Datasheet

TLC252, TLC252A, TLC252B, TLC252Y, TLC25L2, TLC25L2A, TLC25L2B
TLC25L2Y, TLC25M2, TLC25M2A, TLC25M2B, TLC25M2Y
LinCMOS DUAL OPERATIONAL AMPLIFIERS
SLOS002I JUNE 1983 REVISED MARCH 2001
12
POST OFFICE BOX 655303 DALLAS, TEXAS 75265
electrical characteristics at specified free-air temperature, V
DD
= 5 V (unless otherwise noted)
PARAMETER TEST CONDITIONS
T
A
TLC25M2C
TLC25M2AC
TLC25M2BC
UNIT
MIN TYP MAX
TLC252C
V
O
= 1.4 V, V
IC
= 0,
25°C 1.1 10
TLC252C
O
,
R
S
= 50 ,
IC
,
R
L
= 100 k
Full range
12
V
IO
In
p
ut offset voltage
TLC252AC
V
O
= 1.4 V, V
IC
= 0,
25°C 0.9 5
mV
V
IO
Input
offset
voltage
TLC252AC
O
,
R
S
= 50 ,
IC
,
R
L
= 100 k
Full range
6.5
mV
TLC252BC
V
O
= 1.4 V, V
IC
= 0,
25°C 0.22 2
TLC252BC
O
,
R
S
= 50 ,
IC
,
R
L
= 100 k
Full range
3
α
VIO
Average temperature coefficient of
input offset voltage
25°C to 70°C 1.7 µV/°C
I
IO
In
p
ut offset current (see Note 4)
V
O
=25V
V
IC
=25V
25°C 0.1 60
p
A
I
IO
Input
offset
current
(see
Note
4)
V
O
=
2
.
5
V
,
V
IC
=
2
.
5
V
70°C 7 300
pA
I
IB
In
p
ut bias current (see Note 4)
V
O
=25V
V
IC
=25V
25°C 0.6 60
p
A
I
IB
Input
bias
current
(see
Note
4)
V
O
=
2
.
5
V
,
V
IC
=
2
.
5
V
70°C 40 600
pA
V
ICR
Common-mode input volta
g
e
25°C
0.2
to
4
0.3
to
4.2
V
V
ICR
g
range (see Note 5)
Full range
0.2
to
3.5
V
25°C 3.2 3.9
V
OH
High-level output voltage V
ID
= 100 mV, R
L
= 100 k
0°C
3 3.9
V
70°C 3 4
25°C 0 50
V
OL
Low-level output voltage V
ID
= 100 mV, I
OL
= 0
0°C
0 50
mV
70°C 0 50
L i l diff ti l lt
25°C 25 170
A
VD
Large-signal differential voltage
am
p
lification
V
O
= 0.25 V to 2 V, R
L
= 100 k
0°C
15 200
V/mV
am lification
70°C 15 140
25°C 65 91
CMRR Common-mode rejection ratio V
IC
= V
ICR
min
0°C 60 91
dB
70°C 60 92
S l lt j ti ti
25°C 70 93
k
SVR
Supply-voltage rejection ratio
(V
DD
/V
DD
)
V
DD
= 5 V to 10 V, V
O
= 1.4 V
0°C
60 92
dB
(V
DD
/V
DD
)
70°C 60 94
V25V
V25V
25°C 210 560
I
DD
Supply current (two amplifiers)
V
O
=
2
.
5
V
,
No load
V
IC
=
2
.
5
V
,
0°C
250 640
µA
No
load
70°C 170 440
Full range is 0°C to 70°C.
NOTES: 4. The typical values of input bias current and input offset current below 5 pA were determined mathematically.
5. This range also applies to each input individually.