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Systematic Analysis and Engineering of Absorbing Materials Containing Magnetic Inclusions for EMC Applications

Research output: Contribution to journalArticlepeer-review

Abstract

A methodology to efficiently design novel products based on magneto-dielectric materials containing ferrite or magnetic alloy inclusions is presented. The engineered materials should provide desirable frequency responses to satisfy requirements of electromagnetic compatibility/immunity over RF and microwave bands. The methodology uses an analytical model of a composite magneto-dielectric material with both frequency-dependent permittivity and permeability. The Bruggeman asymmetric rule for effective permeability of a composite is modified to take into account demagnetization factors of inclusions, and is shown to be applicable to platelet magnetic inclusions. Complex permittivity and permeability are extracted from the transmission-line measurements. A novel accurate and efficient curve-fitting procedure has been developed for approximating frequency dependencies of both permittivity and permeability of magneto-dielectric materials by series of Debye-like frequency terms, which is important for wideband full-wave numerical time-domain simulations. Results of numerical simulations for a few structures containing magneto-dielectric sheet materials and their experimental validation are presented.

Original languageAmerican English
JournalIEEE Transactions on Magnetics
Volume47
DOIs
StatePublished - Feb 1 2011

Keywords

  • Absorbing Materials
  • Absorbing Media
  • Analytical Model
  • Bandpass Filters
  • Causality
  • Complex Permittivity
  • Composite Material
  • Composite Materials
  • Computer Simulation
  • Curve Fitting
  • Demagnetization
  • Demagnetization Factors
  • Dielectric Materials
  • Dielectric Sheets
  • Effective Permeability
  • Electric Lines
  • Electromagnetic Compatibility
  • Electromagnetic Wave Absorption
  • Electromagnetism
  • Engineered Materials
  • Experimental Validations
  • Ferrite
  • Ferrites
  • Frequency Dependencies
  • Frequency Response
  • Frequency-Dependent
  • Gyrators
  • Magnetic Alloy
  • Magnetic Inclusions
  • Magnetic Materials
  • Magnetos
  • Mathematical Models
  • Microstrip Line
  • Microstrip Lines
  • Microstrips
  • Microwave Bands
  • Numerical Simulation
  • Permittivity
  • Systematic Analysis
  • Time Domain Analysis
  • Time-Domain Simulations
  • Transmission Line Measurements
  • Transmission Line Theory
  • Wide-Band

Disciplines

  • Electrical and Computer Engineering

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