OPA111 Burr-Brown, OPA111 Datasheet - Page 2

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OPA111

Manufacturer Part Number
OPA111
Description
Low Noise Precision Difet OPERATIONAL AMPLIFIER
Manufacturer
Burr-Brown
Datasheet

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SPECIFICATIONS
ELECTRICAL
At V
NOTES: (1) Sample tested—this parameter is guaranteed. (2) Offset voltage, offset current, and bias current are measured with the units fully warmed up. (3) Overload
recovery is defined as the time required for the output to return from saturation to linear operation following the removal of a 50% input overdrive.
The information provided herein is believed to be reliable; however, BURR-BROWN assumes no responsibility for inaccuracies or omissions. BURR-BROWN assumes
no responsibility for the use of this information, and all use of such information shall be entirely at the user’s own risk. Prices and specifications are subject to change without
notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. BURR-BROWN does not authorize or warrant any BURR-
BROWN product for use in life support devices and/or systems.
PARAMETER
INPUT
NOISE
Voltage, f
Current, f
OFFSET VOLTAGE
Input Offset Voltage
Average Drift
Supply Rejection
BIAS CURRENT
Input Bias Current
OFFSET CURRENT
Input Offset Current
IMPEDANCE
Differential
Common-Mode
VOLTAGE RANGE
Common-Mode Input Range
Common-Mode Rejection
OPEN-LOOP GAIN, DC
Open-Loop Voltage Gain
FREQUENCY RESPONSE
Unity Gain, Small Signal
Full Power Response
Slew Rate
Settling Time, 0.1%
Overload Recovery,
RATED OUTPUT
Voltage Output
Current Output
Output Resistance
Load Capacitance Stability
Short Circuit Current
POWER SUPPLY
Rated Voltage
Voltage Range, Derated
Performance
Current, Quiescent
TEMPERATURE RANGE
Specification
Operating
Storage
50% Overdrive
Junction-Ambient
CC
= 15VDC and T
f
f
f
f
f
f
O
O
O
O
O
B
B
B
= 10Hz to 10kHz
= 0.1Hz to 10Hz
= 0.1Hz to 10Hz
= 0.1Hz thru 20kHz
= 100Hz
= 1kHz
= 10kHz
= 10Hz
0.01%
®
(3)
(2)
OPA111
(2)
(2)
A
= +25 C unless otherwise noted.
V
Gain = –1, R
V
O
20Vp-p, R
T
CC
DC, Open Loop
Ambient Temp.
Ambient Temp.
Ambient Temp.
A
= 10V, R
V
V
100% Tested
100% Tested
100% Tested
100% Tested
100% Tested
V
V
V
I
CONDITION
= 10V to 18V
IN
= T
O
O
CM
CM
CM
Gain = –1
Gain = +1
R
R
10V Step
= 0mADC
= 10VDC
= 10VDC
L
L
MIN
= 0VDC
= 0VDC
= 0VDC
= 2k
(1)
(1)
(1)
2k
L
to T
L
= 2k
L
= 2k
= 2k
MAX
MIN
–25
–55
–65
114
90
90
16
10
5.5
10
1
11
5
OPA111AM
10
10
1000
TYP
200
110
13
14
110
125
100
0.7
1.6
9.5
0.5
2.5
40
15
100
32
10
40
0.8
0.5
8
6
11
2
2
6
5
12
10
15
2
3
|| 1
|| 3
2
+125
+150
MAX
+85
1.2
3.3
0.8
3.5
80
40
15
15
500
1.5
8
31
18
5
2
MIN
–25
–55
–65
100
100
120
16
10
5.5
10
1
11
5
OPA111BM
10
10
1000
TYP
200
110
110
125
100
0.6
1.2
7.5
0.4
0.25
13
14
2.5
30
11
32
10
40
0.5
0.5
7
6
50
11
2
2
6
5
12
10
15
3
|| 1
|| 3
+125
+150
MAX
+85
2.5
0.6
0.75
3.5
60
30
12
12
250
8
1
10
18
1
1
MIN
114
–55
–55
–65
90
90
16
10
5.5
10
1
11
5
OPA111SM
10
10
1000
TYP
110
110
125
100
200
13
14
0.7
1.6
9.5
0.5
2.5
40
15
100
32
10
40
0.8
0.5
8
6
11
2
2
6
5
12
10
15
2
3
|| 1
|| 3
+125
+125
+150
MAX
1.2
3.3
0.8
3.5
80
40
15
15
500
1.5
8
31
18
5
2
nV/ Hz
nV/ Hz
nV/ Hz
nV/ Hz
UNITS
fA/ Hz
fAp-p
MHz
V/ s
VDC
VDC
Vrms
kHz
Vp-p
V/ C
mA
mA
mA
C/W
dB
pA
pA
dB
dB
pF
V/V
|| pF
|| pF
V
V
C
C
C
V
s
s
s

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