DocumentCode :
2046143
Title :
An equation-based method for calculating electromangectic susceptibility on printed circuit board
Author :
Jian-Li Dong ; Han-Chang Hsieh ; Jay-San Chen ; Chun-Te Wu
Author_Institution :
Bur. of Stand., Metrol. & Inspection (BSMI), Minist. of Econ. Affairs, Taipei, Taiwan
fYear :
2013
fDate :
2-6 Sept. 2013
Firstpage :
73
Lastpage :
77
Abstract :
An equation-based method combing field equations with circuit solver is proposed for calculating electromagnetic susceptibility (EMS) on printed circuit board (PCB). These equations can be simplified to a voltage source and a current source, and then substituted into commercial software to calculate the impact of incident electromagnetic waves on traces on PCB. This paper compares the results calculated by equivalent sources with those done by method of moments (MoMs). Good agreement between those two methods. Finally, a commercial software, SPEED 2000, is used to combine with the equivalent sources to calculate the problems of signal integrity (SI) and power integrity (PI) under the influence of incident electromagnetic waves.
Keywords :
constant current sources; field equations; magnetic susceptibility; method of moments; printed circuits; EMS; MoM; PCB; SPEED 2000; circuit solver; commercial software; current source; electromagnetic susceptibility; equation-based method combing field equations; equivalent sources; incident electromagnetic waves; method of moments; power integrity; printed circuit board; signal integrity; voltage source; Electromagnetic compatibility; Electromagnetic scattering; Energy management; Fluctuations; Integrated circuit modeling; Microstrip; Silicon; electromagnetic Susceptibility (EMS); method of moments (MoMs); power integrity integrity(PI); printed circuit board (PCB); signal integrity (SI);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility (EMC EUROPE), 2013 International Symposium on
Conference_Location :
Brugge
ISSN :
2325-0356
Type :
conf
Filename :
6653205
Link To Document :
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