STMICROELECTRONICS STV6436D

STV6436
®
Filtered Video Buffers for STB and DVD Devices
TARGET SPECIFICATION
FEATURES
■ Y, C, CVBS Inputs with 7 MHz Filters
■ Y, Cr, Cb Inputs with 7 MHz Filters
■ 6 dB Gains
■ Capabilities of Integrated Output Buffers:
Single Load (150Ω) for Y/Cr/Cb signals
Double Load (75Ω) for Y, C and CVBS signals
■ DC Coupled Outputs for CVBS and YCrCb
signals, DC or AC coupled output for Chroma
signal
SO24
Order Code: STV6436S
■ Bottom Clamp on Y and CVBS, Bias Clamp
on C, Sync Clamps on Cr and Cb
■ Crosstalk: 55 dB (typ.)
■ Separate Stand-by Modes on Y/C/CVBS and
on Y/Cr/Cb signals
■ Switchable Y+C Adder for Decoders without
CVBS Outputs
DESCRIPTION
The STV6436 is a filtered video output interface for
STB and DVD applications.
After removing D/A conversion noises using
integrated low pass filters, the STV6436 adapts in
amplitude and impedance the video signals coming
from the digital decoder for transmission, via 75Ω
adapted cables, to the TV set, VCR and auxiliary
devices.
The STV6436 is powered by a 5V supply.
PDIP20
Order Code: STV6436D
The STV6436 is fully compatible with STi55xx
Digital Decoders.
The STV6436 is mounted in a SO24 package
(STV6436S) or in a DIP package (STV6436D).
September 2003
This is preliminary information on a new product now in development or undergoing evaluation. Details are subject to change without notice.
1/17
STV6436
Table of Contents
Chapter 1
1.1
Chapter 2
General Information
I/O Pin Description
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3
............................................................................................................. 4
Electrical Characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .6
2.1
Absolute Maximum Ratings ................................................................................................ 6
2.2
Thermal Data ...................................................................................................................... 6
2.3
Electrical Characteristics ...................................................................................................... 6
2.3.1
Video Section (Y1, Y2 and CVBS Signals) ...........................................................................................................7
2.3.2
Chroma Section ....................................................................................................................................................8
2.3.3
Cb/Cr Section .......................................................................................................................................................9
2.3.4
Mute Section .........................................................................................................................................................9
Chapter 3
Input/Output Groups . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .10
Chapter 4
Package Mechanical Data
Chapter 5
Revision History . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .16
2/17
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .14
STV6436
1
General Information
General Information
Figure 1: STV6436S Pinout
CVBS_ENC
DEC
C_ENC
GND
Y1_ENC
GND
GND
VCC
Y2_ENC
CR_ENC
MUTE
CB_ENC
1
2
3
4
5
6
7
8
9
10
11
12
24
23
22
21
20
19
18
17
16
15
14
13
VCCB3
CVBSOUT
VCCB2
COUT
GNDB
GND
GND
Y1OUT
Y2OUT
VCCB1
CROUT
CBOUT
Figure 2: STV6436D Pinout
CVBS_ENC
1
20
VCCB3
DEC
2
19
CVBSOUT
C_ENC
3
18
VCCB2
GND
4
17
COUT
Y1_ENC
5
16
GNDB
VCC
6
15
Y1OUT
Y2_ENC
7
14
Y2OUT
CR_ENC
8
13
VCCB1
MUTE
9
12
CROUT
10
11
CBOUT
CB_ENC
3/17
General Information
1.1
STV6436
I/O Pin Description
Table 1: Pin Description
STV6436S STV6436D
4/17
Name
Function
1
1
CVBS_ENC
CVBS Input from Encoder command internal CVBS switch
2
2
DEC
Decoupling Capacitor
3
3
C_ENC
Chroma Input from Encoder
4
4
GND
Ground
5
5
Y1_ENC
Y Input from Encoder
6
GND
Ground
7
GND
Ground
8
6
VCC
+5 V Supply
9
7
Y2_ENC
Large-band Y Input from Encoder
10
8
CR_ENC
Large-band Cr Input from Encoder
11
9
MUTE
4-State command for Mute
12
10
CB_ENC
Large-band Cb Input from Encoder
13
11
CBOUT
Cb Output
14
12
CROUT
Cr Output
15
13
VCCB1
+5 V Supply for Output Buffers
16
14
Y2OUT
Y2 Output
17
15
Y1OUT
Y1 Output
18
GND
Ground
19
GND
Ground
20
16
GNDB
Ground for Buffers
21
17
COUT
Chroma Output
22
18
VCCB2
+5 V Supply for Output Buffers
23
19
CVBSOUT
CVBS Output
24
20
VCCB3
+5 V Supply for Output Buffers
STV6436
General Information
Figure 3: STV6436 Block Diagram
C_ENC
COUT
7 MHz
Av. Clamp
6 dB
Buffer
6 dB
Buffer
6 dB
Buffer
4th order
CVBS_ENC
CVBSOUT
7 MHz
Bot. Clamp
4th order
Digital Encoder
Y1_ENC
Y1OUT
7 MHz
Bot. Clamp
4th order
MUTE
Mute
Y2_ENC
Y2_OUT
7 MHz
6 dB
Bot. Clamp
Sync
Extract.
CR_ENC
Buffer
4th order
CR_OUT
7 MHz
6 dB
Syn. Clamp
Buffer
4th order
CB_ENC
CB_OUT
7 MHz
6 dB
Syn. Clamp
Buffer
4th order
5/17
Electrical Characteristics
STV6436
2
Electrical Characteristics
2.1
Absolute Maximum Ratings
Symbol
Parameter
Value
Unit
6
V
-0.6 to VCC
V
±4
kV
Value
Unit
VCC, VCCB Supply Voltage
V
Voltage at all pins to Ground
VESD
2.2
ESD Susceptibility
Human Body Model: 100 pF discharged
through 1.5 kΩ serial resistor
Thermal Data
Symbol
RthJA
TJ
Parameter
Junction-to-Ambient Thermal
Resistance
STV6436S
STV6436D
70
65
°C/W
Maximum Recommended
Junction Temperature
STV6436S
STV6436D
130
°C
0 to +70
°C
-55 to +150
°C
TOPER
Operating Ambient Temperature
TSTG
Storage Temperature
2.3
Electrical Characteristics
Test conditions: TAMB = 25°C, VCC = 5 V; VCCB = 5 V; RGENERATOR = 75 Ω, RLOUT = 75 Ω for
Y1OUT, CVBSOUT and COUT RLOUT = 150 Ω for Y2OUT, CBOUT and CROUT, unless otherwise
specified.
Parameter
Symbol
Test Conditions
Min.
Typ.
Max.
Unit
VCC
Operating Supply Voltage
4.75
5.00
5.25
V
VCCB
Buffer Supply Voltage
4.75
5.00
5.25
V
65
mA
Active (Channels ON)
ICC1
Supply Current (VCC + VCCB)
No Load, MUTE pin to VCC pin
(5 V) All channels active
50
ICC2
Supply Current (VCC + VCCB)
No Load, MUTE pin = 1.5 V (not
connected) Y1/C/CVBS active
30
mA
ICC3
Supply Current (VCC + VCCB)
No Load, MUTE pin = 3 V
Y2/Cr/Cb active
30
mA
No Load, MUTE pin to 0 V
4
mA
Standby (All Channels OFF)
ICCSTB
6/17
Total Supply Current
STV6436
2.3.1
Electrical Characteristics
Video Section (Y1, Y2 and CVBS Signals)
Test conditions: TAMB = 25°C, VCC = 5 V; VCCB = 5 V; RGENERATOR = 75 Ω, RLOUT = 75 Ω for Y1
and CVBS outputs and RLOUT = 150 Ω for Y2 output, unless otherwise specified.
Symbol
Parameter
Test Conditions
VDCIN
DC Input Level, Bottom Clamp input
Bottom level, Y1 and CVBS inputs
ICLAMP
Clamping Current, Bottom Clamp
input
at VDCIN - 400 mV
ILEAK
Min.
1
Input Leakage Current, Bottom Clamp
VIN = VDCIN +1 V
input
VDCIN_YSYNC DC Input Level
Typ.
Unit
2
V
2
mA
1
Y2 input, YCrCb mode, Black
Level
Max.
10
µA
2.3
V
2
pF
CIN
Input Capacitance
VIN
Maximum Input Signal
VCCV = 5 V
1.5
VPP
DYN
Dynamic Output Signal
VCCV = 5 V
3
VPP
Y1F1
-1 dB Bandwidth (Flatness) of Y1 and
1H signal
CVBS
4.0
4.5
MHz
Y2F1
-1 dB Bandwidth (Flatness) of Y2
1H signal
4.0
4.5
MHz
Y1F3
-3 dB Bandwidth of Y1 and CVBS
1H signal
7
MHz
Y2F3
-3 dB Bandwidth of Y2
1H signal
7
MHz
Y1SBR
Stopband Rejection
27 MHz versus 100 kHz
- 40
dB
Y2SBR
Stopband Rejection
27 MHz versus 100 kHz
- 40
dB
Flatness
Spread of Gain in Video Bands
VIN = 1 VPP
Band = 15 kHz to 5 MHz for Y1, Y2
and CVBS
VCTo
Crosstalk Isolation of Y1 (or Y2 or
CVBS) from C and Cr Cb channels
VIN = 0.5 VPP at f = 3.58 MHz,
on either CIN_ENC or CRIN_ENC
or CBIN_ENC input, RLOAD =
150Ω
ROUT
Output Resistance
±0.5
55
dB
dB
5
10
Ω
6
6.5
dB
Gain on Y1, Y2 and CVBS channels
VIN = 1 VPP at f = 1 MHz
DC Output Voltage (Y1 and Y2)
Video signal bottom sync pulse at
IC output pins
0.5
V
Video signal bottom sync pulse at
IC output pin
1.0
V
Differential Phase
VIN = 1 VPP at f = 3.58 MHz
0.2
3
deg.
DG
Differential Gain
VIN = 1 VPP at f = 3.58 MHz
0.3
3
%
LNL
Luminance non-linearity
0.5
3
%
GY
DCYOUT
DCCVBSOUT DC Output Voltage (CVBS)
DPHI
5.5
VSN7
Video S/N Ratio: Y1, C and CVBS
channels (7 MHz filter)
NTC-7 weighting 4.2 MHz
Lowpass
70
dB
Dtpd7
Group Delay Variation from Flatness
7 MHz filter
20
nS
7/17
Electrical Characteristics
2.3.2
STV6436
Chroma Section
Test conditions: TAMB = 25°C, VCC = 5 V; VCCB = 5 V; RGENERATOR = 75 Ω and RLOUT = 75 Ω
unless otherwise specified.
Symbol
VDCIN
Parameter
Test Conditions
DC Input Level
Typ.
Max.
Unit
3
V
50
kΩ
2
pF
RIN
Input Resistance
CIN
Input Capacitance
VIN
Max Input Signal
1
VPP
Dynamic Output Signal
2
VPP
DYN
DCCOUT
DC Output Voltage (COUT)
CF1
-1 dB Bandwidth (Flatness)
CF3
-3 dB Bandwidth
CSBR
30
Without signal
4
Stopband Rejection
27 MHz versus 100 kHz
Spread of Gain in Video Bands
VIN = 1 VPP
Band = 15 kHz to 5 MHz for Y1
and CVBS
CCTo
Crosstalk Isolation of C from Y1, Y2
and CVBS Channels
VIN = 1 VPP at f = 3.58 MHz,
on Y1 or Y2 or CVBS inputs,
RLOAD = 150Ω
ROUT
Output Resistance
GC
Gain on C channel
VIN = 1 VPP at f = 1 MHz
CToYdel
Chroma to Luma Delay, source Y1/C
VIN = 1 VPP at f = 3.58 MHz
YCadd
Voltage to be applied at CVBS_ENC
input for Y+C adder selection
Flatness
8/17
Min.
1.5
V
4.5
MHz
7
MHz
- 40
dB
±0.5
55
5.5
dB
dB
5
10
Ω
6
6.5
dB
20
ns
VCC
V
VCC
STV6436
2.3.3
Electrical Characteristics
Cb/Cr Section
Test conditions: TAMB = 25°C, VCC = 5 V; VCCB = 5 V; RGENERATOR = 75 Ω and RLOUT = 150 Ω,
unless otherwise specified.
Symbol
Parameter
Test Conditions
Min.
Typ.
Max.
Unit
VDCIN_SYNC
DC Input Level
Sync clamp input (Cr,Cb)
Sync signal on Y input
3.0
V
ICLAMP_SYN
Clamping Current, Sync clamp
Sync clamp input (Cr,Cb)
at VDCIN -400 mV
100
µA
2
pF
C
CIN
Input Capacitance
VIN
Max Input Signal
1
VPP
Dynamic Output Signal
2
VPP
DYN
DCCrCbOUT
DC Output Voltage
(Cr and Cb Outputs)
PF1
-1 dB Bandwidth (Flatness)
PF3
-3 dB Bandwidth
PSBR
Black Level sync signal on Y2
input
4.0
Stopband Rejection
27 MHz versus 100 kHz
Spread of Gain in Video Bands
VIN = 1 VPP
Band = 15 kHz to 5 MHz
PCTo
Crosstalk Isolation of Cr or Cb from
Y1, Y2 and CVBS Channels
VIN = 1 VPP at f = 3.58 MHz,
on Y1 or Y2 or CVBS input,
RLOAD = 150Ω
ROUT
Output Resistance
Flatness
GP
2.3.4
Gain on Cr and Cb channels
VIN = 1 VPP at f = 1 MHz
1.5
V
4.5
MHz
7
MHz
- 40
dB
±0.5
dB
55
5.5
dB
5
10
Ω
6
6.5
dB
Mute Section
Test conditions: TAMB = 25°C, VCC = 5 V; VCCB = 5 V; RGENERATOR = 75 Ω and RLOUT = 75 Ω
unless otherwise specified.
Symbol
Parameter
Test Conditions
V00
MUTE Voltage for Y1/C/CVBS muted
and Y2/Cr/Cb muted
Pin MUTE to GND or logical 0
V01
MUTE Voltage for Y1/C/CVBS active
and Y2/Cr/Cb muted
V10
V11
Min.
Typ.
Max.
Unit
0
1.1
V
Pin MUTE opened (not
connected) See Note 1.
1.3
1.7
V
MUTE Voltage for Y1/C/CVBS muted
and Y2/Cr/Cb active
Pin MUTE connected by 22 kΩ to
VCC or at 3.3V (IIN < 140 µA)
1.9
4
V
MUTE Voltage for Y1/C/CVBS active
and Y2/Cr/Cb active
Pin MUTE to VCC (5V)
4.2
Vcc
V
Note: 1 When the MUTE pin is left open, its voltage is defined by an internal voltage divider performed by a
42 kΩ resistor to Vcc and 18 kΩ resistor to GND.
9/17
Input/Output Groups
3
STV6436
Input/Output Groups
Figure 4: Bottom Clamped Video Input (Y1_ENC)
Figure 6: Video Outputs (CVBSOUT, Y1OUT, Y2OUT,
CROUT and CBOUT)
VCC 5 V
VCC 5 V
VCCB
VCCB
2V + VBE
15 kΩ
10 kΩ
GNDB
Mute
V V REF
Protected Pad
GNDA
Figure 5: Average Clamped Video Input (C_ENC)
VCC 5 V
Figure 7: C Video Output (COUT)
VCC 5 V
VCCB
VCCB
5 kΩ
25 kΩ
Mute
25 kΩ
Protected Pad
10/17
2.3 V
V
V VREF
GNDA
GNDB
STV6436
Input/Output Groups
Figure 8: Black Level Clamped Video Input (Y2_ENC)
VCC 5 V
VCC 5 V
VCC 5 V
VCC 5 V
5 kΩ
Mute
11 kΩ
20 kΩ
Protected Pad
Figure 9: Cb/Cr Inputs (CR_ENC and CB_ENC)
VCC 5 V
V CC 5 V
2V + VBE
10 kΩ
15 kΩ
Mute
Protected Pad
Figure 10: Decoupling Capacitor (DEC)
V CC 5 V
VCC 5 V
10 kΩ
40 kΩ
1 kΩ
Protected Pad
12 kΩ
Mute
12 kΩ
1 kΩ
1 kΩ
Mute
1 kΩ
11/17
Input/Output Groups
STV6436
Figure 11: Mute (MUTE)
VCC 5 V
VCC 5 V
42 kΩ
18 kΩ
V 1.2 V
V 1.8 V
V 4.1 V
Protected Pad
Figure 12: CVBS Input (CVBS_ENC)
VCC 5 V
V CC 5 V
2V + VBE
10 kΩ
15 kΩ
V
4.1 V
Mute
Protected Pad
Figure 13: Power Supply Connection
Float
VCC
VCCB3
VCCB2
VCCB1
5V
5V
GND
GNDB
These symbols represent some huge diode and Zener-like components used for ESD
protection of the device.
They are not supposed to be paths for any current in normal operation mode.
12/17
STV6436
Input/Output Groups
Table 2: Power Supply Connections
Supply
Description
VCCB1
Y2OUT, CROUT and CBOUT Supply
VCCB2
Y1OUT and COUT Supply
VCCB3
CVBSOUT Supply
GNDB
Output Buffer Ground
VCC
Input Stages, Filters and 6-dB Amplifier Supply
GND
Input Stages, Filters and 6-dB Amplifier Ground
13/17
Package Mechanical Data
4
STV6436
Package Mechanical Data
Figure 14: 20-Pin Plastic Single in Line Package (PDIP20)
mm
Inches
Dim.
Min.
Typ.
A
Min.
Typ.
5.33
Max.
0.210
A1
0.38
A2
2.92
3.30
4.95
0.115
0.130
0.195
b
0.36
0.46
0.56
0.014
0.018
0.022
b2
1.14
1.52
1.78
0.045
0.060
0.070
c
0.20
0.25
0.36
0.008
0.010
0.014
D
24.89
26.92
0.980
e
14/17
Max.
0.015
2.54
1.060
0.100
E1
6.10
6.35
7.11
0.240
0.250
0.280
L
2.92
3.30
3.81
0.115
0.130
0.150
STV6436
Package Mechanical Data
Figure 15: 24-Pin Plastic Small Outline Package (SO24)
D
h x 45×
L
A
C
A1
a
B
e
E
H
mm
Inches
Dim.
Min.
Typ.
Max.
Min.
Typ.
Max.
A
2.35
2.65
0.093
0.104
A1
0.10
0.30
0.004
0.012
B
0.33
0.51
0.013
0.020
C
0.23
0.32
0.009
0.013
D
15.20
15.60
0.599
0.614
E
7.40
7.60
0.291
0.299
e
1.27
0.050
H
10.00
10.65
0.394
0.419
h
0.25
0.75
0.010
0.030
α
0°
8°
0°
8°
L
0.40
1.27
0.016
0.050
15/17
Revision History
5
STV6436
Revision History
Revision
0.1
16/17
Main Changes
First Issue.
Date
21 June 2002
STV6436
Revision History
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the
consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its
use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications
mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously
supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without
express written approval of STMicroelectronics.
The ST logo is a registered trademark of STMicroelectronics
© 2003 STMicroelectronics - All Rights Reserved
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