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Near Field Shielding Performances of Absorbing Materials for Integrated Circuits (IC) Applications Part I: Lateral Excitation: Near Field Shielding Performances of Absorbing Materials for Integrated Circuits (IC) Applications Part I: Lateral Excitation

  • Stefano Piersanti
  • , Antonio Orlandi
  • , Francesco de Paulis
  • , Samuel R. Connor
  • , Mohammad Ali Khorrami
  • , Paul Dixon
  • , Bruce Archambeault
  • , James L. Drewniak

Research output: Contribution to journalArticlepeer-review

Abstract

Electromagnetic emission from electronic devices is one of the aspect to be considered from electromagnetic Engineers and Designers; its prediction can be essential to avoid the degradation of the performance of the system. Using absorbing material is one way to limit and control the emission from devices such as integrated circuits (ICs). This paper deals with the investigation of the performance of an absorbing material, in near field, applied to an IC. The contribution is divided in two parts. In Part I, the excitation and ground ports are placed as close as possible, in two adjacent pins of the IC. The absorber is so arranged in two different ways: As a patch on the top face of the IC plastic package or as lid completely covering the IC. The results, in terms of shielding effectiveness, absorption, reflection, and transmission are then compared in Part II with the configuration in which the signal and ground ports are as far as possible.

Original languageAmerican English
Article number7987021
Pages (from-to)188-195
Number of pages8
JournalIEEE Transactions on Electromagnetic Compatibility
Volume60
Issue number1
DOIs
StatePublished - Feb 1 2018

Keywords

  • Distribution Functions
  • Electromagnetic Shielding
  • Reflection
  • Shielding
  • Timing Circuits
  • Absorbing Materials
  • Attenuation
  • Face
  • Graphical Model
  • Integrated Circuit Modeling
  • Lossy Materials
  • Near Fields
  • Noise Measurements
  • Pins
  • Wave Impedances
  • Integrated Circuits
  • Near Field (NF)
  • Wave Impedance

Disciplines

  • Electrical and Computer Engineering

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