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Volume 27 Issue 7
Jul.  2005
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Lü Fei-yan, Sha Fei . The Coupling Mechanism and Optimization Analysis Model for Crosstalk in PCB[J]. Journal of Electronics & Information Technology, 2005, 27(7): 1167-1170.
Citation: Lü Fei-yan, Sha Fei . The Coupling Mechanism and Optimization Analysis Model for Crosstalk in PCB[J]. Journal of Electronics & Information Technology, 2005, 27(7): 1167-1170.

The Coupling Mechanism and Optimization Analysis Model for Crosstalk in PCB

  • Received Date: 2004-02-19
  • Rev Recd Date: 2004-08-20
  • Publish Date: 2005-07-19
  • The coupling path of crosstalk in PCB is analyzed both in the frequency and the time domains in this paper. The influence of the coupling capacitance and the resistances near and far from the source in the victim circuit is investigated. The optimization model is derived mathematically in time domain for the 2-n circuit model. The conclusion is deduced that the maximum crosstalk is derived from the rising edge of the aggressive signal. The simulation results by use of Hyperlynx software are compared with regards to the coupling capacitance and the coupling length, which demonstrate the theoretical conclusion.
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  • Clayton R Paul. Introduction to Electromagnetic Compatibility.Wiley Series in Microwave and Optical Engineering. Wiley, By John Sons, INC., February 1992:121 - 145.[2]Georgieva N, Zhizhang Chen, Oberhammer Wolfgang. On resonant effects in multilayer RF/microwave printed circuit board applications[J].IEEE Trans. on Advanced Packaging.1999, 22(2):200-[3]Kamgaing T, Ramahi O M. High-impedance electromagnetic surfaces for parallel-plate mode suppression in high-speed digital systems. Electrical Performance of Electronic Packaging, 21-23Oct., 2002:279 - 282.[4]Abhari R, Eleftheriades G V. Suppression of the parallel-plate noise in high-speed circuits using a metallic electromagnetic band-gap structure. IEEE MTT-S International Microwave Symposium Digest, 2-7 June, 2002, Vol. 1:493 - 496.[5]Young-Soo Sohn; Jeong-Cheol Lee; Hong-June Park; Soo-In Cho,Empirical equations on electrical parameters of coupled microstrip lines for crosstalk estimation in printed circuit board.IEEE Trans[J].on Advanced Packaging.2001, 24(4):521-[6]Malisuwan S, Ungvichian V. Crosstalk analysis for ultra-highspeed digital PCBs due to substrate permittivity, pulse-width, and line-length. International Conference and Exhibition of Electromagnetic Compatibility, York, 1999:131 - 134.[7]Jason Cong, David Zhigang Pan, Prasanna V Srinivas. Improved crosstalk modeling for noise constrained interconnect optimization. Proceeding of Asia South Pacific Design Automation Conference (ASP-DAC), Pacifico Yokohama, Japan,Jan.30 - Feb.2, 2001:373 - 378.[8]Hyperlynx7.0 的资料.
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