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LPV358 Datasheet, PDF (5/23 Pages) Texas Instruments – GENERAL-PURPOSE, LOW-VOLTAGE, LOW-POWER, RAIL-TO-RAIL OUTPUT OPERATIONAL AMPLIFIERS
Not Recommended for New Designs
LPV321 SINGLE, LPV358 DUAL, LPV324 QUAD
GENERAL-PURPOSE, LOW-VOLTAGE, LOW-POWER, RAIL-TO-RAIL OUTPUT
OPERATIONAL AMPLIFIERS
SLOS433I − FEBRUARY 2004 − REVISED MARCH 2005
2.7-V electrical characteristics
TA = 25°C, VCC+ = 2.7 V, VCC− = 0 V, VIC = 1 V, VO = VCC+/2, and RL > 1 MΩ (unless otherwise
noted)
VIO
αVIO
IIB
IIO
CMRR
PARAMETER
Input offset voltage
Average temperature
coefficient of
input offset voltage
Input bias current
Input offset current
Common-mode
rejection ratio
TEST CONDITIONS
0 ≤ VIC ≤ 1.7 V
MIN
TYP†
MAX UNIT
1.2
7 mV
4
mV/°C
1.7
50 nA
0.6
40 nA
50
70
dB
kSVR
VICR
VO
ICC
SR
GBW
Fm
Vn
Supply-voltage
rejection ratio
Common-mode
input voltage range
Output swing
Supply current
Slew rate‡
Gain bandwidth product
Phase margin
Gain margin
Equivalent input
noise voltage
2.7 V ≤ VCC+ ≤ 5 V, VIC = 1 V, VO = 1 V
CMRR ≥ 50 dB
RL = 100 kΩ to 1.35 V
LPV321
LPV358 (both amplifiers)
LPV324 (all four amplifiers)
High level
Low level
CL = 22 pF (see Note 5)
CL = 22 pF (see Note 5)
CL = 22 pF (see Note 5)
f = 1 kHz
50
65
dB
0 to 1.7
−0.2 to 1.9
V
VCC+ − 0.100
VCC+ − 0.003
0.080
4
8
16
0.1
205
71
11
0.180
8
16
24
V
mA
V/ms
kHz
deg
dB
178
nV/√Hz
Equivalent input
In
noise current
f = 1 kHz
† All typical values are at VCC = 2.7 V, TA = 25°C.
‡ Number specified is the slower of the positive and negative slew rates.
NOTE 5: Closed-loop gain = 18 dB, VIC = VCC+/2
0.5
pA/√Hz
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