Datasheet
TL072-EP, TL074-EP
SLOS747F –OCTOBER 2011–REVISED DECEMBER 2012
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ELECTRICAL CHARACTERISTICS
V
CC±
= ±15 V (unless otherwise noted)
TL072 TL074
PARAMETER TEST CONDITIONS
(1)
T
A
(2)
UNIT
MIN TYP MAX MIN TYP MAX
25°C 3 6 3 6
V
IO
Input offset voltage V
O
= 0, R
S
= 50 Ω mV
Full range 8 8
Temperature coefficient
α
VIO
V
O
= 0, R
S
= 50 Ω Full range 18 18 μV/°C
of input offset voltage
25°C 5 100 5 100 pA
I
IO
Input offset current V
O
= 0
125°C 2 2 nA
25°C 65 200 65 200 pA
I
IB
Input bias current V
O
= 0
125°C 20 20 nA
Common-mode input
V
ICR
25°C ±11 –12 to 15 ±11 –12 to 15 V
voltage range
R
L
= 10 kΩ 25°C ±12 ±13.5 ±12 ±13.5
Maximum peak output
V
OM
R
L
≥ 10 kΩ ±12 ±12 V
voltage swing
Full range
R
L
≥ 2 kΩ ±10 ±10
25°C 35 200 35 200
Large-signal differential
A
VD
V
O
= ±10 V, R
L
≥ 2 kΩ V/mV
voltage amplification
Full range 15 15
B
1
Unity-gain bandwidth 25°C 3 3 MHz
r
i
Input resistance 25°C Ω
10
12
10
12
Common-mode V
IC
= V
ICR
min,
CMRR 25°C 80 86 80 86 dB
rejection ratio V
O
= 0, R
S
= 50 Ω
Supply-voltage rejection V
CC
= ±9 V to ±15 V,
k
SVR
25°C 80 86 80 86 dB
ratio (ΔV
CC±
/ΔV
IO
) V
O
= 0, R
S
= 50 Ω
Supply current (each 1.4 1.4
I
CC
V
O
= 0, No load 25°C 2.5 2.5 mA
amplifier)
V
O1
/V
O2
Crosstalk attenuation A
VD
= 100 25°C 120 120 dB
(1) Input bias currents of an FET-input operational amplifier are normal junction reverse currents, which are temperature sensitive, as
shown in Figure 3. Pulse techniques must be used that will maintain the junction temperature as close to the ambient temperature as
possible.
(2) All characteristics are measured under open-loop conditions with zero common-mode voltage, unless otherwise specified. Full range is
T
A
= –40°C to 125°C for TL07xQ and T
A
= -55°C to 125°C for TL07xM.
OPERATING CHARACTERISTICS
V
CC±
= ±15 V, T
A
= 25°C
TL072 TL074
PARAMETER TEST CONDITIONS UNIT
MIN TYP MAX MIN TYP MAX
Slew rate at unity V
I
= 10 V, R
L
= 2 kΩ,
SR 8 13 8 13 V/μs
gain C
L
= 100 pF, See Figure 1
0.1 0.1 μs
Rise-time overshoot V
I
= 20 V, R
L
= 2 kΩ,
t
r
factor C
L
= 100 pF, See Figure 1
20 20 %
f = 1 kHz 18 18 nV/√Hz
Equivalent input noise
V
n
R
S
= 20 Ω
voltage
f = 10 Hz to 10 kHz 4 4 μV
Equivalent input noise
I
n
R
S
= 20 Ω, f = 1 kHz 0.01 0.01 pA/√Hz
current
V
I
rms = 6 V,
Total harmonic A
VD
= 1,
THD R
L
≥ 2 kΩ, 0.003 0.003 %
distortion RS ≤ 1 kΩ,
f = 1 kHz,
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