Presentation 2000/12/8
Propagation Characteristics of Electric Fields Due to an Electrostatic Discharge occurring in a Corridor
Yuko MURASE, Osamu FUJIWARA,
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Abstract(in English) The electrostatic discharge (ESD) due to charged metal objects produces the electromagnetic fields having broad-band frequency spectra over a microwave region, which cause serious electromagnetic interference to high-tech information equipment. For this kind of ESD fields, focussing on electromagnetic fields due to the spark discharge between metal spheres, we previously demonstrated numerically and experimentally that the existence of metal spheres enhances the field level according to their sizes. In this paper, we analyzed electromagnetic fields due to the ESD event occurring in a corridor using the dipole model inside a rectangular waveguide, and examined numerically the distance dependence of the field peak for the ESD occuring horizontally to the floor. As a result, we found that the far-field peak dopes not always decrease with increasing the distance and that there exists a region in which the field peak is enhanced with the distance. This finding was also confirmed by the spark experiment of metal spheres.
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Keyword(in English) Coridor space / electrostatic discharge / dipole model / distance attenuation / ESD Detector
Paper # EMCJ2000-101
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Conference Information
Committee EMCJ
Conference Date 2000/12/8(1days)
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Registration To Electromagnetic Compatibility (EMCJ)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Propagation Characteristics of Electric Fields Due to an Electrostatic Discharge occurring in a Corridor
Sub Title (in English)
Keyword(1) Coridor space
Keyword(2) electrostatic discharge
Keyword(3) dipole model
Keyword(4) distance attenuation
Keyword(5) ESD Detector
1st Author's Name Yuko MURASE
1st Author's Affiliation Faculty of Engineering, Nagoya Institute of Technology()
2nd Author's Name Osamu FUJIWARA
2nd Author's Affiliation Faculty of Engineering, Nagoya Institute of Technology
Date 2000/12/8
Paper # EMCJ2000-101
Volume (vol) vol.100
Number (no) 510
Page pp.pp.-
#Pages 6
Date of Issue