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CLC3801ISO8X Datasheet(PDF) 6 Page - Cadeka Microcircuits LLC.

Part # CLC3801ISO8X
Description  Triple, Standard Definition Video Amplifiers
PDF  11 Pages
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Manufacturer  CADEKA [Cadeka Microcircuits LLC.]
Direct Link  http://www.cadeka.com
Logo CADEKA - Cadeka Microcircuits LLC.

CLC3801ISO8X Datasheet(HTML) 6 Page - Cadeka Microcircuits LLC.

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Data Sheet
©2007-2008 CADEKA Microcircuits LLC
www.cadeka.com
6
Application Information
Basic Operation
The CLC3800, CLC3801, and CLC3802 are 3-channel video
amplifiers that operate with single supply voltages from 3V
to 7V. They are designed to accept DC-coupled inputs and
will drive AC- or DC-coupled outputs. Each channel inte-
grates a DC offset, 4th order Butterworth filters, and fixed
gain video drivers. The filtering is appropriate for standard
definition video signals and has a -3dB cutoff of 8.6MHz.
This cutoff provides an excellent compromise between flat
in-band response and high frequency noise reduction. The
input signals are level shifted prior to the input filters and
output amplifiers.
Inputs: DC-Coupled
The inputs must be DC-coupled. Many DACs provide a
current output that is resistively terminated to ground.
These DACs are conveniently DC-coupled to the inputs of
the CLC3800, CLC3801, or CLC3802 as shown in Figure 1.
DC-coupled inputs use fewer components and lowers the
overall system cost.
Figure 1. Typical Input Configuration
The input termination/source resistance is set by the ap-
plication. Any value up to several kΩ can be used. Lower
values reduce noise, but if higher values are needed, there
is little effect on filter shape or distortion performance of
the CLC380x. If the CLC380x is located on the same board
as the video source, and within a few inches, the input
termination resistance is determined by the requirements
of the Video DAC or Encoder. If a cable is needed to con-
nect the CLC380x to the video source, the termination must
match the cable impedance which is 75Ω for standard vid-
eo cable.
The CLC380x Family of video amplifiers add a DC offset,
raising the input signal by approximately 330mV. For ex-
ample, when 0V is applied to the input, the output becomes
approximately 330mV above ground. This offset eliminates
sync tip clipping. Figure 2 illustrates a typical DC-coupled
input signal and resulting output signal after exiting the
CLC3800.
Figure 2. Typical DC-coupled Signal for CLC3800
The input voltage range is typically 0V to 1.4V for the
CLC3800 at 5V supply. Due to the internal fixed gain of 6dB
(for the CLC3800) and the internal level shift of nominally
330mV, the VIN range is generally limited by the output.
VIN and VOUT are fully detailed in the Electrical Character-
istics section.
Outputs: AC- or DC-Coupled
Each channel of the CLC3800, CLC3801, and CLC3802 can
drive either AC- or DC-coupled loads. Each channel can
drive single or dual video loads, 150Ω (1 video load) or
75Ω (2 video loads). Figure 3 shows the typical configura-
tion for driving either AC- or DC-coupled loads.
With DC-coupled loads, AC-coupling capacitors are not
used. Match the series termination resistors to the typi-
cal cable impedance, 75Ω for standard video cable. Keep
the output connection to the series termination resistors
as short as possible. If driving 2 video loads, place both
resistors close to the CLC3800.
With AC-coupled loads, use an AC-coupling capacitor of
at least 220μF in a 75Ω environment. A value of at least
220μF will ensure that low frequencies are passed, pre-
venting video droop across the line, referred to as “tilt”.
0.00V
0.02V
Input Signal
0.32V
1.02V
0.35V
Output Signal
0.97V
2.39V
CLC3800
IN1
OUT1
IN2
IN3
OUT3
+Vs
OUT2
GND
Video
DAC/
Encoder
R or Y
B or PR
G or PB
DAC Load Resistors
per Video DAC/Encoder specs
+3V or +5V
0.1µF
1.0µF
8
7
6
5
1
2
3
4



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