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THS3120 Datasheet, PDF (16/28 Pages) Texas Instruments – LOW-NOISE, HIGH-OUTPUT DRIVE, CURRENT-FEEDBACK, OPERATIONAL AMPLIFIERS
THS3120, THS3121
SLOS420A – SEPTEMBER 2003 – REVISED NOVEMBER 2003
WIDEBAND, INVERTING OPERATION
Figure 46 shows the THS3121 in a typical inverting
gain configuration where the input and output im-
pedances and signal gain from Figure 45 are retained
in an inverting circuit configuration.
15 V +VS
50 Ω Source RG
VI
340 Ω
RM
59 Ω
0.1 µF
+
6.8 µF
+
THS3120
_
49.9 Ω
50 Ω LOAD
RF
681 Ω
0.1 µF 6.8 µF
+
-15 V -VS
Figure 46. Wideband, Inverting Gain
Configuration
SINGLE SUPPLY OPERATION
The THS3120 and THS3121 have the capability to
operate from a single supply voltage ranging from
10 V to 30 V. When operating from a single power
supply, biasing the input and output at mid-supply
allows for the maximum output voltage swing. The
circuits shown in Figure 47 shows inverting and
noninverting amplifiers configured for single supply
operations.
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+VS
50 Ω Source
+
VI
RT
49.9 Ω
THS3120
_
+VS
2
RF
RG
649 Ω
649 Ω
49.9 Ω
50 Ω LOAD
+VS
2
50 Ω Source
RG
VI
59 Ω
340 Ω
RT
+VS +VS
2
2
RF
681 Ω
VS
_
THS3120
+
49.9 Ω
50 Ω LOAD
Figure 47. DC-Coupled, Single-Supply Operation
Video Distribution
The wide bandwidth, high slew rate, and high output
drive current of the THS3120 and THS3121 matches
the demands for video distribution for delivering video
signals down multiple cables. To ensure high signal
quality with minimal degradation of performance, a
0.1-dB gain flatness should be at least 7x the
passband frequency to minimize group delay vari-
ations from the amplifier. A high slew rate minimizes
distortion of the video signal, and supports
component video and RGB video signals that require
fast transition times and fast settling times for high
signal quality.
649 Ω
649 Ω
15 V
-
75-Ω Transmission Line
75 Ω
VO(1)
VI
+
-15 V
75 Ω
n Lines
75 Ω
75 Ω
VO(n)
75 Ω
Figure 48. Video Distribution Amplifier
Application
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