2011•Griffith Research OnlineRequires access

Computational electromagnetics for EMC problems of integrated circuits

Boyuan Zhu, Junwei Lu, Mingcheng Zhu

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Abstract

The computational electromagnetics (CEM) technique has moved from pure mathematical analysis into design in engineering practice, It can provide a much easier and faster solution of prediction in electromagnetic compatibility (EMC) characteristics than conventional methods. This paper presents an overall introduction and applications of CEM for the EMC problems of integrated circuits (ICs). It briefly reviews the literature covering EMC problems existing in ICs. Two applications, which involve dual die central processing unit (CPU) and internal interconnects, are provided in order to prove the capability of the CEM technique in the IC EMC area.

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What this paper is about

The computational electromagnetics (CEM) technique has moved from pure mathematical analysis into design in engineering practice, It can provide a much easier and faster solution of prediction in electromagnetic compatibility (EMC) characteristics than conventional methods. This paper presents an overall introduction and applications of CEM for the EMC problems of integrated circuits (ICs). It briefly reviews the literature covering EMC problems existing in ICs. Two applications, which involve dual die central processing unit (CPU) and internal interconnects, are provided in order to prove the capability of the CEM technique in the IC EMC area.

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Available abstract

The computational electromagnetics (CEM) technique has moved from pure mathematical analysis into design in engineering practice, It can provide a much easier and faster solution of prediction in electromagnetic compatibility (EMC) characteristics than conventional methods. This paper presents an overall introduction and applications of CEM for the EMC problems of integrated circuits (ICs). It briefly reviews the literature covering EMC problems existing in ICs. Two applications, which involve dual die central processing unit (CPU) and internal interconnects, are provided in order to prove the capability of the CEM technique in the IC EMC area.

Key concepts: Electromagnetic compatibility, Electromagnetics, Computational electromagnetics, Electronic engineering, Computer science, Electromagnetic interference, Electronic circuit, Integrated circuit

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