2004•Unpublished venueRequires access

Mutual inductance modeling for multiple RLC interconnects with application to shield insertion

Junmou Zhang, Eby G. Friedman

Open publisher page 9 citations

Abstract

An effective mutual inductance is proposed in this paper to efficiently describe the inductive interactions among coupled signal lines. An efficient estimate of the crosstalk noise among multiple coupled RLC interconnects is achieved by simplifying the system of coupled lines into only two coupled RLC interconnects. The concept of an effective mutual inductance is further applied to a shielding technique, providing guidelines for inserting shields to reduce crosstalk noise in the presence of both capacitive and inductive coupling.

About this research paper

What this paper is about

An effective mutual inductance is proposed in this paper to efficiently describe the inductive interactions among coupled signal lines. An efficient estimate of the crosstalk noise among multiple coupled RLC interconnects is achieved by simplifying the system of coupled lines into only two coupled RLC interconnects. The concept of an effective mutual inductance is further applied to a shielding technique, providing guidelines for inserting shields to reduce crosstalk noise in the presence of both capacitive and inductive coupling.

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

An effective mutual inductance is proposed in this paper to efficiently describe the inductive interactions among coupled signal lines. An efficient estimate of the crosstalk noise among multiple coupled RLC interconnects is achieved by simplifying the system of coupled lines into only two coupled RLC interconnects. The concept of an effective mutual inductance is further applied to a shielding technique, providing guidelines for inserting shields to reduce crosstalk noise in the presence of both capacitive and inductive coupling.

Key concepts: RLC circuit, Inductance, Crosstalk, Inductive coupling, Electromagnetic shielding, Electronic engineering, Equivalent series inductance, Shields

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