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LT1230CJ

产品描述Dual and Quad 100MHz Current Feedback Amplifiers
文件大小228KB,共12页
制造商Linear ( ADI )
官网地址http://www.analog.com/cn/index.html
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LT1230CJ概述

Dual and Quad 100MHz Current Feedback Amplifiers

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LT1229/LT1230
Dual and Quad 100MHz
Current Feedback Amplifiers
FEATURES
s
s
s
s
s
s
s
s
s
s
s
DESCRIPTIO
100MHz Bandwidth
1000V/µs Slew Rate
Low Cost
30mA Output Drive Current
0.04% Differential Gain
0.1° Differential Phase
High Input Impedance: 25MΩ, 3pF
Wide Supply Range:
±2V
to
±15V
Low Supply Current: 6mA Per Amplifier
Inputs Common Mode to Within 1.5V of Supplies
Outputs Swing Within 0.8V of Supplies
The LT1229/LT1230 dual and quad 100MHz current feed-
back amplifiers are designed for maximum performance
in small packages. Using industry standard pinouts, the
dual is available in the 8-pin miniDIP and the 8-pin SO
package while the quad is in the 14-pin DIP and 14-pin SO.
The amplifiers are designed to operate on almost any
available supply voltage from 4V (±2V) to 30V (±15V).
These current feedback amplifiers have very high input
impedance and make excellent buffer amplifiers. They
maintain their wide bandwidth for almost all closed-loop
voltage gains. The amplifiers drive over 30mA of output
current and are optimized to drive low impedance loads,
such as cables, with excellent linearity at high frequencies.
The LT1229/LT1230 are manufactured on Linear
Technology’s proprietary complementary bipolar process.
For a single amplifier like these see the LT1227 and for
better DC accuracy see the LT1223.
APPLICATI
s
s
s
s
S
Video Instrumentation Amplifiers
Cable Drivers
RGB Amplifiers
Test Equipment Amplifiers
TYPICAL APPLICATI
Video Loop Through Amplifier
R
G1
3.01k
R
F1
750Ω
R
G2
187Ω
R
F2
750Ω
10
0
Loop Through Amplifier Frequency
Response
NORMAL SIGNAL
–10
GAIN (dB)
3.01k
V
IN –
1/2
LT1229
3.01k V
IN+
1/2
LT1229
V
OUT
–20
–30
–40
–50
–60
10
100
1k
10k
100k
1M
10M 100M
LT1229 • TA02
+
+
1% RESISTORS
WORST CASE CMRR = 22dB
TYPICALLY = 38dB
V
OUT
= G (V
IN+
– V
IN –
)
R
F1
= R
F2
COMMON-MODE SIGNAL
12.1k
12.1k
BNC INPUTS
HIGH INPUT RESISTANCE DOES NOT LOAD CABLE EVEN
WHEN POWER IS OFF
R
G1
= (G – 1) R
F2
R
F2
R
G2
=
G–1
TRIM CMRR WITH R
G1
LT1229 • TA01
U
FREQUENCY (Hz)
UO
UO
1
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