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LT1399C View Datasheet(PDF) - Linear Technology

Part Name
Description
MFG CO.
'LT1399C' PDF : 16 Pages View PDF
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LT1398/LT1399/LT1399HV
APPLICATI S I FOR ATIO
VIN
VOUT
VS = ±7.5V
RF = 324
RG = 162
RS = 16.9
CL = 330pF
50ns/DIV
1398/99 F07
Figure 7. LT1399HV Output Voltage Swing
Buffered RGB to Color-Difference Matrix
Two LT1398s can be used to create buffered color-
difference signals from RGB inputs (Figure 8). In this
application, the R input arrives via 75coax. It is routed
to the noninverting input of LT1398 amplifier A1 and to
a 1082resistor R8. There is also an 80.6termination
resistor R11, which yields a 75input impedance at the
R input when considered in parallel with R8. R8 connects
to the inverting input of a second LT1398 amplifier (A2),
which also sums the weighted G and B inputs to create a
–0.5 • Y output. LT1398 amplifier B1 then takes the
–0.5 • Y output and amplifies it by a gain of –2, resulting
in the Y output. Amplifier A1 is configured in a noninvert-
ing gain of 2 with the bottom of the gain resistor R2 tied
to the Y output. The output of amplifier A1 thus results in
the color-difference output R-Y.
The B input is similar to the R input. It arrives via 75
coax, and is routed to the noninverting input of LT1398
amplifier B2, and to a 2940resistor R10. There is also
a 76.8termination resistor R13, which yields a 75
input impedance when considered in parallel with R10.
R10 also connects to the inverting input of amplifier A2,
adding the B contribution to the Y signal as discussed
above. Amplifier B2 is configured in a noninverting gain
of 2 configuration with the bottom of the gain resistor R4
tied to the Y output. The output of amplifier B2 thus
results in the color-difference output B-Y.
12
75
SOURCES
R
G
B
R8
1082
R11
80.6
R9
549
R12
86.6R10
2940
R13
76.8
R7
324
A2
1+/2 LT1398
+
A1
1/2 LT1398
R6
162
R5
324
B1
1+/2 LT1398
ALL RESISTORS 1%
VS = ±5V
B2
1+/2 LT1398
R-Y
R1
324
R2
324
Y
R4
324
R3
324
1398/99 F08
B-Y
Figure 8. Buffered RGB to Color-Difference Matrix
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