NJRC NJM2198M

NJM2198
PRELIMINARY
SRS 3D SURROUND AUDIO PROCESSOR
■GENERAL DESCRIPTION
The NJM2198 is a SRS 3D surround audio
processor regenerating the 3D surround sound with
only two speakers.
It regenerates 3D surround sound from both of
monaural and stereo input.
The features of wide operating voltage range, wide
dynamic range, low output noise are suitable for any
audio applications.
■PACKAGE OUTLINE
NJM2198L
■FEATURES
● Operating Voltage
● Low Supply Current
● Low Output Noise
● BYPASS Gain
● BYPASS FUNCTION
● WIDTH control
● Internal Mode Control Switch
● Bipolar Technology
● Package Outline
(4.7 to 13V)
(7.8mA typ. at 3D Stereo mode)
(32µVrms typ. at 3D Stereo mode)
(0dB typ.)
(Through)
NJM2198M
(2bit)
SDIP22,DMP24
The SRS technology right incorporated in the NJM2198 are owned by SRS Labs, a U.S. Corporation and licensed to New Japan
, are trademarks of SRS
Radio Co., Ltd. SRS is protected under U.S. and foreign patents issued and/or pending. SRS and the
Labs, Inc. in the United States and selected foreign countries. Neither the purchase of the NJM2198, nor the corresponding sale of
audio enhancement equipment conveys the right to sell commercialized recordings made with any SRS technology.
SRS Labs requires that all users of the NJM2198 must enter into a license agreement directly with SRS Labs if the royalty is not
included in the purchase price. SRS Labs also requires any users to comply with all rules and regulations as outlined in the SRS
Trademark Usage Manual.
For further information, please contact:
SRS Labs, Inc.
2909 Daimler Street. Santa Ana, CA 92705 USA
Tel:714-442-1070
Fax:714-852-1099
http://www.srslabs.com
-1-
NJM2198
■ ABSOLUTE MAXIMUM RATING (Ta=25°C)
PARAMETER
SYMBOL
RATINGS
UNIT
Supply Voltage
V+
15
V
Power Dissipation
PD
Operating Temperature Range
Topr
-40 to +85
°C
Storage Temperature Range
Tstg
-40 to +125
°C
(SDIP22)
(SDMP24)
700
700
mW
■ELECTRICAL CHARACTERISTICS (V+=12V,Ta=25°C, VIN=-10dBV(316mVrms) unless otherwise noted)
TEST CONDITION
PARAMETER
Operating
Voltage
Operating
Current
Reference
Voltage
Maximum
Input Voltage
Channel
Balance
-2-
SYMBOL
INPUT
VREF
VINMAX
CHBAL
MODE
WIDTH
VOLUME
MIN.
TYP.
MAX.
UNIT
V
L
R
-
-
-
-
-
4.7
12.0
13.0
-
-
-
BYPASS
-
2.9
5.7
8.6
-
-
-
3D
Stereo
MAX
3.9
7.8
11.7
-
-
-
3D Mono
-
3.5
7.0
10.5
-
-
-
-
-
5.8
6.0
6.2
f=1kHz
T.H.D.=3%
VIN
-
VIN
L
R
BYPASS
-
10.0
(2.51)
12.0
(3.98)
-
f=125Hz
T.H.D.=3%
VIN
-
VIN
L
R
3D
Stereo
MAX
-1.5
(0.84)
0.5
(1.06)
-
f=125Hz
T.H.D.=3%
VIN
-
VIN
L
R
3D
Stereo
MIN
-
11.5
(3.76)
-
f=125Hz
T.H.D.=3%
VIN
VIN
-
L
R
3D
Stereo
MAX
-
0.45
(1.05)
-
f=125Hz
T.H.D.=3%
VIN
VIN
VIN
VIN
L
R
3D
Stereo
MAX
-
11.9
(3.94)
-
f=125Hz
T.H.D.=3%
VIN
VIN
-VIN
-VIN
L
R
3D
Stereo
MAX
-7.5
(0.42)
-5.5
(0.53)
-
f=1kHz
T.H.D.=3%
VIN
VIN
L
R
3D Mono
-
-4.6
(0.59)
0.0
(1.0)
-
f=1kHz
L-R Output
VIN
VIN
-
L
R
3D
Stereo
MAX
-1.0
0.0
1.0
V+
Icc
OUTPUT
No Signal
V+/2
mA
V
dBV
(Vrms)
dB
NJM2198
■ELECTRICAL CHARACTERISTICS (V+=12V,Ta=25°C, VIN=-10dBV(316mVrms) unless otherwise noted)
TEST CONDITION
PARAMETER
Output Noise
Total
Harmonic
Distortion
Bypass Gain
SRS Gain
SYMBOL
INPUT
VNOISE
T.H.D
GBypass
GSRS
L
R
0
0
L
R
BYPASS
-
-
-110
(3.16)
-95
(17.8)
Rg=0Ω
A-Weight
0
0
L
R
3D
Stereo
MAX
-
-90
(31.6)
-85
(56.2)
Rg=0Ω
A-Weight
0
0
L
R
3D Mono
-
-
-90
(31.6)
-85
(56.2)
f=1kHz
VIN
-
VIN
L
R
BYPASS
-
-
0.005
0.01
f=1kHz
VIN
-
VIN
L
R
3D
Stereo
MAX
-
0.1
1.0
f=1kHz
VIN
-
VIN
L
R
3D Mono
-
-
0.1
1.0
f=1kHz
VIN
-
VIN
L
R
BYPASS
-
-1.0
0.0
1.0
f=125Hz
VIN
-
VIN
L
R
3D
Stereo
MAX
9.4
11.4
13.4
f=125Hz
VIN
-
VIN
L
R
3D
Stereo
MIN
-1.5
0.5
2.5
f=125Hz
VIN
VIN
-
L
R
3D
Stereo
MAX
6.8
8.8
10.8
VIN
VIN
L
3D Mono
-
1.3
3.3
5.3
VIN
VIN
R
3D Mono
-
-6.9
-4.9
-2.9
VIN =
High Level
-
-
-
-
-
2.0
-
V+
VIN =
Low Level
-
f=1kHz
VMODE
MAX.
Rg=0Ω
A-Weight
f=1kHz
Mode Select
Control
Voltage
TYP.
MODE
WIDTH
VOLUME
MIN.
OUTPUT
UNIT
dB
(µVrms)
%
dB
dB
V
-
-
-
-
0.0
-
0.7
■MODE SWITCH
MODE
MODE1
BYPASS
L
3D-Sound
H
MODE
MODE2
3D Stereo
L
3D Mono
H
-3-
NJM2198
■PIN CONFIGURATION
22
21
20
19
18
17
16
15
14
13
12
1
2
3
4
5
6
7
8
9
10
11
SDIP- 22
24
23
22
21
20
19
18
17
16
15
14
13
1
2
3
4
5
6
7
8
9
10
11
12
DMP- 24
VOL2
VOL1
MODE1
MODE2
13. MODE2
14. TP2
15.ROUT
16.LOUT
17.VOL2
18.VOL1
19.TP3
20.FIL3
21.FIL2
22.FIL1
23.RIN
24.LIN
FIL3
1.TP1
2.FIL4
3.FIL5
4.FIL6
5.FIL7
6.FIL8
7.FIL9
8. VrefIN
9. Vref
10. V+
11. GND
12. MODE1
FIL2
12.MODE2
13.ROUT
14.LOUT
15.VOL2
16.VOL1
17.TP
18.FIL3
19.FIL2
20.FIL1
21.RIN
22.LIN
FIL1
■BLOCK DIAGRAM (DMP-24)
1.FIL4
2.FIL5
3.FIL6
4.FIL7
5.FIL8
6.FIL9
7.VrefIN
8.Vref
9.V+
10.GND
11.MODE1
22
21
20
17
18
12
13
BYPASS
24
16 LOUT
3D-MONO
50k
LIN
3D-STEREO
VREF
BYPASS
23
15 ROUT
3D-MONO
50k
RIN
3D-STEREO
50k
VREF
50k
9
Vref
VREF
VREF
8 VrefIN
V+
VREF
-4-
3
4
5
6
7
10
11
FIL4
FIL5
FIL6
FIL7
FIL8
FIL9
V+
GND
GND
2
NJM2198
■TERMINAL DESCRIPTION
PIN No.
SYMBOL
1
TP1
FUNCTION
EQUIVALENT CIRCUIT
Test Pin
VOLTAGE
0V
V+
50
V+
FIL4
Filter Input
V+/2
50
2
V+
FIL5
Filter Input
V+/2
1.96k
3
3.92k
VREF
V+
4
FIL6
Filter Input
V+/2
150
-5-
NJM2198
■TERMINAL DESCRIPTION
PIN No.
SYMBOL
FUNCTION
EQUIVALENT CIRCUIT
VOLTAGE
V+
5
FIL7
Filter Input
V+/2
76k
V+
FIL8
Filter Input
V+/2
3.74k
6
73.6k
VREF
V+
7
FIL9
Filter Input
V+/2
400
50k
V+
8
VREFIN
Reference Voltage Input
V+/2
50k
400
-6-
NJM2198
■TERMINAL DESCRIPTION
PIN No.
SYMBOL
FUNCTION
EQUIVALENT CIRCUIT
V+
50
V+
VOLTAGE
VREF
Reference Voltage
V+/2
10
VCC
Power Supply
V+
11
GND
GND
0V
50
9
V+
MODE1
Mode Control
0V
150
50k
12
VREF
-7-
NJM2198
■TERMINAL DESCRIPTION
PIN No.
SYMBOL
FUNCTION
EQUIVALENT CIRCUIT
VOLTAGE
V+
13
MODE2
Mode Control
V+/2
50k
150
VREF
14
TP2
Test Pin
0V
V+
50
V+
ROUT
Rch Output
V+/2
50
15
V+
50
V+
LOUT
Lch Output
V+/2
50
16
-8-
NJM2198
■TERMINAL DESCRIPTION
PIN No.
SYMBOL
FUNCTION
EQUIVALENT CIRCUIT
VOLTAGE
V+
17
VOL2
WIDTH VR Input
V+/2
150
V+
50
V+
18
VOL1
WIDTH VR Input
V+/2
19
TP3
50
150
Test Pin
0V
V+
20
FIL3
Filter Input
V+/2
3.01k
-9-
NJM2198
■TERMINAL DESCRIPTION
PIN No.
SYMBOL
FUNCTION
EQUIVALENT CIRCUIT
VOLTAGE
V+
21
FIL2
Filter Input
V+/2
1.5k
V+
50
V+
22
FIL1
Filter Input
V+/2
50
14.33k
V+
23
RIN
Rch Input
V+/2
50k
150
VREF
V+
24
LIN
Lch Input
V+/2
50k
150
VREF
- 10 -
NJM2198
17
16
15
14
13
12
VOL2
LOUT
ROUT
MODE2
C9
18
VOL1
+
10u
10k
R2
10u
3D Stereo
10kB
C10
L ch OUTPUT
10u
C11
WIDTH VR
Min
Miax
0.47u
C14
0.33u
C17
+
TP
19
+
3D Mono
FIL3
0.01u
C13
20
FIL2
0.033u
21
FIL1
C12
R ch INPUT
10u
22
RIN
C15
L ch INPUT
10u
C16
+
LIN
+
R ch OUTPUT
■ APPLICATION CIRCUIT
NJM2198
MODE1
10
11
+
C8
+
100u
12V
1u
C6
+
10u
0.1u
C5
C4
C3
C2
0.1u
+
10k
GND
9
10u
V+
8
Bypass
R1
Vref
7
C7
VrefIN
6
V+
FIL9
5
C18
FIL8
4
0.0047u
FIL7
3
0.22u
FIL6
2
0.01u
FIL5
1
C1
FIL4
3D Sound
SDIP- 22
Parts No.
C1,C5
C2,C13
C3
C4
C6
C7
Value
0.1µF
0.01µF
0.22µF
0.047µF
1µF
100µF
Tolerance
±5%
±5%
±5%
±5%
±20%
—
Parts No.
C8,C9,C10,C11,C15,C16,C18
C12
C14
C17
R1,R2
Value
10µF
0.033µF
0.47µF
0.33µF
10k
Tolerance
±20%
±5%
±5%
±5%
±5%
- 11 -
NJM2198
21
20
19
18
17
16
15
14
13
VOL1
VOL2
LOUT
ROUT
TP2
MODE2
C9
22
10u
10k
R2
C10
10u
L ch OUTPUT
10u
10kB
C11
WIDTH VR
Min
Miax
0.47u
C14
23
TP3
0.33u
C17
24
FIL3
+
FIL2
0.01u
3D Stereo
+
FIL1
C13
0.033u
R ch INPUT
10u
C12
+
RIN
C15
L ch INPUT
10u
C16
+
3D Mono
LIN
+
R ch OUTPUT
■ APPLICATION CIRCUIT
NJM2198
V+
10k
+
10u
12
R1
11
+
12V
1u
C6
+
10u
0.1u
C5
C4
0.22u
C3
C2
0.1u
+
10
Bypass
C8
9
MODE1
Vref
8
100u
VrefIN
7
C7
FIL9
6
GND
FIL8
5
V+
FIL7
4
C18
FIL6
3
0.0047u
FIL5
2
0.01u
FIL4
1
C1
TP1
3D Sound
DMP- 24
Parts No.
C1,C5
C2,C13
C3
C4
C6
C7
- 12 -
Value
0.1µF
0.01µF
0.22µF
0.047µF
1µF
100µF
Tolerance
±5%
±5%
±5%
±5%
±20%
—
Parts No.
C8,C9,C10,C11,C15,C16,C18
C12
C14
C17
R1,R2
Value
10µF
0.033µF
0.47µF
0.33µF
10k
Tolerance
±20%
±5%
±5%
±5%
±5%
NJM2198
■TYPICAL CHARACTERISTICS
NJM2198 GAIN STRUCTURE
a:BYPASS Mode
b:3D-Stereo Mode
c:3D-Stereo Mode
Vin=-10dBV Lch → Vout=Lch
Vin=-10dBV Lch → Vout=Lch
Vin=-10dBV Lch → Vout=Rch
10
5
b
0
Gain [dBV]
c
-5
-10
a
-15
-20
10
100
1k
Frequency f [Hz]
10k
100k
NJM2198 GAIN STRUCTURE
3D-MONO Mode
a:Vin=-10dBV L+Rch → Vout=Lch
b:Vin=-10dBV L+Rch → Vout=Rch
10
5
Gain [dBV]
0
b
a
-5
-10
-15
-20
10
100
1k
10k
100k
Frequency f [Hz]
[CAUTION]
The specifications on this databook are only
given for information , without any guarantee
as regards either mistakes or omissions. The
application circuits in this databook are
described only to show representative usages
of the product and not intended for the
guarantee or permission of any right including
the industrial rights.
- 13 -