FAIRCHILD FMS6366

FMS6366
Selectable YPbPr HD/SD 4:2:2 Video Filter Driver
with Y, C and Composite Outputs
Features
Description
■
■
■
■
■
■
■
The FMS6366 Filter Driver offers comprehensive filtering for set
top box or DVD applications. This part consists of triple 6th
order filters with selectable cutoffs for SD or HD. The filters are
in a 4:2:2 configuration such that Y1 switches between 8MHz
(SD) and 30MHz (HD). The Pb and Pr channels switch between
4MHz (SD) and 15MHz (HD). The required delay compensation
must be performed in the digital domain prior to filtering by the
FMS6366.
Pin-compatible version of the FMS6419 for 4:2:2 video
Requires external delay compensation
6th order standard/high definition video filters
YPbPr 4:2:2 filters (8/30MHz : 4/15MHz : 4/15MHz)
YC standard definition filters (8MHz)
Composite summer output
DC-coupled inputs, AC-coupled outputs
■ Outputs provide 6dB gain to 150Ω AC-coupled loads
■ Dual multiplexed inputs
■ 0.3% differential gain with 0.1° differential phase
■ 5V only
An additional S-video path is provided for SD signals. The Y2
and C signals are both filtered at 8MHz. A composite summer is
included to provide a composite output based on Y2 and C.
A 2:1 multiplexer is provided on each filter channel with separate
select lines for the YPbPr and YC signals.
■ Lead free (Pb-free) packaging
All inputs accept DC-coupled ground referenced 1Vpp input signals.
The filter outputs include +6dB of gain resulting in a 2Vpp signal
into an AC-coupled dual video load (75Ω).
Applications
■
■
■
■
Cable set-top boxes
Satellite set-top boxes
DVD players
HDTV
■ Personal Video Recorders (PVR)
■ Video On Demand (VOD)
Block Diagram
Y1INA
Y1INB
PbINA
PbINB
Y1OUT
6dB
PbOUT
6dB
PrOUT
4MHz, 15MHz
PrINA
PrINB
6dB
8MHz, 30MHz
4MHz, 15MHz
INA/N_INB
HD/N_SD
Y2IN
AUXIN
6dB
8MHz
Y2OUT
CVOUT
CIN
0.5V
(Internal)
6dB
8MHz
COUT
YC/N_AUX
FMS6366 Rev. 2C
1
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©2005 Fairchild Semiconductor Corporation
FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
August 2005
FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
DC Specifications
(TC = 25°C, Vi = 1VPP; VCC = 5.0V,all inputs AC coupled with 0.1µF, all outputs AC coupled with 220µF into 150Ω, referenced to
400kHz; unless otherwise noted)
Symbol Parameter
Conditions
ICC
Supply Current1
VCC no load
Min
Typ Max Units
125
Vi
Input Voltage Max
Reference to ground
Vil
Digital Input Low1
INA, HD, YC
0
Vih
Digital Input
High1
INA, HD, YC
2.4
PSRR
PSRR (all channels)
150
1.3
DC
mA
V
0.8
VCC
-40
V
V
dB
Standard Definition Electrical Specifications
(TC = 25°C, Vi = 1VPP; VCC = 5.0V, HD/N_SD = 0, RSOURCE = 37.5Ω, all inputs AC coupled with 0.1µF, all outputs AC coupled with
220µF into 150Ω, referenced to 400kHz; unless otherwise noted)
Symbol Parameter
AVSD
f1dBSD4
Conditions
SD Gain1
-1dB Bandwidth for
SD1
f1dBSD2
fCSD4
-3dB Bandwidth for SD
Min
5.4
6.0
Y1, Y2, C
4.0
7.4
Pb, Pr
2.0
3.9
MHz
8.5
MHz
4.5
MHz
55
dB
Y1, Y2, C
Pb, Pr
fCSD2
Typ Max Units
All channels
6.6
dB
MHz
fSBSD
Attenuation: SD (stopband reject)1
All channels at f = 27MHz
dG
Differential Gain
All channels
0.3
%
dφ
Differential Phase
All channels
0.1
°
THD
Output Distortion (all channels)
37
VOUT = 1.8Vpp at 1MHz
0.15
%
XTALKYPbPr Crosstalk (channel-to-channel)
VOUT = 1.8Vpp at 1MHz, YPbPr
-70
dB
XTALKYCCV Crosstalk (channel-to-channel)
VOUT = 1.8Vpp at 1MHz, YCCV
-62
dB
INMUXISO
INMUX Isolation
VIN = 1Vpp at 1MHz
-70
dB
SNR
Signal-to-Noise Ratio
All channels, NTC-7 weighting 4.2MHz
lowpass, 100kHz highpass
70
dB
tpdSD4
Input to Output Prop Delay for SD
Y1, Y2, C, CV In to Out at 400kHz
75
ns
Pb, Pr In to Out at 400kHz
135
ns
t42SDYPbPr
4:2:2 Filter delay
(compensate in the digital domain)
Y1 to Pb/Pr delay
60
ns
tCLDCV
Chroma-Luma delay CVOUT1
f = 3.58MHz
-35
-4
35
ns
tCLGCV
Chroma-Luma gain CVOUT1
f = 3.58MHz
95
100
105
%
tpdSD2
High Definition Electrical Specifications
(TC = 25°C, Vi = 1Vpp; VCC = 5.0V, HD/N_SD = 1, RSOURCE = 37.5Ω, all inputs AC coupled with 0.1µF, all outputs AC coupled with
220µF into 150Ω, referenced to 400kHz; unless otherwise noted)
Symbol Parameter
Conditions
Gain1
AVHD
HD
f1dBHD4
-1dB Bandwidth for HD1
f1dBHD2
fCHD4
-3dB Bandwidth for HD
Min
Y1, Pb, Pr in HD Mode
5.4
6.0
Y1
20
27
MHz
Pb, Pr
10
14.2
MHz
31.5
MHz
16
MHz
Y1
fCHD2
Pb, Pr
fSBHD
Attenuation: HD (stopband
tpdHD4
Prop Delay for HD
tpdHD2
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reject)1
Typ Max Units
All Channels at f = 74.25MHz
dB
40
dB
Y1 delay In to Out at 400kHz
25
ns
Pb, Pr delay In to Out at 400kHz
40
ns
2
35
6.6
FMS6366 Rev. 2C
(TC = 25°C, Vi = 1Vpp; VCC = 5.0V, HD/N_SD = 1, RSOURCE = 37.5Ω, all inputs AC coupled with 0.1µF, all outputs AC coupled with
220µF into 150Ω, referenced to 400kHz; unless otherwise noted)
Symbol Parameter
Conditions
t42HDYPbPr
Y1 to Pb/Pr delay
4:2:2 Filter delay
(compensate in the digital domain)
Min
Typ Max Units
15
ns
Note:
1. 100% tested at 25°C
Absolute Maximum Ratings (beyond which the device may be damaged)
Parameter
Min
Max
Units
DC Supply Voltage
-0.3
6
V
Analog and Digital I/O
-0.3
VCC + 0.3
V
50
mA
Output Current Any One Channel, Do Not Exceed
Reliability Information
Parameter
Min
Typ
Junction Temperature
Storage Temperature Range
-65
Lead Temperature (Soldering, 10s)
Max
150
°C
150
°C
300
Thermal Resistance (ΘJA), JEDEC Standard Multi-layer Test
Boards, Still Air
Units
47
°C
°C/W
Recommended Operating Conditions
Parameter
Min
Operating Temperature Range
VCC Range
FMS6366 Rev. 2C
Typ
0
4.75
3
5.0
Max
Units
70
°C
5.25
V
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FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
High Definition Electrical Specifications (Continued)
FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
Pin Configuration
A_NB
1
PrINA
2
PrINB
3
Y1INA
4
Pin Descriptions
28
FMS6366
28-pin
SSOP
HD/N_SD
27
VSS
26
VCC
25
VSS
Y1INB
5
24
PrOUT
PbINA
6
23
Y1OUT
PbINB
7
22
PbOUT
YC/N_AUX
8
21
Y2OUT
NC
9
20
VCC
NC
10
19
COUT
VSS
11
18
CVOUT
AUXIN
12
17
NC
CIN
13
16
VSS
Y2IN
14
15
NC
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Pin
# Pin
Type
Description
1
A_NB
INPUT
Logic input selects between channel
<A> or <B>. (1): A input, (0): B input
2
PrINA
INPUT
Pr input, channel A
3
PrINB
INPUT
Pr input, channel B
4
Y1INA
INPUT
Y1 (Luminance) input, channel A.
Must include sync.
5
Y1INB
INPUT
Y1 (Luminance) input, channel B.
Must include sync.
6
PbINA
INPUT
Pb input, channel A
7
PbINB
INPUT
Pb input, channel B
8
YC/N_AUX
INPUT
Logic input selects between YC and AUX.
(1): YC input, (0): AUX input
9
NC
10
NC
11
VSS
INPUT
Must be tied to ground, do not float
12
AUXIN
INPUT
Composite video input
13
CIN
INPUT
Chrominance input
14
Y2IN
INPUT
Y2 (Luminance) input. Must include sync.
15
NC
16
VSS
INPUT
Must be tied to ground, do not float
17
NC
18
CVOUT
OUTPUT
Filtered composite video output
No Connect, leave floating
No Connect, leave floating
No Connect, leave floating
No Connect, leave floating
19
COUT
OUTPUT
Filtered chrominance output
20
VCC
INPUT
+5V supply, do not float
21
Y2OUT
OUTPUT
Y2 output
22
PbOUT
OUTPUT
Pb output
23
Y1OUT
OUTPUT
Y1 output
24
PrOUT
OUTPUT
Pr output
25
VSS
INPUT
Must be tied to ground, do not float
26
VCC
INPUT
+5V supply, do not float
27
VSS
INPUT
Must be tied to ground, do not float
28
HD/N_SD
INPUT
Logic input selects between HD and
SD mode. (1): HD, (0): SD
4
FMS6366 Rev. 2C
(TC = 25°C, Vi = 1VPP; VCC = 5.0V, HD/N_SD = 0, RSOURCE = 37.5Ω, all inputs AC coupled with 0.1µF, all outputs AC coupled with
220µF into 150Ω, referenced to 400kHz; unless otherwise noted)
Figure 2. Frequency Response Y1, Y2, C, CV
Figure 1. Frequency Response Pb, Pr
20
10
0
1
Mkr Frequency
Gain
Ref 400kHz
1 3.99MHz
6dB
-1dB BW
0
-3dB BW
-69.31dB
-10
2
3
Gain (dB)
-10
-20
4.59MHz
27MHz
Gain (dB)
2
10
fSB = Gain(ref) – Gain(3) = 75.31dB
-30
-40
-50
-60
3
1
-20
-30
Mkr Frequency
Gain
-40
Ref 400kHz
1 7.72MHz
6dB
-1dB BW
2
3
-50
-70
8.92MHz
27MHz
5
10
20
15
25
-60
400kHz
30
5
10
Frequency (MHz)
20
25
30
Figure 4. Group Delay vs. Freq. Y1, Y2, C, CV
40
30
20
10
0
-10
-20
-30
-40
-50
-60
Delay (ns)
Delay (ns)
75
50
25
0
-25
-50
-75
-100
-125
-150
-175
-200
-225
15
Frequency (MHz)
Figure 3. Group Delay vs. Freq. Pb, Pr
1
1 = 8.2MHz (66.42ns)
1
1 = 8.2MHz (27.82ns)
-70
400kHz
5
10
20
15
25
30
400kHz
5
Frequency (MHz)
10
20
15
25
30
Frequency (MHz)
Figure 5. Noise vs. Frequency Pb, Pr
Figure 6. Noise vs. Frequency Y1, Y2, C, CV
-65
-65
-70
-70
-75
-75
-80
-80
Noise (dB)
Noise (dB)
3
-3dB BW
-48.18dB
fSB = Gain(ref) – Gain(3) = 54.18dB
-80
400kHz
-85
-90
-95
-85
-90
-95
-100
-100
-105
-105
-110
-110
0
1.0
2.0
3.0
4.0
5.0
0
Frequency (MHz)
FMS6366 Rev. 2C
2
1.0
2.0
3.0
4.0
5.0
Frequency (MHz)
5
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FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
Standard Definition Typical Performance Characteristics
(TC = 25°C, Vi = 1VPP; VCC = 5.0V, HD/N_SD = 0, RSOURCE = 37.5Ω, all inputs AC coupled with 0.1µF, all outputs AC coupled with
220µF into 150Ω, referenced to 400kHz; unless otherwise noted)
Figure 8. Differential Phase Pb, Pr
Figure 7. Differential Gain Pb, Pr
0.2
0.05
NTSC
Differential Phase (deg)
Differential Gain (%)
NTSC
0
-0.2
-0.4
-0.6
-0.8
Min = -0.39
Max = 0.00
ppMax = 0.39
-1.0
0
-0.05
-0.10
-0.15
-0.20
2nd
3rd
4th
5th
6th
1st
Figure 9. Differential Gain Y1, Y2, C, CV
3rd
4th
5th
6th
0.05
NTSC
Differential Phase (deg)
NTSC
Differential Gain (%)
2nd
Figure 10. Differential Phase Y1, Y2, C, CV
0.05
0
-0.05
-0.10
-0.15
-0.20
Min = -0.10
Max = 0.00
ppMax = 0.10
-0.25
1st
Min = -0.17
Max = 0.03
ppMax = 0.21
-0.25
0
-0.05
-0.10
-0.15
-0.20
Min = -0.19
Max = 0.00
ppMax = 0.19
-0.25
1st
2nd
3rd
4th
5th
6th
1st
2nd
3rd
4th
5th
6th
Figure 11. Chroma - Luma Gain vs.
Chroma - Luma Delay
110
Chroma - Luma Gain (%)
FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
Standard Definition Typical Performance Characteristics
105
100
95
Chroma Gain = 99.1%
Chroma Delay = -0.5ns
90
-40
-20
0
20
40
Chroma - Luma Delay (ns)
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6
FMS6366 Rev. 2C
(TC = 25°C, Vi = 1Vpp; VCC = 5.0V, HD/N_SD = 1, RSOURCE = 37.5Ω, all inputs AC coupled with 0.1µF, all outputs AC coupled with
220µF into 150Ω, referenced to 400kHz; unless otherwise noted)
Figure 13. Frequency Response Y1, Y2, C, CV
Figure 12. Frequency Response Pb, Pr
10
10
Mkr Frequency
Gain
Ref 400kHz
1 14.59MHz
6dB
-1dB BW
0
-3dB BW
-62.66dB
-10
1
Gain (dB)
-10
2
3
-20
16.58MHz
74.25MHz
Gain (dB)
2
0
fSB = Gain(ref) – Gain(3) = 68.66dB
-30
-40
-50
2
-20
-30
-40
3
1
-60
-50
Mkr Frequency
Gain
Ref 400kHz
1 26.57MHz
6dB
-1dB BW
2
3
32.07MHz
74.25MHz
-3dB BW
-35.36dB
3
fSB = Gain(ref) – Gain(3) = 41.36dB
-70
400kHz
20
40
60
80
100
400kHz
20
Frequency (MHz)
Figure 14. Group Delay vs. Freq. Pb, Pr
60
80
100
Figure 15. Group Delay vs. Freq. Y1, Y2, C, CV
20
10
10
5
0
0
1
Delay (ns)
Delay (ns)
40
Frequency (MHz)
-10
-20
-10
-15
1
-30
-5
-20
-40
1 = 32MHz (-21.10ns)
1 = 32MHz (5.93ns)
-25
400kHz
20
40
60
80
100
400kHz
Frequency (MHz)
FMS6366 Rev. 2C
20
40
60
80
100
Frequency (MHz)
7
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FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
High Definition Typical Performance Characteristics
FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
General Description
Driving Digital Pins
The FMS6366 offers comprehensive filtering for set top box or
DVD applications. This part consists of triple 4:2:2 6th order filters
with selectable 30/15MHz or 8/4MHz frequencies for YPbPr and
a dual 8MHz filter for YC with a composite summer. Two-to-one
multiplexers are provided on the triple filters as well as provisions
for auxiliary input to the composite channel. The triple filters are
intended for YPbPr signals. All channels accept DC coupled
ground-referenced 1Vpp signals. The filters output 2Vpp signals
into AC coupled terminated loads.
The FMS6366 digital inputs are compatible with most 3.3V and
5V logic. Verify that the Vih and Vil are within the specified limits.
Applications
A typical application for the FMS6366 is shown in Figure 16.
The FMS6366 is a next generation filter solution from Fairchild
Semiconductor addressing the expanding filtering needs for set
top boxes, and DVD players. The product provides selectable
4:2:2 HD/SD filtering on the YPbPr channels. Thus, the
FMS6366 addresses the requirement for a single set top box to
be compatible with a variety of resolution standards. Additionally,
the product provides additional filters for Y, C, and Composite
Video (CV) outputs. Multiplexers on the YPbPr and CV channels
provide further flexibility.
2
A_NB
HD / N_SD
16
23
PbINA
VCC
RT = 37.5Ω
VCC
26
+5V
0.1μF
20
1μF
RSOURCE = RT
3
PbINB
220μF
PrOUT
4
24
75Ω
75Ω Video Cable
Y1INA
75Ω
FMS6366
RT = 37.5Ω
220μF
5
Y1OUT
23
75Ω
75Ω Video Cable
Y1INB
75Ω
For DVD applications, the product provides filtering and output
drive amplification for 6 channels of outputs. These include Y1,
Pb, Pr, Y2, C, and CV outputs.
6
PrINA
220μF
RT = 37.5Ω
PbOUT
DAC
For Set top boxes, this product provides two channels of filtered
video with the flexibility of selectable high order filtering for multiple resolution standards. Additional flexibility is provided by the
Y (Luma) and C (Chroma) filters with a composite summer.
22
75Ω
75Ω Video Cable
75Ω
7
PrINB
8
YC / N_AUX
NC
220μF
Y2OUT
9, 10, 15, 17
21
75Ω
75Ω Video Cable
75Ω
All channels provide 6dB gain, accept 1V ground referenced
inputs, and drive AC coupled loads.
12
AUXIN
0.1μF
RT = 37.5Ω
COUT
19
75Ω
75Ω Video Cable
75Ω
Functional Description
14
Y2IN
220μF
RT = 37.5Ω
CVOUT
DC Levels
75Ω
75Ω Video Cable
75Ω
At any given time, the input signal’s DC levels must be between
0.0V and 1.3V to utilize the optimal headroom and to avoid clipping at the outputs. The Y channels accept 1Vpp signals with the
sync tip at ground. The Pb, Pr and C channels should be centered around 0.5V. This will ensure that the filter will utilize the
optimal headroom and avoid clipping.
13
CIN
VSS VSS VSS VSS
RT = 37.5Ω
11
16
25
27
Figure 16. Typical Application Diagram
Digital Delay Compensation
DC-Coupled Output Applications
The 220uF capacitor coupled with the 150Ω termination forms a
high pass filter that blocks the DC while passing the video frequencies and avoiding tilt. Lower values such as 10uF cause
unacceptable tilt in the output signal. By AC coupling, the average DC level is zero. Thus, the output voltages of all channels
will be centered around zero.
FMS6366
Y
A/D
8-10
Luminance
Shift
Register
8-10
Video
Processing
Propagation
Delay
Chroma
DC coupling the output of the FMS6366 is allowable, but not
recommended. There are several trade-offs: The average DC
level on the outputs will be 2V. Each output will dissipate an
additional 40mW nominally. The application will need to accommodate a 1V DC offset sync tip. Also, it is recommended to limit
one 150Ω load per output.
The FMS6366 is specified to operate with output currents typically less than 50mA, more than sufficient for a dual (75Ω) video
load. Internal amplifiers are current limited to a maximum of
100mA and should withstand brief duration short circuit conditions, however this capability is not guaranteed.
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18
Pr
A/D
Pb
A/D
8-10
8-10
Figure 17. Digital Delay Compensation for
anti-alias 4:2:2 filters
8
FMS6366 Rev. 2C
FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
The Chroma filters are one half the bandwidth of the Luminance
filter therefore the propagation delay time through the Chroma
filter is longer than the Luminance filter. In the Standard Definition
(SD) case, the Chroma filter propagation delay is typically 60
nanoseconds longer than the Luminance filter. This is three
clock cycles at 54MHz so it is easily corrected by adding digital
delay as shown in Figure 18 and illustrated as a shift register in
Figure 17. In the High Definition (HD) setting the Chroma filter
propagation delay is typically 15ns longer than the Luminance
filter. This is one clock cycle at 74.25MHz so it is also easily
corrected by adding digital delay to the luminance path.
Video SoC
Video
Source
Digital
Delay
DAC
Y1
DAC
Pb, Pr
Figure 18. Digital Delay Compensation for 4:2:2
reconstruction filters
FMS6366 Rev. 2C
9
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FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
Package Dimensions
SSOP-28
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10
FMS6366 Rev. 2C
FMS6366 Selectable YPbPr HD/SD 4:2:2 Video Filter Driver with Y, C and Composite Outputs
Ordering Information
Model
Part Number
Lead Free
Package
Container
Pack
Qty
FMS6366
FMS6366MSA28
Yes
SSOP-28
Rail
47
FMS6366
FMS6366MSA28X
Yes
SSOP-28
Reel
2000
Temperature range for all parts: 0˚C to 70˚C.
FMS6366 Rev. 2C
11
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