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TL032CP

Part # TL032CP
Description OP Amp Dual GP ±15V 8-Pin PDIP Tube - Rail/Tube
Category IC
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Qty 34
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Texas Instruments
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

TL03x, TL03xA
ENHANCED-JFET LOW-POWER LOW-OFFSET
OPERATIONAL AMPLIFIERS
SLOS180C FEBRUARY 1997 REVISED DECEMBER 2001
7
POST OFFICE BOX 655303 DALLAS, TEXAS 75265
TL031C and TL031AC electrical characteristics at specified free-air temperature (continued)
TL031C, TL031AC
PARAMETER TEST CONDITIONS
T
A
V
CC±
= ±5 V V
CC±
= ±15 V
UNIT
A
MIN TYP MAX MIN TYP MAX
25°C 1.9 2.5 6.5 8.4
P
D
Total power dissipation V
O
= 0, No load
0°C
1.8 2.5 6.3 8.4
mW
70°C 1.9 2.5 6.3 8.4
25°C 192 250 217 280
I
CC
Supply current V
O
= 0, No load
0°C
184 250 211 280
µA
70°C 189 250 210 280
TL031C and TL031AC operating characteristics at specified free-air temperature
TL031C, TL031AC
PARAMETER TEST CONDITIONS
T
A
V
CC±
= ±5 V V
CC±
= ±15 V
UNIT
A
MIN TYP MAX MIN TYP MAX
P iti l t t
R10k C 100 F
25°C 2 1.5 2.9
SR+
Positive slew rate at
unity gain
R
L
= 10 kΩ, C
L
= 100 pF
See Figure 1
0°C 1.8 1 2.6
V/µs
unity
gain
See
Figure
1
70°C 2.2 1.5 3.2
Nti l tt
R10k C 100 F
25°C 3.9 1.5 5.1
SR
Negative slew rate at
unity gain
R
L
= 10 k, C
L
= 100 pF
See Figure 1
0°C 3.7 1.5 5
V/µs
unity
gain
See
Figure
1
70°C 4 1.5 5
V
I(PP)
=
±10 mV,
25°C 138 132
t
r
Rise time
V
I(PP)
=
±10
mV
,
R
L
= 10 k, C
L
= 100 pF
0°C 134 127
ns
See Figures 1 and 2
70°C 150 142
V
I(PP)
=
±10 mV,
25°C 138 132
t
f
Fall time
V
I(PP)
=
±10
mV
,
R
L
= 10 k, C
L
= 100 pF
0°C 134 127
ns
See Figure 1
70°C 150 142
V
I(PP)
=
±10 mV,
25°C 11% 5%
Overshoot factor
V
I(PP)
=
±10
mV
,
RL = 10 k, C
L
= 100 pF
0°C 10% 4%
See Figures 1 and 2
70°C 12% 6%
TL031C
f = 10 Hz
25°C
61 61
V
E
q
uivalent input
TL031C
R
S
= 20
f = 1 kHz
25°C
41 41
nV/H
V
n
q
noise voltage
TL031AC
S
See Figure 3
f = 10 Hz
25°C
61 61
n
V/H
z
TL031AC
f = 1 kHz
25°C
41 41 60
I
n
Equivalent input noise
current
f = 1 kHz 25°C 0.003 0.003
pA/Hz
V
I
=
10 mV
25°C 1 1.1
B
1
Unity-gain bandwidth
V
I
=
10
mV
R
L
= 10 kΩ, C
L
= 25 pF
0°C 1 1.1
MHz
See Figure 4
70°C 1 1
V
I
= 10 mV
25°C 61° 65°
φ
m
Phase margin at unity gain
V
I
10
mV
R
L
= 10 kΩ, C
L
= 25 pF
SFi
0°C 61° 65°
See Figure 4
70°C 60° 64°
For V
CC±
= ±5 V, V
I(PP)
= ±1 V; for V
CC±
= ±15 V, V
I(PP)
= ±5 V
TL03x, TL03xA
ENHANCED-JFET LOW-POWER LOW-OFFSET
OPERATIONAL AMPLIFIERS
SLOS180C FEBRUARY 1997 REVISED DECEMBER 2001
8
POST OFFICE BOX 655303 DALLAS, TEXAS 75265
TL031I and TL031AI electrical characteristics at specified free-air temperature
TL031I, TL031AI
PARAMETER TEST CONDITIONS
T
A
V
CC±
= ±5 V V
CC±
= ±15 V UNIT
A
MIN TYP MAX MIN TYP MAX
TL031I
25°C 0.54 3.5 0.5 1.5
V
IO
In
p
ut offset voltage
V
O
= 0,
V
IC
0
TL031I
Full range
5.3 3.3
mV
V
IO
Input
offset
voltage
V
IC
=
0
,
R
S
=
50
TL031AI
25°C 0.41 2.8 0.34 0.8
mV
R
S
=
50
TL031AI
Full range
4.6 2.6
TL031I
25°C to
65
62
V
Temperature coefficient
of
V
O
= 0,
V
IC
0
TL031I
85°C
6
.
5
6
.
2
µV/°C
V
IO
o
f
in
p
ut offset voltage
V
IC
=
0
,
R
S
=
50
TL031AI
25°C to
65
62
25
µ
V/°C
in ut
offset
voltage
R
S
=
50
TL031AI
85°C
6
.
5
6
.
2
25
Input offset volta
g
e
V
O
= 0,
V
IC
0
25°C
004
004
µV/mo
g
long-term drift
V
IC
=
0
,
R
S
= 50
25°C
0
.
04
0
.
04
µ
V/mo
I
IO
In
p
ut offset current
V
O
= 0, V
IC
= 0
25°C 1 100 1 100 pA
I
IO
Input
offset
current
O
,
IC
See Figure 5
85°C 0.02 0.45 0.02 0.45 nA
I
IB
In
p
ut bias current
V
O
= 0, V
IC
= 0
25°C 2 200 2 200 pA
I
IB
Input
bias
current
O
,
IC
See Figure 5
85°C 0.2 0.9 0.2 0.9 nA
V
ICR
Common-mode input
25°C
1.5
to 4
3.4
to 5.4
11.5
to 14
13.4
to 15.4
V
V
ICR
voltage range
Full range
1.5
to 4
11.5
to 14
V
M i iti k
25°C 3 4.3 13 14
V
OM+
Maximum positive peak
out
p
ut voltage swing
R
L
= 10 k
40°C 3 4.1 13 14
V
out ut
voltage
swing
85°C 3 4.4 13 14
M i ti k
25°C 3 4.2 12.5 13.9
V
OM
Maximum negative peak
out
p
ut voltage swing
R
L
= 10 k
40°C 3 4.1 12.5 13.8
V
out ut
voltage
swing
85°C 3 4.2 12.5 14
L i l diff ti l
25°C 4 12 5 14.3
A
VD
Large-signal differential
voltage am
p
lification
§
R
L
= 10 k
40°C 3 8.4 4 11.6
V/mV
voltage
am lification
§
85°C 4 13.5 5 15.3
r
i
Input resistance 25°C 10
12
10
12
c
i
Input capacitance 25°C 5 4 pF
Cd
VV i
25°C 70 87 75 94
CMRR
Common-mode
rejection ratio
V
IC
=
V
ICR
min,
V
O
=0 R
S
=50
40°C 70 87 75 94
dB
rejection
ratio
V
O
=
0
,
R
S
=
50
85°C 70 87 75 94
Suppl
y
-volta
g
e
25°C 75 96 75 96
k
SVR
Su ly voltage
rejection ratio
( V / V)
V
O
= 0, R
S
= 50
40°C
75 96 75 96
dB
(V
CC±
/V
IO
)
85°C 75 96 75 96
Full range is 40°C to 85°C.
Typical values are based on the input offset voltage shift observed through 168 hours of operating life test at T
A
= 150°C extrapolated to
T
A
= 25°C using the Arrhenius equation and assuming an activation energy of 0.96 eV.
§
At V
CC±
= ±5 V, V
O
= ±2.3 V; at V
CC±
= ±15 V, V
O
= ±10 V
TL03x, TL03xA
ENHANCED-JFET LOW-POWER LOW-OFFSET
OPERATIONAL AMPLIFIERS
SLOS180C FEBRUARY 1997 REVISED DECEMBER 2001
9
POST OFFICE BOX 655303 DALLAS, TEXAS 75265
TL031I and TL031AI electrical characteristics at specified free-air temperature (continued)
TL031I, TL031AI
PARAMETER TEST CONDITIONS
T
A
V
CC±
= ±5 V V
CC±
= ±15 V UNIT
A
MIN TYP MAX MIN TYP MAX
25°C 1.9 2.5 6.5 8.4
P
D
Total power dissipation V
O
= 0, No load
40°C
1.4 2.5 5.4 8.4
mW
85°C 1.9 2.5 6.2 8.4
25°C 192 250 217 280
I
CC
Supply current V
O
= 0, No load
40°C
144 250 181 280
µA
85°C 189 250 207 280
TL031I and TL031AI operating characteristics at specified free-air temperature
TL031I, TL031AI
PARAMETER TEST CONDITIONS T
A
V
CC±
= ±5 V V
CC±
= ±15 V
UNIT
MIN TYP MAX MIN TYP MAX
P iti l t t
R10k C 100 F
25°C 2 1.5 2.9
SR+
Positive slew rate at
unity gain
R
L
= 10 kΩ, C
L
= 100 pF
See Figure 1
40°C 1.6 1 2.1
V/µs
unity
gain
See
Figure
1
85°C 2.3 1.5 3.3
N ti l ttit
R10k C 100 F
25°C 3.9 1.5 5.1
SR
Negative slew rate at unity
gain
R
L
= 10 kΩ, C
L
= 100 pF
See Figure 1
40°C 3.3 1.5 4.8
V/µs
gain
See
Figure
1
85°C 4.1 1.5 4.9
V
I(PP)
=
±10 mV,
25°C 138 132
t
r
Rise time
V
I(PP)
=
±10
mV
,
R
L
= 10 k, C
L
= 100 pF
40°C 132 123
ns
See Figures 1 and 2
85°C 154 146
V
I(PP)
=
±10 mV,
25°C 138 132
t
f
Fall time
V
I(PP)
=
±10
mV
,
R
L
= 10 k, C
L
= 100 pF
40°C 132 123
ns
See Figure 1
85°C 154 146
V
I(PP)
=
±10 mV,
25°C 11% 5%
Overshoot factor
V
I(PP)
=
±10
mV
,
R
L
= 10 k, C
L
= 100 pF
40°C 12% 5%
See Figures 1 and 2
85°C 13% 7%
TL031I
f = 10 Hz
25°C
61 61
V
Equivalent
input
TL031I
R
S
= 20
f = 1 kHz
25°C
41 41
nV/H
V
n
i
npu
t
noise voltage
TL031AI
S
See Figure 3
f = 10 Hz
25°C
61 61
n
V/H
z
noise
voltage
TL031AI
f = 1 kHz
25°C
41 41 60
I
Equivalent input noise
f=1kHz
25°C
0 003
0 003
pA/H
I
n
q
current
f
=
1
kHz
25°C
0
.
003
0
.
003
p
A/H
z
V
I
=
10 mV
25°C 1 1.1
B
1
Unity-gain bandwidth
V
I
=
10
mV
R
L
= 10 k, C
L
= 25 pF
40°C 1 1.1
MHz
See Figure 4
85°C 0.9 1
V
I
= 10 mV
,
25°C 61° 65°
φ
m
Phase margin at unity gain
V
I
10
mV,
R
L
= 10 k, C
L
= 25 pF
SFi
40°C 60° 65°
See Figure 4
85°C 60° 64°
For V
CC±
= ±5 V, V
I(PP)
= ±1 V; for V
CC±
= ±15 V, V
I(PP)
= ±5 V
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