AD524–Typical Characteristics
REV. C
–4–
SUPPLY VOLTAGE –
±V
INPUT
VOLTAGE
–
±V
20
15
0
05
20
10
15
10
5
25oC
Figure 1. Input Voltage Range vs.
Supply Voltage, G = 1
SUPPLY VOLTAGE –
±V
QUIESCENT
CURRENT
–
mA
8.0
6.0
0
05
20
10
15
4.0
2.0
Figure 4. Quiescent Current vs.
Supply Voltage
INPUT VOLTAGE –
±V
INPUT
BIAS
CURRENT
–
±nA
16
14
0
05
20
10
15
8
6
4
2
12
10
Figure 7. Input Bias Current vs. CMV
FREQUENCY – Hz
CMRR
–
dB
–140
0
10
10M
100
1k
10k
100k
1M
–120
–80
–60
–40
–20
–100
G = 1000
G = 100
G = 10
G = 1
Figure 10. CMRR vs. Frequency RTI,
Zero to 1k Source Imbalance
SUPPLY VOLTAGE –
±V
OUTPUT
VOLTAGE
SWING
–
±V
20
15
0
05
20
10
15
10
5
Figure 2. Output Voltage Swing vs.
Supply Voltage
POWER SUPPLY VOLTAGE –
±V
BIAS
CURRENT
–
±nA
16
14
0
05
20
10
15
8
6
4
2
12
10
Figure 5. Input Bias Current vs.
Supply Voltage
WARM-UP TIME – MINUTES
V
OS
FROM
FINAL
VALUE
–
V
0
1.0
8.0
2.0
3.0
4.0
5.0
6.0
7.0
0
3
4
5
6
1
2
Figure 8. Offset Voltage, RTI, Turn
On Drift
FREQUENCY – Hz
FULL
POWER
RESPONSE
–
V
p-p
30
20
0
1k
10k
1M
100k
10
G = 1, 10, 100
BANDWIDTH LIMITED
G1000
G100
G10
Figure 11. Large Signal Frequency
Response
LOAD RESISTANCE –
OUTPUT
VOLTAGE
SWING
–
V
p-p
30
20
0
10
100
10k
1k
10
Figure 3. Output Voltage Swing vs.
Load Resistance
TEMPERATURE – oC
INPUT
CURRENT
–
nA
40
30
–40
–75
125
–25
25
75
0
–10
–20
–30
20
10
Figure 6. Input Bias Current vs.
Temperature
FREQUENCY – Hz
GAIN
–
V/V
0
10
10M
100
1k
10k
100k
1M
1000
100
10
1
Figure 9. Gain vs. Frequency
SLEW
RATE
–V/s
GAIN – V/V
10.0
8.0
0
1
1000
10
100
6.0
4.0
2.0
G = 1000
Figure 12. Slew Rate vs. Gain