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LMV921 Datasheet(PDF) 5 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Part No. LMV921
Description  1.8V, 1MHz, Low Power Operational Amplifiers with Rail-To-Rail Input and Output
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Maker  NSC [National Semiconductor (TI)]
Homepage  http://www.national.com
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LMV921 Datasheet(HTML) 5 Page - National Semiconductor (TI)

 
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2.7V DC Electrical Characteristics (Continued)
Unless otherwise specified, all limits guaranteed for T
J = 25˚C. V
+ = 2.7V, V = 0V, V
CM =V
+/2, V
O =V
+/2 and
R
L > 1MΩ. Boldface limits apply at the temperature extremes.
Symbol
Parameter
Condition
Typ
(Note 5)
Limits
(Note 6)
Units
I
S
Supply Current
LMV921 (Single)
147
190
210
uA
max
LMV922 (Dual)
380
450
600
LMV924 (Quad)
580
750
900
CMRR
Common Mode Rejection Ratio
0V
≤ V
CM ≤ 1.5V
84
62
60
dB
min
−0.2V
≤ V
CM ≤ 0V
2.7V
≤ V
CM < 2.9V
73
50
PSRR
Power Supply Rejection Ratio
1.8V
≤ V+ ≤ 5V,
V
CM = 0.5V
78
67
62
dB
min
V
CM
Input Common-Mode Voltage
Range
For CMRR
≥ 50dB
-0.3
-0.2
0
V
max
3.050
2.9
2.7
V
min
A
V
Large Signal Voltage Gain
LMV921 (Single)
R
L = 600Ω to 1.35V,
V
O = 0.2V to 2.5V
98
80
75
dB
min
R
L =2kΩ to 1.35V,
V
O = 0.2V to 2.5V
103
83
77
Large Signal Voltage Gain
LMV922 (Dual)
LMV924 (Quad)
R
L = 600Ω to 1.35V,
V
O = 0.2V to 2.5V
86
68
63
dB
min
R
L =2kΩ to 1.35V,
V
O = 0.2V to 2.5V
91
71
65
V
O
Output Swing
R
L = 600Ω to 1.35V
V
IN = ± 100mV
2.62
2.550
2.530
V
min
0.075
0.095
0.115
V
max
R
L =2kΩ to 1.35V
V
IN = ± 100mV
2.675
2.650
2.640
V
min
0.025
0.040
0.045
V
max
I
O
Output Short Circuit Current
Sourcing, V
O =0V
V
IN = 100mV
27
20
15
mA
min
Sinking, V
O = 2.7V
V
IN = −100mV
28
22
16
mA
min
2.7V AC Electrical Characteristics
Unless otherwise specified, all limits guaranteed for T
J = 25˚C. V
+ = 2.7V, V = 0V, V
CM = 1.0V, VO = 1.35V and
R
L > 1MΩ. Boldface limits apply at the temperature extremes.
Symbol
Parameter
Conditions
Typ
(Note 5)
Units
SR
Slew Rate
(Note 7)
0.41
V/µs
GBW
Gain-Bandwidth Product
1
MHz
Φ
m
Phase Margin
65
Deg.
G
m
Gain Margin
10
dB
e
n
Input-Referred Voltage Noise
f = 1 kHz, V
CM = 0.5V
45
i
n
Input-Referred Current Noise
f = 1 kHz
0.1
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