Datasheet

LM4132
SNVS372C AUGUST 2005REVISED APRIL 2013
www.ti.com
Electrical Characteristics
LM4132-3.0 (V
OUT
= 3.0V)
Limits in standard type are for T
J
= 25°C only, and limits in boldface type apply over the junction temperature (T
J
) range of -
40°C to +125°C unless otherwise specified. Minimum and Maximum limits are specified through test, design, or statistical
correlation. Typical values represent the most likely parametric norm at T
J
= 25°C, and are provided for reference purposes
only. Unless otherwise specified V
IN
= 5V and I
LOAD
= 0
Symbol Parameter Conditions Min Typ Max Unit
(1) (2) (1)
V
REF
Output Voltage Initial Accuracy
LM4132A-3.0 (A Grade - 0.05%) -0.05 0.05
LM4132B-3.0 (B Grade - 0.1%) -0.1 0.1
LM4132C-3.0 (C Grade - 0.2%) -0.2 0.2 %
LM4132D-3.0 (D Grade - 0.4%) -0.4 0.4
LM4132E-3.0 (E Grade - 0.5%) -0.5 0.5
TCV
REF
/ °C Temperature Coefficient
(Note 6)
LM4132A-3.0 0°C T
J
+ 85°C 10
-40°C T
J
+125°C 20
LM4132B-3.0 20
ppm / °C
LM4132C-3.0 20
-40°C T
J
+125°C
LM4132D-3.0 20
LM4132E-3.0 30
I
Q
Supply Current 60 100 µA
I
Q_SD
Supply Current in Shutdown EN = 0V 3 7 µA
ΔV
REF
/ΔV
IN
Line Regulation V
REF
+ 400mV V
IN
5.5V 70 ppm / V
ΔV
REF
/ΔI
LOAD
Load Regulation 0mA I
LOAD
20mA 25 120 ppm / mA
ΔV
REF
Long Term Stability
(3)
1000 Hrs 50
ppm
Thermal Hysteresis
(4)
-40°C T
J
+125°C 75
V
IN
- V
REF
Dropout Voltage
(5)
I
LOAD
= 10mA 175 400 mV
V
N
Output Noise Voltage 0.1 Hz to 10 Hz 285 µV
PP
I
SC
Short Circuit Current 75 mA
V
IL
Enable Pin Maximum Low Input Level 35 %V
IN
V
IH
Enable Pin Minimum High Input Level 65 %V
IN
(1) Limits are 100% production tested at 25°C. Limits over the operating temperature range are specified through correlation using
Statistical Quality Control.
(2) Typical numbers are at 25°C and represent the most likely parametric norm.
(3) Long term stability is V
REF
@25°C measured during 1000 hrs.
(4) Thermal hysteresis is defined as the change in +25°C output voltage before and after cycling the device from (-40°C to 125°C).
(5) Dropout voltage is defined as the minimum input to output differential at which the output voltage drops by 0.5% below the value
measured with a 5V input.
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