LM2937IMP-2.5 National Semiconductor, LM2937IMP-2.5 Datasheet - Page 3

LDO VOLTAGE REGULATOR IC

LM2937IMP-2.5

Manufacturer Part Number
LM2937IMP-2.5
Description
LDO VOLTAGE REGULATOR IC
Manufacturer
National Semiconductor
Datasheets

Specifications of LM2937IMP-2.5

No. Of Pins
4
Output Current
0.5A
Mounting Type
Surface Mount
Voltage Regulator Type
LDO Linear
Peak Reflow Compatible (260 C)
No
Output Voltage
2.5V
Output Voltage Max
2.5V
Supply Voltage Max
26V
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LM2937IMP-2.5
Manufacturer:
NS/国半
Quantity:
20 000
Part Number:
LM2937IMP-2.5/NOPB
Manufacturer:
NS/国半
Quantity:
20 000
Output Voltage
Line Regulation(Note 5)
Load Regulation
Quiescent Current
Output Noise
Voltage
Long Term Stability
Short-Circuit Current
Peak Line Transient
Voltage
Maximum Operational
Input Voltage
Reverse DC
Input Voltage
Reverse Transient
Input Voltage
Absolute Maximum Ratings
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Electrical Characteristics
V
10 µF unless otherwise indicated. Boldface limits apply over the entire operating temperature range, of the indicated de-
vice, all other specifications are for T
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Electrical specifications do not apply when operating the device
outside of its rated Operating Conditions.
Note 2: The maximum allowable power dissipation at any ambient temperature is P
operation, T
125˚C and the electrical specifications do not apply. If the die temperature rises above 150˚C, the regulator will go into thermal shutdown. The junction-to-ambient
thermal resistance θ
θ
packages are used, the thermal resistance can be reduced by increasing the P.C. board copper area thermally connected to the package (see Application Hints for
more information on heatsinking).
Note 3: ESD rating is based on the human body model, 100 pF discharged through 1.5 kΩ.
Note 4: Typicals are at T
Input Voltage
Internal Power Dissipation (Note 2)
Maximum Junction Temperature
Storage Temperature Range
Lead Temperature Soldering
TO-220 (10 seconds)
TO-263 (10 seconds)
JA
IN
Continuous
Transient (t ≤ 100 ms)
is the sum of the device junction-to-case thermal resistance θ
= V
Parameter
NOM
A
is the ambient temperature, and θ
+ 5V, I
JA
Output Voltage (V
is 65˚C/W, for the TO-220 package, 73˚C/W for the TO-263 package, and 174˚C/W for the SOT-223 package. When used with a heatsink,
OUTmax
J
= 25˚C and represent the most likely parametric norm.
= 500 mA for the TO-220 and TO-263 packages, I
5 mA ≤ I
4.75V ≤ V
I
5 mA ≤ I
7V ≤ V
I
V
I
V
10 Hz–100 kHz,
I
1000 Hrs.
t
V
t
OUT
OUT
OUT
OUT
f
r
IN
IN
OUT
<
<
= (V
= 5V, I
100 ms, R
1 ms, R
= 5 mA
= 5 mA
= I
= 5 mA
≥ −0.6V, R
IN
OUT
OUTmax
A
JA
OUT
OUT
OUT
≤ 26V,
260˚C
230˚C
Conditions
= T
IN
is the junction-to-ambient thermal resistance. If this dissipation is exceeded, the die temperature will rise above
OUT
)
Internally Limited
−65˚C to +150˚C
L
≤ 26V,
(Note 4)
+ 5V),
≤ I
≤ I
J
= 100Ω
L
= 25˚C.
= I
OUTmax
OUTmax
= 100Ω
L
(Note 1)
OUTmax
= 100Ω
150˚C
JC
26V
60V
of 3˚C/W and the heatsink case-to-ambient thermal resistance. If the TO-263 or SOT-223
3
Typ
−30
−75
Operating Conditions
2.5
7.5
2.5
1.0
MAX
10
66
75
10
75
SOT-223 (Vapor Phase, 60 seconds) 215˚C
SOT-223 (Infrared, 15 seconds)
ESD Susceptibility (Note 3)
Temperature Range (Note 2)
LM2937ES, LM2937ET
LM2937IMP
Input Voltage Range
2
= (125 − T
2.5V
OUTmax
100125
Limit
2.42
2.38
2.56
2.62
A
−15
−50
0.6
25
25
10
20
60
26
)/θ
JA
, where 125 is the maximum junction temperature for
=400mA for the SOT-223 package, C
13.2
Typ
−30
−75
3.3
9.9
3.3
1.0
10
66
99
75
2
3.3V
(Note 1)
100125
Limit
3.20
3.14
3.40
3.46
−15
−50
0.6
220˚C
−40˚C ≤ T
125˚C
−40˚C ≤ T
33
33
10
20
60
26
4.75V to 26V
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mA(Max)
A
A
mV(Max)
mV(Max)
mA(Max)
mA(Max)
V (Min)
V(Max)
V(Max)
≤ 85˚C
V(Min)
A(Min)
V(Min)
V(Min)
V(Min)
V(Min)
µVrms
Units
mV
2 kV
OUT
=

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