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TL071_16 Datasheet, PDF (6/51 Pages) Texas Instruments – Low-Noise JFET-Input Operational Amplifiers
TL071, TL071A, TL071B
TL072, TL072A, TL072B, TL074, TL074A, TL074B
SLOS080M – SEPTEMBER 1978 – REVISED JUNE 2015
www.ti.com
6.5 Electrical Characteristics, TL07xC, TL07xAC, TL07xBC, TL07xI
VCC± = ±15 V (unless otherwise noted)
PARAMETER
TEST
CONDITIONS (1)
VIO
Input offset
voltage
VO = 0,
Temperature
αVIO
coefficient of
input offset
VO = 0,
voltage
IIO
Input offset
current
VO = 0
RS = 50 Ω
RS = 50 Ω
IIB
Input bias
current (3)
VO = 0
Common-mode
VICR
input voltage
range
Maximum peak RL= 10 kΩ
VOM
output voltage RL≥ 10 kΩ
swing
RL≥ 2 kΩ
Large-signal
AVD
differential
voltage
VO = ±10 V, RL≥ 2 kΩ
amplification
B1
Utility-gain
bandwidth
TA (2)
25°C
Full range
Full range
25°C
Full range
25°C
Full range
25°C
25°C
Full range
25°C
Full range
25°C
TL071C, TL072C,
TL074C
MIN TYP MAX
3 10
13
TL071AC, TL072AC,
TL074AC
MIN TYP MAX
3
6
7.5
TL071BC, TL072BC,
TL074BC
TL071I, TL072I, TL074I
MIN TYP MAX MIN TYP MAX
2
3
3
6
5
8
UNIT
mV
18
18
18
18
µV/°C
5 100
5 100
5 100
10
2
2
65 200
65 200
65 200
7
7
7
–12
±11
to
15
–12
±11
to
15
–12
±11
to
15
±12 ±13.5
±12 ±13.5
±12 ±13.5
±12
±12
±12
±10
±10
±10
25
200
50
200
50
200
15
25
25
5 100 pA
2 nA
65 200 pA
7 nA
–12
±11
to
V
15
±12 ±13.5
±12
V
±10
50
200
V/mV
25
3
3
3
3
MHz
rI
CMRR
kSVR
ICC
VO1 /VO2
Input resistance
Common-mode
rejection ratio
Supply-voltage
rejection ratio
(ΔVCC±/ΔVIO)
Supply current
(each amplifier)
Crosstalk
attenuation
VIC = VICRmin,
VO = 0,
RS = 50 Ω
VCC = ±9 V to ±15 V,
VO = 0,
RS = 50 Ω
VO = 0,
No load
AVD = 100
25°C
25°C
25°C
25°C
25°C
1012
70
100
1012
75
100
1012
75
100
1012
Ω
75
100
dB
70
100
80
100
80
100
1.4 2.5
120
1.4 2.5
120
1.4 2.5
120
80
100
dB
1.4 2.5 mA
120
dB
(1) All characteristics are measured under open-loop conditions with zero common-mode voltage, unless otherwise specified.
(2) Full range is TA = 0°C to 70°C for TL07_C,TL07_AC, TL07_BC and is TA = –40°C to 85°C for TL07_I.
(3) Input bias currents of an FET-input operational amplifier are normal junction reverse currents, which are temperature sensitive, as
shown in Figure 1. Pulse techniques must be used that maintain the junction temperature as close to the ambient temperature as
possible.
6
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