B57237S0330M000 EPCOS Inc, B57237S0330M000 Datasheet - Page 3

CURRENT LIMITER INRSH 33 OHM 20%

B57237S0330M000

Manufacturer Part Number
B57237S0330M000
Description
CURRENT LIMITER INRSH 33 OHM 20%
Manufacturer
EPCOS Inc
Type
NTCr
Datasheet

Specifications of B57237S0330M000

R @ 25°c
33 Ohm
Current - Steady State Max
2.5A
Tolerance
±20%
Diameter
0.59" (15mm)
Lead Spacing
0.295" (7.50mm)
Mounting Style
Through Hole
Pin Count
2
Resistance @ 25c
33Ohm
Thermal Time Constant
90s
Percentage Of Resistance Tolerance @ 25c
±20
Product Length (mm)
Not Requiredmm
Product Height (mm)
Not Requiredmm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
R @ Current
-
Lead Free Status / RoHS Status
Compliant, Lead free / RoHS Compliant
Other names
495-3057
B57237S 330M
B57237S330M
B57237S330M

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
B57237S0330M000
Quantity:
500
Reliability data
Test
Storage in
dry heat
Storage in damp
heat, steady state
Rapid temperature
cycling
Endurance
Cyclic
endurance
Transient
load
Note
Please read Cautions and warnings and
Important notes at the end of this document.
Inrush current limiters
ICLs
The self-heating of a thermistor during operation depends on the load applied and the
applicable dissipation factor.
When loaded with maximum allowable current/power and the specified dissipation factor is
taken as a basis, the NTC thermistor may reach a mean temperature of up to 250 C.
The heat developed during operation will also be dissipated through the lead wires. So the
contact areas, too, may become quite hot at maximum load.
When mounting NTC thermistors you have to ensure that there is an adequate distance
between the thermistor and all parts which are sensitive to heat or combustible.
Standard
IEC
60068-2-2
IEC
60068-2-78
IEC
60068-2-14
Test conditions
Storage at upper
category temperature
T: 170 C
t: 1000 h
Temperature of air: 40 C
Relative humidity of air: 93%
Duration: 21 days
Lower test temperature:
Upper test temperature: 170 C
Number of cycles: 10
I = I
t: 1000 h
I = I
On-time = 1 min
Cooling time = 6 min
Capacitance = C
Number of cycles: 1000
max
max
, 1000 cycles
Page 3 of 15
test
55 C
(typical)
< 10%
< 5%
< 10%
< 10%
< 10%
< 5%
R
25
/R
25
Remarks
No visible
damage
No visible
damage
No visible
damage
No visible
damage
No visible
damage
No visible
damage
B57237
S237

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