FMS6413CSX [FAIRCHILD]
Single Channel Video Driver with Integrated Filter and Clamp; 单路视频驱动器,集成滤波器和钳位型号: | FMS6413CSX |
厂家: | FAIRCHILD SEMICONDUCTOR |
描述: | Single Channel Video Driver with Integrated Filter and Clamp |
文件: | 总7页 (文件大小:35K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
www.fairchildsemi.com
FMS 6 4 1 3
S in g le Ch a n n e l Vid e o Drive r w it h In t e g ra t e d Filt e r
a n d Cla m p
Video Features
General Description
• Integrated Video Low Pass reconstruction filter
• Integrated output driver provides a low impedance output
and delivers 2Vp-p (6dB gain) composite video into
150Ω.
The FMS6413 Single Channel Video Filter – Driver Chip
offers comprehensive video filtering for set top box or DVD
applications. This part consists of a 4th order video Low
Pass filter for video filtering. This device integrates a video
driver so that it can directly drive to the outside world. There
is also an integrated clamp circuit that allows the part to DC
restore.
• 7.1MHz 4th order video filter
• 0.4% differential gain with 0.4° differential phase
• Integrated DC Restore / Clamp Circuitry
The video output is filtered at 7.1MHz and buffered to drive
2Vp-p into an AC coupled 150Ω load with up to 35pF of
load capacitance at the output pin. The filter approximates a
4th-order Butterworth characteristic with an optimization
toward low overshoot and flat group delay. Likewise, the
driver is capable of driving a 75Ω load at 1Vp-p. There is an
option for the video output to be DC coupled which limits
the drive to 1 output.
Applications
• CCTV
• DVD players
• Televisions
• HDTV
• Personal Video Recorders (PVRs)
• Video On Demand (VOD)
• Cable and Satellite Set top boxes
Block Diagram
SYNC STRIP,
REFERENCE,
AND TIMING
x2
VIDEO_OUT
VIDEO_IN
gM
1V
REV. 1.0.2 6/27/02
FMS6413
Pin Configuration
FMS6413
8-Pin SOIC (S08)
1
2
3
4
8
7
6
5
VIDEO_IN VIDEO_OUT
NC
VCC_VIDEO
GND_VIDEO
NC
NC
NC
Pin Description
Video Section
Pin#
Pin
Type
Description
1
8
VIDEO_IN
VIDEO_OUT
Input
Video Input
Output Video Output: This pin is the filtered video output
Power/Ground Pins
Pin# Pin
Type
Power
Power
NC
Description
7
3
4
5
6
2
VCC_VIDEO
+5 VDC for Video
GND_VIDEO
Ground for Video
NC
NC
NC
NC
Reserved (Need to Float)
Reserved (Need to Float)
Reserved (Need to Float)
Reserved (Need to Float)
NC
NC
NC
2
REV. 1.0.2 6/27/02
FMS6413
Functional Description
DC level. The net result is that the average input current is
zero. Any change in the input coupling capacitor’s value will
inversely alter the amount of tilt per line. Such a change will
also linearly affect the clamp response time. This product is
robust and stable under all stated load and input conditions.
Capacitive bypassing VCC directly to ground ensures this
performance.
Introduction
The FMS6413 is a monolithic continuous time video filter -
driver designed for reconstructing the video signals from a
D/A source. This chip is intended for use in applications
with AC coupled input and AC coupled outputs. (See
Figure 1) The reconstruction filter approximates a 4th-order
Butterworth characteristic with an optimization toward low
over-shoot and flat group delay. The video output is capable
of driving 2VP-P into an AC coupled 150Ω video load, with
up to 35pF of load capacitance at the output pin. The channel
is clamped during sync to establish the appropriate output
voltage swing range. Thus the input coupling capacitor does
not behave according to the conventional RC time constant.
Clamping for the video channel settles to less than 10mv
within 5ms of a change in video input source. In most
applications the input coupling capacitor is 0.1µF. The input
typically sinks 1µA during active video, which nominally
tilts a horizontal line by about 2mV at the Video output.
During sync, the clamp typically sources 20µA to restore the
Video I/O
The video input is driven by either a low impedance source
of 1VP-P or the output of a 75Ω terminated line. The input is
required to be AC coupled via a 0.1µF coupling capacitor
which allows for a settling time of 5ms. The video output is
capable of driving an AC coupled 150Ω load at 2VP-P, or
1VP-P into a 75Ω load. Up to 35pF of load capacitance
(at the output pin) can be driven without stability or slew
issues. The output is AC coupled with a 220µF or larger AC
coupling capacitor.
Typical Applications Diagram
SYNC STRIP,
VIDEO_IN
220µF
VIDEO_OUT
75Ω
Video Cable
REF, AND TIMING
1
2
3
4
8
7
6
5
VIDEO_IN
VIDEO_OUT
VCC_VIDEO
x2
0.1µF
75Ω
gM
1V
+5.0V
NC (Reserved)
GND_VIDEO
NC (Reserved)
0.1µF
1µF
FMS6413
NC (Reserved)
NC (Reserved)
Figure 1.
REV. 1.0.2 6/27/02
3
FMS6413
Absolute Maximum Ratings (beyond which the device may be damaged)
Parameter
Min
GND-0.3
-65
Max
Units
VCC_VIDEO (Positive DC Supply Voltage)
GND_VIDEO (Negative DC Supply Voltage)
Analog and Digital I/O
+6.5
V
V
VCC+0.3
60
V
Output Current (Continuous)
Junction Temperature
mA
°C
150
Storage Temperature Range
Lead Temperature (Soldering, 10s)
+150
260
°C
°C
Thermal Resistance (ΘJA
)
115
°C/W
Note: Functional operation under any of these conditions is NOT implied. Performance and reliability are guaranteed only if
Operating Conditions are not exceeded.
Operating Conditions
Parameter
Min
0
Typ
Max
70
Units
°C
Temperature Range
VCC_VIDEO Range
GND_VIDEO
4.75
5.0
0
5.25
V
V
ICC (+5 VDC)
60
mA
4
REV. 1.0.2 6/27/02
FMS6413
Electrical Characteristics
1Vp-p signal at room temperature
Video Characteristics - Unless otherwise noted, typical output loading on video output is 150Ω.
Condition
Symbol Parameter
AV
VCC_VIDEO=+5.0V ±5%
Min Typ Max Units
Low Frequency Gain (VIDEO_OUT) at 400KHz
6.0
1.0
dB
V
VIDEO_OUT Output Level (During
Sync)
Sync Present on YIN
tCLAMP Clamp Response Time
Settled to Within 10mV,0.1µF cap
on VIDEO_IN
5
ms
MHz
MHz
dB
f1dB
fC
–1.0dB Bandwidth (Flatness)
(VIDEO_OUT)
No Peaking Cap (Note 1)
4.0
6.7
-37
1.3
4.5
7.1
-42
–3dB Bandwidth (Flatness)
(VIDEO_OUT)
fSB
Stopband Rejection (VIDEO_OUT)
fIN = 27MHz to 100MHz worst
case
Vi
Input Signal Dynamic Range
AC Coupled
1.4
40
VP-P
mA
ISC
Output Short Circuit Current
(All Channels)
VIDEO_OUT to GND
80
CL
Output Shunt Capacitance
Differential Gain
VIDEO_OUT
VIDEO_OUT
VIDEO_OUT
35
0.4
0.4
0.8
pF
%
°
dG
dP
Differential Phase
THD
Output Distortion (All Channels)
VIDEO_OUT = 1.8VP-P at 3.58/
4.43MHz
%
PSRR
SNR
tpd
PSRR (All Channels)
0.5VP-P (100kHz) at VCC
NTC-7 weighting 4.2 MHz lowpass
100kHz
-40
-75
70
9
dB
dB
ns
ns
ns
Group Delay
∆tpd
Group Delay Deviation from
Flatness
to 3.58MHz (NTSC)
to 4.43MHz (PAL)
7
Notes:
1. Peaking capacitor increases video output at 4.2MHz nominally by 0.7dB
2. Sustained short circuit protection limited to 10 seconds
REV. 1.0.2 6/27/02
5
FMS6413
Mechanical Dimensions Inches (millimeters)
Package: S08
8-Pin SOIC
0.189 - 0.199
(4.80 - 5.06)
8
0.148 - 0.158 0.228 - 0.244
PIN 1 ID
(3.76 - 4.01) (5.79 - 6.20)
1
0.017 - 0.027
(0.43 - 0.69)
(4 PLACES)
0.050 BSC
(1.27 BSC)
0.059 - 0.069
(1.49 - 1.75)
0° - 8°
0.012 - 0.020
(0.30 - 0.51)
0.015 - 0.035
(0.38 - 0.89)
0.055 - 0.061
(1.40 - 1.55)
0.004 - 0.010
(0.10 - 0.26)
0.006 - 0.010
(0.15 - 0.26)
SEATING PLANE
6
REV. 1.0.2 6/27/02
FMS6413
Ordering Information
Part Number
FMS6413CS
FMS6413CSX
Temperature Range
0° to 70°
Package
8 Pin SOIC (S08)
Tape and Reel
0° to 70°
DISCLAIMER
FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO
ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME
ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN;
NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS.
LIFE SUPPORT POLICY
FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES
OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR
CORPORATION. As used herein:
1. Life support devices or systems are devices or systems
which, (a) are intended for surgical implant into the body, or
(b) support or sustain life, and (c) whose failure to perform
when properly used in accordance with instructions for use
provided in the labeling, can be reasonably expected to
result in a significant injury of the user.
2. A critical component in any component of a life support
device or system whose failure to perform can be
reasonably expected to cause the failure of the life support
device or system, or to affect its safety or effectiveness.
www.fairchildsemi.com
6/27/02 0.0m 004
Stock#DS30006413
2002 Fairchild Semiconductor Corporation
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