................................................................................183
6.23.6. Mixer (NID = 1Bh): InAmpRight0 ...................................................................................184
6.23.7. Mixer (NID = 1Bh): InAmpLeft1 ......................................................................................184
6.23.8. Mixer (NID = 1Bh): InAmpRight1 ...................................................................................185
6.23.9. Mixer (NID = 1Bh): InAmpLeft2 ......................................................................................185
6.23.10. Mixer (NID = 1Bh): InAmpRight2 .................................................................................186
6.23.11. Mixer (NID = 1Bh): InAmpLeft3 ....................................................................................186
6.23.12. Mixer (NID = 1Bh): InAmpRight3 .................................................................................187
6.23.13. Mixer (NID = 1Bh): InAmpLeft4 ....................................................................................187
IDT CONFIDENTIAL
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92HD65C
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
6.23.14. Mixer (NID = 1Bh): InAmpRight4 .................................................................................188
6.23.15. Mixer (NID = 1Bh): InAmpLeft5 ....................................................................................188
6.23.16. Mixer (NID = 1Bh): InAmpRight5 .................................................................................189
6.23.17. Mixer (NID = 1Bh): InAmpLeft6 ....................................................................................190
6.23.18. Mixer (NID = 1Bh): InAmpRight6 .................................................................................190
6.23.19. Mixer (NID = 1Bh): InAmpLeft7 ....................................................................................191
6.23.20. Mixer (NID = 1Bh): InAmpRight7 .................................................................................191
6.23.21. Mixer (NID = 1Bh): PwrState ........................................................................................192
6.24. MixerOutVol (NID = 1Ch): WCap .................................................................................................192
6.24.1. MixerOutVol (NID = 1Ch): ConLst ..................................................................................194
6.24.2. MixerOutVol (NID = 1Ch): ConLstEntry0 .......................................................................194
6.24.3. MixerOutVol (NID = 1Ch): OutAmpCap .........................................................................195
6.24.4. MixerOutVol (NID = 1Ch): OutAmpLeft ..........................................................................196
6.24.5. MixerOutVol (NID = 1Ch): OutAmpRight .......................................................................196
6.24.6. MixerOutVol (NID = 1Ch): PwrState ..............................................................................197
6.25. SPDIFOut0 (NID = 1Dh): WCap ..................................................................................................198
6.25.1. SPDIFOut0 (NID = 1Dh): PCMCap ................................................................................199
6.25.2. SPDIFOut0 (NID = 1Dh): StreamCap ............................................................................201
6.25.3. SPDIFOut0 (NID = 1Dh): OutAmpCap ...........................................................................201
6.25.4. SPDIFOut0 (NID = 1Dh): Cnvtr ......................................................................................202
6.25.5. SPDIFOut0 (NID = 1Dh): OutAmpLeft ...........................................................................203
6.25.6. SPDIFOut0 (NID = 1Dh): OutAmpRight .........................................................................204
6.25.7. SPDIFOut0 (NID = 1Dh): PwrState ................................................................................204
6.25.8. SPDIFOut0 (NID = 1Dh): CnvtrID ..................................................................................205
6.25.9. SPDIFOut0 (NID = 1Dh): DigCnvtr ................................................................................206
6.26. SPDIFOut1 (NID = 1Eh): WCap ..................................................................................................207
6.26.1. SPDIFOut1 (NID = 1Eh): PCMCap ................................................................................208
6.26.2. SPDIFOut1 (NID = 1Eh): StreamCap ............................................................................210
6.26.3. SPDIFOut1 (NID = 1Eh): OutAmpCap ...........................................................................210
6.26.4. SPDIFOut1 (NID = 1Eh): Cnvtr ......................................................................................211
6.26.5. SPDIFOut1 (NID = 1Eh): OutAmpLeft ...........................................................................212
6.26.6. SPDIFOut1 (NID = 1Eh): OutAmpRight .........................................................................213
6.26.7. SPDIFOut1 (NID = 1Eh): PwrState ................................................................................213
6.26.8. SPDIFOut1 (NID = 1Eh): CnvtrID ..................................................................................214
6.26.9. SPDIFOut1 (NID = 1Eh): DigCnvtr .................................................................................215
6.27. Dig0Pin (NID = 1Fh): WCap ........................................................................................................216
6.27.1. Dig0Pin (NID = 1Fh): PinCap .........................................................................................217
6.27.2. Dig0Pin (NID = 1Fh): ConLst .........................................................................................218
6.27.3. Dig0Pin (NID = 1Fh): ConLstEntry0 ...............................................................................219
6.27.4. Dig0Pin (NID = 1Fh): PwrState ......................................................................................219
6.27.5. Dig0Pin (NID = 1Fh): PinWCntrl ....................................................................................220
6.27.6. Dig0Pin (NID = 1Fh): UnsolResp ..................................................................................221
6.27.7. Dig0Pin (NID = 1Fh): ChSense ......................................................................................221
6.27.8. Dig0Pin (NID = 1Fh): ConfigDefault ...............................................................................222
6.28. Dig1Pin (NID = 20h): WCap .........................................................................................................224
6.28.1. Dig1Pin (NID = 20h): PinCap .........................................................................................226
6.28.2. Dig1Pin (NID = 20h): ConLst .........................................................................................227
6.28.3. Dig1Pin (NID = 20h): ConLstEntry0 ...............................................................................228
6.28.4. Dig1Pin (NID = 20h): PwrState ......................................................................................228
6.28.5. Dig1Pin (NID = 20h): PinWCntrl .....................................................................................229
6.28.6. Dig1Pin (NID = 20h): UnsolResp ...................................................................................230
6.28.7. Dig1Pin (NID = 20h): ChSense ......................................................................................230
6.28.8. Dig1Pin (NID = 20h): ConfigDefault ...............................................................................230
6.29. DigBeep (NID = 21h): WCap .......................................................................................................233
6.29.1. DigBeep (NID = 21h): OutAmpCap ................................................................................234
6.29.2. DigBeep (NID = 21h): OutAmpLeft ................................................................................234
6.29.3. DigBeep (NID = 21h): PwrState .....................................................................................235
6.29.4. DigBeep (NID = 21h): Gen .............................................................................................236
6.29.5. SPDIFIn (NID = 22h): WCap ..........................................................................................236
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6.30. SPDIFIn (NID = 22h): Cnvtr .........................................................................................................239
6.30.1. SPDIFIn (NID = 22h): PCMCap .....................................................................................240
6.30.2. SPDIFIn (NID = 22h): StreamCap ..................................................................................241
6.30.3. SPDIFIn (NID = 22h): ConLst ........................................................................................242
6.30.4. SPDIFIn (NID = 22h): ConLstEntry0 ..............................................................................242
6.30.5. SPDIFIn (NID = 22h): PwrState .....................................................................................243
6.30.6. SPDIFIn (NID = 22h): CnvtrID ........................................................................................244
6.30.7. SPDIFIn (NID = 22h): DigCnvtr ......................................................................................244
6.30.8. SPDIFIn (NID = 22h): InAmpCap ...................................................................................245
6.30.9. SPDIFIn (NID = 22h): InAmpLeft ...................................................................................246
6.30.10. SPDIFIn (NID = 22h): InAmpRight ...............................................................................246
6.30.11. SPDIFIn (NID = 22h): VS .............................................................................................247
6.30.12. SPDIFIn (NID = 22h): Status ........................................................................................247
6.31. DAC2 (NID = 23h): WCap ............................................................................................................250
6.31.1. DAC2 (NID = 23h): Cnvtr ...............................................................................................251
6.31.2. DAC2 (NID = 23h): OutAmpLeft .....................................................................................252
6.31.3. DAC2 (NID = 23h): OutAmpRight ..................................................................................253
6.31.4. DAC2 (NID = 23h): PwrState .........................................................................................253
6.31.5. DAC2 (NID = 23h): CnvtrID ............................................................................................254
6.31.6. DAC2 (NID = 23h): EAPDBTLLR ...................................................................................255
6.32. Dig2Pin (NID = 24h): WCap .........................................................................................................256
6.32.1. Dig2Pin (NID = 24h): PinCap .........................................................................................257
6.32.2. Dig2Pin (NID = 24h): PwrState ......................................................................................258
6.32.3. Dig2Pin (NID = 24h): UnsolResp ...................................................................................260
6.32.4. Dig2Pin (NID = 24h): ChSense ......................................................................................260
6.32.5. Dig2Pin (NID = 24h): ConfigDefault ...............................................................................261
7. PINOUTS AND PACKAGE INFORMATION ......................................................................... 264
7.1. Pinout .............................................................................................................................................264
7.2. Pin Table ........................................................................................................................................264
7.3. 40QFN Package Outline and Package Dimensions ......................................................................266
7.4. Pb Free Process- Package Classification Reflow Temperatures ..................................................266
8. DISCLAIMER ......................................................................................................................... 267
9. DOCUMENT REVISION HISTORY ....................................................................................... 268
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LIST OF TABLES
Table 1. Port Functionality .............................................................................................................................11
Table 2. Analog Output Port Behavior ...........................................................................................................11
Table 3. Resistor Tolerance ...........................................................................................................................13
Table 4. 48 pin Jack Detect ...........................................................................................................................13
Table 5. 40 pin Jack Detect ...........................................................................................................................13
Table 6. SPDIF OUT 0 or 1 Behavior .............................................................................................................14
Table 7. SPDIF Behavior ...............................................................................................................................15
Table 8. Power Management .........................................................................................................................17
Table 9. Example channel mapping ...............................................................................................................20
Table 11. EAPD Pin Mode Select ..................................................................................................................22
Table 12. Control bit descriptions for BTL amplifier and Headphone amplifier enable configurations ...........22
Table 13. BTL Amp Enable Configuration ......................................................................................................22
Table 14. EAPD Analog PC_Beep behavior ..................................................................................................23
Table 15. EAPD Behavior ..............................................................................................................................23
Table 16. Valid Digital Mic Configurations .....................................................................................................25
Table 17. DMIC_CLK and DMIC_0,1 Operation During Power States ..........................................................25
Table 18. Dig0Pin (Pin 48/40) Function Selection .........................................................................................33
Table 19. Dig1Pin (Pin 46/38) Function Selection .........................................................................................33
Table 20. Electrical Specification: Maximum Ratings ...................................................................................35
Table 21. Recommended Operating Conditions ............................................................................................35
Table 22. Analog Performance ......................................................................................................................36
Table 23. Capless Headphone Supply ..........................................................................................................41
Table 24. HD Audio Bus Timing .....................................................................................................................41
Table 25. SPDIF Timing .................................................................................................................................42
Table 26. Digital Mic timing ............................................................................................................................42
Table 27. GPIO Characteristics .....................................................................................................................42
Table 28. Pin Configuration Default Settings .................................................................................................46
Table 29. High Definition Audio Widget .........................................................................................................47
Table 30. Widget Descriptions .......................................................................................................................48
Table 31. 40-Pin Table .................................................................................................................................264
Table 32. Reflow ..........................................................................................................................................266
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1. DESCRIPTION
1.1.
Overview
The 92HD65C provide stereo 24- bit, full duplex resolution supporting sample rates up to 192kHz by
the DAC and ADC. SPDIF outputs support sample rates of 192kHz, 96kHz, 88.2kHz, 48kHz, and
44.1kHz. SPDIF input supports 96KHz, 88.2KHz, 48KHz, and 44.1KHz sample rates. Additional
sample rates are supported by the driver software.
The 92HD65C supports a wide range of desktop and laptop 6-channel configurations. The 2 independent SPDIF output interfaces provides connectivity to consumer electronic equipment or to a
home entertainment system. Simultaneous HDMI and SPDIF output is possible. All inputs can be
programmed with 0-30 dB gain in 10 dB steps allowing for line or microphone use of any input.
Port presence detect capabilities allow the CODEC to detect when audio devices are connected to
the CODEC. The fully parametric IDT SoftEQ can be initiated upon headphone jack insertion and
removal for protection of notebook speakers.
The 92HD65C operates with a 3.3V digital supply and a 5V analog supply. It allows for 3.3V HDA
signaling.
The 92HD65C is offered in a 40 pin QFN Environmental (ROHS) package.
1.2.
Orderable Part Numbers
92HD65C5X5NDGXyyX
6ch, 40QFN, 3.3V HDA Signaling, 5V AVDD
yy = silicon stepping/revision, contact sales for current data.
Add an “8” to the end for tape and reel delivery.
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2. DETAILED DESCRIPTION
2.1.
Port Functionality
Pins (40-pin)
Port
Input
Output
Head
phone
Mic Bias
(Vref pin)
Input
boost amp
23/24/32/33
A
Yes
Yes
Yes
Yes1
Yes
Yes
1
Yes
Yes
25/26/34/35
B
Yes
Yes
16/17
C
Yes
Yes
Yes
Yes
-
D
12/23
E
Yes
Yes
Yes
Yes
14/15
F
Yes
Yes
2
Yes
Yes3
2
Yes
Yes3
39
SPDIF_OUT0
Yes
37
SPDIF_OUT1
Yes
36
SPDIF_IN
Yes
2 (CLK=1)
DMIC0
Yes
Yes
Yes
Yes
Table 1. Port Functionality
1. Ports A and B provide internal microphone bias on the headphone out pins. No external
VrefOut pin is needed.
2. DMIC1
3. Boost amp is only available for DMIC input and is not associated with the pin widget
2.2.
Port Characteristics
Universal (Bi-directional) jacks are supported on ports A, B, C, E, and F. Ports A, B, and F are
designed to drive 32 ohm (nominal) headphones or a 10K (nominal) load. Line Level outputs are
intended to drive an external 10K load (nominal) and an on board shunt resistor of 20-47K (nominal).
However, applications may support load impedances of 2.8K ohms and above when implementing
ports capable of operating as microphone inputs or line outputs. Input ports are 75K (nominal) at the
pin.
DAC full scale outputs and intended full scale input levels are greater than 1V rms at 5V (+5%/
-10%) to meet WLP requirements. Line output ports and Headphone output ports on the codec may
be configured for +3dBV full scale output levels by using a vendor specific verb.
Output ports implement anti-pop circuits to prevent pops/clicks associated with turning power on/off
or charging and discharging output coupling capacitors (except for cap-less headphone ports).
Unused ports should be left unconnected. When updating existing designs to use the codec, ensure
that there are no conflicts between the output ports on the codec and existing circuitry.
AFG
Power
State
D0-D2
Input Output
Enable Enable
Used as
output for
DAC/Mixer
Used as
output for
analog
PC_Beep
Used as
input for
ADC, mixer
Port Behavior
Not allowed. Port is active as Input.
1
1
Don’t care
Don’t care
Yes
1
1
Don’t care
Don’t care
No
Not allowed. Inactive (Power Down) - Port
keeps output coupling caps charged if port
uses caps.
Table 2. Analog Output Port Behavior
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AFG
Power
State
Input Output
Enable Enable
Used as
output for
DAC/Mixer
Used as
output for
analog
PC_Beep
Used as
input for
ADC, mixer
Port Behavior
1
0
NA
NA
Yes
Active - Port enabled as input
1
0
NA
NA
No
0
1
NA
Inactive (Power Down) - Port keeps output
coupling caps charged if port uses caps.
Active - Port enabled as output
0
1
NA
Inactive (Power Down)
0
0
1
1
NA
NA
Don’t care
Not allowed. Port is active as Input.
1
0
NA
NA
Don’t care
0
1
Inactive (Power Down) - Port keeps output
coupling caps charged if port uses caps.
Low power state. If enabled, Beep will output
from the port
0
1
0
0
D3cold
-
-
D4
-
-
D5
-
-
D3
currently used by DAC, mixer,
beep, or is traditional line or
headphone output
not currently used by DAC,
mixer, beep, and is cap-less
headphone output
NA
NA
Inactive (Power Down) - Port keeps output
coupling caps charged if port uses caps.
currently used by DAC, mixer,
beep, or is traditional line or
headphone output
not currently used by DAC,
mixer, beep, and is cap-less
headphone output
NA
NA
Don’t care
Don’t care
Inactive (Power Down)
Don’t care
Inactive (Power Down) - Port keeps output
coupling caps charged if port uses caps.
Inactive (Power Down) - Port keeps output
coupling caps charged if port uses caps.
Inactive (Power Down) - Port keeps output
coupling caps charged if port uses caps.
Off - Charge on coupling caps (if used) will
not be maintained.
Table 2. Analog Output Port Behavior
2.3.
Vref_Out
Ports A, B, C, & E support Vref_Out pins for biasing electret cartridge microphones. Settings of 80%
AVDD, 50% AVDD, GND, and Hi-Z are supported. Attempting to program a pin widget control with a
reserved or unsupported value will cause the associated Vref_Out pin to assume a Hi-Z state and
the pin widget control Vref_En field will return a value of ‘000’ (Hi-Z) when read.
2.4.
Jack Detect
Plugs inserted to a jack are detected using SENSE inputs as described in the tables below. Per
ECR15-B, the detection circuit operates when the CODEC is in D0 - D3 and can also operate if both
the CODEC and Controller are in D3 (no bus clock.) Jack detection requires that all supplies (analog
and digital) are active and stable. When AVDD is not present, the value reported in the pin widget is
invalid.
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When the HD Audio bus is in a low power state (reset asserted and clock stopped) the CODEC will
generate a Power State Change Request when a change in port connectivity is sensed and then
generate an unsolicited response after the HD Audio link has been brought out of a low power state
and the device has been enumerated. Per ECR015-B, this will take less than 10mS.
The following table summarizes the proper resistor tolerances for different analog supply voltages.
.
AVdd Nominal
Voltage (+/- 5%)
Resistor Tolerance
Pull-Up
Resistor Tolerance
SENSE_A/B
4.75V or 5.0V
1%
1%
Table 3. Resistor Tolerance
Resistor
SENSE_A
SENSE_B
39.2K
PORT A
PORT E
20.0K
PORT B
Mono
10.0K
PORT C
SPDIF0/DMIC1
5.11K
PORT F
SPDIF1/DMIC1
2.49K
Pull-up to Avreg (X5)
Pull-up to Avreg (X5)
Table 4. 48 pin Jack Detect
.
Resistor
SENSE_A
39.2K
PORT A
20.0K
PORT B
10.0K
PORT C
5.11K
PORT F
2.49K
Pull-up to Avreg (X5)
Table 5. 40 pin Jack Detect
See reference design for more information on Jack Detect implementation.
2.5.
SPDIF Output
Both SPDIF Outputs can operate at 44.1kHz, 48kHz, 88.2kHz, 96kHz and 192KHz as defined in the
Intel High Definition Audio Specification with resolutions up to 24 bits. This insures compatibility with
all consumer audio gear and allows for convenient integration into home theater systems and media
center PCs.
Note: Peak to peak jitter is currently limited to less than 4.5nS (half of the internal master clock cycle)
which does not meet the IEC-60958-3 0.05UI requirement at 192KHz.
The two SPDIF output converters can not be aligned in phase with the DACs. Even when attached
to the same stream, the two SPDIF output converters may be misaligned with respect to their frame
boundaries.
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Per HDA015-B, the SPDIF outputs support the ability to provide clocking information even when no
stream is selected for the converter, or when in a low power state. Also, as stated in the DCN, the
SPDIF output ports support port presence detect.
SPDIF Outputs are outlined in tables below. .
AFG
Power
State
RESET#
D0-D4
Asserted
(Low)
-
-
-
-
-
-
Hi-Z immediately after power on,
otherwise the previous state is
retained.
D0-D4
De-Asserted
(High)
0
0
0
-
-
-
Hi-Z
D0-D4
De-Asserted
(High)
1
-
-
-
-
-
GPIO
Active - Pin reflects GPIO0
configuration (internal pull-down
enabled)
D0-D4
De-Asserted
(High)
-
-
SPDIF
IN or
DMIC
IN
Pin functions as SPDIF input or DMIC
input
0
-
Active - Pin drives 0
0
Active - Pin drives SPDIF-format, but
data is zeroes
1-15
Active - Pin drives SPDIFOut1 data
-
Active - Pin drives SPDIF-format, but
data is zeroes
0
Active - Pin drives SPDIF-format, but
data is zeroes
1-15
Active - Pin drives SPDIFOut1 data
GPIO0 Input Output
Enable Enable Enable
0
1
0
Keep
Alive
En
-
0
D0
De-Asserted
(High)
0
0
1
Converter Stream
Dig En
ID
1
0
1
1
D1-D2
D3
De-Asserted
(High)
De-Asserted
(High)
0
0
0
0
1
1
Pin
Mode
Pin Behavior
0
0
-
Active - Pin drives 0
0
1
-
Active - Pin drives 0
1
0
-
1
1
-
Active - Pin drives SPDIF-format, but
data is zeroes
0
0
-
Hi-Z
0
1
-
Hi-Z
1
0
-
Active - Pin drives SPDIF-format, but
data is zeroes
1
1
-
Active - Pin drives SPDIF-format, but
data is zeroes
SPDIF
OUT
Active - Pin drives SPDIF-format, but
data is zeroes
D3cold
De-Asserted
(High)
0
0
1
-
-
-
Hi-Z
D4
De-Asserted
(High)
0
0
1
-
-
-
Hi-Z
D5
-
-
-
-
-
-
-
Hi-Z
Table 6. SPDIF OUT 0 or 1 Behavior
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2.6.
SPDIF Input
SPDIF IN can operate at 44.1 KHz, 48 KHz, or 96 KHz, and implements internal Jack Sensing (Port
presence Detect).
A sophisticated digital PLL allows automatic rate detection and accurate data recovery. The ability to
directly accept consumer SPDIF voltage levels eliminates the need for costly external receiver ICs.
Status flags from the input stream are updated only after the entire valid block has been received (or
at least when all bits of a particular status flag have been received) to ensure that software does not
read an invalid mixture of old and new data.
In general, the SPDIF input block does not alter the data received. However, it is sometimes necessary to alter the data when the converter widget settings do not match the stream format. The following table outlines a few cases and the expected behavior.
Port presence detect for SPDIF_IN operates differently from other ports. Once the PLL has locked
and valid framing (no errors) has been detected, then the port presence detect bit is set. In D3, and
D3 without a clock, it is not possible to check for proper framing. Monitoring of activity (rising and falling edges) is sufficient to verify a change in connectivity in D3. If no clock is present, then the internal
oscillator is used until a clock is restored. When the HD Audio bus is in a low power state (reset
asserted and clock stopped) the CODEC will generate a Power State Change Request when a
change in SPDIF_IN port connectivity is sensed and then generate an unsolicited response after the
HD Audio link has been brought out of a low power state and the device has been enumerated. Per
HDA015-B, this will take less than 10mS.
Conflict
Behavior
Although the SPDIF input block is designed
to handle inputs slightly above or below the
Converter widget rate does not
programmed rate, samples may be lost if
equal the stream rate
the input rate is much higher than the rate
programmed into the converter widget.
Resolution
Program the converter widget with the
same rate as indicated by the input stream.
If the input stream indicates non PCM data,
Converter widget programmed
the data will be truncated to the requested
Program the converter widget with the word
for a word length less than the
word length. If LPCM data is indicated in the
length indicated in the input stream.
word length provided by the
input stream, the CODEC will round the
input stream
1
received data to the requested length.
Regardless of content, 24 bits per channel
of data will be transferred from the SPDIF
Converter widget programmed
input stream to the HD Audio bus interface.
with a word length greater than
Truncation or rounding to the requested
the word length provided by
word length will be handled as described as
the input stream.
above. Any non-zero data in the incoming
stream will cause problems.
1.
Program the converter widget with the word
length indicated in the input stream.
Although not recommended, application or
driver software may program the converter
widget with a word length of 24 bits,
truncate the input to the word length
indicated by the input stream, then right
extend the data using 0s to the desired
word length.
Table 7. SPDIF Behavior
Rounding may be disabled by setting the disable bit (AFG vendor specific verb -see widget list) or setting the
SPDIF_IN converter widget Frmt StrmType field to 1 (non-PCM)
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2.7.
Analog Mixer
The mixer supports independent gain (-34.5 to +12dB in 1.5dB steps) on each input as well as independent mutes on each input. The following inputs are available: The output of the mixer may be
sent to the ADC where the ADC record gain can adjust the volume. If the output of the mixer is sent
to an analog port, then a separate volume control is provided to adjust the output volume. This mixer
output volume control supports a gain range of -46.5dB to 0dB in 1.5dB steps. (Selecting -46.5dB
will automatically mute the output.)
2.8.
•
Port A
•
Port B
•
Port C
•
Port E
•
Port F
•
DAC0
•
DAC1
•
DAC2
ADC Multiplexers
The codec implements 2 ADC input multiplexers. These multiplexers incorporate the ADC record
gain function (-16 to +30dB gain in 1dB steps) as an output amp and allow a preselection of one of
these possible inputs:
•
Port A
•
Port B
•
Port C
•
Port E
•
Port F
•
Mixer Output
•
DMIC 0
•
DMIC 1
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2.9.
Power Management
The HD Audio specification defines power states, power state widgets, and power state verbs.
Power management is implemented at several levels. The Audio Function Group (AFG) , all converter widgets, and all pin complexes support the power state verb F05/705. Converter widgets are
active in D0 and inactive in D1-D3.
The following table describes what functionality is active in each power state.
Function
D0
D11
D2
D3
D3cold
SPDIF Outputs
On
On
On
(idle)
On (idle)6
Off
Vendor
Vendor
2
Specific D4 SpecificD52
Off
Off
SPDIF Input
On
Off
Off
Off
Off
Off
Off
Digital Microphone inputs
On
Off
Off
Off
Off
Off
Off
DAC
On
Off
Off
Off
Off
Off
Off
D2S
On
Off
Off
Off
Off
Off
Off
ADC
On
Off
Off
Off
Off
Off
Off
ADC Volume Control
On
Off
Off
Off
Off
Off
Off
Ref ADC
On
Off
Off
Off
Off
Off
Off
Analog Clocks
On
Off
Off
Off
Off
Off
Off
6
GPIO pins
On
On
On
On
On
On
Off
VrefOut Pins
On
On
Off
Off
Off
Off
Off
Input Boost
On
On
Off
Off
Off
Off
Off
Analog mixer
On
On
Off
Off
Off
Off
Off
Mixer Volumes
On
On
Off
Off
Off
Off
Off
Analog PC_Beep
On
On
On
On
Off
Off
Off
On
6
Digital PC_Beep
Lo/HP Amps
On
On
On
On
On
On
Low Drive
Off
Off
Off
3
3
Low Drive
Low Drive
3
Off
4
VAG amp
On
On
On
Low Drive
Low Drive
Low Drive
Off
Port Sense
On
On
On
On5
Off
Off
Off
Reference Bias generator
On
On
On
On
On
On
Off
Reference Bandgap core
On
On
On
On
On
On
Off
6
Off
Off
Off
Off
HD Audio-Link
On
On
On
On
PLL
On
On
On
Off8
Limited
7
Off9
Table 8. Power Management
1. No DAC or ADC streams are active. Analog mixing and loop thru are supported.
2. D4 and D5 power states are entered only when D3cold is requested. D4 and D5 may be viewed as D3cold
behavioral options.
3. VAG is kept active when ports are disabled or in D3/D3cold/D4. PC_Beep is supported in D3 but may be
attenuated and distorted depending on load impedance.
4. VAG is always ramped up and down gradually, except in the case of a sudden power removal. VAG is active in
D2/D3 but in a low power state.
5.
Both AVDD and DVDD must be available for Port Sense to operate.
6. Not active if BITCLK is not running (Controller in D3), but can signal power state change request (PME)
7. Only double function group reset verbs and link reset supported per ECR15b
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8. PLL remains on if SPDIF_Out Keep Alive is enabled. PLL disabled only after DAC fading is complete and SDM
has settled.
9. PLL disabled only after DAC fading is complete and SDM has settled.
The D3-default state is available for HD Audio compliance. The programmable values, exposed via
vendor-specific settings, are under IDT Device Driver control for further power reduction. The analog
mixer, line and headphone amps, port presence detect, and internal references may be disabled
using vendor specific verbs. Use of these vendor specific verbs will cause pops.
The default power state for the Audio Function Group after reset is D3.
2.10. AFG D0
The AFG D0 state is the active state for the device. All functions are active if their power state (if they
support power management at their node level) has been set to D0.
2.11. AFG D1
D1 is a lower power mode where all converter widgets are disabled. Analog mixer and port functions
are active. The part will resume from theD1 to theD0 state within 1 mS.
2.12. AFG D2
The D2 state further reduces power by disabling the mixer and port functions. The port amplifiers
and internal references remain active to keep port coupling caps charged and the system ready for a
quick resume to either the D1 or D0 state. The part will resume from the D2 state to the D0 state
within 2mS.
2.13. AFG D3
The D3-default state is available for HD Audio compliance. All converters are shut down. Port amplifiers and references are active but in a low power state to prevent pops. Resume times may be longer than those from D2, but still less than 10mS to meet Intel low power goals. The default power
state for the Audio Function Group after power is applied is D3.
While in AFG D3, the HD Audio controller may be in a D0 state (HD Audio bus active) or in a D3
state (HD Audio bus held in reset with no Bit_Clk, SData_Out, or Sync activity.) The expected behavior is as follows (see the HDA015-B section for more information):
Function
HDA Bus active
Port Presence Detect state change Unsolicited Response
GPIO state change
Unsolicited Response
2.13.1.
HDA Bus stopped
Wake Event followed by an unsolicited response
Wake Event followed by an unsolicited response
AFG D3cold
The D3cold power state is the lowest power state available that does not use vendor specific verbs.
While in D3cold, the CODEC will still respond to bus requests to revert to a higher power state (double AFG reset, link reset). However, audio processing, port presence detect, and other functions are
disabled. Per the HD Audio bus HDA015-B, the D3cold state is intended to be used just prior to
removing power to the CODEC. Typically, power will be removed within 200mS. However, the codec
may exit from the D3cold state by generating 2, back-to-back, AFG reset events. Resume time from
D3cold is less than 200mS.
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2.14. Vendor Specific Function Group Power States D4/D5
The codec introduces vendor specific power states. A vendor defined verb is added to the Audio
Function Group that combines multiple vendor specific power control bits into logical power states
for use by the audio driver. The 2 states defined offer lower power than the 5 existing states defined
in the HD Audio specification and HDA015-B. The Vendor Specific D4 state provides lower digital
power consumption relative to D3cold by disabling HD Audio link responses. Vendor specific D5 further reduces power consumption on the digital supply by turning off GPIO drivers, and reduces analog power consumption by turning off all analog circuitry except for reset circuits.
States D4/D5 are not entered until D3cold has been requested so are actually D3cold options rather
than true, independent, power states. Software can pre-program the D4 or D5 state as a re-definition
of how the part will behave when the D3cold power state is requested or software may enter D3cold,
then set the D4 or D5 before performing the power state get command. The preferred method is to
request D3cold, then select D4 or D5 as desired.This will reduce the severity of pops encountered
when entering D4 or D5.
Both power states require a link reset or removal of DVDD to exit.
The CODEC may pop when using these verbs and transition times to an active state (D1 or D0 for
example) may take several seconds.
2.15. Vendor Specific Function Group Power State “D5 Kill”
Vendor specific “D5 Kill” places the device in a low power, non responsive, state that is intended to
disable the CODEC when, for security reasons, it is desired that no audio playback or recording take
place.
State “D5 Kill” is not entered until D3cold has been requested. Software pre-programs both the D4
and D5 state request bits (D4 and D5 = 1) then request D3cold. After responding to the Function
Group Power State Get verb (needed to enter D3cold), the CODEC will no longer respond to any link
activity. The only way to exit this state is to remove power (Power on reset will set the power state to
D3.)
“D5 Kill” is identical to vendor specific D5 with the exception that the CODEC will only exit this state
when power is removed.
2.16. Low-voltage HDA Signaling
The codec is compatible with 3.3V HDA bus signaling.
2.17. Multi-channel capture
The capability to assign multiple ADC Converters to the same stream is supported to meet the
microphone array requirements of Vista and future operating systems. Single converter streams are
still supported this is done by assigning unique non zero Stream IDs to each converter. All capture
devices (ADCs 0 and 1) may be used to create a multi-channel input stream. There are no restrictions regarding digital microphones.
The ADC Converters can be associated with a single stream as long the sample rate and the bits per
sample are the same. The assignment of converter to channel is done using the “CnvtrID” widget
and is restricted to even values. The ADC converters will always put out a stereo sample and therefore require 2 channels per converter.
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The stream will not be generated unless all entries for the targeted converters are set identically, and
the total number of assigned converter channels matches the value in the NmbrChan field. These
are listed the “Multi-Converter Stream Critical Entries.” table.
An example of a 4 Channel Steam with ADC0 supplying channels 0&1 and ADC1 supplying channels 2 & 3 is shown below. A 4 Channel stream can be created by assigning the same non-zero
stream id “Strm= N” to both ADC0 and ADC1. The sample rates must be set the same and the number of channels must be set to 4 channels “NmbrChan = 0011”.
ADC1 CnvtrID
(NID = 0x08)
[3:0]
ADC0 CnvtrID
Ch = 2
(NID = 0x07)
[3:0]
Ch=0
Table 9. Example channel mapping
Figure 1. Multi-channel capture
ADC0.CnvrtID.Channel = 0
ADC1.CnvrtID.Channel = 2
ADC0.CnvrtID.Channel = 2
ADC1.CnvrtID.Channel = 0
Stream ID
Data
Length
ADC0
Left Channel
ADC0
Right Channel
ADC1
Left Channel
ADC1
Right Channel
Stream ID
Data
Length
ADC1
Left Channel
ADC1
Right Channel
ADC0
Left Channel
ADC0
Right Channel
The following figure describes the bus waveform for a 24-bit, 48KHz capture stream with ID set to 1.
Figure 2. Multi-channel timing diagram
BITCLK
SDI
0
0
0
1
0
0
STREAM ID
1
1
DATA LENGTH
0
0
ADC0
L23
ADC0
L0
ADC0
R23
LEFT
STREAM TAG
ADC0
R0
ADC1
L23
RIGHT
ADC1
L0
ADC1
R23
LEFT
ADC0
ADC1
R0
RIGHT
ADC1
DATA BLOCK
ADC[1:0] Cnvtr
Bit Number
Sub Field Name
[15]
StrmType
[14]
FrmtSmplRate
Description
Stream Type (TYPE):
0: PCM
1: Non-PCM (not supported)
Sample Base Rate
0= 48kHz
1=44.1KHz
Table 10: Mult-channel
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[13:11]
SmplRateMultp
[10:8]
SmplRateDiv
[6:4]
BitsPerSmpl
[3:0]
NmbrChan
[7:4]
Strm
[3:0]
Ch
Sample Base Rate Multiple
000=48kHz/44.1kHz or less
001= x2
010= x3 (not supported)
011= x4 192kHz only, 176.4 not supported
100-111= Reserved
Sample Base Rate Divisor
000= Divide by 1
001= Divide by 2 (not supported)
010= Divide by 3 (not supported)
011= Divide by 4 (not supported)
100= Divide by 5 (not supported)
101= Divide by 6 (not supported)
110= Divide by 7 (not supported)
111= Divide by 8 (not supported)
Bits per Sample
000= 8 bits (not supported)
001= 16 bits
010= 20 bits
011= 24 bits
100-111= Reserved
Number of Channels
Number of channels for this stream in each “sample
block” of the “packets” in each “frame” on the link.
0000=1 channel (not supported)
0001 = 2 channels
…
1111= 16 channels.
Software-programmable integer representing link
stream ID used by the converter widget. By convention stream 0 is reserved as unused.
Integer representing lowest channel used by converter.
0 and 2 are valid Entries
If assigned to the same stream, one ADC must be
assigned a value of 0 and the other ADC assigned a
value of 2.
Table 10: Mult-channel
2.18. EAPD
The EAPD pin is a dedicated, bi-directional control pin. Although named External Amplifier Power
Down (EAPD) by the HD Audio specification, this pin operates as an external amplifier power up signal. The EAPD value is reflected on the EAPD pin; a 1 causes the external amplifier to power up
(equivalent to D0), and a 0 causes it to power down (equivalent to D3.) When the EAPD value = 1,
the EAPD pin must be placed in a state appropriate to the current power state of the associated Pin
Widget even though the EAPD value (in the register) may remain 1. The pin defaults to an
open-drain configuration (an external pull-up is recommended.)
Per the HD Audio specification and HDA015-B, multiple ports may control EAPD. The EAPD pin
assumes the highest power state of all the EAPD bits in all of the pin complexes. The default value of
EAPD is 1 (powered on), but the FG power state will override and the pin will be low.
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Vendor specific verbs are available to configure this pin. These verbs retain their values across link
and single function group resets but are set to their default values by power on reset:
MODE1
MODE0
EAPD Pin Function
Description
0
0
Open Drain I/O
Value at pin is wired-AND of EAPD bit and external signal.(default)
0
1
CMOS Output
Value of EAPD bit in pin widget is forced at pin
1
0
CMOS Input
External signal controls internal amps. EAPD bit in pin widget ignored
1
1
CMOS Input
External signal controls internal amps. EAPD bit in pin widget ignored
Table 11. EAPD Pin Mode Select
Control Flag
Description
EAPD PIN MODE 1:0
Defines if EAPD pin is used as input, output, or bi-directional port (Open Drain)
HP SD
0 = Amp controlled by EAPD pin only (default) / 1 = Amp controlled by power state (pin and FG) only
HP SD MODE
0 = Amp will mute when disabled (default) / 1 = Amp will shut down (enter a low power state) when disabled
HP SD INV
0 = AMP will power down (or mute) when EAPD pin is low (default) / 1 = Amp will power down (or mute)
when EAPD pin is high.
Table 12. Control bit descriptions for BTL amplifier and Headphone amplifier enable configurations
HP SD
HP SD
MODE
HP SD INV
EAPD Pin
State
Headphone Amp State
0
0
0
0
Amplifier is mute (default1)
0
0
0
1
Amplifier is active
0
0
1
0
Amplifier is active
0
0
1
1
Amplifier is mute
0
1
0
0
Amplifier is in a low power state
0
1
0
1
Amplifier is active
0
1
1
0
Amplifier is active
0
1
1
1
Amplifier is in a low power state
1
0
NA
NA
Amplifier follows pin/function group power state and will mute when
disabled
1
1
NA
NA
Amplifier follows pin/function group power state and will enter a low
power state when disabled
Table 13. BTL Amp Enable Configuration
1. EAPD bit is set to one by default but the EAPD state is 0 after power-on reset because the function group is not in D0.
The state after a single or double function group reset will be compliant with HDA015-B.
Each Headphone port has its own configuration bits for SD, SD MODE, and SD INV.
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Analog
BEEP
enabled
EAPD Pin value1
Description
0
Forced to low when in D2
or D3
Follows description in HD Audio spec. External amplifier is shut down when pin or function
group power state is D2 or D3 independent of value in EAPD bit.
1
Forced low in D2 or D3
unless port is enabled as
output
Power state is ignored if port is enabled as output and port EAPD=1 to allow PC_Beep
support in D2 and D3
1.
1.
Table 14. EAPD Analog PC_Beep behavior
When pin is enabled as Open Drain or CMOS output.
AFG
Power
State
RESET#
Analog
PC_BEEP
Port Power
State
Pin Behavior
D0-D3
Asserted (Low)
Enabled1
-
Active high immediately after power on, otherwise the previous
state is retained across FG and link reset events
D0-D3
Asserted (Low)
Disabled
-
The previous state is retained across FG and link reset events
D0
De-Asserted (High)
-
-
Active - Pin reflects EAPD bit unless held low by external source.
D1
De-Asserted (High)
-
D0-D1
Active - Pin reflects EAPD bit unless held low by external source.
D2
De-Asserted (High)
Disabled
D0-D2
Pin forced low to disable external amp
D2
De-Asserted (High)
Enabled
D0-D2
Active - EAPD Pin high if any port EAPD bit =1 and that port also
enabled as output.
D3
De-Asserted (High)
Disabled
D0-D3
Pin forced low to disable external amp
D3
De-Asserted (High)
Enabled
D0-D3
Active - EAPD Pin high if any port EAPD bit=1 and that port also
enabled as output.
D3cold
De-Asserted (High)
-
-
Pin forced low to disable external amp
D4
De-Asserted (High)
-
-
Pin forced low to disable external amp
D5
De-Asserted (High)
-
-
Pin Hi-Z (off)
Table 15. EAPD Behavior
PC_Beep is automatically routed to ports A, B, D, and F after power-on reset while link reset is active and EAPD will be high to enable
an external amplifier. This may be disabled using a vendor specific verb. If the automatic beep path is disabled, beep will still be
supported with EAPD active in link reset if Analog Beep is manually enabled and at least one port is configured as an output before
entering link reset. If the automatic Beep routing is disabled and Analog Beep has not been manually configured before entering link
reset, then the EAPD pin will retain its current state.
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HP AUDIO CONTROL BLOCK DIAGRAM
SYNC FROM KBC TO OS
SCAN
CODES
OS
SYNC FROM AUDIO GUI TO KBC
A_EAPD
KBC
MUTE +
UP/DOWN
BUTTONS
GPIO_1
CODEC
A_SD
(MUTE LED ON
SAME BOARD)
SPKR_EN#
SPKR AMP
Figure 3. EAPD System level Example
2.19. Digital Microphone Support
The digital microphone interface permits connection of a digital microphone(s) to the CODEC via the
DMIC0, DMIC1, and DMIC_CLK 3-pin interface. The DMIC0 and DMIC1 signals are inputs that carry
individual channels of digital microphone data to the ADC. In the event that a single microphone is
used, the data is ported to both ADC channels. This mode is selected using a vendor specific verb
and the left time slot is copied to the ADC left and right inputs.
The DMIC_CLK output is controllable from 4.704Mhz, 3.528Mhz, 2.352Mhz, 1.176Mhz and is synchronous to the internal master clock. The default frequency is 2.352Mhz.
The two DMIC data inputs are reported as two stereo input pin widgets that incorporate a boost
amplifier. The pin widgets are shown connected to the ADCs through the same multiplexors as the
analog ports. Although the internal implementation is different between the analog ports and the digital microphones, the functionality is the same. In most cases, the default values for the DMIC clock
rate and data sample phase will be appropriate and an audio driver will be able to configure and use
the digital microphones exactly like an analog microphone.
To conserve power, the analog portion of the ADC will be turned off if the D-mic input is selected.
When switching from the digital microphone to an analog input to the ADC, the analog portion of the
ADC will be brought back to a full power state and allowed to stabilize before switching from the digital microphone to the analog input. This should take less than 10mS.
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Digital
Mics
Data Sample
ADC
Conn.
Notes
0
N/A
N/A
No Digital Microphones
0, or 1
Available on either DMIC_0 or DMIC_1
When using a microphone that supports multiplexed operation (2-mics can share a
common data line), configure the microphone for “Left” and select mono operation using
the vendor specific verb.
“Left” D-mic data is used for ADC left and right channels.
0, or 1
Available on either DMIC_0 or DMIC_1, External logic required to support sampling on a
single Digital Mic pin channel on rising edge and second Digital Mic right channel on
falling edge of DMIC_CLK for those digital microphones that don’t support alternative
clock edge (multiplexed output) capability.
0, or 1
Requires both DMIC_0 and DMIC_1, External logic required to support sampling on a
single Digital Mic pin channel on rising edge and second Digital Mic right channel on
falling edge of DMIC_CLK for those digital microphones that don’t support alternative
clock edge (multiplexed output) capability. Two ADC units are required to support this
configuration
0, or 1
Connected to DMIC_0 and DMIC_1, External logic required to support sampling on a
single Digital Mic pin channel on rising edge and second Digital Mic right channel on
falling edge of DMIC_CLK for those digital microphones that don’t support alternative
clock edge capability. Two ADC units are required to support this configuration
1
Single Edge
2
Double Edge on
either DMIC_0 or 1
3
Double Edge on
one DMIC pin and
Single Edge on the
second DMIC pin.
4
Double Edge
Table 16. Valid Digital Mic Configurations
Power State
DMIC Widget
Enabled?
DMIC_CLK
Output
DMIC_0,1
Notes
D0
Yes
Clock Capable
Input Capable
DMIC_CLK Output is Enabled when either DMIC_0 or DMIC_1
Input Widget is Enabled. Otherwise, the DMIC_CLK remains Low
D1-D3
Yes
Clock Disabled
Input Disabled
DMIC_CLK is HIGH-Z with Weak Pull-down
D0-D3
No
Clock Disabled
Input Disabled
DMIC_CLK is HIGH-Z with Weak Pull-down
D4
-
Clock Disabled
Input Disabled
DMIC_CLK is HIGH-Z with Weak Pull-down
D5
-
Clock Disabled
Input Disabled
DMIC_CLK is HIGH-Z with Weak Pull-down
Table 17. DMIC_CLK and DMIC_0,1 Operation During Power States
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Figure 4. Single Digital Microphone (data is ported to both left and right channels
Off-Chip
On-Chip
DMIC_0
OR
DMIC_1
Digital
Microphone
Single Line In
STEREO
ADC0 or 1
PCM
MUX
Pin
DMIC_CLK
Pin
Stereo Channels
Output
On-Chip
Multiplexer
Single Microphone not supporting multiplexed output.
DMIC_0
Or
DMIC_1
Valid Data
Right
Channel
Valid Data
Valid Data
Left
Channel
DMIC_CLK
Single “Left” Microphone, DMIC input set to mono input mode.
DMIC_0
Or
DMIC_1
Valid Data
Valid Data
Valid Data
Valid Data
Left & Right
Channel
DMIC_CLK
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Figure 5. Stereo Digital Microphone Configuration
Off-Chip
Digital
Microphones
On-Chip
External
Multiplexer
DMIC_0
Or
DMIC_1
STEREO
ADC0 or 1
PCM
MUX
MUX
Pin
On-Chip
Multiplexer
Stereo Channels
Output
DMIC_CLK
Pin
DMIC_0
Or
DMIC_1
Valid
Data R
Right
Channel
Valid
Data L
Valid
Data R
Valid
Data L
Valid
Data R
Left
Channel
DMIC_CLK
Note: Some Digital Microphone Implementations support data on either edge, therefore, the
external mux may not be required.
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Figure 6. Quad Digital Microphone Configuration
Off-Chip
Digital
Microphones
External
Multiplexer
On-Chip
On-Chip
Multiplexer
DMIC_0
MUX
STEREO
ADC0
PCM
MUX
Pin
Stereo Channels
Output For
DMIC_0 L&R
DMIC_CLK
Pin
On-Chip
Multiplexer
DMIC_1
MUX
STEREO
ADC1
PCM
MUX
Pin
Stereo Channels
Output For
DMIC_1 L&R
External
Multiplexer
Digital
Microphones
DMIC_0
DMIC_1
Valid
Data R0
Valid
Data L0
Valid
Data R0
Valid
Data L0
Valid
Data R0
Valid
Data R1
Valid
Data L1
Valid
Data R1
Valid
Data L1
Valid
Data R1
Right
Channel
Left
Right
Channel Channel
Left
Channel
DMIC_CLK
Note: Some Digital Microphone Implementations support data on either edge, in this case the
external multiplexer is not required.
2.20. Analog PC-Beep
The codec supports automatic routing of the PC_Beep pin to several outputs when the HD-Link is in
reset. The codec will route PC_Beep to ports A, B, and F by default when reset is applied. To prevent
pops, beep is not enabled immediately when power is applied. Bonham will mute outputs and wait
until references and amplifiers have stabilized before enabling beep pass thru after power on reset.
To prevent pops when removing power, automatic routing of PC_Beep is not supported in D3cold,
D4, or D5.
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Analog PC-Beep may also be supported during HD-Link Reset if analog PC_Beep is manually
enabled before entering reset. Analog PC_Beep is mixed at the port and only ports enabled as outputs will pass PC_Beep. Analog PC_Beep (or a digital equivalent) must not prevent passing WLP
when analog PC_Beep is enabled. Analog PC_Beep, when enabled, must not prevent other audio
sources from playing (we must mix not mux.) Beeps from ICH (from Beep.sys) can have a frequency
of about 37Hz to about 32KHz. Beep duration is programmable from 1mS to about 32 seconds. A
typical beep under Windows XP is 500Hz or 2KHz and lasts 75ms or 150mS. Due to external XOR
gates used as mixers, the idle state may be logic 0 or logic 1.
PC-Beep may be attenuated and distorted when the CODEC is in D3 depending on the load impedance seen by the output amplifier since all ports are in a low power state while in D3. Load impedances of 10K or larger can support full scale outputs but lower impedance loads will distort unless
the output amplitude is reduced.
Analog PC_Beep is not supported in D3 Cold, or the vendor specific states D4/D5.
Analog PC_Beep is typically used during POST to route error beep codes to internal speakers for
diagnostic purposes. When using a legacy OS such as DOS, analog PC_Beep routes “Bell” and
“Alarm” tones from the south bridge to internal speakers or headphones. Keyboard controller “Keyclick” sounds are also routed to internal speakers using the analog beep function in both Windows
and legacy operating systems.
2.20.1.
PC_Beep Activity Monitor
An activity monitor will allow the cap-less headphone amplifiers to remain in shutdown when the
function group is in D3 until the beep pin is active and then quickly change to an active state (within
10mS) to pass the beep tone.
Beep activity monitoring is only required when the analog beep path is enabled and the CODEC or
amplifier is in a low power state (D3).
2.20.1.1.
Input Characteristics:
•
There is no correlation between frequency of the tone and duration of the tone.
•
There will always be at least one complete cycle
•
A minimum input level of -23dBV (200mVpp) is required for proper detection. (Inputs are typically driven by 3.3V CMOS logic followed by 12-20dB attenuation and filtering)
•
Beeps from ICH (from Beep.sys) can have a frequency of about 37Hz to about 32KHz and are
1-bit (PFM)
•
Beeps from the Keyboard or system management controller are typically PWM (rate unknown
but typically 48KHz or less.)
•
Beep duration may be from 1mS to ~32 seconds if provided by ICH under OS control.
•
A typical beep under Windows XP is 500Hz or 2KHz and lasts 75ms or 150mS
•
Due to external XOR gates used as mixers, the idle state may be logic 0 or logic 1
2.20.1.2.
Firmware/Software Requirements:
The reconfiguration outlined in this chapter must be enabled by default (without the help of firmware
or OS driver.)
This autonomous mode must not interfere with normal operation.
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Figure 7. Analog PCBeep Flow Chart
POR
Wait
64mS
IDLE
NO
Link Reset
Active?
NO
NO
Analog
PC_Beep
Enabled?
NO
YES
Activity on Pin?
NO
YES
YES
Turn on
Amplifiers / Enable
Beep Path
YES
Activity on Pin?
Activity on Pin?
NO
NO
Inactivity over
threshold?
YES
Disable Beep
Path / Turn off
Amplifiers
Digital detector will detect the “BEEP_SENSE” following the state machine in Figure above and output a signal called “BEEP_PRESENCE”. BEEP_PRESENCE is 1 when the state is Beep
_Presence. Otherwise, it is 0.
In the 1ms window, the signal will be sampled and counted in first 500us of 1ms window. The counter will be reset during the second 500us of 1ms window. So the actual sample period is 500us. The
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main clock is typically 810KHZ. The threshold_high is 150 cycles (~37%) and the threshold_low is
30 cycles (~7.5%).
If BEEP_PRESENCE=1, it will be cleared until counter is lower than threshold in 1ms window and it
repeat for N times. N(1 is for 1ms) can be programmable to one among 64ms, 64ms*2, 64ms*4 and
64ms*8.
2.20.1.3.
Logic control
•
Phase 1: analog beep auto-routing phase in the period after digital POR, before the first rising
edge of link reset.
• Once Analog PCbeep is detected(BEEP_PRESENCE=1) after 64ms delays (after POR), the
Amplifier will be turned on(port_pwd=0, port_output_en=1, there is a timing between these
two signals) and analog_beep_en=1. If BEEP_PRESENCE=0 for longer than the threshold
time, the amplifiers will be turned off to save power and prevent unwanted system noise
from being heard.
•
Phase 2: When not in phase 1
•
If analog beep function is disabled by driver. Analog beep auto-detect will also be disabled.
•
If analog beep function is enabled by driver.
Once analog PCbeep is detected(BEEP_PRESENCE=1), analog pc_beep will be enabled
If in D0-D2, enabled simply means muting or un-muting beep to avoid hearing system noise on the
beep input pin but it is acceptable to turn off port amplifiers if not currently used by DACs, mixer, or
beep to save power.
If in D3, enabled means that the necessary amplifiers are turned on so that the beep signal may be
heard on all ports configured as outputs (see analog pc-beep description section above)
All needed amplifiers are enabled until BEEP_PRESENCE=0 for longer than the idle threshold
2.21. Digital PC-Beep
This block uses an 8-bit divider value to generate the PC beep from the 48kHz HD Audio Sync
pulse. The digital PC_Beep block generates the beep tone on all Pin Complexes that are currently
configured as outputs. The HD Audio spec states that the beep tone frequency = (48kHz HD Audio
SYNC rate) / (4*Divider), producing tones from 47 Hz to 12 kHz (logarithmic scale). Other audio
sources are disabled when digital PC_Beep is active.
It should be noted that digital PC Beep is disabled if the divider = 00h.
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PC-Beep may be attenuated and distorted when the CODEC is in D3 depending on the load impedance seen by the output amplifier since all ports are in a low power state while in D3. Load impedances of 10K or larger can support full scale outputs but lower impedance loads will distort unless
the output amplitude is reduced. Digital PC_Beep requires a clock to operate and the CODEC will
prevent the system from stopping the bus clock while in D3 by setting the Clock_Stop_OK bit to 0 to
indicate that the part requires a clock.
2.22. Headphone Drivers
The codec implements headphone capable outputs on some ports. The Microsoft Windows Logo
Program allows up to the equivalent of 100ohms in series. However, an output level of +3dBV at the
pin is required to support 300mV at the jack with a 32ohm load and 1V with a 320 ohm load. Microsoft allows device and system manufactures to limit output voltages to address EU safety requirements. (WLP 3.09 - please refer to the latest Windows Logo Program requirements from Microsoft.)
The Bonham codec does not implement power limiting. Power limiting may be implemented through
the use of an external series resistance.
Although 3 Headphone amplifiers are present, only two may be used simultaneously. Headphone
performance will degrade if more than one port is driving a 32 ohm load.
2.23. GPIO
2.23.1.
GPIO Pin mapping and shared functions
GPIO
#
40 pin
package
Supply
0
37
DVDD
1
1
2
3
2.23.2.
SPDIF
In
SPDIF
Out
EAPD
YES
GPI/O
VrefOut DMIC
Pull
Up
Pull
Down
YES
IN
50K
DVDD
YES
CLK
50K
2
DVDD
YES
IN
50K
39
DVDD
YES
IN
50K
YES
Digital Microphone/GPIO Selection
2 functions are available on the DMIC_CLK/GPIO1 and the DMIC_0/GPIO2 pins. To determine
which function is enabled, the order of precedence is followed:
1. If GPIOs are not enabled through the AFG, then at reset, the pins are pulled low by an internal
pull-down resistor.
2. If the GPIO 1 is enabled, the 2 DMIC pins become mute (unless programmed for GPIO or SPDIF
use) and pin2 becomes GPIO with an internal pull-down.
3. If GPIO2 is enabled through the AFG, pin 4 (3 on 40-pin package) becomes a GPIO and is
pulled low by an internal pull-down resistor.
4. If the port is enabled as an input, the digital microphone will be used.
5. If the port is not enabled as an input or if the pin is configured as a GPIO, the digital microphone
path will be mute.
2.23.3.
SPDIF_OUT/GPIO/DMIC Selection
3 functions are available on the SPDF0/GPIO3/DMIC1 and SPDF1/GPIO0/DMIC1 pins. To determine which function is enabled, the order of precedence is followed:
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1. Default at power-on is SPDIF_OUT/DMIC1 for pin 48 (40) and SPDIF_OUT/DMIC1 for pin
46(38)
2. If GPIO is enabled for that pin, it overrides the SPDIF_OUT and DMIC functions for that pin.
3. If the GPIO function is not enabled for that pin, then the DMIC or SPDIF_OUT function may be
enabled by setting the pin input or output enable to 1, respectively. (Setting input and output
enable to 1 at the same time will only enable DMIC)
Note: If the pin selected for DMIC1 input is configured as an output or GPIO, the DMIC block will
behave as if silence is present at the input.
GPIO3
Enable
0
1
Dig0Pin Input
Enable
Dig0Pin Output
Enable
Selected by
DMIC1Vol (NID
0x12)
Function
0
0
NA
Unused (input)
0
1
NA
SPDIF0 output
1
NA
NA
NA
No
Unused (input)
Yes
DMIC1 input
NA
GPIO3
Table 18. Dig0Pin (Pin 48/40) Function Selection
GPIO0
Enable
0
1
Dig1Pin Input
Enable
Dig1Pin Output
Enable
Selected by
DMIC1Vol (NID
0x12)
Function
0
0
NA
Unused (input)
0
1
NA
SPDIF1 output
1
NA
NA
NA
No
Unused (input)
Yes
DMIC1 input
NA
GPIO0
Table 19. Dig1Pin (Pin 46/38) Function Selection
2.24. HD Audio ECR 15b support
The codec implements complete support for the HDA015-B specification building on the support
already present in previous products. HDA015-B features supported are:
1. Persistence of many configuration options through bus and function group reset.
2. The ability to support port presence detect in D3 even when the HD Audio bus is in a low power
state (no clock.)
3. Fast resume times from low power states: 1ms D1 to D0, 2ms D2 to D0, 10mS D3 to D0.
4. Notification if persistent register settings have been unexpectedly reset.
5. SPDIF Out active in D3 (required)
6. The ability to notify the driver that a clock is necessary so entering D3 with the clock stopped is
not permissible
2.25. Digital Core Voltage Regulator
The digital core operates from 1.8V (+/- 10%). Many systems require that the CODEC use a single
3.3V digital supply, so an integrated regulator is included on die. The regulator uses pin 9, DVDD, as
its voltage source. The output of the LDO is connected to pin 1 and the digital core. A 10uF capacitor
must be placed on pin 1 for proper load regulation and regulator stability.
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The digital core voltage regulator is only dependent on DVDD. DVDDIO may be either 3.3 or 1.5V
and may precede or follow DVDD in sequence. The CODEC digital logic and I/O (unless referenced
to AVDD) will operate in the absence of AVDD. DVDD and AVDD supply sequencing for the application of power and the removal of power is neither defined nor guaranteed. It is common for desktop
systems to supply AVDD from the system standby supply and the CODEC will tolerate, indefinitely,
the condition where AVDD is active but DVDD and DVDDIO are inactive.
2.26. Combo Jack
The codec implements a sophisticated microphone detection algorithm to differentiate between
headphones and headsets when implementing 4-conductor “combo” jacks. A programmable sense
window (2s to ∞) provides flexibility in managing problematic slow plug insertions and partial insertions. Programmable de-bounce, anti-pop delay, and headphone-microphone unsolicited response
delay controls help ensure a robust, pleasing, experience for the end user. Support for a lanyard
(“turbo”) switch using IDT’s driver further enhances combo-jack implementations by supporting
many common cellular headsets.
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3. CHARACTERISTICS
3.1.
3.2.
Audio Fidelity
•
5V
• DAC SNR: >95dB, A-Weighted 4.75V - 5.25V
• ADC SNR: >90dB, A-Weighted 4.75V - 5.25V
•
3.3V
• DAC SNR: >90dB, A-Weighted 3.3V
• ADC SNR: >85dB, A-Weighted 3.3V
Electrical Specifications
3.2.1.
Absolute Maximum Ratings
Stresses above the ratings listed below can cause permanent damage to the 92HD65C. These ratings, which are standard values for IDT commercially rated parts, are stress ratings only. Functional operation of the device at these or any
other conditions above those indicated in the operational sections of the specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods can affect product reliability. Electrical parameters are guaranteed only over the recommended operating temperature range.
Item
Pin
Analog maximum supply voltage
Digital maximum supply voltage
Maximum Rating
AVdd
6 Volts
DVdd
5.5 Volts
PVdd
6 Volts
VREFOUT output current
5 mA
Voltage on any pin relative to ground
Vss - 0.3V to Vdd + 0.3V
Operating temperature
0 oC to +70 oC
Storage temperature
-55 oC to +125 oC
Soldering temperature
Soldering temperature information for all available in the package section.
Table 20. Electrical Specification: Maximum Ratings
3.2.2.
Recommended Operating Conditions
Parameter
Power Supplies
Power Supply Voltage
DVDD_Core
DVDD_IO (3.3V signaling)
Typ.
Max.
Units
1.6
1.8
1.98
V
3.135
3.3
3.465
V
+ 3.3V Digital
3.135
3.3
3.465
V
+ 4.75V Analog
4.500
4.750
5.000
V
+ 5.0V Analog
4.750
5.000
5.250
+ 3.3V Analog
3.135
3.3
03.465
V
+70
C
+90
C
Ambient Operating Temperature
Case Temperature
Min.
0
Tcase
Table 21. Recommended Operating Conditions
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ESD: The 92HD65C is an ESD (electrostatic discharge) sensitive device. The human body and test equipment can
accumulate and discharge electrostatic charges up to 4000 Volts without detection. Even though the 92HD65C implements
internal ESD protection circuitry, proper ESD precautions should be followed to avoid damaging the functionality or
performance.
3.3.
92HD65C Analog Performance Characteristics (PRELIMINARY)
•
5V AVDD
(Tambient = 25 ºC, AVdd = 4.75V (4.5-5.25V), DVdd = 3.3V ± 5% or 1.8V± 10%, AVss=DVss=0V; 20Hz to 20KHz swept sinusoidal
input; Sample Frequency = 48 kHz; 0dB FS = 1Vrms for AVdd = 4.75V, 10KΩ//50pF load, Testbench Characterization BW: 20 Hz –
20 kHz, 0 dB settings on all gain stages)
•
3.3V AVDD
(Tambient = 25 ºC, AVdd = 3.3V, DVdd = 3.3V ± 5% or 1.8V ± 10%, AVss=DVss=0V; 20Hz to 20KHz swept sinusoidal input; Sample
Frequency = 48 kHz; 0dB FS = 0.707Vrms for AVdd = 3.3V, 10KΩ//50pF load, Testbench Characterization BW: 20 Hz – 20 kHz, 0 dB
settings on all gain stages)
Parameter
Conditions
AVdd
Min
Typ
Max
Unit
Digital to Analog Converters
Resolution
All
24
Bits
-60dB FS signal level
5V
3.3V
95
93
dB
SNR2 - DAC to All Line-Out Ports
Analog Mixer Disabled, PCM data
5V
3.3V
98
95
dB
THD+N3 - DAC to All Line-Out Ports
Analog Mixer Disabled, -3 dB FS
Signal, PCM data
5V
3.3V
88
83
dB
SNR2 - DAC to All Headphone Ports
Analog Mixer Disabled, 10KΩ
load, PCM data
5V
3.3V
98
95
dB
THD+N3 - DAC to All Headphone Ports
Analog Mixer Disabled, -3 dB FS
Signal, 10Kv load, PCM data
5V
3.3V
88
83
dB
SNR2 - DAC to All Headphone Ports
Analog Mixer Disabled, 32Ω load,
PCM data
5V
3.3V
98
95
dB
THD+N3 - DAC to All Headphone Ports
Analog Mixer Disabled, -3 dB FS
Signal, 32Ω load, PCM data
5V
3.3V
71
70
dB
Any Analog Input (ADC) to DAC
Crosstalk
10KHz Signal Frequency
All
-65
dB
Any Analog Input (ADC) to DAC
Crosstalk
1KHz Signal Frequency
All
-65
dB
DAC L/R crosstalk
DAC to LO or HP 20-15KHz into
10KΩ load
All
-65
70
dB
DAC L/R crosstalk
DAC to HP 20-15KHz into 32Ω
load
All
-65
75
dB
Gain Error
Analog Mixer Disabled
All
0.5
dB
Interchannel Gain Mismatch
Analog Mixer Disabled
All
0.5
dB
21,000
Hz
0.1
+/- dB
1
Dynamic Range : PCM to All Analog
Outputs
D/A Digital Filter Pass Band4
D/A Digital Filter Pass Band Ripple
All
5
All
20
Table 22. Analog Performance
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AVdd
Min
D/A Digital Filter Transition Band
All
21,000
D/A Digital Filter Stop Band
All
31,000
Hz
D/A Digital Filter Stop Band Rejection6
All
-100
dB
D/A Out-of-Band Rejection
All
-55
dB
Group Delay (48KHz sample rate)
All
Attenuation, Gain Step Size DIGITAL
All
0.75
DAC Offset Voltage
All
10
20
mV
Deviation from Linear Phase
All
1
10
deg.
Parameter
Conditions
7
Typ
Max
Unit
31,000
Hz
1
ms
dB
Analog Outputs
Full Scale All Line-Outs
DAC PCM Data
5V
3.3V
1.00
0.707
Vrms
Full Scale All Line-Outs
DAC PCM Data
5V
3.3V
2.83
2.00
Vp-p
32Ω load
5V
3.3V
40
31
Amplifier output impedance
Line Outputs
Headphone Outputs
All
External load Capacitance
Line Outputs
Headphone Outputs
All
0dB Boost @4.75V
(input voltage required for 0dB FS
output)
5V
3.3V
1.05
0.71
Vrms
All Analog Inputs with boost
10dB Boost
5V
3.3V
0.320
0.225
Vrms
All Analog Inputs with boost
20dB Boost
5V
3.3V
0.105
0.071
Vrms
All Analog Inputs with boost
30dB Boost
5V
3.3V
0.032
0.023
Vrms
Boost Gain Accuracy8
All
-2
Input Impedance
All
50
KΩ
Input Capacitance
All
15
pF
All Headphone Capable Outputs
60
42
mW
(peak)
150
0.1
Ohms
220
pF
Analog Inputs
Full Scale Input Voltage
2
dB
Table 22. Analog Performance
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Parameter
Conditions
AVdd
Min
Typ
Max
Unit
-60dB FS signal level Analog Beep
enabled all other mixer inputs mute
5V
3.3V
90
87
dB
All inputs unmuted, but only one
driven with test signal.
5V
3.3V
85
80
dB
0dBFS Input on one input. All
others silent.
5V
3.3V
65
60
dB
SNR2 - DAC to All Line-Out Ports
Analog Beep Enabled, PCM data.
all other inputs mute
5V
3.3V
93
93
dB
SNR2 - DAC to All Ports
Analog Mixer Enabled, PCM data
all other inputs unmuted/silent
5V
3.3V
85
80
dB
THD+N3 - DAC to All Ports
Analog Mixer Enabled, 0dB FS
Signal, PCM data. all other inputs
unmuted/silent
5V
3.3V
72
72
dB
All
-
Analog Mixer
Dynamic Range: PCM to All Analog
Outputs
SNR2 - All Line-In to all Line-Outs
THD+N3 - All Line-In to all Line-Out
Attenuation, Gain Step Size ANALOG
1.5
dB
24
Bits
Analog to Digital Converter
Resolution
All
0dB Boost
(input voltage required to generate
0dBFS per AES 17)
5V
3.3V
High Pass Filter Enabled, -60dB
FS, No boost
5V
3.3V
20dB Boost
(input voltage required to generate
0dBFS per AES 17)
5V
3.3V
Dynamic Range1, All Analog Inputs to
A/D
20dB Boost
High Pass Filter Enabled, -60dB
FS
5V
3.3V
87
83
dB
THD+N All Analog Inputs to A/D
High Pass Filter enabled, -1/-3 dB
FS signal level
5V
3.3V
83
75
dB
THD+N All Analog Inputs to A/D
20dB Boost, High Pass Filter
enabled, -1/-3 dB FS signal level
5V
3.3V
80
75
dB
Full Scale Input Voltage
Dynamic Range1, All Analog Inputs to
A/D
Full Scale Input Voltage
Analog Frequency Response9
A/D Digital Filter Pass
Band4
1.05
0.71
Vrms
93
87
dB
0.105
0.071
Vrms
All
10
30,000
Hz
All
20
21,000
Hz
0.1
+/- dB
31,000
Hz
A/D Digital Filter Pass Band Ripple5
All
A/D Digital Filter Transition Band
All
21,000
All
31,000
Hz
All
-100
dB
A/D Digital Filter Stop Band
6
A/D Digital Filter Stop Band Rejection
Group Delay
Any unselected analog Input to ADC
Crosstalk
48 KHz sample rate
All
10KHz Signal Frequency
All
1
-65
ms
dB
Table 22. Analog Performance
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Parameter
Any unselected analog Input to ADC
Crosstalk
ADC L/R crosstalk
DAC to ADC crosstalk
Spurious Tone Rejection
Conditions
AVdd
Min
1KHz Signal Frequency
All
-65
dB
Any selected input to ADC
20-15Khz
All
-65
dB
Any DAC output to ADC 20-15Khz
All
-65
dB
10
Typ
Max
Unit
All
-100
dB
Attenuation, Gain Step Size
(analog)
All
1.5
dB
Interchannel Gain Mismatch ADC
All
0.5
dB
Power Supply
Digital Vreg Core Input Voltage
2.8
3.3
3.8
V
Digital Vreg Core Output Voltage
1.65
1.8
1.95
V
Digital Core Vreg Output Current
35
50
mA
Power Supply Rejection Ratio
10kHz
All
-60
dB
Power Supply Rejection Ratio
1kHz
All
-70
dB
3.3V, 1.8V
25
mA
D0 Didd11
D0
Aidd11
5V, 3.3V
60
mA
12
3.3V, 1.8V
20
mA
12
5V, 3.3V
34
mA
3.3V, 1.8V
7
mA
5V, 3.3V
30
mA
D2 Didd
3.3V, 1.8V
7
mA
D2 Aidd
5V, 3.3V
15
mA
3.3V, 1.8V
2
mA
D0 Didd
D0 Aidd
D1 Didd13
D1 Aidd
13
D3 (Beep enabled) Didd14
D3 (Beep enabled)
Aidd13
5V, 3.3V
7
mA
13
3.3V, 1.8V
2
mA
13
5V, 3.3V
5
mA
3.3V, 1.8V
1
mA
5V, 3.3V
5
mA
Vendor D4 Didd
3.3V, 1.8V
0.4
mA
Vendor D4 Aidd
5V, 3.3V
5
mA
Vendor D5 Didd
3.3V, 1.8V
0.4
mA
Vendor D5 Aidd
5V, 3.3V
0.6
mA
One Stereo ADC Didd
3.3V, 1.8V
4
mA
One Stereo ADC Aidd
5V, 3.3V
8
mA
One Stereo DAC Didd
3.3V, 1.8V
4
mA
One Stereo DAC Aidd
5V, 3.3V
6
mA
D3 Didd
D3 Aidd
D3cold Didd13
13
D3cold Aidd
Table 22. Analog Performance
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Parameter
AVdd
Min
Typ
VREFOut15
All
-
0.5 X
AVdd
V
VREFOut Drive16
All
1.6
mA
VREFILT (VAG)
All
0.45 X
AVdd
V
PLL lock time
All
96
200
usec
PLL (or Azalia Bit CLK) 24MHz clock
jitter
All
150
500
psec
Conditions
Max
Unit
Voltage Reference Outputs
Phased Locked Loop
ESD / Latchup
IEC1000-4-2
All
1
Level
JESD22-A114-B
All
2
Class
JESD22-C101
All
4
Class
Table 22. Analog Performance
1.Dynamic Range is the ratio of the full scale signal to the noise output with a -60dBFS signal as defined in AES17
as SNR in the presence of signal and outlined in AES6id, measured “A weighted” over 20 Hz to 20 kHz bandwidth.
2.Ratio of Full Scale signal to idle channel noise output is measured “A weighted” over a 20 Hz to a 20 kHz bandwidth. (AES17-1991 Idle Channel Noise or EIAJ CP-307 Signal-to-noise Ratio).
3.THD+N ratio as defined in AES17 and outlined in AES6id,non-weighted, swept over 20 Hz to 20 kHz bandwidth
as required by WLP 3.09. Results at the jack are dependent on external components and will likely be 1 - 2dB worse.
4.48 kHz or 44.1 kHz Sample Frequency. -1dB upper band limit. -3dB lower band limit.
5.Peak-to-Peak Ripple over Passband meets ± 0.125dB limits, 48 kHz or 44.1 kHz Sample Frequency. 1dB limit.
6.Stop Band rejection determines filter requirements. Out-of-Band rejection determines audible noise.
7.The integrated Out-of-Band noise generated by the DAC process, during normal PCM audio playback, over a
bandwidth 28.8 to 100 kHz, with respect to a 1 Vrms DAC output.
8.Boost gain may be within +/-2dB of target, but actual gain will always ensure that the WLP FSIV requirement will be
met and that the boost implementation will not interfere with the +/-0.5dB gain accuracy for the ADC record gain as
exposed in the ADC mux widget.
9.± 1dB limits for Line Output & 0 dB gain, at -20dBV
10.Spurious tone rejection is tested with ADC dither enabled and compared to ADC performance without dither.
11.All functions/converters active, pin complexes enabled, two FDX streams, line (10Kohm) loads. Add 24mA
analog current per stereo 32 ohm headphone.
12.One stereo DAC and corresponding pin widgets enabled (playback mode)
13.Mixer enabled
14.Idle measurement D3 set for minimum clicks/pops (biases and min. amps. on)
15.Can be set to 50% or 80% of AVdd.
16.Designed to mimic 80% and 50% of 3.3V. 80% setting is nominal 2.6V, 50% setting is nominal 1.6V
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3.4.
Capless Headphone Supply Characteristics
Parameter
Min
Typ
Max
Unit
LDO idle current
1
2
mA
Capless Headphone Amp idle current
2
3
Charge Pump idle current
4
6
Charge Pump shutdown time
1
mS
Charge Pump start-up time
10
mS
Frequency
384
KHz
C1/C2 cap value
2.2
uF
mA
Table 23. Capless Headphone Supply
3.5.
AC Timing Specs
3.5.1.
HD Audio Bus Timing
Parameter
BCLK Frequency
BCLK Period
Definition
Symbol
Average BCLK frequency
Min
Typ
Max
Units
23.9976
24.0
24.0024
Mhz
41.67
42.171
ns
Period of BCLK including jitter
Tcyc
41.163
BCLK High Phase
High phase of BCLK
T_high
17.5
24.16
ns
BCLK Low Phase
Low phase of BCLK
T_low
17.5
24.16
ns
500
ps
11
ns
BCLK jitter
BCLK jitter
150
SDI delay
Time after rising edge of BCLK
that SDI becomes valid
T_tco
3
SDO setup
Setup for SDO at both rising and
falling edges of BCLK
T_su
5
ns
SDO hold
Hold for SDO at both rising and
falling edges of BCLK
T_h
5
ns
Table 24. HD Audio Bus Timing
Figure 8. HD Audio Bus Timing
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3.5.2.
SPDIF Timing
Parameter
Definition
Symbol
SPDIF_OUT Frequency
highest rate of encoded signal
64 times the sample rate
SPDIF_OUT unit interval
1/(128 times the sample rate)
SPDIF_OUT jitter
UI
Min
Typ
Max
Units
2.8224
3.072
12.288
MHz
177.15
162.76
40.69
ns
4.43
ns
SPDIF_OUT jitter
SPDIF_OUT rise time
T_rise
15
ns
SPDIF_OUT fall time
T_fall
15
ns
Table 25. SPDIF Timing
3.5.3.
Digital Microphone Timing
Parameter
DMIC_CLK Frequency
DMIC_CLK Period
Definition
Symbol
Average DMIC_CLK frequency
Period of DMIC_CLK
Tdmic_cyc
Min
Typ
Max
Units
1.176
2.352
4.704
MHz
850.34
425.17
212.59
ns
5000
ps
DMIC_CLK jitter
DMIC_CLK jitter
DMIC Data setup
Setup for the microphone data at both rising
and falling edges of DMIC_CLK
Tdmic_su
5
ns
DMIC Data hold
Hold for the microphone data at both rising and
falling edges of DMIC_CLK
Tdmic_h
5
ns
Table 26. Digital Mic timing
3.5.4.
GPIO Characteristics
Parameter
Definition
Symbol
Min
Typ
Max
Units
Input High Voltage
input level at or above which a 1 is reliably
recorded
Vih
0.6 x
VDD
Input Low Voltage
input level at or below which a 0 is reliably
recorded
VDD may be DVDD or AVDD
Vil
Output High Voltage
iout = 4mA
VDD may be DVDD or AVDD depending on pin
Voh
Output Low Voltage
iout = -4mA
VDD may be DVDD or AVDD depending on pin
Vol
0.1 x
VDD
V
Input rise/fall time
transition time between 10% and 90% of
supply
T_rise/T_fall
10
ns
Input/Tristate High
Leakage Current
Vin = VDD
VDD may be DVDD or AVDD depending on pin
(does not include pull-up or pull-down resistor if
present)
0.5
uA
Vin = 0
Input/Tristate Low Leakage VDD may be DVDD or AVDD depending on pin
Current
(does not include pull-up or pull-down resistor if
present)
-50
uA
V
0.35 x
VDD
0.9 x
VDD
V
V
Table 27. GPIO Characteristics
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4. COMMON PORT CONFIGURATIONS
Consumer Desktop (default configuration)
Stereo + RTC + Rear Line/Mic or 5.1
Front
Rear
4Ch
ADC1
MIC
E
SPDIF_IN
ADC1/DAC0
LI / CTR-LFE
DAC 1
FRONT
F
SPDIF_OUT
6Ch
ADC1
LI
C
A
DAC 1
FRONT
B
DAC0 / ADC0
HP / MIC,LI
ADC0 / DAC0
MIC,LI / HP
ADC1/DAC2
MIC / REAR SURR
Mobile 6 Ch
Side
A
B
C
SPDIF_OUT
DAC 0
HP / Front
ADC 0 / DAC 1
LI / CTR-LFE
ADC 0 / DAC 2
MIC / REAR
HDMI/Display Port
Digital Mic
Array
A
M
P
F
DAC 0
EAPD
A
M
P
mono
DAC 0
EAPD
Figure 9. Common Port Configurations
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5. FUNCTIONAL DIAGRAMS
Digital
Mute
Stream &
Channel
Select
Digital
Mute
Pin 46
SPDIF OUT0
GPIO 0
DMIC 1
MUX
ADC0
ADC1
PCM to SPDIF OUT
PCM to SPDIF OUT
Pin 48
DAC0
DAC1
DAC2

HP
Port A
Boost
+0/+10/+20/+30 dB
Digital PC Beep
MixerOutVol
DAC0
DAC1
DAC2
Analog Beep

HP
Port B
Boost
+0/+10/+20/+30 dB
MixerOutVol
Digital
Mute
vol
DAC 0
DAC0
DAC0
DAC1
DAC2
Analog Beep
MUX
MUX
Vendor
Specific
Digital PC Beep
Stream &
Channel
Select
MUX
MixerOutVol
Analog Beep
MUX
Stream &
Channel
Select
MUX
ADC0
ADC1
SPDIF OUT1
GPIO 3
DMIC 1
Digital PC Beep
MUX
Digital
Mute
Pin 45
MUX
SPDIF IN to PCM
MUX
SPDIF IN
Stream &
Channel
Select

LO
Port C
Boost
+0/+10/+20/+30 dB
Digital
Mute
vol
DAC 1
DAC1
DAC0
DAC1
DAC2
MUX
MUX
MixerOutVol
Stream &
Channel
Select
Analog Beep
MUX
Digital PC Beep

LO
Port E
Boost
+0/+10/+20/+30 dB
Digital
Mute
vol
DAC 2
DAC2
MixerOutVol
DAC0
DAC1
DAC2
MUX
Stream &
Channel
Select
Analog Beep
MUX
MUX
Digital PC Beep
+0/+10/+20/+30 dB
Port B
vol
Gain
MUX
HD Audio LINK LOGIC
mute
Boost
Pin Complex
Pins 28/29/40/41
Mic Bias
PORT B
Pin Complex
Pins 31/32/43/44
Mic Bias
PORT C
Pin Complex
Pins 19/20
Mic Bias
PORT E
Pin Complex
Pins 15/16
No Bias
PORT F
Pin Complex
Pins 17/18
Port A
-16 to +30 dB
In 1 dB steps
ADC0
HP
Port F
Mixer
Stream &
Channel
Select

Mic Bias
PORT A
Port C
Port E
Port F
DMIC0
DMIC1
Digital Microphone
volume and mute is
done after the ADC
but shown here and
in widget list as
same as analog
path.
+0/+10/+20/+30 dB
DMIC_0
Boost
DMIC
DMIC_1
Boost
DMIC
DMIC_0
Pin 4
+0/+10/+20/+30 dB
DMIC_1
Pin 46 or 48
Mixer
Port A
-16 to +30 dB
In 1 dB steps
ADC1
mute
Port B
vol
Gain
MUX
Stream &
Channel
Select
Port C
Port E
Port F
DMIC0
DMIC1
Mixer

MixerOutVol
mute
Vol
-46.5 to 0 dB
In 1.5 dB steps
mute
vol
DAC0
mute
vol
DAC1
mute
vol
Port A
mute
vol
Port B
mute
vol
Port C
mute
vol
Port E
mute
vol
Port F
-34.5 to +12 dB
In 1.5 dB steps
Beep_Active
Detect/Convert
Analog Beep
mute
Analog PC_BEEP
vol
0,-6,-12,-18dB
To all ports enabled as output
Figure 10. 40-pin Package Functional Diagram
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Widget Diagram
DAC1
HP
Port A
IN VOL
10/20/30
BIAS
Port A
NID = 0Bh
DAC0
DAC1
DAC2
MixerOutVol
HP
Port B
IN VOL
10/20/30
DAC1
BIAS
Port B
NID = 0Ch
DAC0
DAC1
DAC2
MixerOutVol
-95.25 to 0dB
0.75dB step
VOLUME
NID = 23h
VSW
-95.25 to 0dB
0.75dB step
VOLUME
NID = 14h
NID = 0Ah
DAC0
DAC1
DAC2
MixerOutVol
NID = 24h
DAC0
MUTE
VOLUME
DAC0
DAC2
-95.25 to 0dB
0.75dB step
MUTE
NID = 13h
LO
Port C
IN VOL
10/20/30
BIAS
Port C
DAC2
MUTE
5.1.
NID = 0Dh
VSW
NID = 17h
VOLUME
Mute
NID = 15h
ADC0
Mixer
ADC0
MUX
-16 to 30dB
1dB step
Port A
Port B
Port C
NID = 10h
Port E
Port F
VSW
DMIC0
DMIC1
ADC0 MUX
NID = 18h
VOLUME
Mute
NID = 16h
ADC1
Mixer
ADC1
MUX
-16 to 30dB
1dB step
HDA
Link
NID = 0Eh
DAC0
DAC1
DAC2
MixerOutVol
Port A
Port B
Port C
Port E
Port E
Port F
DAC0
DAC1
DAC2
MixerOutVol
DMIC0
DMIC1
LO
Port E
IN VOL
10/20/30
BIAS
NID = 0Fh
HP
Port F
IN VOL
10/20/30
Port F
ADC1 MUX
NID = 11h
NID = 1Ch
Mixer

MixerOutVol
MixerOutVol
Mute Volume
Mute Volume
-46.5 to 0dB
in 1.5dB steps
-34.5 to +12dB
in 1.5dB steps
Mixer
DMIC0
DAC0
Mute Volume
DAC1
Mute Volume
Port A
Mute Volume
Port B
Mute Volume
Port C
Mute Volume
Port E
Mute Volume
Analog*
NID = 21h
Digital
PC_BEEP
To all ports enabled
as an output
Port F
To all ports enabled
as an output
VSV
Mute Volume
Vendor Specific Test
Dig1Pin
D
Digital
DMIC1
Analog*
VOL
NID = 12h
DMIC1 VOL
(VSW)
Digital
Digital
10/20/30
MUTE
D
NID = 20h
ADC0 MUX
ADC1 MUX
NID = 22h
SPDIF
IN
Dig0Pin
D
Digital
NID = 1Eh
D
NID = 1Fh
ADC0 MUX
ADC1 MUX
SPDIF
OUT1
PC_BEEP (Pin 12)
0,-6,-12,-18dB
Vendor Specific Test
SPDIF
OUT0
DMIC0
10/20/30
NID = 1Dh
D
VOL
NID = 1Bh
Digital
Digital
D – Nodes are Digital Capable
Figure 11. 40-pin Package Widget Diagram
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5.2.
Configuration Default Register Settings
The following table shows the Pin Widget Configuration Default settings. Common Desktop 4-jack
implementation with 2 jacks in front and 2 jacks in rear. The front panel headphone and mic are dedicated to RTC as suggested by Microsoft. SPDIF_OUT is implemented as an SPDIF optical out jack.
SPDIF_In is implemented as an optical input. Digital Microphones are listed as part of the muxed
capture device.
Pin Name
Port
Location
Device
Connection
Color
Misc
Assoc. Seq
PortAPin
Jack
00b
Main Front
2h
HP Out
2h
1/8 inch Jack
1h
Green
4h
Jack Detect
Override=0
1h
0h
PortBPin
Jack
00b
Main Front
2h
Mic In
Ah
1/8 inch Jack
1h
Pink
9h
Jack Detect
Override=0
2h
0h
PortCPin
Jack
00b
Main Rear
1h
Line In
8h
1/8 inch Jack
1h
Blue
3h
Jack Detect
Override=0
4h
Eh
PortEPin
Jack
00b
Main Rear
1h
Mic In
Ah
1/8 inch Jack
1h
Pink
9h
Jack Detect
Override=0
4h
0h
PortFPin
Jack
00b
Main Rear
1h
Line Out
0h
1/8 inch Jack
1h
Green
4h
Jack Detect
Override=0
3h
0h
DMIC0Pin
Internal
10b
Internal
010000b
Mic In
Ah
ATAPI
3h
Unknown
0h
Jack Detect
Override=1
4h
1h
Dig0Pin
Jack
00b
Main Rear
000001b
SPDIF Out
4h
optical
5h
Black
1h
Jack Detect
Override=1
5h
0h
Dig1Pin
Jack
10b
Internal
011000b
Digital Other
Out
5h
Other Digital
6h
Unknown
0h
Jack Detect
Override=1
6h
0h
Dig2Pin
Jack
00b
Main Rear
000001b
SPDIF IN
Ch
optical
5h
Gray
2h
Jack Detect
Override=0
7h
0h
Table 28. Pin Configuration Default Settings
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6. WIDGET INFORMATION
6.1.
Widget List
Node ID
Node Name
00h
Root
01h
AFG
0Ah
Port A
0Bh
Port B
0Ch
Port C
0Dh
VSW
0Eh
Port E
0Fh
Port F
10h
VSW
11h
DMIC0
12h
VSW (DMIC1 VOL)
13h
DAC0
14h
DAC1
15h
ADC0
16h
ADC1
17h
ADC0Mux
18h
ADC1Mux
19h
VSW
1Ah
VSW
1Bh
Mixer
1Ch
MixerOutVol
1Dh
SPDIFOut0
1Eh
SPDIFOut1
1Fh
Dig0Pin
20h
Dig1Pin
21h
DigBeep
22h
SPDIFIN
23h
DAC2
24h
Dig2Pin
Table 29. High Definition Audio Widget
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6.2.
Widget Descriptions
Widget Name
Description
Root
Root Node
AFG
Audio Function Group
Port X
Port X (A, B, Etc.) Pin Widget
Port MonoOut
Port MonoOut Pin Widget (output only)
DigMic N
Digital Microphone Pin Widget (N represents the instance)
DACN
Stereo Output Converter to DAC (N represents the instance)
ADCN
Stereo Input Converter to ADC (N represents the instance)
ADCNMux
ADC N Mux with volume and mute
Mono Mux
Mono output source select
Mono Mix
Stereo to mono conversion
Mixer
Input/Output Mixer (Input Ports, DACs)
MixerOutVol
Volume control for analog mixer
SPDIFOutN
Digital Output Converter for SPDIF_Out (N represents the instance)
DigNPin
Digital I/O Pin for SPDIF In/Out (N represents the instance)
PCBeep
Digital PC Beep Widget
InPortNMux
Input port pre-select for mixer (N represents the instance)
VSWN
Vendor Specific Widget (N represents the instance)
Table 30. Widget Descriptions
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6.3.
Reset Key
Abbreviation
Description
POR
Power On Reset.
SAFG
Single AFG Reset - One single write to the Reset Verb in the AFG Node.
DAFG
Double AFG Reset - Two consecutive Single AFG Resets with only idle frames (if
any) and no Link Resets between.
S&DAFG
Single And Double AFG Reset - Either one will cause reset.
LR
Link Reset - Level sensitive reset anytime the HDA Reset is set low.
ELR
Exiting Link Reset - Edge sensitive reset any time the HDA Reset transitions from
low to high.
ULR
Unexpected Link Reset - Level sensitive reset anytime the HDA Reset is set low
when the ClkStopOK indicator is currently set to 0.
PS
Power State Change - Reset anytime the Actual Power State changes for the Widget
in question.
6.4.
Root (NID = 00h): VendorID
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0000h
Field Name
Bits
R/W
Default
Reset
Vendor
31:16
R
111Dh
N/A
R
see below
N/A
R
see below
N/A
Vendor ID.
DeviceFix
15:8
Device ID.
DeviceProg
7:0
Device ID.
Device
92HD65C
Device ID
76F3h
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6.4.1.
Reg
Root (NID = 00h): RevID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0002h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:24
R
00h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
Major
23:20
Major rev number of compliant HD Audio spec.
Minor
19:16
R
0h
N/A (Hard-coded)
Minor rev number of compliant HD Audio spec.
RevisionFix
15:12
R
xh
N/A (Hard-coded)
Vendor's rev number for this device.
RevisionProg
11:8
R
xh
N/A (Hard-coded)
Vendor's rev number for this device.
SteppingFix
7:4
R
xh
N/A (Hard-coded)
Vendor stepping number within the Vendor RevID.
SteppingProg
3:0
R
xh
N/A (Hard-coded)
Vendor stepping number within the Vendor RevID.
6.4.2.
Reg
Root (NID = 00h): NodeInfo
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0004h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
StartNID
23:16
R
01h
N/A (Hard-coded)
Starting node number (NID) of first function group
Rsvd1
15:8
R
00h
N/A (Hard-coded)
R
01h
N/A (Hard-coded)
Reserved.
TotalNodes
7:0
Total number of nodes
6.5.
AFG (NID = 01h): NodeInfo
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0004h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
0Ah
N/A (Hard-coded)
Reserved.
StartNID
23:16
Starting node number for function group subordinate nodes.
Rsvd1
15:8
R
00h
N/A (Hard-coded)
R
1Bh
N/A (Hard-coded)
Reserved.
TotalNodes
7:0
Total number of nodes.
6.5.1.
Reg
AFG (NID = 01h): FGType
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:9
R
000000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
UnSol
8
Unsolicited response supported: 1 = yes, 0 = no.
NodeType
7:0
R
1h
N/A (Hard-coded)
Function group type:
00h = Reserved
01h = Audio Function Group
02h = Vendor Defined Modem Function Group
03h-7Fh = Reserved
80h-FFh = Vendor Defined Function Group
6.5.2.
Reg
AFG (NID = 01h): AFGCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0008h
Field Name
Bits
R/W
Default
Reset
Rsvd3
31:17
R
00h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
BeepGen
16
Beep generator present: 1 = yes, 0 = no.
Rsvd2
15:12
R
0h
N/A (Hard-coded)
R
Dh
N/A (Hard-coded)
Reserved.
InputDelay
11:8
Typical latency in frames. Number of samples between when the sample is received as an analog signal at the pin and when the digital representation is
transmitted on the HD Audio link.
Rsvd1
7:4
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
OutputDelay
3:0
R
Dh
N/A (Hard-coded)
Typical latency in frames. Number of samples between when the signal is received from the HD Audio link and when it appears as an analog signal at the
pin.
6.5.3.
Reg
AFG (NID = 01h): PCMCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ah
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:21
R
000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
B32
20
32 bit audio format support: 1 = yes, 0 = no.
B24
19
R
1h
N/A (Hard-coded)
24 bit audio format support: 1 = yes, 0 = no.
B20
18
R
1h
N/A (Hard-coded)
20 bit audio format support: 1 = yes, 0 = no.
B16
17
R
1h
N/A (Hard-coded)
16 bit audio format support: 1 = yes, 0 = no.
B8
16
R
0h
N/A (Hard-coded)
8 bit audio format support: 1 = yes, 0 = no.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
R12
11
384kHz rate support: 1 = yes, 0 = no.
R11
10
R
1h
N/A (Hard-coded)
192kHz rate support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
R10
9
R
0h
N/A (Hard-coded)
176.4kHz rate support: 1 = yes, 0 = no.
R9
8
R
1h
N/A (Hard-coded)
96kHz rate support: 1 = yes, 0 = no.
R8
7
R
1h
N/A (Hard-coded)
88.2kHz rate support: 1 = yes, 0 = no.
R7
6
R
1h
N/A (Hard-coded)
48kHz rate support: 1 = yes, 0 = no.
R6
5
R
1h
N/A (Hard-coded)
44.1kHz rate support: 1 = yes, 0 = no.
R5
4
R
0h
N/A (Hard-coded)
32kHz rate support: 1 = yes, 0 = no.
R4
3
R
0h
N/A (Hard-coded)
22.05kHz rate support: 1 = yes, 0 = no.
R3
2
R
0h
N/A (Hard-coded)
16kHz rate support: 1 = yes, 0 = no.
R2
1
R
0h
N/A (Hard-coded)
11.025kHz rate support: 1 = yes, 0 = no.
R1
0
R
0h
N/A (Hard-coded)
8kHz rate support: 1 = yes, 0 = no.
6.5.4.
Reg
AFG (NID = 01h): StreamCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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F000Bh
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:3
R
00000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
AC3
2
AC-3 formatted data support: 1 = yes, 0 = no.
Float32
1
R
0h
N/A (Hard-coded)
Float32 formatted data support: 1 = yes, 0 = no.
PCM
0
R
1h
N/A (Hard-coded)
PCM-formatted data support: 1 = yes, 0 = no.
6.5.5.
Reg
AFG (NID = 01h): InAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Dh
Field Name
Bits
R/W
Default
Reset
Mute
31
R
0h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
27h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
03h
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Offset
6:0
R
00h
N/A (Hard-coded)
Indicates which step is 0dB
6.5.6.
Reg
AFG (NID = 01h): PwrStateCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Fh
Field Name
Bits
R/W
Default
Reset
EPSS
31
R
1h
N/A (Hard-coded)
Extended power states support: 1 = yes, 0 = no.
ClkStop
30
R
1h
N/A (Hard-coded)
D3 clock stop support: 1 = yes, 0 = no.
LPD3Sup
29
R
1h
N/A (Hard-coded)
Codec state intended during system S3 state: 1 = D3Hot, 0 = D3Cold.
Rsvd
28:5
R
000000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
D3ColdSup
4
D3Cold power state support: 1 = yes, 0 = no.
D3Sup
3
R
1h
N/A (Hard-coded)
D3 power state support: 1 = yes, 0 = no.
D2Sup
2
R
1h
N/A (Hard-coded)
D2 power state support: 1 = yes, 0 = no.
D1Sup
1
R
1h
N/A (Hard-coded)
D1 power state support: 1 = yes, 0 = no.
D0Sup
0
R
1h
N/A (Hard-coded)
D0 power state support: 1 = yes, 0 = no.
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6.5.7.
Reg
AFG (NID = 01h): GPIOCnt
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0011h
Field Name
Bits
R/W
Default
Reset
GPIWake
31
R
1h
N/A (Hard-coded)
Wake capability. Assuming the Wake Enable Mask controls are enabled,
GPIO's configured as inputs can cause a wake (generate a Status Change
event on the link) when there is a change in level on the pin.
GPIUnsol
30
R
1h
N/A (Hard-coded)
GPIO unsolicited response support: 1 = yes, 0 = no.
Rsvd
29:24
R
00h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
NumGPIs
23:16
Number of GPI pins supported by function group.
NumGPOs
15:8
R
00h
N/A (Hard-coded)
Number of GPO pins supported by function group.
NumGPIOs
7:0
R
05h
N/A (Hard-coded)
Number of GPIO pins supported by function group.
6.5.8.
Reg
AFG (NID = 01h): OutAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0012h
Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
02h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
7Fh
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
R
7Fh
N/A (Hard-coded)
Reserved.
Offset
6:0
Indicates which step is 0dB
6.5.9.
Reg
AFG (NID = 01h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd3
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Function Group have been reset.
Cleared by PwrState 'Get' to this Widget.
ClkStopOK
9
R
1h
POR - DAFG - ULR
Bit clock can currently be removed: 1 = yes, 0 = no.
Error
8
R
0h
POR - DAFG - ULR
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
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Field Name
Bits
R/W
Default
Reset
Rsvd2
7
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
6:4
Actual power state of this widget.
Rsvd1
3
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
2:0
Current power state setting for this widget.
6.5.10.
Reg
AFG (NID = 01h): UnsolResp
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
En
7
Unsolicited response enable: 1 = enabled, 0 = disabled.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
6.5.11.
Reg
AFG (NID = 01h): GPIO
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
715h
F1500h
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:5
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Data4
4
Data for GPIO4. If this GPIO bit is configured as Sticky (edge-sensitive) input,
it can be cleared by writing "0". For details of read back value, refer to HD Audio
spec. section 7.3.3.22 (Available only on 48-pin versions)
Data3
3
RW
0h
POR - DAFG - ULR
Data for GPIO3. If this GPIO bit is configured as Sticky (edge-sensitive) input,
it can be cleared by writing "0". For details of read back value, refer to HD Audio
spec. section 7.3.3.22
Data2
2
RW
0h
POR - DAFG - ULR
Data for GPIO2. If this GPIO bit is configured as Sticky (edge-sensitive) input,
it can be cleared by writing "0". For details of read back value, refer to HD Audio
spec. section 7.3.3.22
Data1
1
RW
0h
POR - DAFG - ULR
Data for GPIO1. If this GPIO bit is configured as Sticky (edge-sensitive) input,
it can be cleared by writing "0". For details of read back value, refer to HD Audio
spec. section 7.3.3.22
Data0
0
RW
0h
POR - DAFG - ULR
Data for GPIO0. If this GPIO bit is configured as Sticky (edge-sensitive) input,
it can be cleared by writing "0". For details of read back value, refer to HD Audio
spec. section 7.3.3.22
6.5.12.
Reg
AFG (NID = 01h): GPIOEn
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
716h
Get
F1600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:5
R
00000000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Mask4
4
RW
0h
POR - DAFG - ULR
Enable for GPIO4: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior
determined by GPIO Direction control (Available only on 48-pin versions)
Mask3
3
RW
0h
POR - DAFG - ULR
Enable for GPIO3: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior
determined by GPIO Direction control
Mask2
2
RW
0h
POR - DAFG - ULR
Enable for GPIO2: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior
determined by GPIO Direction control
Mask1
1
RW
0h
POR - DAFG - ULR
Enable for GPIO1: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior
determined by GPIO Direction control
Mask0
0
RW
0h
POR - DAFG - ULR
Enable for GPIO0: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior
determined by GPIO Direction control
6.5.13.
Reg
AFG (NID = 01h): GPIODir
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
717h
Get
F1700h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:5
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Control4
4
Direction control for GPIO4: 0 = GPIO is configured as input; 1 = GPIO is configured as output (Available only on 48-pin versions)
Control3
3
RW
0h
POR - DAFG - ULR
Direction control for GPIO3: 0 = GPIO is configured as input; 1 = GPIO is configured as output
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Field Name
Bits
R/W
Default
Reset
Control2
2
RW
0h
POR - DAFG - ULR
Direction control for GPIO2: 0 = GPIO is configured as input; 1 = GPIO is configured as output
Control1
1
RW
0h
POR - DAFG - ULR
Direction control for GPIO1: 0 = GPIO is configured as input; 1 = GPIO is configured as output
Control0
0
RW
0h
POR - DAFG - ULR
Direction control for GPIO0: 0 = GPIO is configured as input; 1 = GPIO is configured as output
6.5.14.
Reg
AFG (NID = 01h): GPIOWakeEn
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
718h
Get
F1800h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:5
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
W4
4
Wake enable for GPIO4: 0 = wake-up event is disabled; 1 = When HD Audio
link is powered down (RST# is asserted), a wake-up event will trigger a Status
Change Request event on the link. (Available only on 48-pin versions)
W3
3
RW
0h
POR - DAFG - ULR
Wake enable for GPIO3: 0 = wake-up event is disabled; 1 = When HD Audio
link is powered down (RST# is asserted), a wake-up event will trigger a Status
Change Request event on the link.
W2
2
RW
0h
POR - DAFG - ULR
Wake enable for GPIO2: 0 = wake-up event is disabled; 1 = When HD Audio
link is powered down (RST# is asserted), a wake-up event will trigger a Status
Change Request event on the link.
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Field Name
Bits
R/W
Default
Reset
W1
1
RW
0h
POR - DAFG - ULR
Wake enable for GPIO1: 0 = wake-up event is disabled; 1 = When HD Audio
link is powered down (RST# is asserted), a wake-up event will trigger a Status
Change Request event on the link.
W0
0
RW
0h
POR - DAFG - ULR
Wake enable for GPIO0: 0 = wake-up event is disabled; 1 = When HD Audio
link is powered down (RST# is asserted), a wake-up event will trigger a Status
Change Request event on the link.
6.5.15.
Reg
AFG (NID = 01h): GPIOUnsol
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
719h
Get
F1900h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:5
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
EnMask4
4
Unsolicited enable mask for GPIO4. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when
GPIO2 is configured as input and changes state. (Available only on 48-pin versions)
EnMask3
3
RW
0h
POR - DAFG - ULR
Unsolicited enable mask for GPIO3. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when
GPIO2 is configured as input and changes state.
EnMask2
2
RW
0h
POR - DAFG - ULR
Unsolicited enable mask for GPIO2. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when
GPIO2 is configured as input and changes state.
EnMask1
1
RW
0h
POR - DAFG - ULR
Unsolicited enable mask for GPIO1. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when
GPIO1 is configured as input and changes state.
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Field Name
Bits
R/W
Default
Reset
EnMask0
0
RW
0h
POR - DAFG - ULR
Unsolicited enable mask for GPIO0. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when
GPIO0 is configured as input and changes state.
6.5.16.
Reg
AFG (NID = 01h): GPIOSticky
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Ah
Get
F1A00h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:5
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Mask4
4
GPIO4 input type (when configured as input): 0 = Non-Sticky (level-sensitive);
1 = Sticky (edge-sensitive). (Available only on 48-pin versions)
Mask3
3
RW
0h
POR - DAFG - ULR
GPIO3 input type (when configured as input): 0 = Non-Sticky (level-sensitive);
1 = Sticky (edge-sensitive).
Mask2
2
RW
0h
POR - DAFG - ULR
GPIO2 input type (when configured as input): 0 = Non-Sticky (level-sensitive);
1 = Sticky (edge-sensitive).
Mask1
1
RW
0h
POR - DAFG - ULR
GPIO1 input type (when configured as input): 0 = Non-Sticky (level-sensitive);
1 = Sticky (edge-sensitive).
Mask0
0
RW
0h
POR - DAFG - ULR
GPIO0 input type (when configured as input): 0 = Non-Sticky (level-sensitive);
1 = Sticky (edge-sensitive).
6.5.17.
AFG (NID = 01h): SubID
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
723h
722h
721h
720h
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6.5.17.
Reg
AFG (NID = 01h): SubID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Get
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
F2300h / F2200h / F2100h / F2000h
Field Name
Bits
R/W
Default
Reset
Subsys3
31:24
RW
00h
POR
00h
POR
01h
POR
00h
POR
Subsystem ID (byte 3)
Subsys2
23:16
RW
Subsystem ID (byte 2)
Subsys1
15:8
RW
Subsystem ID (byte 1)
Assembly
7:0
RW
Assembly ID (Not applicable to codec vendors).
6.5.18.
Reg
AFG (NID = 01h): GPIOPlrty
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
770h
Get
F7000h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:5
R
00000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
GP4
4
GPIO4 Polarity:
If configured as output or non-sticky input:
0 = inverting
1 = non-inverting
If configured as sticky input:
0 = falling edges will be detected
1 = rising edges will be detected
(Available only on 48-pin versions)
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
GP3
3
RW
1h
POR - DAFG - ULR
GPIO3 Polarity:
If configured as output or non-sticky input:
0 = inverting
1 = non-inverting
If configured as sticky input:
0 = falling edges will be detected
1 = rising edges will be detected
GP2
2
RW
1h
POR - DAFG - ULR
GPIO2 Polarity:
If configured as output or non-sticky input:
0 = inverting
1 = non-inverting
If configured as sticky input:
0 = falling edges will be detected
1 = rising edges will be detected
GP1
1
RW
1h
POR - DAFG - ULR
GPIO1 Polarity:
If configured as output or non-sticky input:
0 = inverting
1 = non-inverting
If configured as sticky input:
0 = falling edges will be detected
1 = rising edges will be detected
GP0
0
RW
1h
POR - DAFG - ULR
GPIO0 Polarity:
If configured as output or non-sticky input:
0 = inverting
1 = non-inverting
If configured as sticky input:
0 = falling edges will be detected
1 = rising edges will be detected
6.5.19.
Reg
AFG (NID = 01h): GPIODrive
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
771h
F7100h
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:5
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
OD4
4
GPIO4 Drive Mode: 0 = push-pull (drive 0 and 1); 1 = open drain (drive 0, float
for 1). (Available only on 48-pin versions)
OD3
3
RW
0h
POR - DAFG - ULR
GPIO3 Drive Mode: 0 = push-pull (drive 0 and 1); 1 = open drain (drive 0, float
for 1).
OD2
2
RW
0h
POR - DAFG - ULR
GPIO2 Drive Mode: 0 = push-pull (drive 0 and 1); 1 = open drain (drive 0, float
for 1).
OD1
1
RW
0h
POR - DAFG - ULR
GPIO1 Drive Mode: 0 = push-pull (drive 0 and 1); 1 = open drain (drive 0, float
for 1).
OD0
0
RW
0h
POR - DAFG - ULR
GPIO0 Drive Mode: 0 = push-pull (drive 0 and 1); 1 = open-drain (drive 0, float
for 1).
6.5.20.
Reg
AFG (NID = 01h): DMic
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
778h
Get
F7800h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:6
R
0000000h
N/A (Hard-coded)
RW
0h
POR
Reserved.
Mono1
5
DMic1 mono select: 0 = stereo operation, 1 = mono operation (left channel duplicated to the right channel).
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
Mono0
4
RW
0h
POR
DMic0 mono select: 0 = stereo operation, 1 = mono operation (left channel duplicated to the right channel).
PhAdj
3:2
RW
0h
POR
Selects what phase of the DMic clock the data should be latched:
0h = left data rising edge/right data falling edge
1h = left data center of high/right data center of low
2h = left data falling edge/right data rising edge
3h = left data center of low/right data center of high
Rate
1:0
RW
2h
POR
Selects the DMic clock rate:
0h = 4.704MHz
1h = 3.528MHz
2h = 2.352MHz
3h = 1.176MHz.
6.5.21.
Reg
AFG (NID = 01h): DACMode
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
780h
Get
F8000h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR
Reserved.
SDMSettleDisable
7
SDM wait-to-settle disable:
1 = at mute, the SDM switches to the mute pattern immediately
0 = at mute, the SDM switches to the mute pattern after settling (can take up to
~45ms)
SDMCoeffSel
6
RW
0h
POR
DAC SDM coefficient select (stages 1, 2, 3):
1 = 1/16, 1/2, 1/4
0 = 1/16, 1/4, 1/2
SDMLFHalf
5
RW
0h
POR
DAC SDM local feedback coefficient select: 1 = 1/4096, 0 = 1/2048.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
SDMLFDisable
4
RW
0h
POR
DAC SDM local feedback disable: 1 = local feedback disabled, 0 = local feedback enabled.
InvertValid
3
RW
0h
POR
DAC Valid Invert: 1 = 7.056MHz valid strobe is inverted, 0 = 7.056MHz valid
strobe is not inverted.
InvertData
2
RW
0h
POR
DAC Data Invert: 1 = 1-bit outputs are inverted, 0 = 1-bit outputs are not inverted.
Atten6dBDisable
1
RW
1h
POR
Disable built-in -6dB digital attenuation: 1 = -6dB disabled, 0 = -6dB enabled.
Fade
0
RW
1h
POR
DAC Gain Fade Enable:
1 = gain will be slowly faded from old value to new value (~10ms)
0 = gain will jump immediately to new value.
6.5.22.
Reg
AFG (NID = 01h): ADCMode
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
784h
Get
F8400h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:4
R
0000000h
N/A (Hard-coded)
RW
0h
POR
Reserved.
InvertValid
3
ADC Valid Invert: 1 = 14.112MHz valid strobe is inverted, 0 = 14.112MHz valid
strobe is not inverted.
InvertData
2
RW
0h
POR
ADC Data Invert: 1 = 1-bit inputs are inverted, 0 = 1-bit inputs are not inverted.
ADCClkDelay
1
RW
0h
POR
Delay ADC clock.
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Field Name
Bits
R/W
Default
Reset
DACClkDelay
0
RW
0h
POR
Delay DAC clock.
6.5.23.
Reg
AFG (NID = 01h): PortUse
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
7C0h
Get
FC000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:7
R
0000000h
N/A (Hard-coded)
RW
1h
POR
Reserved.
Mono
6
1=power down port if not input or output enabled, 0=do not force power down
based on input or output enable
PortF
5
RW
1h
POR
1=power down port if not input or output enabled, 0=do not force power down
based on input or output enable
PortE
4
RW
1h
POR
1=power down port if not input or output enabled, 0=do not force power down
based on input or output enable (Available only on 48-pin versions)
Rsvd1
3
R
0h
N/A (Hard-coded)
RW
1h
POR
Reserved.
PortC
2
1=power down port if not input or output enabled, 0=do not force power down
based on input or output enable
PortB
1
RW
1h
POR
1=power down port if not input or output enabled, 0=do not force power down
based on input or output enable
PortA
0
RW
1h
POR
1=power down port if not input or output enabled, 0=do not force power down
based on input or output enable.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
6.5.24.
Reg
AFG (NID = 01h): ComJack
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
7C7h
7C6h
Set
Get
FC700h/FC600h
Field Name
Bits
R/W
Default
Reset
Rsvd3
31:14
R
00000000h
N/A (Hard-coded)
RW
1h
POR
Reserved.
ComJackSupport
11
Combo Jack support enable, 0 = disable; 1 = enable
RbCon
10:8
RW
4h
POR
Combo jack detection reference voltage
000 = 0.18*AVDD
001 = 0.16*AVDD
010 = 0.14*AVDD
011 = 0.12*AVDD
100 = 0.10*AVDD
101 = 0.08*AVDD
110 = 0.06*AVDD
111 = 0.04*AVDD
MasterPort
7:5
RW
0h
POR
Port tied to the jack presence detection switch
000 = Port A
001 = Port B
010 = Port C
011 = Port D
100 = Port E
101 = Port F
Rsvd1
4
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
SlavePort
3:1
RW
0h
POR
Port used as microphone input
When combo jack detection is enabled, Port presence detection as shown in
the pin complex is not sensed directly by the sense input but is inferred by the
load placed on the Vref_Output associated with the port
010 = Port C;100 = Port E (Available only on 48-pin versions)
others revserved.
Det_en
0
R
0h
POR
0h = disable combo jact detection 1h = enable combo jact detection
6.5.25.
Reg
AFG (NID = 01h): ComJackTime
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
7CAh
7C9h
Set
Get
FCA00h / FC900h
Field Name
Bits
R/W
Default
Reset
Rsvd3
31:16
R
00000h
N/A (Hard-coded)
RW
0h
POR
Reserved.
bouncetimer_bypass
15
0 = all the combjack debounce time in normal; 1= all the comjack debounce
time in simulation mode(debounce time is short).
t_delay_slave_port_usr
14:12
RW
3h
POR
000 = 2frame
001 =4frame
010 =8frame
011 =16frame
100 = 32frame
101 =64frame
110 = 128frame
111 = 256frame
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
t_stable
11:8
RW
7h
POR
0000 = 0.1ms
0001 =0.5ms
0010 =1ms
0011 =2ms
0100 = 4ms
0101 =8ms
0110 = 16ms
0111 = 32ms
1000 = 64ms
1001 =128ms;1010 =256ms;1011 =512ms
1100 = 1024ms
1101 =1024ms
1110 = 1024ms
1111 = 1024ms
Rsvd2
7
R
0h
N/A (Hard-coded)
RW
5h
POR
R
0h
N/A (Hard-coded)
RW
3h
POR
Reserved.
t_long_realtime_detect
6:4
000 = 2s
001 =4s
010 =8s
011 =16s
100 = 32s
101 =64s
110 = 128s
111 = infinite
Rsvd1
3
Reserved.
t_delay_verfout
2:0
000 = 0.1ms
001 =50ms
010 = 125ms
011 =250ms
100 = 500ms
101 = 1s
110 = 2s
111 = 4s
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6.5.26.
Reg
AFG (NID = 01h): VSPwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
7D8h
Get
FD800h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - ELR
Reserved.
D5
1
Vendor specific D5 power state, only entered once the part is already in D3cold
(this bit must be set before the command to enter D3cold). If set, this bit overrides the D4 bit (bit 0). Includes the power savings of D4, but additionally powers down GPIO pins, the VAG amp, and the HP amps. Exits this power state
via POR or rising edge of Link Reset.
D4
0
RW
0h
POR - ELR
Vendor specific D4 power state, only entered once the part is already in D3cold
(this bit must be set before the command to enter D3cold). If the D5 bit (bit 1)
is set, this bit is overridden. Includes the power savings of D3cold, but additionally powers down the HDA interface (no responses). Exit this power state
via POR or rising edge of Link Reset.
6.5.27.
Reg
AFG (NID = 01h): AnaPort
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
7EDh
7ECh
Set
Get
FED00h / FEC00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:7
R
0000000h
N/A (Hard-coded)
RW
0h
POR
Reserved.
MonoPwd
6
Power down Mono Output. (Available only on 48-pin versions)
FPwd
5
RW
0h
POR
Power down Port F
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
EPwd
4
RW
0h
POR
Power down Port E (Available only on 48-pin versions)
Rsvd1
3
R
0h
N/A (Hard-coded)
RW
0h
POR
0h
POR
0h
POR
Reserved.
CPwd
2
Power down Port C.
BPwd
1
RW
Power down Port B.
APwd
0
RW
Power down Port A.
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6.5.28.
Reg
AFG (NID = 01h): AnaBeep
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
7EEh
Get
FEE00h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:9
R
000000h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Detect
8
0: no beep present; 1: beep present
ConvertEn
7
RW
1h
POR
analog pc beep quantization enable (enabled only when both
d2a_ana_pc_beep_det_en and d2a_ana_pc_beep_convert_en are 1)
DetectEn
6
RW
1h
POR
Analog pc beep detection enable 0h = disable 1h = enable
Gain
5:4
RW
3h
POR
Analog PC Beep Gain: 0h = -24dB, 1h = -18dB, 2h = -12dB, 3h = -6dB.
CntSel
3:2
RW
0h
POR
Select counter delay.0h=64ms,1h = 128ms, 2h = 256ms, 3h = 512ms.
Mode
1:0
RW
2h
POR
Analog PC Beep Mode:
00b = Always disabled
01b = Always enabled
1Xb = Enabled during HDA Link Reset only
6.5.29.
AFG (NID = 01h): AnaCapless
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
7FBh
7FAh
7F9h
7F8h
Get
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FFB00h / FFA00h / FF900h / FF800h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:30
R
0h
N/A (Hard-coded)
R
0h
POR
Reserved.
VRegSCDet
29
Capless regulator short circuit detect indicator.
ChargePumpSCDet
28
R
0h
POR
Capless charge pump short circuit detect indicator.
VRegSel
27:24
RW
ZA=5h
ZB=6h
POR
Capless regulator output voltage multiply ratio
Bits [3..2] Reserved
Bits [1..0]:
00b = 2*Vbg
01b = 2.1*Vbg
10b = 2.2*Vbg
11b = 2.3*Vbg
VRegSCRstB
23
RW
0h
POR
Capless regulator short circuit detect reset: 0 = short circuit detect disabled, 1
= short circuit detect enabled.
VRegGndShort
22
RW
0h
POR
Ground the capless regulator output.
VRegPwd
21
RW
0h
POR
Capless regulator powerdown.
ChargePumpSCRstB
20
RW
0h
POR
Capless charge pump short circuit detect reset: 0 = short circuit detect disabled, 1 = short circuit detect enabled.
ChargePumpHiZ
19
RW
0h
POR
Hi-Z the capless charge pump outputs.
ChargePumpPwd
18
RW
0h
POR
Capless charge pump powerdown.
ChargePumpSplyDetOverride
17
RW
0h
POR
Capless charge pump supply detect override.
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Field Name
Bits
R/W
Default
Reset
ChargePumpFreqBypass
16
RW
1h
POR
Capless charge pump frequency reg bypass.
ChargePumpClkRate
15:12
RW
8h
POR
Capless charge pump clock rate:
0000b = 800.0kHz (24MHz/30)
0001b = 750.0kHz (24MHz/32)
0010b = 706.9kHz (24MHz/34)
0011b = 666.7kHz (24MHz/36)
0100b = 631.6kHz (24MHz/38)
0101b = 600.0kHz (24MHz/40)
0110b = 571.4kHz (24MHz/42)
0111b = 545.5kHz (24MHz/44)
1000b = 800.0kHz (24MHz/30)
1001b = 857.1kHz (24MHz/28)
1010b = 923.1kHz (24MHz/26)
1011b = 1.000MHz (24MHz/24)
1100b = 1.091MHz (24MHz/22)
1101b = 1.200MHz (24MHz/20)
1110b = 1.333MHz (24MHz/18)
1111b = 1.500MHz (24MHz/16)
ChargePumpClkDiv
11:9
RW
2h
POR
Capless charge pump analog clock divider:
001b = No divide
010b = Divide by 2, 50% duty cycle
100b = Divide by 4, 50% duty cycle
110b = Divide by 2, 75% duty cycle
011b = Divide by 4, 75% duty cycle
111b = Divide by 4, 87.5% duty cycle
Other values undefined
ChargePumpClkSel
8
RW
0h
POR
Capless charge pump clock select: 0 = ring oscillator, 1 = charge pump clock
defined by AFGCaplessChargePumpClkRate[3:0] field below.
PortBPadGnd
7
RW
0h
POR
Ground the output pad of the capless amplifiers.
PortBInputGnd
6
RW
0h
POR
Ground the input to the capless output amplifiers.
Rsvd3
5
R
0h
N/A (Hard-coded)
Reserved.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
PortBAntiPopBypass
4
RW
0h
POR
0 = Enable anti-pop on the capless headphone; 1 = bypass anti-pop on the
capless headphone.
PortAPadGnd
3
RW
0h
NA
Ground the output pad of the capless amplifiers.
PortAInputGnd
2
RW
0h
POR
Ground the input to the capless output amplifiers.
Rsvd1
1
R
0h
N/A (Hard-coded)
RW
0h
POR
Reserved.
PortAAntiPopBypass
0
0 = Enable anti-pop on the capless headphone; 1 = bypass anti-pop on the
capless headphone.
6.5.30.
Reg
AFG (NID = 01h): Reset
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
7FFh
Get
FFF00h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:8
R
000000h
N/A (Hard-coded)
W
00h
N/A (Hard-coded)
Reserved.
Execute
7:0
Function Reset. Function Group reset is executed when the Set verb 7FF is
written with 8-bit payload of 00h. The codec should issue a response to acknowledge receipt of the verb, and then reset the affected Function Group and
all associated widgets to their power-on reset values. Some controls such as
Configuration Default controls should not be reset. Overlaps Response.
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6.6.
PortA (NID = 0Ah): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
4h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
1h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
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92HD65C
SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.6.1.
Reg
PortA (NID = 0Ah): PinCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
EapdCap
16
EAPD support: 1 = yes, 0 = no.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
VrefCntrl
15:8
R
17h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
BalancedIO
6
Balanced I/O support: 1 = yes, 0 = no.
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no.
OutCap
4
R
1h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HdphDrvCap
3
R
1h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no.
PresDtctCap
2
R
1h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no.
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no.
6.6.2.
Reg
PortA (NID = 0Ah): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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F000Eh
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
04h
N/A (Hard-coded)
Number of NID entries in connection list.
6.6.3.
Reg
PortA (NID = 0Ah): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
23h
N/A (Hard-coded)
DAC2 Converter widget (0x23) on 92HD66C. 92HD66B this is reserved.
ConL2
23:16
R
1Ch
N/A (Hard-coded)
MixerOutVol Selector widget (0x1C)
ConL1
15:8
R
14h
N/A (Hard-coded)
DAC1 Converter widget (0x14)
ConL0
7:0
R
13h
N/A (Hard-coded)
DAC0 Converter widget (0x13)
6.6.4.
Reg
PortA (NID = 0Ah): InAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
360h
B2000h
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Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.6.5.
Reg
PortA (NID = 0Ah): InAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
350h
Get
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.6.6.
Reg
PortA (NID = 0Ah): ConSelectCtrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
701h
Get
F0100h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Index
1:0
Connection select control index.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
6.6.7.
Reg
PortA (NID = 0Ah): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.6.8.
Reg
PortA (NID = 0Ah): PinWCntrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
707h
F0700h
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
HPhnEn
7
Headphone amp enable: 1 = enabled, 0 = disabled.
OutEn
6
RW
0h
POR - DAFG - ULR
Output enable: 1 = enabled, 0 = disabled.
InEn
5
RW
0h
POR - DAFG - ULR
Input enable: 1 = enabled, 0 = disabled.
Rsvd1
4:3
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
VRefEn
2:0
Vref selection (See VrefCntrl field of PinCap parameter for supported selections):
000b= HI-Z
001b= 50%
010b= GND
011b= Reserved
100b= 80%
101b= 100%
110b= Reserved
111b= Reserved
6.6.9.
Reg
PortA (NID = 0Ah): UnsolResp
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
Reserved.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
En
7
RW
0h
POR - DAFG - ULR
Unsolicited response enable (also enables Wake events for this Widget): 1 =
enabled, 0 = disabled.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
6.6.10.
Reg
PortA (NID = 0Ah): ChSense
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
709h
Get
F0900h
Field Name
Bits
R/W
Default
Reset
PresDtct
31
R
0h
POR
Presence detection indicator: 1 = presence detected; 0 = presence not detected.
Rsvd
30:0
R
00000000h
N/A (Hard-coded)
Reserved.
6.6.11.
Reg
PortA (NID = 0Ah): EAPDBTLLR
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ch
Get
F0C00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:2
R
00000000h
N/A (Hard-coded)
Reserved.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
EAPD
1
RW
1h
POR - DAFG - ULR
EAPD control: 1 = set EAPD pin to 1 (powered) up if this pin is powered up, 0
= set EAPD pin to 0.
Rsvd1
0
R
0h
N/A (Hard-coded)
Reserved.
6.6.12.
PortA (NID = 0Ah): ConfigDefault
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
Get
F1F00h / F1E00h / F1D00h / F1C00h
Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
0h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
02h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
Device
23:20
RW
2h
POR
1h
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
ConnectionType
19:16
RW
Connection type:
0h = Unknown
1h = 1/8" stereo/mono
2h = 1/4" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
Color
15:12
RW
4h
POR
0h
POR
1h
POR
0h
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default assocation.
Sequence
3:0
RW
Sequence.
6.7.
PortB (NID = 0Bh): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Type
23:20
R
4h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
1h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.7.1.
Reg
PortB (NID = 0Bh): PinCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
EapdCap
16
EAPD support: 1 = yes, 0 = no.
VrefCntrl
15:8
R
17h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
BalancedIO
6
R
0h
N/A (Hard-coded)
Balanced I/O support: 1 = yes, 0 = no.
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no.
OutCap
4
R
1h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HdphDrvCap
3
R
1h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no.
PresDtctCap
2
R
1h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no.
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no.
6.7.2.
Reg
PortB (NID = 0Bh): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
04h
N/A (Hard-coded)
Number of NID entries in connection list.
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6.7.3.
Reg
PortB (NID = 0Bh): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
23h
N/A (Hard-coded)
DAC2 Converter widget (0x23) on 92HD66C. 92HD66B this is reserved.
ConL2
23:16
R
1Ch
N/A (Hard-coded)
MixerOutVol Selector widget (0x1C)
ConL1
15:8
R
14h
N/A (Hard-coded)
DAC1 Converter widget (0x14)
ConL0
7:0
R
13h
N/A (Hard-coded)
DAC0 Converter widget (0x13)
6.7.4.
Reg
PortB (NID = 0Bh): InAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
360h
Get
B2000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget.
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6.7.5.
Reg
PortB (NID = 0Bh): InAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
350h
Get
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget.
6.7.6.
Reg
PortB (NID = 0Bh): ConSelectCtrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
701h
Get
F0100h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Index
1:0
Connection select control index.
6.7.7.
Reg
PortB (NID = 0Bh): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
Reserved.
IDT CONFIDENTIAL
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Field Name
Bits
R/W
Default
Reset
SettingsReset
10
R
1h
POR - DAFG - ULR
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.7.8.
Reg
PortB (NID = 0Bh): PinWCntrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
707h
Get
F0700h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
HPhnEn
7
Headphone amp enable: 1 = enabled, 0 = disabled.
OutEn
6
RW
0h
POR - DAFG - ULR
Output enable: 1 = enabled, 0 = disabled.
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Field Name
Bits
R/W
Default
Reset
InEn
5
RW
0h
POR - DAFG - ULR
Input enable: 1 = enabled, 0 = disabled.
Rsvd1
4:3
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
VRefEn
2:0
Vref selection (See VrefCntrl field of PinCap parameter for supported selections):
000b= HI-Z
001b= 50%
010b= GND
011b= Reserved
100b= 80%
101b= 100%
110b= Reserved
111b= Reserved
6.7.9.
Reg
PortB (NID = 0Bh): UnsolResp
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
En
7
Unsolicited response enable (also enables Wake events for this Widget): 1 =
enabled, 0 = disabled.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
6.7.10.
Reg
PortB (NID = 0Bh): ChSense
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
709h
Get
F0900h
Field Name
Bits
R/W
Default
Reset
PresDtct
31
R
0h
POR
Presence detection indicator: 1 = presence detected; 0 = presence not detected.
Rsvd
30:0
R
00000000h
N/A (Hard-coded)
Reserved.
6.7.11.
Reg
PortB (NID = 0Bh): EAPDBTLLR
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ch
Get
F0C00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:2
R
00000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
EAPD
1
EAPD control: 1 = set EAPD pin to 1 (powered) up if this pin is powered up, 0
= set EAPD pin to 0.
Rsvd1
0
R
0h
N/A (Hard-coded)
Reserved.
6.7.12.
PortB (NID = 0Bh): ConfigDefault
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
Get
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F1F00h / F1E00h / F1D00h / F1C00h
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Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
0h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
02h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
Device
23:20
RW
Ah
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
ConnectionType
19:16
RW
1h
POR
Connection type:
0h = Unknown
1h = 1/8" stereo/mono
2h = 1/4" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
Color
15:12
RW
9h
POR
0h
POR
2h
POR
0h
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default association.
Sequence
3:0
RW
Sequence.
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6.8.
PortC (NID = 0Ch): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
4h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
1h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.8.1.
Reg
PortC (NID = 0Ch): PinCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
EapdCap
16
EAPD support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
VrefCntrl
15:8
R
17h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
BalancedIO
6
Balanced I/O support: 1 = yes, 0 = no.
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no.
OutCap
4
R
1h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HdphDrvCap
3
R
0h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no.
PresDtctCap
2
R
1h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no.
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no.
6.8.2.
Reg
PortC (NID = 0Ch): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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F000Eh
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
04h
N/A (Hard-coded)
Number of NID entries in connection list.
6.8.3.
Reg
PortC (NID = 0Ch): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
23h
N/A (Hard-coded)
DAC2 converter widget (0x23) on 92HD66C. 92HD66B this is reserved.
ConL2
23:16
R
1Ch
N/A (Hard-coded)
MixerOutVol Selector widget (0x1C)
ConL1
15:8
R
14h
N/A (Hard-coded)
DAC1 Converter widget (0x14)
ConL0
7:0
R
13h
N/A (Hard-coded)
DAC0 Converter widget (0x13)
6.8.4.
Reg
PortC (NID = 0Ch): InAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
360h
B2000h
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Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.8.5.
Reg
PortC (NID = 0Ch): InAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
350h
Get
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.8.6.
Reg
PortC (NID = 0Ch): ConSelectCtrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
701h
Get
F0100h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Index
1:0
Connection select control index.
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6.8.7.
Reg
PortC (NID = 0Ch): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.8.8.
Reg
PortC (NID = 0Ch): PinWCntrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
707h
F0700h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:7
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
OutEn
6
Output enable: 1 = enabled, 0 = disabled.
InEn
5
RW
0h
POR - DAFG - ULR
Input enable: 1 = enabled, 0 = disabled.
Rsvd1
4:3
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
VRefEn
2:0
Vref selection (See VrefCntrl field of PinCap parameter for supported selections):
000b= HI-Z
001b= 50%
010b= GND
011b= Reserved
100b= 80%
101b= 100%
110b= Reserved
111b= Reserved
6.8.9.
Reg
PortC (NID = 0Ch): UnsolResp
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
En
7
Unsolicited response enable (also enables Wake events for this Widget): 1 =
enabled, 0 = disabled.
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Field Name
Bits
R/W
Default
Reset
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
6.8.10.
Reg
PortC (NID = 0Ch): ChSense
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
709h
Get
F0900h
Field Name
Bits
R/W
Default
Reset
PresDtct
31
R
0h
POR
Presence detection indicator: 1 = presence detected; 0 = presence not detected.
Rsvd
30:0
R
00000000h
N/A (Hard-coded)
Reserved.
6.8.11.
Reg
PortC (NID = 0Ch): EAPDBTLLR
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ch
Get
F0C00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:2
R
00000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
EAPD
1
EAPD control: 1 = set EAPD pin to 1 (powered) up if this pin is powered up, 0
= set EAPD pin to 0.
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Field Name
Bits
R/W
Default
Reset
Rsvd1
0
R
0h
N/A (Hard-coded)
Reserved.
6.8.12.
PortC (NID = 0Ch): ConfigDefault
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
Get
F1F00h / F1E00h / F1D00h / F1C00h
Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
0h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
01h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
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Field Name
Bits
R/W
Default
Reset
Device
23:20
RW
8h
POR
1h
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
ConnectionType
19:16
RW
Connection type:
0h = Unknown
1h = 1/8" stereo/mono
2h = 1/4" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
Color
15:12
RW
3h
POR
0h
POR
4h
POR
Eh
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default association.
Sequence
3:0
RW
Sequence.
6.9.
NID = 0Dh Reserved
6.10. PortE (NID = 0Eh): WCap (Available only on 48-pin versions)
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Type
23:20
R
4h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
1h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.10.1.
Reg
PortE (NID = 0Eh): PinCap (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
EapdCap
16
EAPD support: 1 = yes, 0 = no.
VrefCntrl
15:8
R
17h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
BalancedIO
6
R
0h
N/A (Hard-coded)
Balanced I/O support: 1 = yes, 0 = no.
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no.
OutCap
4
R
1h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HdphDrvCap
3
R
0h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no.
PresDtctCap
2
R
1h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no.
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no.
6.10.2.
Reg
PortE (NID = 0Eh): ConLst (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
04h
N/A (Hard-coded)
Number of NID entries in connection list.
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6.10.3.
Reg
PortE (NID = 0Eh): ConLstEntry0 (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
23h
N/A (Hard-coded)
DAC2 Converter widget (0x23) on 92HD66C. 92HD66B this is reserved.
ConL2
23:16
R
1Ch
N/A (Hard-coded)
MixerOutVol Selector widget (0x1C)
ConL1
15:8
R
14h
N/A (Hard-coded)
DAC1 Converter widget (0x14)
ConL0
7:0
R
13h
N/A (Hard-coded)
DAC0 Converter widget (0x13)
6.10.4.
Reg
PortE (NID = 0Eh): InAmpLeft (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
360h
Get
B2000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.10.5.
Reg
PortE (NID = 0Eh): InAmpRight (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
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Byte 1 (Bits 7:0)
350h
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6.10.5.
Reg
PortE (NID = 0Eh): InAmpRight (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Get
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.10.6.
Reg
PortE (NID = 0Eh): ConSelectCtrl (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
701h
Get
F0100h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Index
1:0
Connection select control index.
6.10.7.
Reg
PortE (NID = 0Eh): PwrState (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
SettingsReset
10
R
1h
POR - DAFG - ULR
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.10.8.
Reg
PortE (NID = 0Eh): PinWCntrl (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
707h
Get
F0700h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:7
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
OutEn
6
Output enable: 1 = enabled, 0 = disabled.
InEn
5
RW
0h
N/A (Hard-coded)
Input enable: 1 = enabled, 0 = disabled.
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Field Name
Bits
R/W
Default
Reset
Rsvd1
4:3
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
VRefEn
2:0
Vref selection (See VrefCntrl field of PinCap parameter for supported
selections):
000b= HI-Z
001b= 50%
010b= GND
011b= Reserved
100b= 80%
101b= 100%
110b= Reserved
111b= Reserved.
6.10.9.
Reg
PortE (NID = 0Eh): UnsolResp (Available only on 48-pin versions)
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
En
7
Unsolicited response enable (also enables Wake events for this Widget): 1 =
enabled, 0 = disabled.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
6.10.10. PortE (NID = 0Eh): ChSense (Available only on 48-pin versions)
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
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Byte 1 (Bits 7:0)
709h
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6.10.10. PortE (NID = 0Eh): ChSense (Available only on 48-pin versions)
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Get
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
F0900h
Field Name
Bits
R/W
Default
Reset
PresDtct
31
R
0h
POR
Presence detection indicator: 1 = presence detected; 0 = presence not detected.
Rsvd
30:0
R
00000000h
N/A (Hard-coded)
Reserved.
6.10.11. PortE (NID = 0Eh): EAPDBTLLR (Available only on 48-pin versions)
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ch
Get
F0C00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:2
R
00000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
EAPD
1
EAPD control: 1 = set EAPD pin to 1 (powered) up if this pin is powered up, 0
= set EAPD pin to 0.
Rsvd1
0
R
0h
N/A (Hard-coded)
Reserved.
6.10.12. PortE (NID = 0Eh): ConfigDefault (Available only on 48-pin versions)
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
Get
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Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
0h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
01h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
Device
23:20
RW
Ah
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
ConnectionType
19:16
RW
1h
POR
Connection type:
0h = Unknown
1h = 1/8" stereo/mono
2h = 1/4" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
Color
15:12
RW
9h
POR
0h
POR
4h
POR
0h
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default association.
Sequence
3:0
RW
Sequence.
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6.11. PortF (NID = 0Fh): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
4h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
1h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.11.1.
Reg
PortF (NID = 0Fh): PinCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
EapdCap
16
EAPD support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
VrefCntrl
15:8
R
00h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
BalancedIO
6
Balanced I/O support: 1 = yes, 0 = no.
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no.
OutCap
4
R
1h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HdphDrvCap
3
R
1h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no.
PresDtctCap
2
R
1h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no.
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no.
6.11.2.
Reg
PortF (NID = 0Fh): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
IDT CONFIDENTIAL
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F000Eh
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
04h
N/A (Hard-coded)
Number of NID entries in connection list.
6.11.3.
Reg
PortF (NID = 0Fh): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
23h
N/A (Hard-coded)
DAC2 Converter widget (0x23) on 92HD66C. 92HD66B this is reserved.
ConL2
23:16
R
1Ch
N/A (Hard-coded)
MixerOutVol Selector widget (0x1C)
ConL1
15:8
R
14h
N/A (Hard-coded)
DAC1 Converter widget (0x14)
ConL0
7:0
R
13h
N/A (Hard-coded)
DAC0 Converter widget (0x13)
6.11.4.
Reg
PortF (NID = 0Fh): InAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
IDT CONFIDENTIAL
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Byte 1 (Bits 7:0)
360h
B2000h
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Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.11.5.
Reg
PortF (NID = 0Fh): InAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
350h
Get
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.11.6.
Reg
PortF (NID = 0Fh): ConSelectCtrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
701h
Get
F0100h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Index
1:0
Connection select control index.
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6.11.7.
Reg
PortF (NID = 0Fh): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.11.8.
Reg
PortF (NID = 0Fh): PinWCntrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
707h
F0700h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
HPhnEn
7
Headphone amp enable: 1 = enabled, 0 = disabled.
OutEn
6
RW
0h
POR - DAFG - ULR
Output enable: 1 = enabled, 0 = disabled.
InEn
5
RW
0h
POR - DAFG - ULR
Input enable: 1 = enabled, 0 = disabled.
Rsvd1
4:0
R
0h
N/A (Hard-coded)
Reserved.
6.11.9.
Reg
PortF (NID = 0Fh): UnsolResp
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
En
7
Unsolicited response enable (also enables Wake events for this Widget): 1 =
enabled, 0 = disabled.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
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6.11.10. PortF (NID = 0Fh): ChSense
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
709h
Get
F0900h
Field Name
Bits
R/W
Default
Reset
PresDtct
31
R
0h
POR
Presence detection indicator: 1 = presence detected; 0 = presence not detected.
Rsvd
30:0
R
00000000h
N/A (Hard-coded)
Reserved.
6.11.11. PortF (NID = 0Fh): EAPDBTLLR
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ch
Get
F0C00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:2
R
00000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
EAPD
1
EAPD control: 1 = set EAPD pin to 1 (powered) up if this pin is powered up, 0
= set EAPD pin to 0.
Rsvd1
0
R
0h
N/A (Hard-coded)
Reserved.
6.11.12. PortF (NID = 0Fh): ConfigDefault
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
Get
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Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
0h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
01h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
Device
23:20
RW
0h
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
ConnectionType
19:16
RW
1h
POR
Connection type:
0h = Unknown
1h = 1/8" stereo/mono
2h = 1/4" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
Color
15:12
RW
4h
POR
0h
POR
3h
POR
0h
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default association.
Sequence
3:0
RW
Sequence.
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6.12. NID = 10h: Reserved
6.13. DMic0 (NID = 11h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
4h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
DigitalStrm
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
0h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
UnsolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.13.1.
Reg
DMic0 (NID = 11h): PinCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
EapdCap
16
EAPD support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
VRefCntrl
15:8
R
00h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
BalancedIO
6
Balanced I/O support: 1 = yes, 0 = no.
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no.
OutCap
4
R
0h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HPhnDrvCap
3
R
0h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no.
PresDtctCap
2
R
0h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no.
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no.
6.13.2.
Reg
DMic0 (NID = 11h): InAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
360h
B2000h
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Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.13.3.
Reg
DMic0 (NID = 11h): InAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
350h
Get
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.13.4.
Reg
DMic0 (NID = 11h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
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Field Name
Bits
R/W
Default
Reset
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.13.5.
Reg
DMic0 (NID = 11h): PinWCntrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
707h
Get
F0700h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:6
R
0000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
InEn
5
Input enable: 1 = enabled, 0 = disabled.
Rsvd1
4:0
R
00h
N/A (Hard-coded)
Reserved.
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6.13.6.
DMic0 (NID = 11h): ConfigDefault
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
Get
F1F00h / F1E00h / F1D00h / F1C00h
Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
2h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
10h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
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Field Name
Bits
R/W
Default
Reset
Device
23:20
RW
Ah
POR
3h
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
ConnectionType
19:16
RW
Connection type:
0h = Unknown
1h = 1/8" stereo/mono
2h = 1/4" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
Color
15:12
RW
0h
POR
1h
POR
4h
POR
1h
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default assocation.
Sequence
3:0
RW
Sequence.
6.14. DMic1Vol (NID = 12h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Type
23:20
R
Fh
N/A (Hard-coded)
0h
N/A (Hard-coded)
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
DigitalStrm
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnsolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.14.1.
Reg
DMic1Vol (NID = 12h): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
02h
N/A (Hard-coded)
Number of NID entries in connection list.
6.14.2.
Reg
DMic1Vol (NID = 12h): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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141
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Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
20h
N/A (Hard-coded)
1Fh
N/A (Hard-coded)
Unused list entry.
ConL2
23:16
R
Unused list entry.
ConL1
15:8
R
Dig1Pin Pin widget (0x20)
ConL0
7:0
R
Dig1Pin Pin widget (0x1F)
6.14.3.
Reg
DMic1Vol (NID = 12h): InAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
360h
Get
B2000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.14.4.
Reg
DMic1Vol (NID = 12h): InAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
350h
Get
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd1
31:2
R
00000000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Gain
1:0
RW
0h
POR - DAFG - ULR
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.14.5.
Reg
DMic1Vol (NID = 12h): ConSelectCtrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
701h
Get
F0100h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:1
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Index
0
Connection select control index.
6.14.6.
Reg
DMic1Vol (NID = 12h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
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Field Name
Bits
R/W
Default
Reset
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.15. DAC0 (NID = 13h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Dh
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
SwapCap
11
R
1h
N/A (Hard-coded)
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
0h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.15.1.
Reg
DAC0 (NID = 13h): Cnvtr
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
2h
A0000h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
StrmType
15
Stream type: 1 = Non-PCM, 0 = PCM.
FrmtSmplRate
14
RW
0h
POR - DAFG - ULR
Sample base rate: 1 = 44.1kHz, 0 = 48kHz.
SmplRateMultp
13:11
RW
0h
POR - DAFG - ULR
Sample base rate multiple:
000b= x1 (48kHz/44.1kHz or less)
001b= x2 (96kHz/88.2kHz/32kHz)
010b= x3 (144kHz)
011b= x4 (192kHz/176.4kHz)
100b-111b Reserved
SmplRateDiv
10:8
RW
0h
POR - DAFG - ULR
Sample base rate divider:
000b= Divide by 1 (48kHz/44.1kHz)
001b= Divide by 2 (24kHz/20.05kHz)
010b= Divide by 3 (16kHz/32kHz)
011b= Divide by 4 (11.025kHz)
100b= Divide by 5 (9.6kHz)
101b= Divide by 6 (8kHz)
110b= Divide by 7
111b= Divide by 8 (6kHz)
Rsvd1
7
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - ULR
1h
POR - DAFG - ULR
Reserved.
BitsPerSmpl
6:4
Bits per sample:
000b= 8 bits
001b= 16 bits
010b= 20 bits
011b= 24 bits
100b= 32 bits
101b-111b= Reserved
NmbrChan
3:0
RW
Total number of channels in the stream assigned to this converter:
0000b-1111b= 1-16 channels.
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6.15.2.
Reg
DAC0 (NID = 13h): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
3A0h
Get
BA000h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Gain
6:0
RW
7Fh
POR - DAFG - ULR
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.15.3.
Reg
DAC0 (NID = 13h): OutAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
390h
Get
B8000h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Gain
6:0
RW
7Fh
POR - DAFG - ULR
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.15.4.
Reg
DAC0 (NID = 13h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
705h
F0500h
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Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.15.5.
Reg
DAC0 (NID = 13h): CnvtrID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
706h
Get
F0600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - S&DAFG - LR - PS
Reserved.
Strm
7:4
Stream ID: 0h = Converter "off", 1h-Fh = valid ID's.
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Field Name
Bits
R/W
Default
Reset
Ch
3:0
RW
0h
POR - S&DAFG - LR - PS
Channel assignment ("Ch" and "Ch+1" assigned as a pair, for a stereo converter).
6.15.6.
Reg
DAC0 (NID = 13h): EAPDBTLLR
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ch
Get
F0C00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:3
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
SwapEn
2
Swap enable: 1 = L/R swap enabled, 0 = L/R swap disabled.
Rsvd1
1:0
R
0h
N/A (Hard-coded)
Reserved.
6.16. DAC1 (NID = 14h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Type
23:20
R
0h
N/A (Hard-coded)
Dh
N/A (Hard-coded)
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
0h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.16.1.
Reg
DAC1 (NID = 14h): Cnvtr
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Byte 1 (Bits 7:0)
2h
Get
A0000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
StrmType
15
Stream type: 1 = Non-PCM, 0 = PCM.
FrmtSmplRate
14
RW
0h
POR - DAFG - ULR
Sample base rate: 1 = 44.1kHz, 0 = 48kHz.
SmplRateMultp
13:11
RW
0h
POR - DAFG - ULR
Sample base rate multiple:
000b= x1 (48kHz/44.1kHz or less)
001b= x2 (96kHz/88.2kHz/32kHz)
010b= x3 (144kHz)
011b= x4 (192kHz/176.4kHz)
100b-111b Reserved
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Field Name
Bits
R/W
Default
Reset
SmplRateDiv
10:8
RW
0h
POR - DAFG - ULR
Sample base rate divider:
000b= Divide by 1 (48kHz/44.1kHz)
001b= Divide by 2 (24kHz/20.05kHz)
010b= Divide by 3 (16kHz/32kHz)
011b= Divide by 4 (11.025kHz)
100b= Divide by 5 (9.6kHz)
101b= Divide by 6 (8kHz)
110b= Divide by 7
111b= Divide by 8 (6kHz)
Rsvd1
7
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - ULR
1h
POR - DAFG - ULR
Reserved.
BitsPerSmpl
6:4
Bits per sample:
000b= 8 bits
001b= 16 bits
010b= 20 bits
011b= 24 bits
100b= 32 bits
101b-111b= Reserved
NmbrChan
3:0
RW
Total number of channels in the stream assigned to this converter:
0000b-1111b= 1-16 channels.
6.16.2.
Reg
DAC1 (NID = 14h): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
3A0h
Get
BA000h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
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Field Name
Bits
R/W
Default
Reset
Gain
6:0
RW
7Fh
POR - DAFG - ULR
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.16.3.
Reg
DAC1 (NID = 14h): OutAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
390h
Get
B8000h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Gain
6:0
RW
7Fh
POR - DAFG - ULR
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.16.4.
Reg
DAC1 (NID = 14h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Error
8
R
0h
POR - DAFG - ULR
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.16.5.
Reg
DAC1 (NID = 14h): CnvtrID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
706h
Get
F0600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - S&DAFG - LR - PS
Reserved.
Strm
7:4
Stream ID: 0h = Converter "off", 1h-Fh = valid ID's.
Ch
3:0
RW
0h
POR - S&DAFG - LR - PS
Channel assignment ("Ch" and "Ch+1" assigned as a pair, for a stereo converter).
6.16.6.
Reg
DAC1 (NID = 14h): EAPDBTLLR
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
70Ch
F0C00h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:3
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
SwapEn
2
Swap enable: 1 = L/R swap enabled, 0 = L/R swap disabled.
Rsvd1
1:0
R
0h
N/A (Hard-coded)
Reserved.
6.17. ADC0 (NID = 15h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Dh
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
Reserved.
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
SwapCap
11
R
0h
N/A (Hard-coded)
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
1h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.17.1.
Reg
ADC0 (NID = 15h): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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F000Eh
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SIX CHANNEL HD AUDIO CODEC WITH DUAL CAPLESS HEADPHONE AMPLIFIERS
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
01h
N/A (Hard-coded)
Number of NID entries in connection list.
6.17.2.
Reg
ADC0 (NID = 15h): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
17h
N/A (Hard-coded)
Unused list entry.
ConL2
23:16
R
Unused list entry.
ConL1
15:8
R
Unused list entry.
ConL0
7:0
R
ADC0Mux Selector widget (0x17)
6.17.3.
Reg
ADC0 (NID = 15h): Cnvtr
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
2h
A0000h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
StrmType
15
Stream type: 1 = Non-PCM, 0 = PCM.
FrmtSmplRate
14
RW
0h
POR - DAFG - ULR
Sample base rate: 1 = 44.1kHz, 0 = 48kHz.
SmplRateMultp
13:11
RW
0h
POR - DAFG - ULR
Sample base rate multiple:
000b= x1 (48kHz/44.1kHz or less)
001b= x2 (96kHz/88.2kHz/32kHz)
010b= x3 (144kHz)
011b= x4 (192kHz/176.4kHz)
100b-111b Reserved
SmplRateDiv
10:8
RW
0h
POR - DAFG - ULR
Sample base rate divider:
000b= Divide by 1 (48kHz/44.1kHz)
001b= Divide by 2 (24kHz/20.05kHz)
010b= Divide by 3 (16kHz/32kHz)
011b= Divide by 4 (11.025kHz)
100b= Divide by 5 (9.6kHz)
101b= Divide by 6 (8kHz)
110b= Divide by 7
111b= Divide by 8 (6kHz)
Rsvd1
7
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - ULR
1h
POR - DAFG - ULR
Reserved.
BitsPerSmpl
6:4
Bits per sample:
000b= 8 bits
001b= 16 bits
010b= 20 bits
011b= 24 bits
100b= 32 bits
101b-111b= Reserved
NmbrChan
3:0
RW
Total number of channels in the stream assigned to this converter:
0000b-1111b= 1-16 channels.
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6.17.4.
Reg
ADC0 (NID = 15h): ProcState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
703h
Get
F0300h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
HPFOCDIS
7
HPF offset calculation disable. 1 = calculation disabled; 0 = calculation enabled.
Rsvd1
6:2
R
00h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
ADCHPFByp
1:0
Processing State: 00b= bypass the ADC HPF ("off"), 01b-11b= ADC HPF is enabled ("on" or "benign").
6.17.5.
Reg
ADC0 (NID = 15h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Error
8
R
0h
POR - DAFG - ULR
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.17.6.
Reg
ADC0 (NID = 15h): CnvtrID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
706h
Get
F0600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - S&DAFG - LR - PS
Reserved.
Strm
7:4
Stream ID: 0h = Converter "off", 1h-Fh = valid ID's.
Ch
3:0
RW
0h
POR - S&DAFG - LR - PS
Channel assignment ("Ch" and "Ch+1" assigned as a pair, for a stereo converter).
6.18. ADC1 (NID = 1Bh): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
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6.18. ADC1 (NID = 1Bh): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Get
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Dh
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
ProcWidget
6
R
1h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.18.1.
Reg
ADC1 (NID = 1Bh): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
01h
N/A (Hard-coded)
Number of NID entries in connection list.
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6.18.2.
Reg
ADC1 (NID = 1Bh): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
18h
N/A (Hard-coded)
Unused list entry.
ConL2
23:16
R
Unused list entry.
ConL1
15:8
R
Unused list entry.
ConL0
7:0
R
ADC1Mux widget (0x18)
6.18.3.
Reg
ADC1 (NID = 1Bh): Cnvtr
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Byte 1 (Bits 7:0)
2h
Get
A0000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
StrmType
15
Stream type: 1 = Non-PCM, 0 = PCM.
FrmtSmplRate
14
RW
0h
POR - DAFG - ULR
Sample base rate: 1 = 44.1kHz, 0 = 48kHz.
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Field Name
Bits
R/W
Default
Reset
SmplRateMultp
13:11
RW
0h
POR - DAFG - ULR
Sample base rate multiple:
000b= x1 (48kHz/44.1kHz or less)
001b= x2 (96kHz/88.2kHz/32kHz)
010b= x3 (144kHz)
011b= x4 (192kHz/176.4kHz)
100b-111b Reserved
SmplRateDiv
10:8
RW
0h
POR - DAFG - ULR
Sample base rate divider:
000b= Divide by 1 (48kHz/44.1kHz)
001b= Divide by 2 (24kHz/20.05kHz)
010b= Divide by 3 (16kHz/32kHz)
011b= Divide by 4 (11.025kHz)
100b= Divide by 5 (9.6kHz)
101b= Divide by 6 (8kHz)
110b= Divide by 7
111b= Divide by 8 (6kHz)
Rsvd1
7
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - ULR
1h
POR - DAFG - ULR
Reserved.
BitsPerSmpl
6:4
Bits per sample:
000b= 8 bits
001b= 16 bits
010b= 20 bits
011b= 24 bits
100b= 32 bits
101b-111b= Reserved
NmbrChan
3:0
RW
Total number of channels in the stream assigned to this converter:
0000b-1111b= 1-16 channels.
6.18.4.
Reg
ADC1 (NID = 1Bh): ProcState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
703h
F0300h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
HPFOCDIS
7
HPF offset calculation disable. 1 = calculation disabled; 0 = calculation enabled.
Rsvd1
6:2
R
00h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
ADCHPFByp
1:0
Processing State: 00b= bypass the ADC HPF ("off"), 01b-11b= ADC HPF is enabled ("on" or "benign").
6.18.5.
Reg
ADC1 (NID = 1Bh): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Act
5:4
R
3h
POR - DAFG - LR
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.18.6.
Reg
ADC1 (NID = 1Bh): CnvtrID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
706h
Get
F0600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - S&DAFG - LR - PS
Reserved.
Strm
7:4
Stream ID: 0h = Converter "off", 1h-Fh = valid ID's.
Ch
3:0
RW
0h
POR - S&DAFG - LR - PS
Channel assignment ("Ch" and "Ch+1" assigned as a pair, for a stereo converter).
6.19. ADC0Mux (NID = 17h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Type
23:20
R
3h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
DigitalStrm
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnsolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
AmpParamOvrd
3
R
1h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.19.1.
Reg
ADC0Mux (NID = 17h): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
08h
N/A (Hard-coded)
Number of NID entries in connection list
6.19.2.
Reg
ADC0Mux (NID = 17h): ConLstEntry4
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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F0204h
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Field Name
Bits
R/W
Default
Reset
ConL7
31:24
R
0Eh
N/A (Hard-coded)
12h
N/A (Hard-coded)
11h
N/A (Hard-coded)
0Fh
N/A (Hard-coded)
Port E Pin widget (0x0E)
ConL6
23:16
R
Port DMIC1 widget (0x12)
ConL5
15:8
R
Port DMIC0 widget (0x11)
ConL4
7:0
R
Port F Pin widget (0x0F)
6.19.3.
Reg
ADC0Mux (NID = 17h): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
0Ch
N/A (Hard-coded)
0Bh
N/A (Hard-coded)
0Ah
N/A (Hard-coded)
1Bh
N/A (Hard-coded)
Port C Pin widget (0x0C)
ConL2
23:16
R
Port B Pin widget (0x0B
ConL1
15:8
R
Port A Pin widget (0x0A)
ConL0
7:0
R
Mixer Summing widget (0x1B)
6.19.4.
Reg
ADC0Mux (NID = 17h): OutAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
03h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
2Eh
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
R
10h
N/A (Hard-coded)
Reserved.
Offset
6:0
Indicates which step is 0dB
6.19.5.
Reg
ADC0Mux (NID = 17h): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
3A0h
Get
BA000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Gain
5:0
RW
10h
POR - DAFG - ULR
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.19.6.
Reg
ADC0Mux (NID = 17h): OutAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
390h
Get
B8000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
10h
POR - DAFG - ULR
Reserved.
Gain
5:0
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.19.7.
Reg
ADC0Mux (NID = 17h): ConSelectCtrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
701h
Get
F0100h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:3
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Index
2:0
Connection select control index.
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6.19.8.
Reg
ADC0Mux (NID = 17h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.19.9.
Reg
ADC0Mux (NID = 17h): EAPDBTLLR
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
IDT CONFIDENTIAL
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Byte 1 (Bits 7:0)
70Ch
F0C00h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:3
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
SwapEn
2
Swap enable: 1 = L/R swap enabled, 0 = L/R swap disabled.
Rsvd1
1:0
R
0h
N/A (Hard-coded)
Reserved.
6.20. ADC1Mux (NID = 18h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
3h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
SwapCap
11
R
1h
N/A (Hard-coded)
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
DigitalStrm
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnsolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParamOvrd
3
R
1h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.20.1.
Reg
ADC1Mux (NID = 18h): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
IDT CONFIDENTIAL
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
08h
N/A (Hard-coded)
Number of NID entries in connection list.
6.20.2.
Reg
ADC1Mux (NID = 18h): ConLstEntry4
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0204h
Field Name
Bits
R/W
Default
Reset
ConL7
31:24
R
0Eh
N/A (Hard-coded)
12h
N/A (Hard-coded)
11h
N/A (Hard-coded)
0Fh
N/A (Hard-coded)
Port E Pin widget (0x0E).
ConL6
23:16
R
Port DMIC1 widget (0x12).
ConL5
15:8
R
Port DMIC0 widget (0x11)
ConL4
7:0
R
Port F Pin widget (0x0F)
6.20.3.
Reg
ADC1Mux (NID = 18h): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
0Ch
N/A (Hard-coded)
0Bh
N/A (Hard-coded)
0Ah
N/A (Hard-coded)
1Bh
N/A (Hard-coded)
Port C Pin widget (0x0C)
ConL2
23:16
R
Port B Pin widget (0x0B)
ConL1
15:8
R
Port A Pin widget (0x0A)
ConL0
7:0
R
Mixer Summing widget (0x1B)
6.20.4.
Reg
ADC1Mux (NID = 18h): OutAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0012h
Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
03h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
2Eh
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Offset
6:0
R
10h
N/A (Hard-coded)
Indicates which step is 0dB
6.20.5.
Reg
ADC1Mux (NID = 18h): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
3A0h
Get
BA000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
10h
POR - DAFG - ULR
Reserved.
Gain
5:0
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.20.6.
Reg
ADC1Mux (NID = 18h): OutAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
390h
Get
B8000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
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Field Name
Bits
R/W
Default
Reset
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
10h
POR - DAFG - ULR
Reserved.
Gain
5:0
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.20.7.
Reg
ADC1Mux (NID = 18h): ConSelectCtrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
701h
Get
F0100h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:3
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Index
2:0
Connection select control index.
6.20.8.
Reg
ADC1Mux (NID = 18h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Error
8
R
0h
POR - DAFG - ULR
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.20.9.
Reg
ADC1Mux (NID = 18h): EAPDBTLLR
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ch
Get
F0C00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:3
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
SwapEn
2
Swap enable: 1 = L/R swap enabled, 0 = L/R swap disabled.
Rsvd1
1:0
R
0h
N/A (Hard-coded)
Reserved.
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6.21. NID = 19h Reserved
6.22. NID = 1Ah Reserved
6.23. Mixer (NID = 1Bh): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
2h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
1h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.23.1.
Reg
Mixer (NID = 1Bh): InAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Dh
Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
Rsvd3
30:23
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
StepSize
22:16
R
05h
N/A (Hard-coded)
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
1Fh
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
R
17h
N/A (Hard-coded)
Reserved.
Offset
6:0
Indicates which step is 0dB
6.23.2.
Reg
Mixer (NID = 1Bh): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
08h
N/A (Hard-coded)
Number of NID entries in connection list.
6.23.3.
Reg
Mixer (NID = 1Bh): ConLstEntry4
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
IDT CONFIDENTIAL
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F0204h
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Field Name
Bits
R/W
Default
Reset
ConL7
31:24
R
23h
N/A (Hard-coded)
DAC2 widget (0x23). Uses InAmpLeft7/InAmpRight7 controls
ConL6
23:16
R
0Eh
N/A (Hard-coded)
Port E Pin widget (0x0E). Uses InAmpLeft6/InAmpRight6 controls
ConL5
15:8
R
0Fh
N/A (Hard-coded)
Port F Pin widget (0x0F). Uses InAmpLeft5/InAmpRight5 controls
ConL4
7:0
R
0Ch
N/A (Hard-coded)
Port C Pin widget (0x0C). Uses InAmpLeft4/InAmpRight4 controls
6.23.4.
Reg
Mixer (NID = 1Bh): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
0Bh
N/A (Hard-coded)
Port B Pin widget (0x0B). Uses InAmpLeft3/InAmpRight3 controls.
ConL2
23:16
R
0Ah
N/A (Hard-coded)
Port A Pin widget (0x0A). Uses InAmpLeft2/InAmpRight2 controls.
ConL1
15:8
R
14h
N/A (Hard-coded)
DAC1 widget (0x14). Uses InAmpLeft1/InAmpRight1 controls.
ConL0
7:0
R
13h
N/A (Hard-coded)
DAC0 widget (0x13). Uses InAmpLeft0/InAmpRight0 controls.
6.23.5.
Reg
Mixer (NID = 1Bh): InAmpLeft0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
IDT CONFIDENTIAL
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Byte 1 (Bits 7:0)
360h
B2000h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.6.
Reg
Mixer (NID = 1Bh): InAmpRight0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
350h
Get
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.7.
Reg
Mixer (NID = 1Bh): InAmpLeft1
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
IDT CONFIDENTIAL
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Byte 1 (Bits 7:0)
361h
B2001h
184
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.8.
Reg
Mixer (NID = 1Bh): InAmpRight1
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
351h
Get
B0001h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.9.
Reg
Mixer (NID = 1Bh): InAmpLeft2
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
IDT CONFIDENTIAL
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Byte 1 (Bits 7:0)
362h
B2002h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.10. Mixer (NID = 1Bh): InAmpRight2
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
352h
Get
B0002h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.11. Mixer (NID = 1Bh): InAmpLeft3
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
IDT CONFIDENTIAL
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Byte 1 (Bits 7:0)
363h
B2003h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.12. Mixer (NID = 1Bh): InAmpRight3
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
353h
Get
B0003h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.13. Mixer (NID = 1Bh): InAmpLeft4
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
IDT CONFIDENTIAL
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Byte 1 (Bits 7:0)
364h
B2004h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.14. Mixer (NID = 1Bh): InAmpRight4
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
354h
Get
B0004h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.15. Mixer (NID = 1Bh): InAmpLeft5
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
IDT CONFIDENTIAL
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Byte 1 (Bits 7:0)
365h
B2005h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.16. Mixer (NID = 1Bh): InAmpRight5
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
355h
Get
B0005h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
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6.23.17. Mixer (NID = 1Bh): InAmpLeft6
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
366h
Get
B2006h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.18. Mixer (NID = 1Bh): InAmpRight6
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
356h
Get
B0006h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
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6.23.19. Mixer (NID = 1Bh): InAmpLeft7
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
367h
Get
B2007h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
6.23.20. Mixer (NID = 1Bh): InAmpRight7
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
357h
Get
B0007h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
17h
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see InAmpCap parameter pertaining to this widget).
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6.23.21. Mixer (NID = 1Bh): PwrState
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.24. MixerOutVol (NID = 1Ch): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
IDT CONFIDENTIAL
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F0009h
192
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
3h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
1h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.24.1.
Reg
MixerOutVol (NID = 1Ch): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
01h
N/A (Hard-coded)
Number of NID entries in connection list.
6.24.2.
Reg
MixerOutVol (NID = 1Ch): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
IDT CONFIDENTIAL
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F0200h
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Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
1Bh
N/A (Hard-coded)
Unused list entry.
ConL2
23:16
R
Unused list entry.
ConL1
15:8
R
Unused list entry.
ConL0
7:0
R
Mixer Summing widget (0x1B)
6.24.3.
Reg
MixerOutVol (NID = 1Ch): OutAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0012h
Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
05h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
1Fh
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Offset
6:0
R
1Fh
N/A (Hard-coded)
Indicates which step is 0dB
6.24.4.
Reg
MixerOutVol (NID = 1Ch): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
3A0h
Get
BA000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
1Fh
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.24.5.
Reg
MixerOutVol (NID = 1Ch): OutAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
390h
Get
B8000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
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Field Name
Bits
R/W
Default
Reset
Rsvd1
6:5
R
0h
N/A (Hard-coded)
RW
1Fh
POR - DAFG - ULR
Reserved.
Gain
4:0
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.24.6.
Reg
MixerOutVol (NID = 1Ch): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
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6.25. SPDIFOut0 (NID = 1Dh): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
4h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
1h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
0h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
1h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
1h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.25.1.
Reg
SPDIFOut0 (NID = 1Dh): PCMCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ah
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:21
R
000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
B32
20
32 bit audio format support: 1 = yes, 0 = no.
B24
19
R
1h
N/A (Hard-coded)
24 bit audio format support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
B20
18
R
1h
N/A (Hard-coded)
20 bit audio format support: 1 = yes, 0 = no.
B16
17
R
1h
N/A (Hard-coded)
16 bit audio format support: 1 = yes, 0 = no.
B8
16
R
0h
N/A (Hard-coded)
8 bit audio format support: 1 = yes, 0 = no.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
R12
11
384kHz rate support: 1 = yes, 0 = no.
R11
10
R
1h
N/A (Hard-coded)
192kHz rate support: 1 = yes, 0 = no.
R10
9
R
0h
N/A (Hard-coded)
176.4kHz rate support: 1 = yes, 0 = no.
R9
8
R
1h
N/A (Hard-coded)
96kHz rate support: 1 = yes, 0 = no.
R8
7
R
1h
N/A (Hard-coded)
88.2kHz rate support: 1 = yes, 0 = no.
R7
6
R
1h
N/A (Hard-coded)
48kHz rate support: 1 = yes, 0 = no.
R6
5
R
1h
N/A (Hard-coded)
44.1kHz rate support: 1 = yes, 0 = no.
R5
4
R
0h
N/A (Hard-coded)
32kHz rate support: 1 = yes, 0 = no.
R4
3
R
0h
N/A (Hard-coded)
22.05kHz rate support: 1 = yes, 0 = no.
R3
2
R
0h
N/A (Hard-coded)
16kHz rate support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
R2
1
R
0h
N/A (Hard-coded)
11.025kHz rate support: 1 = yes, 0 = no.
R1
0
R
0h
N/A (Hard-coded)
8kHz rate support: 1 = yes, 0 = no.
6.25.2.
Reg
SPDIFOut0 (NID = 1Dh): StreamCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Bh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:3
R
00000000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
AC3
2
AC-3 formatted data support: 1 = yes, 0 = no.
Float32
1
R
0h
N/A (Hard-coded)
Float32 formatted data support: 1 = yes, 0 = no.
PCM
0
R
1h
N/A (Hard-coded)
PCM-formatted data support: 1 = yes, 0 = no.
6.25.3.
Reg
SPDIFOut0 (NID = 1Dh): OutAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0012h
Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
Offset
6:0
Indicates which step is 0dB
6.25.4.
Reg
SPDIFOut0 (NID = 1Dh): Cnvtr
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Byte 1 (Bits 7:0)
2h
Get
A0000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
FrmtNonPCM
15
Stream type: 1 = Non-PCM, 0 = PCM.
FrmtSmplRate
14
RW
0h
POR - DAFG - ULR
Sample base rate: 1 = 44.1kHz, 0 = 48kHz.
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Field Name
Bits
R/W
Default
Reset
SmplRateMultp
13:11
RW
0h
POR - DAFG - ULR
Sample base rate multiple:
000b= x1 (48kHz/44.1kHz or less)
001b= x2 (96kHz/88.2kHz/32kHz)
010b= x3 (144kHz)
011b= x4 (192kHz/176.4kHz)
100b-111b Reserved
SmplRateDiv
10:8
RW
0h
POR - DAFG - ULR
Sample base rate divider:
000b= Divide by 1 (48kHz/44.1kHz)
001b= Divide by 2 (24kHz/20.05kHz)
010b= Divide by 3 (16kHz/32kHz)
011b= Divide by 4 (11.025kHz)
100b= Divide by 5 (9.6kHz)
101b= Divide by 6 (8kHz)
110b= Divide by 7
111b= Divide by 8 (6kHz)
Rsvd1
7
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - ULR
1h
POR - DAFG - ULR
Reserved.
BitsPerSmpl
6:4
Bits per sample:
000b= 8 bits
001b= 16 bits
010b= 20 bits
011b= 24 bits
100b= 32 bits
101b-111b= Reserved
NmbrChan
3:0
RW
Total number of channels in the stream assigned to this converter:
0000b-1111b= 1-16 channels.
6.25.5.
Reg
SPDIFOut0 (NID = 1Dh): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
3A0h
BA000h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:0
R
00h
N/A (Hard-coded)
Reserved.
6.25.6.
Reg
SPDIFOut0 (NID = 1Dh): OutAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
390h
Get
B8000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:0
R
00h
N/A (Hard-coded)
Reserved.
6.25.7.
Reg
SPDIFOut0 (NID = 1Dh): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
SettingsReset
10
R
1h
POR - DAFG - ULR
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.25.8.
Reg
SPDIFOut0 (NID = 1Dh): CnvtrID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
706h
Get
F0600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - S&DAFG - LR - PS
Reserved.
Strm
7:4
Stream ID: 0h = Converter "off", 1h-Fh = valid ID's.
Ch
3:0
RW
0h
POR - S&DAFG - LR - PS
Channel assignment ("Ch" and "Ch+1" assigned as a pair, for a stereo converter).
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6.25.9.
SPDIFOut0 (NID = 1Dh): DigCnvtr
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
73Fh
73Eh
70Eh
70Dh
Get
F0E00h / F0D00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
KeepAlive
23
Keep Alive Enable: 1 = clocking information maintained during D3, 0 = clock
information not required during D3.
Rsvd1
22:15
R
00h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
Reserved.
CC
14:8
CC: Category Code.
L
7
RW
L: Generation Level.
PRO
6
RW
PRO: Professional.
AUDIO
5
RW
/AUDIO: Non-Audio.
COPY
4
RW
COPY: Copyright.
PRE
3
RW
PRE: Preemphasis.
VCFG
2
RW
VCFG: Validity Config.
V
1
RW
V: Validity.
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Field Name
Bits
R/W
Default
Reset
DigEn
0
RW
0h
POR - DAFG - ULR
Digital enable: 1 = converter enabled, 0 = converter disable.
6.26. SPDIFOut1 (NID = 1Eh): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
4h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
1h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
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Field Name
Bits
R/W
Default
Reset
ConnList
8
R
0h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
1h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
1h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.26.1.
Reg
SPDIFOut1 (NID = 1Eh): PCMCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ah
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:21
R
000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
B32
20
R
0h
N/A (Hard-coded)
32 bit audio format support: 1 = yes, 0 = no.
B24
19
R
1h
N/A (Hard-coded)
24 bit audio format support: 1 = yes, 0 = no.
B20
18
R
1h
N/A (Hard-coded)
20 bit audio format support: 1 = yes, 0 = no.
B16
17
R
1h
N/A (Hard-coded)
16 bit audio format support: 1 = yes, 0 = no.
B8
16
R
0h
N/A (Hard-coded)
8 bit audio format support: 1 = yes, 0 = no.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
R12
11
384kHz rate support: 1 = yes, 0 = no.
R11
10
R
1h
N/A (Hard-coded)
192kHz rate support: 1 = yes, 0 = no.
R10
9
R
0h
N/A (Hard-coded)
176.4kHz rate support: 1 = yes, 0 = no.
R9
8
R
1h
N/A (Hard-coded)
96kHz rate support: 1 = yes, 0 = no.
R8
7
R
1h
N/A (Hard-coded)
88.2kHz rate support: 1 = yes, 0 = no.
R7
6
R
1h
N/A (Hard-coded)
48kHz rate support: 1 = yes, 0 = no.
R6
5
R
1h
N/A (Hard-coded)
44.1kHz rate support: 1 = yes, 0 = no.
R5
4
R
0h
N/A (Hard-coded)
32kHz rate support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
R4
3
R
0h
N/A (Hard-coded)
22.05kHz rate support: 1 = yes, 0 = no.
R3
2
R
0h
N/A (Hard-coded)
16kHz rate support: 1 = yes, 0 = no.
R2
1
R
0h
N/A (Hard-coded)
11.025kHz rate support: 1 = yes, 0 = no.
R1
0
R
0h
N/A (Hard-coded)
8kHz rate support: 1 = yes, 0 = no.
6.26.2.
Reg
SPDIFOut1 (NID = 1Eh): StreamCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Bh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:3
R
00000000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
AC3
2
AC-3 formatted data support: 1 = yes, 0 = no.
Float32
1
R
0h
N/A (Hard-coded)
Float32 formatted data support: 1 = yes, 0 = no.
PCM
0
R
1h
N/A (Hard-coded)
PCM-formatted data support: 1 = yes, 0 = no.
6.26.3.
Reg
SPDIFOut1 (NID = 1Eh): OutAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
Offset
6:0
Indicates which step is 0dB
6.26.4.
Reg
SPDIFOut1 (NID = 1Eh): Cnvtr
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Byte 1 (Bits 7:0)
2h
Get
A0000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
FrmtNonPCM
15
Stream type: 1 = Non-PCM, 0 = PCM.
FrmtSmplRate
14
RW
0h
POR - DAFG - ULR
Sample base rate: 1 = 44.1kHz, 0 = 48kHz.
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Field Name
Bits
R/W
Default
Reset
SmplRateMultp
13:11
RW
0h
POR - DAFG - ULR
Sample base rate multiple:
000b= x1 (48kHz/44.1kHz or less)
001b= x2 (96kHz/88.2kHz/32kHz)
010b= x3 (144kHz)
011b= x4 (192kHz/176.4kHz)
100b-111b Reserved
SmplRateDiv
10:8
RW
0h
POR - DAFG - ULR
Sample base rate divider:
000b= Divide by 1 (48kHz/44.1kHz)
001b= Divide by 2 (24kHz/20.05kHz)
010b= Divide by 3 (16kHz/32kHz)
011b= Divide by 4 (11.025kHz)
100b= Divide by 5 (9.6kHz)
101b= Divide by 6 (8kHz)
110b= Divide by 7
111b= Divide by 8 (6kHz)
Rsvd1
7
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - ULR
1h
POR - DAFG - ULR
Reserved.
BitsPerSmpl
6:4
Bits per sample:
000b= 8 bits
001b= 16 bits
010b= 20 bits
011b= 24 bits
100b= 32 bits
101b-111b= Reserved
NmbrChan
3:0
RW
Total number of channels in the stream assigned to this converter:
0000b-1111b= 1-16 channels.
6.26.5.
Reg
SPDIFOut1 (NID = 1Eh): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
3A0h
BA000h
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Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:0
R
00h
N/A (Hard-coded)
Reserved.
6.26.6.
Reg
SPDIFOut1 (NID = 1Eh): OutAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
390h
Get
B8000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:0
R
00h
N/A (Hard-coded)
Reserved.
6.26.7.
Reg
SPDIFOut1 (NID = 1Eh): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
SettingsReset
10
R
1h
POR - DAFG - ULR
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.26.8.
Reg
SPDIFOut1 (NID = 1Eh): CnvtrID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
706h
Get
F0600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - S&DAFG - LR - PS
Reserved.
Strm
7:4
Stream ID: 0h = Converter "off", 1h-Fh = valid ID's.
Ch
3:0
RW
0h
POR - S&DAFG - LR - PS
Channel assignment ("Ch" and "Ch+1" assigned as a pair, for a stereo converter).
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6.26.9.
SPDIFOut1 (NID = 1Eh): DigCnvtr
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
73Fh
73Eh
70Eh
70Dh
Get
F0E00h / F0D00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
KeepAlive
23
Keep Alive Enable: 1 = clocking information maintained during D3, 0 = clock
information not required during D3.
Rsvd1
22:15
R
00h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
Reserved.
CC
14:8
CC: Category Code.
L
7
RW
L: Generation Level.
PRO
6
RW
PRO: Professional.
AUDIO
5
RW
/AUDIO: Non-Audio.
COPY
4
RW
COPY: Copyright.
PRE
3
RW
PRE: Preemphasis.
VCFG
2
RW
VCFG: Validity Config.
V
1
RW
V: Validity.
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Field Name
Bits
R/W
Default
Reset
DigEn
0
RW
0h
POR - DAFG - ULR
Digital enable: 1 = converter enabled, 0 = converter disable.
6.27. Dig0Pin (NID = 1Fh): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
4h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
1h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
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Field Name
Bits
R/W
Default
Reset
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
1h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.27.1.
Reg
Dig0Pin (NID = 1Fh): PinCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
EapdCap
16
R
0h
N/A (Hard-coded)
EAPD support: 1 = yes, 0 = no.
VrefCntrl
15:8
R
00h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
BalancedIO
6
Balanced I/O support: 1 = yes, 0 = no.
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no.
OutCap
4
R
1h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HdphDrvCap
3
R
0h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no.
PresDtctCap
2
R
1h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no.
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no.
6.27.2.
Reg
Dig0Pin (NID = 1Fh): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
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F000Eh
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
01h
N/A (Hard-coded)
Number of NID entries in connection list.
6.27.3.
Reg
Dig0Pin (NID = 1Fh): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
1Dh
N/A (Hard-coded)
Unused list entry.
ConL2
23:16
R
Unused list entry.
ConL1
15:8
R
Unused list entry.
ConL0
7:0
R
SPDIFOut0 Converter widget (0x1D)
6.27.4.
Reg
Dig0Pin (NID = 1Fh): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
705h
F0500h
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Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.27.5.
Reg
Dig0Pin (NID = 1Fh): PinWCntrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
707h
Get
F0700h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:7
R
0000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
OutEn
6
Output enable: 1 = enabled, 0 = disabled.
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Field Name
Bits
R/W
Default
Reset
InEn
5
RW
0h
POR - DAFG - ULR
Input enable; 1 = enabled, 0 = disabled
Rsvd1
4:0
R
00h
N/A (Hard-coded)
Reserved.
6.27.6.
Reg
Dig0Pin (NID = 1Fh): UnsolResp
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
En
7
Unsolicited response enable (also enables Wake events for this Widget): 1 =
enabled, 0 = disabled.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
6.27.7.
Reg
Dig0Pin (NID = 1Fh): ChSense
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
709h
F0900h
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Field Name
Bits
R/W
Default
Reset
PresDtct
31
R
0h
POR
Presence detection indicator: 1 = presence detected; 0 = presence not detected.
Rsvd
30:0
R
00000000h
N/A (Hard-coded)
Reserved.
6.27.8.
Dig0Pin (NID = 1Fh): ConfigDefault
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
Get
F1F00h / F1E00h / F1D00h / F1C00h
Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
0h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
01h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
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Field Name
Bits
R/W
Default
Reset
Device
23:20
RW
4h
POR
5h
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
ConnectionType
19:16
RW
Connection type:
0h = Unknown
1h = 1/8" stereo/mono
2h = 1/4" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
Color
15:12
RW
1h
POR
1h
POR
5h
POR
0h
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default assocation.
Sequence
3:0
RW
Sequence.
6.28. Dig1Pin (NID = 20h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Type
23:20
R
4h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
1h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
1h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.28.1.
Reg
Dig1Pin (NID = 20h): PinCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
EapdCap
16
EAPD support: 1 = yes, 0 = no.
VrefCntrl
15:8
R
00h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
BalancedIO
6
R
0h
N/A (Hard-coded)
Balanced I/O support: 1 = yes, 0 = no.
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no.
OutCap
4
R
1h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HdphDrvCap
3
R
0h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no.
PresDtctCap
2
R
1h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no.
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no.
6.28.2.
Reg
Dig1Pin (NID = 20h): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
01h
N/A (Hard-coded)
Number of NID entries in connection list.
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6.28.3.
Reg
Dig1Pin (NID = 20h): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
1Eh
N/A (Hard-coded)
Unused list entry.
ConL2
23:16
R
Unused list entry.
ConL1
15:8
R
Unused list entry.
ConL0
7:0
R
SPDIFOut1 Converter widget (0x1E)
6.28.4.
Reg
Dig1Pin (NID = 20h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Error
8
R
0h
POR - DAFG - ULR
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.28.5.
Reg
Dig1Pin (NID = 20h): PinWCntrl
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
707h
Get
F0700h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:7
R
0000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
OutEn
6
Output enable: 1 = enabled, 0 = disabled.
InEn
5
RW
0h
POR - DAFG - ULR
Input enable: 1 = enabled, 0 = disabled.
Rsvd1
4:0
R
00h
N/A (Hard-coded)
Reserved.
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6.28.6.
Reg
Dig1Pin (NID = 20h): UnsolResp
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
En
7
Unsolicited response enable (also enables Wake events for this Widget): 1 =
enabled, 0 = disabled.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
6.28.7.
Reg
Dig1Pin (NID = 20h): ChSense
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
709h
Get
F0900h
Field Name
Bits
R/W
Default
Reset
PresDtct
31
R
0h
POR
Presence detection indicator: 1 = presence detected; 0 = presence not detected.
Rsvd
30:0
R
00000000h
N/A (Hard-coded)
Reserved.
6.28.8.
Dig1Pin (NID = 20h): ConfigDefault
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
Get
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Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
2h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
18h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
Device
23:20
RW
5h
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
ConnectionType
19:16
RW
6h
POR
Connection type:
0h = Unknown
1h = 1/8" stereo/mono
2h = 1/4" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
Color
15:12
RW
0h
POR
1h
POR
6h
POR
0h
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default assocation.
Sequence
3:0
RW
Sequence.
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6.29. DigBeep (NID = 21h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:24
R
00h
N/A (Hard-coded)
R
7h
N/A (Hard-coded)
R
000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Rsvd3
19:11
Reserved.
PwrCntrl
10
Power state support: 1 = yes, 0 = no."
Rsvd2
9:4
R
00h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved
AmpParOvrd
3
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
Rsvd1
1:0
R
0h
N/A (Hard-coded)
Reserved.
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6.29.1.
Reg
DigBeep (NID = 21h): OutAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0012h
Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
17h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
03h
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
Rsvd1
7
R
0h
N/A (Hard-coded)
R
03h
N/A (Hard-coded)
Reserved.
Offset
6:0
Indicates which step is 0dB
6.29.2.
Reg
DigBeep (NID = 21h): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
3A0h
Get
BA000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Mute
7
RW
0h
POR - DAFG - ULR
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:2
R
00h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Gain
1:0
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.29.3.
Reg
DigBeep (NID = 21h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Set
1:0
RW
0h
POR - DAFG - LR
Current power state setting for this widget.
6.29.4.
Reg
DigBeep (NID = 21h): Gen
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ah
Get
F0A00h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
00h
POR - DAFG - LR
Reserved.
Divider
7:0
Enable internal PC-Beep generation. Divider == 00h disables internal PC Beep
generation and enables normal operation of the codec. Divider != 00h generates the beep tone on all Pin Complexes that are currently configured as outputs. The HD Audio spec states that the beep tone frequency = (48kHz HD
Audio SYNC rate) / (4*Divider), producing tones from 47 Hz to 12 kHz (logarithmic scale).
6.29.5.
Reg
SPDIFIn (NID = 22h): WCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
Type
23:20
R
1h
N/A (Hard-coded)
4h
N/A (Hard-coded)
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
1h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
1h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
1h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
1h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
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Field Name
Bits
R/W
Default
Reset
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
1h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
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6.30. SPDIFIn (NID = 22h): Cnvtr
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Byte 1 (Bits 7:0)
2h
Get
A0000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
FrmtNonPCM
15
Stream type: 1 = Non-PCM, 0 = PCM.
FrmtSmplRate
14
RW
0h
POR - DAFG - ULR
Sample base rate: 1 = 44.1kHz, 0 = 48kHz.
SmplRateMultp
13:11
RW
0h
POR - DAFG - ULR
Sample base rate multiple:
000b= x1 (48kHz/44.1kHz or less)
001b= x2 (96kHz/88.2kHz/32kHz)
010b= x3 (144kHz)
011b= x4 (192kHz/176.4kHz)
100b-111b Reserved
SmplRateDiv
10:8
RW
0h
POR - DAFG - ULR
Sample base rate divider:
000b= Divide by 1 (48kHz/44.1kHz)
001b= Divide by 2 (24kHz/20.05kHz)
010b= Divide by 3 (16kHz/32kHz)
011b= Divide by 4 (11.025kHz)
100b= Divide by 5 (9.6kHz)
101b= Divide by 6 (8kHz)
110b= Divide by 7
111b= Divide by 8 (6kHz)
Rsvd1
7
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - ULR
Reserved.
BitsPerSmpl
6:4
Bits per sample:
000b= 8 bits
001b= 16 bits
010b= 20 bits
011b= 24 bits
100b= 32 bits
101b-111b= Reserved
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Field Name
Bits
R/W
Default
Reset
NmbrChan
3:0
RW
1h
POR - DAFG - ULR
Total number of channels in the stream assigned to this converter:
0000b-1111b= 1-16 channels.
6.30.1.
Reg
SPDIFIn (NID = 22h): PCMCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ah
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:21
R
000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
B32
20
32 bit audio format support: 1 = yes, 0 = no.
B24
19
R
1h
N/A (Hard-coded)
24 bit audio format support: 1 = yes, 0 = no.
B20
18
R
1h
N/A (Hard-coded)
20 bit audio format support: 1 = yes, 0 = no.
B16
17
R
1h
N/A (Hard-coded)
16 bit audio format support: 1 = yes, 0 = no.
B8
16
R
0h
N/A (Hard-coded)
8 bit audio format support: 1 = yes, 0 = no.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
R12
11
384kHz rate support: 1 = yes, 0 = no.
R11
10
R
1h
N/A (Hard-coded)
192kHz rate support: 1 = yes, 0 = no.
R10
9
R
0h
N/A (Hard-coded)
176.4kHz rate support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
R9
8
R
1h
N/A (Hard-coded)
96kHz rate support: 1 = yes, 0 = no.
R8
7
R
0h
N/A (Hard-coded)
88.2kHz rate support: 1 = yes, 0 = no.
R7
6
R
1h
N/A (Hard-coded)
48kHz rate support: 1 = yes, 0 = no.
R6
5
R
1h
N/A (Hard-coded)
44.1kHz rate support: 1 = yes, 0 = no.
R5
4
R
0h
N/A (Hard-coded)
32kHz rate support: 1 = yes, 0 = no.
R4
3
R
0h
N/A (Hard-coded)
22.05kHz rate support: 1 = yes, 0 = no.
R3
2
R
0h
N/A (Hard-coded)
16kHz rate support: 1 = yes, 0 = no.
R2
1
R
0h
N/A (Hard-coded)
11.025kHz rate support: 1 = yes, 0 = no.
R1
0
R
0h
N/A (Hard-coded)
8kHz rate support: 1 = yes, 0 = no.
6.30.2.
Reg
SPDIFIn (NID = 22h): StreamCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Bh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:3
R
00000000h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
AC3
2
AC-3 formatted data support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
Float32
1
R
0h
N/A (Hard-coded)
Float32 formatted data support: 1 = yes, 0 = no.
PCM
0
R
1h
N/A (Hard-coded)
PCM-formatted data support: 1 = yes, 0 = no.
6.30.3.
Reg
SPDIFIn (NID = 22h): ConLst
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Eh
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
LForm
7
Connection list format: 1 = long-form (15-bit) NID entries, 0 = short-form (7-bit)
NID entries.
ConL
6:0
R
01h
N/A (Hard-coded)
Number of NID entries in connection list.
6.30.4.
Reg
SPDIFIn (NID = 22h): ConLstEntry0
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0200h
Field Name
Bits
R/W
Default
Reset
ConL3
31:24
R
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
00h
N/A (Hard-coded)
Unused list entry.
ConL2
23:16
R
Unused list entry.
ConL1
15:8
R
Unused list entry.
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Field Name
Bits
R/W
Default
Reset
ConL0
7:0
R
24h
N/A (Hard-coded)
Dig2Pin pin widget (0x24)
6.30.5.
Reg
SPDIFIn (NID = 22h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
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6.30.6.
Reg
SPDIFIn (NID = 22h): CnvtrID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
706h
Get
F0600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - S&DAFG - LR - PS
Reserved.
Strm
7:4
Stream ID: 0h = Converter "off", 1h-Fh = valid ID's.
Ch
3:0
RW
0h
POR - S&DAFG - LR - PS
Channel assignment ("Ch" and "Ch+1" assigned as a pair, for a stereo converter).
6.30.7.
SPDIFIn (NID = 22h): DigCnvtr
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
73Fh
73Eh
70Eh
70Dh
Get
F0E00h / F0D00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
R
00h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
Reserved.
Rsvd1
15
Reserved.
CC
14:8
CC: Category Code.
L
7
R
L: Generation Level.
PRO
6
R
PRO: Professional.
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Field Name
Bits
R/W
Default
Reset
AUDIO
5
R
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
0h
POR - DAFG - ULR
R
0h
POR - DAFG - ULR
RW
0h
POR - DAFG - ULR
/AUDIO: Non-Audio.
COPY
4
R
COPY: Copyright.
PRE
3
R
PRE: Preemphasis.
VCFG
2
R
VCFG: Validity Config.
V
1
V: Validity.
DigEn
0
Digital enable: 1 = converter enabled, 0 = converter disable.
6.30.8.
Reg
SPDIFIn (NID = 22h): InAmpCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Dh
Field Name
Bits
R/W
Default
Reset
Mute
31
R
1h
N/A (Hard-coded)
Mute support: 1 = yes, 0 = no.
Rsvd3
30:23
R
00h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
StepSize
22:16
Size of each step in the gain range: 0 to 127 = .25dB to 32dB, in .25dB steps.
Rsvd2
15
R
0h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
NumSteps
14:8
Number of gains steps (number of possible settings - 1).
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Field Name
Bits
R/W
Default
Reset
Rsvd1
7
R
0h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
Offset
6:0
Indicates which step is 0dB
6.30.9.
Reg
SPDIFIn (NID = 22h): InAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
360h
Get
B2000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:0
R
00h
N/A (Hard-coded)
Reserved.
6.30.10. SPDIFIn (NID = 22h): InAmpRight
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
350h
Get
B0000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:2
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Rsvd1
6:0
RW
0h
N/A (Hard-coded)
Reserved.
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6.30.11. SPDIFIn (NID = 22h): VS
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
7E0h
Get
FE000h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:2
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
RoundDis
1
SPDIF Input rounding disable: 0 = rounding is enabled, 1 = rounding is disabled.
LoLvSel
0
RW
0h
POR - DAFG - ULR
SPDIF Input level select: 0 = standard level, 1 = low level (input buffer enabled.
6.30.12. SPDIFIn (NID = 22h): Status
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
7E8h
Get
FE800h
Field Name
Bits
R/W
Default
Reset
RcvSmplRate
31:29
R
7h
POR - DAFG - ULR
0h
N/A (Hard-coded)
Received Sample Rate:
000b = 44.1kHz
001b = 48kHz
010b = 88.2kHz
011b = 96kHz
100b = 176.4kHz
101b = 192kHz
11Xb = Invalid Rate
Rsvd2
28.26
R
Reserved.
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Field Name
Bits
R/W
Default
Reset
OrigFS
25:22
R
0h
POR - DAFG - ULR
Original Sample Rate (per IEC60958-3 spec):
0000b = Original sampling frequency not indicated
0001b = 192kHz
0010b = 12kHz
0011b = 176.4kHz
0100b = Reserved
0101b = 96kHz
0110b = 8kHz
0111b = 88.2kHz
1000b = 16kHz
1001b = 24kHz
1010b = 11.025kHz
1011b = 22.05kHz
1100b = 32kHz
1101b = 48khz
1110b = Reserved
1111b = 44.1kHz
CA
21:20
R
0h
POR - DAFG - ULR
Clock Accuracy (per IEC60958-3 spec):
00b = Level II
01b = Level I
10b = Level III
11b = Reserved
FS
19:16
R
0h
POR - DAFG - ULR
Sample Rate (per IEC60958-3 spec):
0000b = 44.1kHz
0001b = Original sampling frequency not indicated
0010b = 48kHz
0011b = 32kHz
0100b = 22.05kHz
0101b = Reserved
0110b = 24kHz
0111b = Reserved
1000b = 88.2kHz
1001b = Reserved
1010b = 96kHz
1011b = Reserved
1100b = 176.4kHz
1101b = Reserved
1110b = 192kHz
1111b = Reserved
CN
15:12
R
0h
POR - DAFG - ULR
Channel Number (per IEC60958-3 spec):
0000b = Do not take into account
0001b = Channel 1 (Left channel for stereo channel format)
0010b = Channel 2 (Right channel for stereo channel format)
0011b-1111b = Channel 3-15
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Field Name
Bits
R/W
Default
Reset
SmplWrdL
11:9
R
0h
POR - DAFG - ULR
Sample Word Length (per IEC60958-3 spec):
000b = Word length not indicated
001b = Max length - 4
010b = Max length - 2
011b = Reserved
100b = Max length - 1
101b = Max length - 0
110b = Max length - 3
111b = Reserved
MaxWrdL
8
R
0h
POR - DAFG - ULR
Max Word Length (per IEC60958-3 spec): 0 = 20 bits, 1 = 24 bits.
NoBlkChk
7
RW
0h
POR - DAFG - ULR
Disable Sample Block Checking.
Rsvd
6:5
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
ParityLimit
4:3
SPDIFIn Parity Limit (DPLL loses lock when the set number of parity errors per
block is detected):
00b = 4 Parity errors
01b = 3 Parity errors
10b = 2 Parity errors
11b = 1 Parity error
SPRun
2
R
0h
POR - DAFG - ULR
SPDIFIn Running 0 = no signal on SPDIFIn Pin, 1 = Signal on SPDIFIn pin.
SiPerr
1
RW
0h
POR - DAFG - ULR
SPDIFIn Parity Error: 0 = No error detected, 1 = Error detected (write 0 to
clear). Not affected by ParityLimit.
CopyInv
0
RW
0h
POR - DAFG - ULR
Copyright Invert: 0 = Do not invert COPY bit, 1 = Invert COPY bit.
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6.31. DAC2 (NID = 23h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Dh
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
0h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
0h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
0h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
1h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.31.1.
Reg
DAC2 (NID = 23h): Cnvtr
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Byte 1 (Bits 7:0)
2h
Get
A0000h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:16
R
0000h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
StrmType
15
Stream type: 1 = Non-PCM, 0 = PCM.
FrmtSmplRate
14
RW
0h
POR - DAFG - ULR
Sample base rate: 1 = 44.1kHz, 0 = 48kHz.
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Field Name
Bits
R/W
Default
Reset
SmplRateMultp
13:11
RW
0h
POR - DAFG - ULR
Sample base rate multiple:
000b= x1 (48kHz/44.1kHz or less)
001b= x2 (96kHz/88.2kHz/32kHz)
010b= x3 (144kHz)
011b= x4 (192kHz/176.4kHz)
100b-111b Reserved
SmplRateDiv
10:8
RW
0h
POR - DAFG - ULR
Sample base rate divider:
000b= Divide by 1 (48kHz/44.1kHz)
001b= Divide by 2 (24kHz/20.05kHz)
010b= Divide by 3 (16kHz/32kHz)
011b= Divide by 4 (11.025kHz)
100b= Divide by 5 (9.6kHz)
101b= Divide by 6 (8kHz)
110b= Divide by 7
111b= Divide by 8 (6kHz)
Rsvd1
7
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - ULR
1h
POR - DAFG - ULR
Reserved.
BitsPerSmpl
6:4
Bits per sample:
000b= 8 bits
001b= 16 bits
010b= 20 bits
011b= 24 bits
100b= 32 bits
101b-111b= Reserved
NmbrChan
3:0
RW
Total number of channels in the stream assigned to this converter:
0000b-1111b= 1-16 channels.
6.31.2.
Reg
DAC2 (NID = 23h): OutAmpLeft
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
3A0h
BA000h
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Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Gain
6:0
RW
7Fh
POR - DAFG - ULR
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.31.3.
Reg
DAC2 (NID = 23h): OutAmpRight
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
390h
Get
B8000h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
1h
POR - DAFG - ULR
Reserved.
Mute
7
Amp mute: 1 = muted, 0 = not muted.
Gain
6:0
RW
7Fh
POR - DAFG - ULR
Amp gain step number (see OutAmpCap parameter pertaining to this widget).
6.31.4.
Reg
DAC2 (NID = 23h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
705h
Get
F0500h
Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
Reserved.
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Field Name
Bits
R/W
Default
Reset
SettingsReset
10
R
1h
POR - DAFG - ULR
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - LR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
3h
POR - DAFG - LR
Reserved.
Set
1:0
Current power state setting for this widget.
6.31.5.
Reg
DAC2 (NID = 23h): CnvtrID
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
706h
Get
F0600h
Field Name
Bits
R/W
Default
Reset
Rsvd
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - S&DAFG - LR - PS
Reserved.
Strm
7:4
Stream ID: 0h = Converter "off", 1h-Fh = valid ID's.
Ch
3:0
RW
0h
POR - S&DAFG - LR - PS
Channel assignment ("Ch" and "Ch+1" assigned as a pair, for a stereo converter).
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6.31.6.
Reg
DAC2 (NID = 23h): EAPDBTLLR
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
70Ch
Get
F0C00h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:3
R
00000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
SwapEn
2
Swap enable: 1 = L/R swap enabled, 0 = L/R swap disabled.
Rsvd1
1:0
R
0h
N/A (Hard-coded)
Reserved.
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6.32. Dig2Pin (NID = 24h): WCap
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F0009h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:24
R
00h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
0h
N/A (Hard-coded)
Reserved.
Type
23:20
Widget type:
0h = Out Converter
1h = In Converter
2h = Summing (Mixer)
3h = Selector (Mux)
4h = Pin Complex
5h = Power
6h = Volume Knob
7h = Beep Generator
8h-Eh = Reserved
Fh = Vendor Defined
Delay
19:16
R
Number of sample delays through widget.
Rsvd1
15:12
R
0h
N/A (Hard-coded)
R
1h
N/A (Hard-coded)
Reserved.
SwapCap
11
Left/right swap support: 1 = yes, 0 = no.
PwrCntrl
10
R
1h
N/A (Hard-coded)
Power state support: 1 = yes, 0 = no.
Dig
9
R
1h
N/A (Hard-coded)
Digital stream support: 1 = yes (digital), 0 = no (analog).
ConnList
8
R
0h
N/A (Hard-coded)
Connection list present: 1 = yes, 0 = no.
UnSolCap
7
R
1h
N/A (Hard-coded)
Unsolicited response support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
ProcWidget
6
R
0h
N/A (Hard-coded)
Processing state support: 1 = yes, 0 = no.
Stripe
5
R
0h
N/A (Hard-coded)
Striping support: 1 = yes, 0 = no.
FormatOvrd
4
R
0h
N/A (Hard-coded)
Stream format override: 1 = yes, 0 = no.
AmpParOvrd
3
R
0h
N/A (Hard-coded)
Amplifier capabilities override: 1 = yes, no.
OutAmpPrsnt
2
R
0h
N/A (Hard-coded)
Output amp present: 1 = yes, 0 = no.
InAmpPrsnt
1
R
0h
N/A (Hard-coded)
Input amp present: 1 = yes, 0 = no.
Stereo
0
R
1h
N/A (Hard-coded)
Stereo stream support: 1 = yes (stereo), 0 = no (mono).
6.32.1.
Reg
Dig2Pin (NID = 24h): PinCap
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
Get
F000Ch
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:17
R
0000h
N/A (Hard-coded)
R
00h
N/A (Hard-coded)
Reserved.
EapdCap
16
EAPD support: 1 = yes, 0 = no.
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Field Name
Bits
R/W
Default
Reset
VrefCntrl
15:8
RW
0h
N/A (Hard-coded)
Vref support:
bit 7 = Reserved
bit 6 = Reserved
bit 5 = 100% support (1 = yes, 0 = no)
bit 4 = 80% support (1 = yes, 0 = no)
bit 3 = Reserved
bit 2 = GND support (1 = yes, 0 = no)
bit 1 = 50% support (1 = yes, 0 = no)
bit 0 = Hi-Z support (1 = yes, 0 = no)
Rsvd1
7
R
0h
N/A (Hard-coded)
R
0h
N/A (Hard-coded)
Reserved.
BalancedIO
6
Balanced I/O support: 1 = yes, 0 = no
InCap
5
R
1h
N/A (Hard-coded)
Input support: 1 = yes, 0 = no
OutCap
4
R
0h
N/A (Hard-coded)
Output support: 1 = yes, 0 = no.
HdphDrvCap
3
R
0h
N/A (Hard-coded)
Headphone amp present: 1 = yes, 0 = no
PresDtctCap
2
R
1h
N/A (Hard-coded)
Presence detection support: 1 = yes, 0 = no.
TrigRqd
1
R
0h
N/A (Hard-coded)
Trigger required for impedance sense: 1 = yes, 0 = no
ImpSenseCap
0
R
0h
N/A (Hard-coded)
Impedance sense support: 1 = yes, 0 = no
6.32.2.
Reg
Dig2Pin (NID = 24h): PwrState
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
705h
F0500h
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Field Name
Bits
R/W
Default
Reset
Rsvd4
31:11
R
000000h
N/A (Hard-coded)
R
1h
POR - DAFG - ULR
Reserved.
SettingsReset
10
Indicates if any persistent settings in this Widget have been reset. Cleared by
PwrState 'Get', or a 'Set' to any Verb in this Widget.
Rsvd3
9
R
0h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
Error
8
Error indicator: 1 = cannot enter requested power state, 0 = no problem with
requested power state.
Rsvd2
7:6
R
0h
N/A (Hard-coded)
R
3h
POR - DAFG - ULR
Reserved.
Act
5:4
Actual power state of this widget.
Rsvd1
3:2
R
0h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
Set
1:0
Current power state setting for this widget.
Dig2Pin (NID = 24h): PinWCntrl
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
707h
Get
F0700h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:7
R
000000h
N/A (Hard-coded)
R
0h
POR - DAFG - ULR
Reserved.
OutEn
6
Output enable: 1 = enabled, 0 = disabled.
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Field Name
Bits
R/W
Default
Reset
InEn
5
RW
0h
POR - DAFG - ULR
Input enable: 1 = enabled, 0 = disabled
Rsvd1
4:0
R
0h
N/A (Hard-coded)
Reserved.
6.32.3.
Reg
Dig2Pin (NID = 24h): UnsolResp
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
708h
Get
F0800h
Field Name
Bits
R/W
Default
Reset
Rsvd2
31:8
R
000000h
N/A (Hard-coded)
RW
0h
POR - DAFG - ULR
Reserved.
En
7
Unsolicited response enable (also enables Wake events for this Widget): 1 =
enabled, 0 = disabled.
Rsvd1
6
R
0h
N/A (Hard-coded)
RW
00h
POR - DAFG - ULR
Reserved.
Tag
5:0
Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node.
6.32.4.
Reg
Dig2Pin (NID = 24h): ChSense
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Set
Get
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Byte 1 (Bits 7:0)
709h
F0900h
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Field Name
Bits
R/W
Default
Reset
PresDtct
31
R
0h
POR
Presence detection indicator: 1 = presence detected; 0 = presence not detected.
Rsvd
30:0
R
00000000h
N/A (Hard-coded)
Reserved.
6.32.5.
Dig2Pin (NID = 24h): ConfigDefault
Reg
Byte 4 (Bits 31:24)
Byte 3 (Bits 23:16)
Byte 2 (Bits 15:8)
Byte 1 (Bits 7:0)
Set
71Fh
71Eh
71Dh
71Ch
F1F00h / F1E00h / F1D00h / F1C00h
Get
Field Name
Bits
R/W
Default
Reset
PortConnectivity
31:30
RW
0h
POR
Port connectivity:
0h = Port complex is connected to a jack
1h = No physical connection for port
2h = Fixed function device is attached
3h = Both jack and internal device attached (info in all other fields refers to integrated device, any presence detection refers to jack)
Location
29:24
RW
01h
POR
Location
Bits [5..4]:
0h = External on primary chassis
1h = Internal
2h = Separate chassis
3h = Other
Bits [3..0]:
0h = N/A
1h = Rear
2h = Front
3h = Left
4h = Right
5h = Top
6h = Bottom
7h-9h = Special
Ah-Fh = Reserved
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Field Name
Bits
R/W
Default
Reset
Device
23:20
RW
Ch
POR
5h
POR
Default device:
0h = Line out
1h = Speaker
2h = HP out
3h = CD
4h = SPDIF Out
5h = Digital other out
6h = Modem line side
7h = Modem handset side
8h = Line in
9h = Aux
Ah = Mic in
Bh = Telephony
Ch = SPDIF In
Dh = Digital other in
Eh = Reserved
Fh = Other
ConnectionType
19:16
RW
Connection type:
0h = Unknown
1h = 1/8"" stereo/mono
2h = 1/4"" stereo/mono
3h = ATAPI internal
4h = RCA
5h = Optical
6h = Other digital
7h = Other analog
8h = Multichannel analog (DIN)
9h = XLR/Professional
Ah = RJ-11 (modem)
Bh = Combination
Ch-Eh = Reserved
Fh = Other
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Field Name
Bits
R/W
Default
Reset
Color
15:12
RW
2h
POR
0h
POR
7h
POR
0h
POR
Color:
0h = Unknown
1h = Black
2h = Grey
3h = Blue
4h = Green
5h = Red
6h = Orange
7h = Yellow
8h = Purple
9h = Pink
Ah-Dh = Reserved
Eh = White
Fh = Other
Misc
11:8
RW
Miscellaneous:
Bits [3..1] = Reserved
Bit 0 = Jack detect override
Association
7:4
RW
Default assocation.
Sequence
7:4
RW
Sequence.
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7. PINOUTS AND PACKAGE INFORMATION
Pinout
40
39
38
37
36
35
34
33
32
31
DVDD_LV
SPDF0/GPIO3/DMIC1
EAPD
SPDF1/GPIO0/DMIC1
SPDIF_IN
PORTB_R(IN)
PORTB_L(IN)
PORTA_R(IN)
PORTA_L(IN)
AVDD2
7.1.
1
2
3
4
5
6
7
8
9
10
40-QFN
30
29
28
27
26
25
24
23
22
21
CPVreg
CAP+
CAPVPORTB_R(HP)
PORTB_L(HP)
PORTA_R(HP)
PORTA_L(HP)
AVDD1
VREFOUT-C
SENSE_B
PORTE_L
PORTE_R
PORTF_L
PORTF_R
PORTC_L
PORTC_R
VrefFilt
CAP2
VREFOUT-E
11
12
13
14
15
16
17
18
19
20
DMIC_CLK/GPIO1
DMIC0/GPIO2
SDATA_OUT
BITCLK
SDATA_IN
DVDD
SYNC
RESET#
PCBeep
SENSE_A
Figure 12. 40-Pin Pinout
7.2.
Pin Table
Pin Name
Pin Function
I/O
Internal Pull-up
Pull-down
Location
DMIC_CLK/GPIO1
Digital Microphone clock output or GPIO 1
I/O(Digital)
60K Pull-Down
1
DMIC0/GPIO2
Digital Microphone data input or GPIO 2
I/O(Digital)
60K Pull-Down
2
SDATA_OUT
HD Audio Serial Data output from controller
I(Digital)
None
3
BITCLK
HD Audio Bit Clock
I(Digital)
None
4
SDATA_IN
HD Audio Serial Data Input to controller
I/O(Digital)
None
5
Table 31. 40-Pin Table
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Pin Name
Pin Function
I/O
Internal Pull-up
Pull-down
Location
DVDD
Digital Vdd= 3.3V
I(Power)
None
6
SYNC
HD Audio Frame Sync
I(Digital)
None
7
RESET#
HD Audio Reset
I(Digital)
None
8
PCBeep
PC Beep input
I(Analog)
None
9
SENSE_A
Jack insertion detection
I(Analog)
None
10
SENSE_B
Jack insertion detection
I(Analog)
None
11
PORTE_L
Port E Left
I/O(Analog)
None
12
PORTE_R
Port E Right
I/O(Analog)
None
13
PORTF_L
Port F Left
I/O(Analog)
None
14
PORTF_R
Port F Right
I/O(Analog)
None
15
PORTC_L
Port C Left
I/O(Analog)
None
16
PORTC_R
Port C Right
I/O(Analog)
None
17
VREFFILT
Analog Virtual Ground
O(Analog)
None
18
CAP 2
ADC reference bypass capacitor
O(Analog)
None
19
VREFOUT-E
Reference Voltage out drive (intended for mic bias)
O(Analog)
None
20
VREFOUT-C
Reference Voltage out drive (intended for mic bias)
O(Analog)
None
21
AVDD1
Analog Vdd=5.0V or 3.3V
I(Analog)
None
22
PORTA_L (HP)
Port A Output Left
O(Analog)
None
23
PORTA_R (HP)
Port A Output Right
O(Analog)
None
24
PORTB_L (HP)
Port B Output Left
O(Analog)
None
25
PORTB_R (HP)
Port B Output Right
O(Analog)
None
26
V-
Charge-pump negative output
O(Analog)
None
27
CAP-
Charge-pump flying cap -
I(Analog)
None
28
CAP+
Charge-pump flying cap +
O(Analog)
None
29
CPVreg
Charge-pump LDO decoupling cap
I(Analog)
None
30
AVDD2
Analog Supply for VREG
I(Power)
None
31
PORTA_L(IN)
Port A Left Input
I(Analog)
None
32
PORTA_R(IN)
Port ARight Input
I(Analog)
None
33
PORTB_L(IN)
Port B Left Input
I(Analog)
None
34
PORTB_R(IN)
Port B Right Input
I(Analog)
None
35
SPDIFIN
SPDIF Input
I (Digital)
60K Pull-Down
36
SPDF1/GPIO0/
DMIC1
SPDIF output, GPIO0, or digital microphone input
I/O(Digital)
60K Pull-Down
37
EAPD
External Amplifier Power-Down (active low)
I/O(Digital)
60K Pull-Up
38
SPDF0/GPIO3/
DMIC1
SPDIF output, GPIO3, or digital microphone input
I/O(Digital)
60K Pull-Down
39
DVDD_LV
1.5V Digital Core Regulator Filter Cap
O(Power)
None
40
Table 31. 40-Pin Table
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7.3.
40QFN Package Outline and Package Dimensions
Package dimensions are kept current with JEDEC Publication No. 95
Figure 13. 40QFN Package Diagram
7.4.
Pb Free Process- Package Classification Reflow Temperatures
Package Thickness
Volume mm3 <350
Volume mm3 350 - 2000
Volume mm3 >2000
<1.6mm
260 + 0 oC*
260 + 0 oC*
260 + 0 oC*
1.6mm - 2.5mm
260 + 0 oC*
250 + 0 oC*
245 + 0 oC*
> or = 2.5mm
250 + 0 oC*
245 + 0 oC*
245 + 0 oC*
*Tolerance: The device manufacturer/supplier shall assure process compatibility up to and including the stated classification
temperature (this means Peak reflow temperature +0 oC. For example 260 oC+0 oC) at the rated MSL level.
Table 32. Reflow
Note: IDT’s package thicknesses are <2.5mm and <350 mm3, so 260 applies in every case.
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8. DISCLAIMER
While the information presented herein has been checked for both accuracy and reliability, manufacturer assumes no responsibility for either its use or for the infringement of any patents or other rights
of third parties, which would result from its use. No other circuits, patents, or licenses are implied.
This product is intended for use in normal commercial applications. Any other applications, such as
those requiring extended temperature range, high reliability, or other extraordinary environmental
requirements, are not recommended without additional processing by manufacturer. Manufacturer
reserves the right to change any circuitry or specifications without notice. Manufacturer does not
authorize or warrant any product for use in life support devices or critical medical instruments.
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9. DOCUMENT REVISION HISTORY
Revision
Date
0.9
October 2011
Initial Release
October 2011
ZB silicon default value changed from 5h to 6h in the AFG: AnaCapless VRegSel (bits 27:24).
Added PVdd max value to electrical characteristics section. Removed 92HD66C3X3 part number
option, it will not be offered. Corrected WLCSP column in pinout tables, there is no WLCSP option
for this device.
0.91
Description of Change
6024 Silver Creek Valley Road
San Jose, California 95138
DISCLAIMER Integrated Device Technology, Inc. (IDT) and its subsidiaries reserve the right to modify the products and/or specifications described herein at any time and at IDT’s sole discretion. All information in this document, including descriptions of product features and performance, is subject to change without notice. Performance specifications and the operating parameters of the described products are determined
in the independent state and are not guaranteed to perform the same way when installed in customer products. The information contained
herein is provided without representation or warranty of any kind, whether express or implied, including, but not limited to, the suitability of IDT’s
products for any particular purpose, an implied warranty of merchantability, or non-infringement of the intellectual property rights of others. This
document is presented only as a guide and does not convey any license under intellectual property rights of IDT or any third parties.
IDT’s products are not intended for use in life support systems or similar devices where the failure or malfunction of an IDT product can be
reasonably expected to significantly affect the health or safety of users. Anyone using an IDT product in such a manner does so at their own
risk, absent an express, written agreement by IDT.
Integrated Device Technology, IDT and the IDT logo are registered trademarks of IDT. Other trademarks and service marks used herein, including protected names, logos and designs, are the property of IDT or their respective third party owners.