ꢀ ꢁꢂ ꢃ ꢃꢄ ꢅ ꢆ ꢀ ꢁꢂꢃ ꢃꢄ ꢅ ꢇ
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ꢇ
ꢈ
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ꢊ
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ꢈ
ꢁ
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ꢑꢖ ꢗ ꢓꢇꢀ ꢔ ꢑꢘ ꢇ ꢁ ꢇꢐ ꢖꢁ ꢔ ꢙꢔ ꢗꢓ ꢒ
ꢏ
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ꢓꢇ ꢔ ꢁꢕꢀꢑ ꢕꢓꢇꢔ ꢁ
SLOS186C − FEBRUARY 1997 − REVISED AUGUST 2006
TLV2262I electrical characteristics at specified free-air temperature, V
noted)
= 3 V (unless otherwise
DD
TLV2262I
TLV2262AI
UNIT
†
PARAMETER
TEST CONDITIONS
T
A
MIN
TYP MAX
300 2500
3000
MIN
TYP MAX
25°C
300
950
V
IO
Input offset voltage
µV
Full range
1500
Temperature coefficient
of input offset voltage
25°C
to 85°C
α
VIO
2
2
µV/°C
Input offset voltage
long-term drift
(see Note 4)
25°C
0.003
0.003
0.5
µV/mo
V
V
=
1.5 V,
V
= 0,
DD
= 0,
IC
R
= 50 Ω
S
O
25°C
85°C
0.5
60
150
800
60
60
150
800
60
I
I
Input offset current
Input bias current
pA
IO
Full range
25°C
1
1
85°C
150
800
150
800
pA
V
IB
Full range
0
to
2
−0.3
to
2.2
0
to
2
−0.3
to
2.2
25°C
Common-mode input
voltage range
V
V
V
R
= 50 Ω,
|V | ≤5 mV
IO
ICR
OH
OL
S
0
to
0
to
Full range
1.7
1.7
I
I
= −20 µA
25°C
25°C
2.99
2.99
OH
2.85
2.85
2.825
2.7
= −100 µA
High-level output
voltage
OH
Full range 2.825
V
25°C
Full range
25°C
2.7
I
= −400 µA
= 1.5 V,
OH
2.65
2.65
V
I
I
= 50 µA
10
10
IC
IC
OL
25°C
100
100
V
= 1.5 V,
= 500 µA
Low-level output
voltage
OL
Full range
25°C
150
300
150
300
mV
200
100
100
200
100
100
V
= 1.5 V,
I
= 1 ꢈA
IC
OL
Full range
25°C
60
30
60
30
‡
R
R
= 50 kΩ
Large-signal differential
voltage amplification
V
V
= 1.5 V,
= 1 V to 2 V
L
L
IC
O
Full range
25°C
A
VD
V/mV
‡
= 1 MΩ
Differential input
resistance
12
10
12
10
Ω
Ω
r
r
25°C
25°C
25°C
25°C
i(d)
i(c)
Common-mode input
resistance
12
10
12
10
Common-mode input
capacitance
c
z
f = 10 kHz,
P package
8
8
pF
Ω
i(c)
o
Closed-loop output
impedance
f = 100 kHz,
A
V
= 10
270
75
270
77
25°C
Full range
25°C
65
60
80
80
65
60
80
80
Common-mode
rejection ratio
V
IC
V
O
= 0 to 1.7 V,
= 1.5 V,
CMRR
dB
dB
R
= 50 Ω
S
95
100
Supply voltage rejection
ratio (∆V /∆V
DD IO
V
DD
V
IC
= 2.7 V to 8 V,
k
SVR
)
= V
/2,
No load
Full range
DD
†
‡
Full range is − 40°C to 125°C.
Referenced to 1.5 V
NOTE 4: Typical values are based on the input offset voltage shift observed through 500 hours of operating life test at T = 150°C extrapolated
A
to T = 25°C using the Arrhenius equation and assuming an activation energy of 0.96 eV.
A
6
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