INDUCTOR 10NH 700MA 0805 5%

B82498F3100J

Manufacturer Part NumberB82498F3100J
DescriptionINDUCTOR 10NH 700MA 0805 5%
ManufacturerEPCOS Inc
SeriesSIMID
TypeCeramic
B82498F3100J datasheets
 


Specifications of B82498F3100J

Inductance10nHTolerance±5%
Package / Case0805 (2012 Metric)Current700mA
Dc Resistance (dcr)90 mOhm MaxQ @ Freq50 @ 500MHz
Self Resonant Freq5GHzMounting TypeSurface Mount
Frequency - Test250MHzMaterial - CoreCeramic
ApplicationsGeneral PurposeCore MaterialCeramic
Dimensions1.3 mm W x 2 mm L x 1.4 mm HShieldingUnshielded
Test Frequency250 MHzMaximum Dc Current700 mAmps
Maximum Dc Resistance0.09 OhmsSelf Resonant Frequency5000 MHz
Q Minimum50Termination StyleSMD/SMT
ApplicationFor antenna amplifiers, DECT systems, mobile phones, keyless entry, GPS (Global Positioning System)Brand/seriesSIMID Series
Case Size0805Current, Rating700 mA
Current, Ratings700 mAFrequency, Self Resonant5000 MHz
Material, CoreCeramic with Cubic CoilPackage TypeEIA 0805
Q Factor50Resistance, Dc0.09 Ohms
Temperature, Operating, Maximum+150 °CTemperature, Operating, Minimum–55 °C
Terminal ElectrodeThick-Film Coating of Ag⁄Pd⁄PtTerminationSMT
Tolerance, Inductance±5%Lead Free Status / RoHS StatusLead free / RoHS Compliant
Current - Saturation-Current - Temperature Rise-
Other names495-1848-2
B82498F3100J000
  
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SMT inductors
SIMID series, SIMID 0805-F
Series/Type:
B82498F
Date:
March 2008
Data Sheet
Data Sheet
 EPCOS AG 2008. Reproduction, publication and dissemination of this publication, enclosures
hereto and the information contained therein without EPCOS’ prior express consent is prohibited.

B82498F3100J Summary of contents

  • Page 1

    SMT inductors SIMID series, SIMID 0805-F Series/Type: B82498F Date: March 2008 Data Sheet Data Sheet  EPCOS AG 2008. Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without EPCOS’ prior express consent is prohibited. ...

  • Page 2

    SMT inductors, SIMID series SIMID 0805-F Size 0805 (EIA) and/or 2012 (IEC) Rated inductance 2 6800 nH Rated current 1000 mA Construction ■ Cubic coil with ceramic or ferrite core ■ Epoxy-molded flat top for ...

  • Page 3

    SMT inductors, SIMID series SIMID 0805-F Dimensional drawing and layout recommendation 2.3 max. 2+0.2 Metallization Welding area Epoxy coating 1) 1) 0.5±0.1 0.5±0.1 1) Soldering area 2) This area (30% of contact area) should not be used to assess solderability ...

  • Page 4

    SMT inductors, SIMID series SIMID 0805-F Technical data and measuring conditions Rated inductance factor Q min Rated temperature T R Rated current I R Self-resonance frequency f res,min DC resistance R max Solderability (lead-free) Resistance to soldering ...

  • Page 5

    SMT inductors, SIMID series SIMID 0805-F Characteristics and ordering codes L Tolerance MHz Core material: ceramic ±10% 2 250 5.6 250 6.8 250 8.2 250 ± 250 ^ ±5% 12 250 J ...

  • Page 6

    SMT inductors, SIMID series SIMID 0805-F Characteristics and ordering codes L Tolerance MHz Core material: ferrite ±5% 1000 ^ J 7.96 1200 7.96 1500 7.96 1800 7.96 2200 7.96 2700 7.96 3300 7.96 3900 7.96 4700 ...

  • Page 7

    SMT inductors, SIMID series SIMID 0805-F Impedance |Z| vs. frequency f (ceramic core) measured with impedance analyzer Agilent 4291A, typical values at 20 ° B82498F Ω | 820 nH 3 470 nH 10 100 nH 2 ...

  • Page 8

    SMT inductors, SIMID series SIMID 0805-F Inductance L versus DC load current I measured with RF LCR meter Agilent 4275A, typical values at 20 ° 6.8 µH µH 4.7 µH L 2.7 µH 1 µ 0.82 ...

  • Page 9

    Cautions and warnings ■ Please note the recommendations in our Inductors data book (latest edition) and in the data sheets. – Particular attention should be paid to the derating curves given there. – The soldering conditions should also be observed. ...

  • Page 10

    Important notes The following applies to all products named in this publication: 1. Some parts of this publication contain statements about the suitability of our products for certain areas of application. These statements are based on our knowledge of typical ...