LPV321, LPV324-N, LPV358-N
SNOS413D –AUGUST 2000–REVISED MARCH 2013
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5V DC Electrical Characteristics (continued)
Unless otherwise specified, all limits specified for TJ = 25°C, V+ = 5V, V− = 0V, VCM = 2.0V, VO = V+/2 and R L > 1 MΩ.
Boldface limits apply at the temperature extremes.
(1)
(2)
(1)
Parameter
Test Conditions
2.7V ≤ V+ ≤ 5V
Min
50
Typ
65
Max
Units
PSRR
VCM
Power Supply Rejection Ratio
dB
VO = 1V, VCM = 1V
Input Common-Mode Voltage
Range
For CMRR ≥ 50 dB
0
−0.2
4.2
V
4
AV
VO
Large Signal Voltage Gain
RL = 100 kΩ
15
10
100
V/mV
(3)
Output Swing
RL = 100 kΩ to 2.5V
V+ −100
V+ −3.5
90
V+ −200
mV
mA
180
220
IO
Output Short Circuit Current
Sourcing
LPV324, LPV358, and LPV321-N
VO = 0V
2
16
Output Short Circuit Current Sinking LPV321-N
VO = 5V
20
11
60
LPV324 and LPV358
16
VO = 5V
IS
Supply Current
LPV321-N
9
12
15
LPV358
Both amplifiers
15
20
24
µA
LPV324
28
42
All four amplifiers
46
(3) RL is connected to V -. The output voltage is 0.5V ≤ VO ≤ 4.5V.
5V AC Electrical Characteristics
Unless otherwise specified, all limits specified for TJ = 25°C, V+ = 5V, V− = 0V, VCM = 2.0V, VO = V+/2 and R L > 1MΩ.
Boldface limits apply at the temperature extremes.
(1)
(2)
(1)
Parameter
Slew Rate
Test Conditions
Min
Typ
0.1
Min
Units
V/µs
(3)
SR
GBWP
Φm
Gm
en
Gain-Bandwidth Product
Phase Margin
CL = 22 pF
152
87
kHz
Deg
Gain Margin
19
dB
Input-Referred Voltage Noise
Input-Referred Current Noise
f = 1 kHz,
f = 1 kHz
146
0.30
nV/√Hz
pA/√Hz
in
(1) All limits are specified by testing or statistical analysis.
(2) Typical values represent the most likely parametric norm as determined at the time of characterization. Actual typical values may vary
over time and will also depend on the application and configuration. The typical values are not tested and are not ensured on shipped
production material.
(3) Connected as voltage follower with 3V step input. Number specified is the slower of the positive and negative slew rates.
4
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