LMV431IM5 National Semiconductor, LMV431IM5 Datasheet - Page 6

IC, ADJ SHUNT REG, 1.24V, 1.5%, 5-SOT-23

LMV431IM5

Manufacturer Part Number
LMV431IM5
Description
IC, ADJ SHUNT REG, 1.24V, 1.5%, 5-SOT-23
Manufacturer
National Semiconductor
Datasheet

Specifications of LMV431IM5

Topology
Shunt, Programmable
Reference Voltage
1.24V
Reference Voltage Tolerance
18mV
Voltage Reference Case Style
SOT-23
No. Of Pins
5
Temperature Coefficient
129ppm/°C
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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V
V
I
∝ I
I
I
r
V
V
I
∝ I
I
I
r
V
V
I
Symbol
Symbol
Symbol
REF
Z(MIN)
Z(OFF)
REF
Z(MIN)
Z(OFF)
REF
Z
Z
REF
DEV
REF
DEV
REF
DEV
LMV431AI Electrical Characteristics
T
LMV431BC Electrical Characteristics
T
LMV431BI Electrical Characteristics
T
REF
REF
A
A
A
= 25˚C unless otherwise specified
= 25˚C unless otherwise specified
= 25˚C unless otherwise specified
Reference Voltage
Deviation of Reference Input Voltage
Over Temperature (Note 4)
Ratio of the Change in Reference
Voltage to the Change in Cathode
Voltage
Reference Input Current
Deviation of Reference Input Current
over Temperature
Minimum Cathode Current for
Regulation
Off-State Current
Dynamic Output Impedance (Note 5)
Reference Voltage
Deviation of Reference Input Voltage
Over Temperature (Note 4)
Ratio of the Change in Reference
Voltage to the Change in Cathode
Voltage
Reference Input Current
Deviation of Reference Input Current
over Temperature
Minimum Cathode Current for
Regulation
Off-State Current
Dynamic Output Impedance (Note 5)
Reference Voltage
Deviation of Reference Input Voltage
Over Temperature (Note 4)
Ratio of the Change in Reference
Voltage to the Change in Cathode
Voltage
Reference Input Current
Parameter
Parameter
Parameter
V
(See Figure 1 )
V
T
I
V
R
R
I
R
I
V
V
V
Frequency = 0Hz (see Figure 1)
V
(See Figure 1 )
V
T
I
V
R
R
I
R
I
V
V
V
Frequency = 0Hz (see Figure 1)
V
(See Figure 1 )
V
T
I
V
R
R
I
Z
I
I
Z
I
I
Z
I
A
A
A
Z
Z
Z
Z
Z
Z
Z
Z
Z
Z
Z
Z
Z
Z
Z
1
1
1
1
1
1
1
1
= 10mA (see Figure 2)
= 10mA, T
= 10mA (see Figure 2)
= 10mA, T
= 10mA (see Figure 2)
= 10mA (see Figure 2 )
= 10mA (see Figure 2 )
= 10mA (see Figure 2 )
= V
= V
= Full Range (See Figure 1)
from V
= 10k, R
= 10kΩ, R
= 10kΩ, R
= V
= 6V, V
= V
= V
= V
= Full Range (See Figure 1)
from V
= 10k, R
= 10kΩ, R
= 10kΩ, R
= V
= 6V, V
= V
= V
= V
= Full Range (See Figure 1)
from V
= 10k, R
= 10kΩ, R
REF
REF
REF
REF
REF
REF
REF
REF
REF
REF
REF
REF
REF
, I
, I
, I
, I
, I
, I
, I
, I
REF
REF
(see Figure 1)
(see Figure 1)
2
2
2
6
Z
Z
Z
Z
Z
Z
Z
Z
A
A
=
2
2
=
2
2
=
2
to 6V
to 6V
to 6V
= 10mA
= 10mA,
= 0.1mA to 15mA
= 10mA
= 10mA,
= 0.1mA to 15mA
= 10mA
= 10mA,
= Full Range (see Figure 2)
= Full Range (see Figure 2)
= 0V (see Figure 3 )
= 0V (see Figure 3 )
=
=
=
=
=
Conditions
Conditions
Conditions
and 2.6k
and 2.6k
and 2.6k
,
,
T
T
T
T
T
T
A
A
A
A
A
A
= 25˚C
= Full Range
= 25˚C
= Full Range
= 25˚C
= Full Range
1.228
1.215
1.234
1.227
1.234
1.224
Min
Min
Min
0.15
0.15
0.15
0.001
0.001
1.24
−1.5
0.25
1.24
−1.5
0.05
0.25
1.24
−1.5
Typ
Typ
Typ
0.1
55
55
6
4
6
0.5
0.50
0.50
1.252
1.265
1.246
1.253
1.246
1.259
Max
−2.7
Max
−2.7
Max
−2.7
0.4
0.1
0.4
0.3
0.1
0.4
20
80
12
80
20
Units
Units
Units
mV/V
mV/V
mV/V
µA
µA
µA
mV
mV
mV
µA
µA
µA
µA
µA
µA
V
V
V

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