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AD827JNZ Scheda tecnica(PDF) 7 Page - Analog Devices

Il numero della parte AD827JNZ
Spiegazioni elettronici  High Speed, Low Power Dual Op Amp
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Produttore elettronici  AD [Analog Devices]
Homepage  http://www.analog.com
Logo AD - Analog Devices

AD827JNZ Scheda tecnica(HTML) 7 Page - Analog Devices

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AD827
REV. C
–7–
VIDEO LINE DRIVER
The AD827 functions very well as a low cost, high speed line
driver for either terminated or unterminated cables. Figure 23
shows the AD827 driving a doubly terminated cable in a
follower configuration.
0.1 µF
0.1 µF
50
AD827
1/2
RBT
CC
+VS
VIN
VOUT
–VS
RT
500
50
50
500
Figure 23. A Video Line Driver
The termination resistor, RT, (when equal to the cable’s
characteristic impedance) minimizes reflections from the far end
of the cable. While operating from
±5 V supplies, the AD827
maintains a typical slew rate of 200 V/
µs, which means it can
drive a
±1 V, 30 MHz signal into a terminated cable.
Table I. Video Line Driver Performance Summary
Over-
VIN*
VSUPPLY
CC
–3 dB BW
shoot
0 dB or
±500 mV Step ±15
20 pF
23 MHz
4%
0 dB or
±500 mV Step ±15
15 pF
21 MHz
0%
0 dB or
±500 mV Step ±15
0 pF
13 MHz
0%
0 dB or
±500 mV Step ±5
20 pF
18 MHz
2%
0 dB or
±500 mV Step ±5
15 pF
16 MHz
0%
0 dB or
±500 mV Step ±50 pF
11 MHz
0%
*–3 dB bandwidth numbers are for the 0 dBm signal input. Overshoot numbers
are the percent overshoot of the 1 V step input.
A back-termination resistor (RBT, also equal to the characteristic
impedance of the cable) may be placed between the AD827
output and the cable input, in order to damp any reflected
signals caused by a mismatch between RT and the cable’s
characteristic impedance. This will result in a flatter frequency
response, although this requires that the op amp supply
±2 V to
the output in order to achieve a
±1 V swing at resistor RT.
A HIGH SPEED THREE OP AMP INSTRUMENTATION
AMPLIFIER CIRCUIT
The instrumentation amplifier circuit shown in Figure 24 can
provide a range of gains. Table II details performance.
+
+
+
1
3
2
2
3
6
7
6
5
AD847
AD827
AD827
0.1
µF
1k
2k
2k
1k
2k
0.1
µF
0.1
µF
2k
R
L
2 – 8pF
0.1
µF
R
G
4
7
2k
8
4
TRIM FOR BEST
SETTLING TIME
1/2
1/2
3pF
CIRCUIT GAIN =
+ 1
G
R
2000
TRIM FOR
OPTIMUM
BANDWIDTH
7 – 15 pF
NOTE: PINOUT SHOWN IS FOR MINIDIP PACKAGE
–V
IN
+VS
–V
S
+V
IN
+V
S
–V
S
VOUT
Figure 24. A High Bandwidth Three Op Amp
Instrumentation Amplifier
Table II. Performance Specifications for the
Three Op Amp Instrumentation Amplifier
Small Signal
Bandwidth
Gain
RG
@ 1 V p-p Output
1
Open
16.1 MHz
22 k
14.7 MHz
10
226
4.9 MHz
100
20
660 kHz


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