tlc272
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vs Differential in ut voltage
vs Free-air temperature
17
vs Free air tem erature
vs Low-level output current
18, 19
vs Supply voltage
20
AVD
Large-signal differential voltage amplification
vs Su
ly voltage
vs Free-air temperature
21
AVD
Large signal differential voltage am lification
vs Free air tem erature
vs Frequency
32, 33
IIB
Input bias current
vs Free-air temperature
22
IIO
Input offset current
vs Free-air temperature
22
VIC
Common-mode input voltage
vs Supply voltage
23
I
Supply current
vs Supply voltage
24
IDD
Supply current
vs Su
ly voltage
vs Free-air temperature
25
SR
Slew rate
vs Supply voltage
26
SR
Slew rate
vs Su
ly voltage
vs Free-air temperature
27
Normalized slew rate
vs Free-air temperature
28
VO(PP) Maximum peak-to-peak output voltage
vs Frequency
29
B
Unity gain bandwidth
vs Free-air temperature
30
B1
Unity-gain bandwidth
vs Free air tem erature
vs Supply voltage
31
vs Supply voltage
34
φm
Phase margin
vs Su
ly voltage
vs Free-air temperature
35
φm
Phase margin
vs Free air tem erature
vs Load capacitance
36
Vn
Equivalent input noise voltage
vs Frequency
37
Phase shift
vs Frequency
32, 33
TLC272, TLC272A, TLC272B, TLC272Y, TLC277
LinCMOS
PRECISION DUAL OPERATIONAL AMPLIFIERS
SLOS091E – OCTOBER 1987 – REVISED FEBRUARY 2002
20
POST OFFICE BOX 655303
• DALLAS, TEXAS 75265
TYPICAL CHARACTERISTICS
Figure 6
– 5
0
Percentage of Units
–
%
VIO – Input Offset Voltage – mV
5
60
– 4
– 3
– 2
– 1
0
1
2
3
4
10
20
30
40
50
ÌÌÌÌÌÌÌÌÌÌÌÌ
ÌÌÌÌÌÌÌÌÌÌÌÌ
753 Amplifiers Tested From 6 Wafer Lots
ÌÌÌÌ
ÌÌÌÌ
VDD = 5 V
ÌÌÌÌÌ
ÌÌÌÌÌ
TA = 25°C
ÌÌÌÌÌ
ÌÌÌÌÌ
P Package
DISTRIBUTION OF TLC272
INPUT OFFSET VOLTAGE
Figure 7
50
40
30
20
10
4
3
2
1
0
– 1
– 2
– 3
– 4
60
5
VIO – Input Offset Voltage – mV
Percentage of Units
–
%
0
– 5
DISTRIBUTION OF TLC272
INPUT OFFSET VOLTAGE
ÌÌÌÌÌÌÌÌÌÌÌ
ÌÌÌÌÌÌÌÌÌÌÌ
753 Amplifiers Tested From 6 Wafer Lots
ÌÌÌÌ
VDD = 10 V
ÌÌÌÌ
ÌÌÌÌ
TA = 25°C
ÌÌÌÌ
ÌÌÌÌ
P Package
Figure 8
ÌÌÌÌÌÌÌÌÌÌÌÌ
ÌÌÌÌÌÌÌÌÌÌÌÌ
ÌÌÌÌÌÌÌÌÌÌÌÌ
ÌÌÌÌÌÌÌÌÌÌÌÌ
324 Amplifiers Tested From 8 Wafer Lots
VDD = 5 V
TA = 25°C to 125°C
P Package
Outliers:
(1) 20.5
µV/°C
50
40
30
20
10
8
6
4
2
0
– 2
– 4
– 6
– 8
60
10
Percentage of Units
–
%
0
– 10
αVIO – Temperature Coefficient – µV/°C
DISTRIBUTION OF TLC272 AND TLC277
INPUT OFFSET VOLTAGE
TEMPERATURE COEFFICIENT
Figure 9