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HM53E Datasheet, PDF (1/2 Pages) Bi technologies – High Temperature Through Hole Inductors
Magnetics
High Temperature
Through Hole Inductors

Model HM53E-2211
Make Possible


Featu res and Benefits


Operating Temperature Range -40°C to +220°C
Te mperature Rise, Maximum 50°C

Opera ting Frequency Up to 200KHz
 

RoHS Compliant
 
 


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
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SpecifiPcaarttiNounmb@er 25°C Inductance(1)
µH±15%
Heating
Current(2)
(Adc)
Irated(3)
(Adc)
DCR (mΩ)
Typ.
Max.

Part Number 
Inductance(1)
μH±15%
CHuerraetinntg(2) 
(Adc) 
Irated(3)
(Adc) 
DCR (mΩ) 
Typ.
Max.
HM53E-2211100VLF
10.4
11.5 
10.5 
6.4 
8.32
HM53E-2211160VLF
15.9
8.5 
8.5 
12.1
15.73
HM53E-2211210VLF
HM53E-2211260VLF
HM53E-2211320VLF
HM53E-2211360VLF
HM53E-2211530VLF

HM53E-2211540VLF
20.8
26.2
31.8
35.5
52.5
54.2
11.5 
6.0 
8.5 
11.5 
6.0 
8.5
5.0 
6.5 
4.0 
3.5 
3.1 
2.7
6.4
23.7 
12.1
6.4
23.7
12.1
8.32 
30.81
15.73
8.32 
30.81
15.73
HM53E-2211900VLF
89.7
6.0
2.1
23.7
30.81
 
Notes:
              
(1) Inductance is measuredat10kHz,0.1Vacwithout DCcurrent.            
(P2C)BT,haendHethaetinngapCpulryrienngttihsethceurarpepnrtotxoimthaetedDevCicceurforern3t0wmhiinchutceasu. sesthecomponenttemperaturetoincreaseby40°C. This current is determined by soldering the component on a typical application
(3) The ratedcurrent (Irated) istheapproximatecurrentatwhichtheinductancewill bedecreasedby30%typicalfromitsinitial(zeroDC) value.
(4) The part temperature(ambient + temperaturerise) shouldnotexceed 220°C.
 
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OutlineDimensions( mm)
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General Note 
TT
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