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TL032AID View Datasheet(PDF) - Texas Instruments

Part NameDescriptionManufacturer
TL032AID ENHANCED-JFET LOW-POWER LOW-OFFSET OPERATIONAL AMPLIFIERS TI
Texas Instruments TI
TL032AID Datasheet PDF : 68 Pages
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TL03x, TL03xA
ENHANCED-JFET LOW-POWER LOW-OFFSET
OPERATIONAL AMPLIFIERS
SLOS180C FEBRUARY 1997 REVISED DECEMBER 2001
TL032M and TL032AM electrical characteristics at specified free-air temperature
PARAMETER
TEST CONDITIONS
TL032M, TL032AM
TA
VCC± = ±5 V
VCC± = ±15 V
UNIT
MIN TYP MAX MIN TYP MAX
VIO Input offset voltage
VO = 0,
VIC = 0,
RS = 50
TL032M
TL032AM
25°C
Full range
25°C
Full range
0.69 3.5
6.5
0.53 2.8
5.8
0.57 1.5
4.5
mV
0.39 0.8
3.8
aVIO
Temperature coefficient
of input offset voltage
VO = 0,
VIC = 0,
RS = 50
TL032M
TL032AM
25°C to
125°C
25°C to
125°C
9.7
9.7
9.7
µV/°C
9.7
Input offset voltage
long-term drift
IIO
Input offset current
VO = 0,
VIC = 0,
RS = 50
VO = 0,
VIC = 0
See Figure 5
25°C
25°C
125°C
0.04
1 100
0.2
10
0.04
µV/mo
1 100 pA
0.2
10 nA
IIB
Input bias current
VO = 0,
VIC = 0
See Figure 5
25°C
125°C
2 200
7
20
2 200 pA
8
20 nA
VICR
Common-mode input
voltage range
25°C
1.5 3.4
to 4 to 5.4
11.5 13.4
to 14 to 15.4
V
Full range
1.5
to 4
11.5
to 14
VOM+
Maximum positive peak
output voltage swing
RL = 10 k
25°C
55°C
125°C
3 4.3
3 4.1
3 4.4
13
14
13
14
V
13
14
VOM
Maximum negative peak
output voltage swing
RL = 10 k
25°C
3 4.2
12.5 13.9
55°C
3
4
12.5 13.8
V
125°C
3 4.3
12.5 14
AVD
Large-signal differential
voltage amplification§
RL = 10 k
ri
Input resistance
ci
Input capacitance
CMRR
Common-mode rejection
ratio
VIC = VICRmin,
VO = 0, RS = 50
25°C
55°C
125°C
25°C
25°C
25°C
55°C
125°C
4
12
3 7.1
3 12.9
1012
5
70
87
70
87
70
87
5 14.3
4 10.4
4
15
1012
4
75
94
70
94
70
94
V/mV
pF
dB
kSVR
Supply-voltage
rejection ratio
(VCC±/VIO)
VCC± = ±5 V to ±15 V,
VO = 0, RS = 50
25°C
55°C
125°C
75
96
75
95
75
96
75
96
75
95
dB
75
96
Full range is 55°C to 125°C.
Typical values are based on the input offset voltage shift observed through 168 hours of operating life test at TA = 150°C extrapolated to
TA = 25°C using the Arrhenius equation and assuming an activation energy of 0.96 eV.
§ At VCC± = ±5 V, VO = 2.3 V; at VCC± = ±15 V, VO = ±10 V
16
POST OFFICE BOX 655303 DALLAS, TEXAS 75265
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