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Part Name
Description
AD704JNZ View Datasheet(PDF) - Analog Devices
Part Name
Description
Manufacturer
AD704JNZ
Quad Picoampere Input Current Bipolar Op Amp
Analog Devices
AD704JNZ Datasheet PDF : 8 Pages
1
2
3
4
5
6
7
8
AD704–SPECIFICATIONS
(@ T
A
= +25
؇
C, V
CM
= 0 V, and
؎
15 V dc, unless otherwise noted)
Model
Conditions
AD704J/A
AD704K/B
AD704T
Min Typ Max Min Typ Max Min Typ Max Units
INPUT OFFSET VOLTAGE
Initial Offset
Offset
vs. Temp, Average TC
vs. Supply (PSRR)
T
MIN
–T
MAX
Long Term Stability
INPUT BIAS CURRENT
1
vs. Temp, Average TC
T
MIN
–T
MAX
T
MIN
–T
MAX
INPUT OFFSET CURRENT
vs. Temp, Average TC
T
MIN
–T
MAX
T
MIN
–T
MAX
MATCHING CHARACTERISTICS
Offset Voltage
Input Bias Current
2
Common-Mode Rejection
3
Power Supply Rejection
4
Crosstalk
5
FREQUENCY RESPONSE
UNITY GAIN
Crossover Frequency
Slew Rate, Unity Gain
Slew Rate
INPUT IMPEDANCE
Differential
Common-Mode
T
MIN
–T
MAX
V
S
=
±
2 to
±
18 V 100
V
S
=
±
2.5 to
±
18 V 100
V
CM
= 0 V
V
CM
=
±
13.5 V
V
CM
= 0 V
V
CM
=
±
13.5 V
V
CM
= 0 V
V
CM
=
±
13.5 V
V
CM
= 0 V
V
CM
=
±
13.5 V
T
MIN
–T
MAX
T
MIN
–T
MAX
94
T
MIN
–T
MAX
94
94
T
MIN
–T
MAX
94
f = 10 Hz
R
LOAD
= 2 k
Ω
G = –1
T
MIN
–T
MAX
50 150
100 250
0.2 1.5
132
126
0.3
100 270
300
0.3
300
400
80 250
300
0.6
100 300
100 400
250
400
500
600
150
0.8
0.15
0.1
40
ʈ
2
300
ʈ
2
30 75
50 150
0.2 1.0
112 132
108 126
0.3
80 150
200
0.2
200
300
30 100
150
0.4
80 200
80 300
130
200
300
400
110
104
110
106
150
0.8
0.15
0.1
40
ʈ
2
300
ʈ
2
30 100
80 150
1.0
112 132
108 126
0.3
80 200
250
1.0
600
700
50 150
200
0.4
80 400
100 500
150
250
400
600
104
104
110
106
150
0.8
0.15
0.1
40
ʈ
2
300
ʈ
2
µ
V
µ
V
µ
V/
°
C
dB
dB
µ
V/month
pA
pA
pA/
°
C
pA
pA
pA
pA
pA/
°
C
pA
pA
µ
V
µ
V
pA
pA
dB
dB
dB
dB
dB
MHz
V/
µ
s
V/
µ
s
M
Ω
ʈ
pF
G
Ω
ʈ
pF
INPUT VOLTAGE RANGE
Common-Mode Voltage
±
13.5
±
14
±
13.5
±
14
±
13.5
±
14
V
Common-Mode Rejection Ratio V
CM
=
±
13.5 V
100 132
114 132
110 132
dB
T
MIN
–T
MAX
98 128
108 128
108 128
dB
INPUT CURRENT NOISE
0.1 to 10 Hz
3
3
3
pA p-p
f = 10 Hz
50
50
50
fA/
√
Hz
INPUT VOLTAGE NOISE
0.1 to 10 Hz
f = 10 Hz
f = 1 kHz
0.5
17
15 22
0.5 2.0
17
15 22
0.5 2.0
17
15 22
µ
V p-p
nV/
√
Hz
nV/
√
Hz
OPEN-LOOP GAIN
V
O
=
±
12 V
R
LOAD
= 10 k
Ω
T
MIN
–T
MAX
V
O
=
±
10 V
R
LOAD
= 2 k
Ω
T
MIN
–T
MAX
200 2000
150 1500
200 1000
150 1000
400 2000
300 1500
300 1000
200 1000
400 2000
300 1500
200 1000
100 1000
V/mV
V/mV
V/mV
V/mV
–2–
REV. A
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