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AD704BQ Datenblatt(PDF) 7 Page - Analog Devices

Teilenummer AD704BQ
Bauteilbeschribung  Quad Picoampere Input Current Bipolar Op Amp
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AD704BQ Datenblatt(HTML) 7 Page - Analog Devices

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AD704
REV. A
–7–
__
R2
___
2R2
INSTRUMENTATION AMPLIFIER GAIN = 1 +
+
(FOR R1 = R3, R2 = R4 + R5)
ALL RESISTORS METAL FILM, 1%
1/4
AD704
1/4
AD704
1/4
AD704
1/4
AD704
OPTIONAL BALANCE RESISTOR
NETWORKS CAN BE REPLACED
WITH A SHORT
CAPACITORS C2 AND C4 ARE
SOUTHERN ELECTRONICS MPCC,
POLYCARBONATE,
±5%, 50 VOLT
0.01
µF
C6
R11
2M
OUTPUT
C3
1M
R9
C4
1M
R8
0.01
µF
C5
C2
1M
R7
1M
R6
C1
0.1
µF
+VS
0.1
µF
–VS
GAIN TRIM
(500k POT)
49.9k
R2
6.34k
R1
6.34k
R3
OPTIONAL
AC CMRR TRIM
2.4k
R5
47.5k
R4
DC
CMRR
TRIM
(5k POT)
C t
G
R
+V
IN
–V IN
R1
RG
=
_________
R8
C3C4
1
R8 = R9
Q =
C3
4C4
2
R6 = R7
=
1
_________
R6
C1C2
Q =
C1
4C2
1
R10
2M
ω
ω
Figure 24. Gain of 10 Instrumentation Amplifier with Post Filtering
The instrumentation amplifier with post filtering (Figure 24)
combines two applications which benefit greatly from the
AD704. This circuit achieves low power and dc precision over
temperature with a minimum of components.
The instrumentation amplifier circuit offers many performance
benefits including BiFET level input bias currents, low input
offset voltage drift and only 1.2 mA quiescent current. It will
operate for gains G
≥ 2, and at lower gains it will benefit from
the fact that there is no output amplifier offset and noise
contribution as encountered in a 3 op amp design. Good low
frequency CMRR is achieved even without the optional AC
CMRR trim (Figure 25). Table I provides resistance values for
3 common circuit gains. For other gains, use the following
equations:
R2 = R4 + R5 = 49.9 k
R1
= R3 =
49.9 k
0.9 G
−1
Max Value of R
G =
99.8 k
0.06 G
C
t
1
2
π (R3) 5 × 105
Table I. Resistance Values for Various Gains
Circuit Gain
RG (Max Value
Bandwidth
(G)
R1 & R3
of Trim Potentiometer)
(–3 dB), Hz
10
6.34 k
166 k
50k
100
526
16.6 k
5k
1,000
56.2
1.66 k
0.5k
160
140
120
100
80
60
40
20
0
1
10
100
1k
10k
FREQUENCY – Hz
GAIN = 10, 0.2V p-p COMMON-MODE INPUT
TYPICAL MONOLITHIC IN AMP
CIRCUIT TRIMMED
USING CAPACITOR Ct
WITHOUT CAPACITOR C t
Figure 25. Common-Mode Rejection vs. Frequency with
and without Capacitor Ct
10
0%
50µs
2V
100
90
Figure 23b. Unity Gain Inverter
Large Signal Pulse Response,
CL = 1,000 pF
10
0%
5µS
20mV
100
90
Figure 23c. Unity Gain Inverter
Small Signal Pulse Response,
CL = 100 pF
10
0%
5µS
20mV
100
90
Figure 23d. Unity Gain Inverter Small
Signal Pulse Response, CL = 1,000 pF


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