REV. B
OP193/OP293/OP493
–8–
SUPPLY
CURRENT
–
A
75
10
–50
15
5
TEMPERATURE – °C
20
–25
125
0
25
50
100
25
VS
+2V
VCM
1V
VS
±18V
0
INPUT
OFFSET
CURRENT
–
nA
75
–0.15
–50
–0.10
–0.20
–0.5
–25
125
0
25
50
100
0
VS
+2V
VCM
0.1V
VS
±15V
–0.25
TEMPERATURE – °C
INPUT
BIAS
CURRENT
–
nA
75
–3
–50
–2
–4
TEMPERATURE – °C
–1
–25
125
0
25
50
100
0
VS
+2V
VCM
0.1V
VS
±15V
–5
TPC 10. Input Offset Current vs.
Temperature
1000
100
0.1
1
10
100
1k
10
1
5V
VS
30V
TA
25°C
FREQUENCY – Hz
VOLTAGE
NOISE
DENSITY
–
nV
Hz
VOLTAGE
GAIN
–
V
mV
75
1000
–50
1500
500
2000
–25
125
0
25
50
100
2500
VS
±15V
–10V
VOUT
+10V
0
VS
+5V
0.03V
VOUT
4V
TEMPERATURE – °C
TPC 13. Voltage Noise Density vs.
Frequency
TPC 16. Voltage Gain
(RL = 100 k
) vs. Temperature
TPC 11. Input Bias Current vs.
Temperature
1000
100
0.1
1
10
100
1k
10
1
5V
VS
30V
TA
25°C
FREQUENCY – Hz
CURRENT
NOISE
DENSITY
–
pA
Hz
TPC 14. Current Noise Density vs.
Frequency
TPC 12. Supply Current vs.
Temperature
10000
1000
10
0.1
1
10
100
1000
10000
100
1
DELTA
FROM
SUPPLY
RAIL
–
mV
5V
VS
30V
TA
25°C
DELTA
FROM VEE
DELTA
FROM VCC
LOAD CURRENT –
A
TPC 15. Delta Output Swing from
Either Rail vs. Current Load
VOLTAGE
GAIN
–
V
mV
75
400
–50
600
200
TEMPERATURE – °C
800
–25
125
0
25
50
100
1000
VS
±15V
–10V
VOUT
+10V
0
VS
+5V
0.03V
VOUT
4V
TPC 17. Voltage Gain
(RL = 10 k
) vs. Temperature
GAIN
–
dB
60
40
10
100
1k
10k
100k
0
–20
TA
25°C
VS
5V
FREQUENCY – Hz
20
TPC 18. Closed-Loop Gain vs.
Frequency, VS = 5 V