CLC5622IN National Semiconductor, CLC5622IN Datasheet - Page 16

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CLC5622IN

Manufacturer Part Number
CLC5622IN
Description
IC AMP VIDEO DUAL 8-DIP
Manufacturer
National Semiconductor
Datasheet

Specifications of CLC5622IN

Applications
Current Feedback
Number Of Circuits
2
-3db Bandwidth
160MHz
Slew Rate
370 V/µs
Current - Supply
3.2mA
Current - Output / Channel
130mA
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
*CLC5622IN

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shifting the input signal at the source. Use the design equa-
tions to determine R
Q and corner frequency.
This example illustrates a lowpass filter with Q=0.707 and
corner frequency f
achieve a maximally flat, Butterworth response. Figure 14
indicates the filter response.
FIGURE 12. Lowpass Filter Topology
FIGURE 13. Design Equations
c
/10MHz. A Q of the 0.707 was chosen to
1
, R
2
, C
1
, and C
2
based on the desired
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16
Differential Line Driver With Load Impedance Conver-
sion
The circuit shown in the Typical Application schematic on
the front page and in Figure 15, operates as a differential line
driver. The transformer converts the load impedance to a
value that best matches the CLC5622’s output capabilities.
The single-ended input signal is converted to a differential
signal by the CLC5622. The line’s characteristic impedance
is matched at both the input and the output. The schematic
shows Unshielded Twisted Pair for the transmission line;
other types of lines can also be driven.
Set up the CLC5622 as a difference amplifier:
Make the best use of the CLC5622’s output drive capability
as follows:
where R
V
Output Current.
Match the line’s characteristic impedance:
max
FIGURE 15. Differential Line Driver with Load
is the Output Voltage Range, and I
eq
is the transformed value of the load impedance,
FIGURE 14. Lowpass Response
Impedance Conversion
max
is the maximum
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