Electrostatically Induced Voltage Generated in a Metal Box When a Charged Body Moves-Relation Between the Ratio of Conducting Parts in the Box and the Induced Voltage-
Author:
Affiliation:
1. National Institute of Industrial Safety
2. Tokyo University of Agriculture and Technology
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Subject
Electrical and Electronic Engineering
Link
http://www.jstage.jst.go.jp/article/ieejeiss/125/7/125_7_1030/_pdf
Reference15 articles.
1. (1) A. J. Wallash, T. S. Hughbanks, and S. H. Voldman: “ESD failure mechanism of inductive and magnetoresistive recording heads”, EOS/ESD Symposium, Florida, pp. 322-330 (1995)
2. Electrostatic discharge damage of MR heads
3. Some factors influencing electrostatic discharge from a human body
4. (4) T. O. Cheung: “Direct charging charge device model testing of magneto-resistive recording head”, EOS/ESD Symposium, California, pp. 398-404 (1997)
5. Electrostatic discharge characteristics for the human body and circuit packs
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1. Electrostatically Induced Voltage Generated in Two Ungrounded Metal Cases When Charged Object Moves Away from the Cases;IEEJ Transactions on Industry Applications;2022-12-01
2. Electrostatically Induced Voltage in Metal Box When Charged Object Like Hand Moves Away From the Box to Three Directions;IEEE Transactions on Industry Applications;2021-09
3. Electrostatically induced voltage generated in ungrounded metal boxes and on a metal box when a charged body moves away from the box;Electrical Engineering in Japan;2020-12-13
4. Measurement of electrostatically induced voltages in two metal boxes using spark gaps and electromagnetic wave sensors;Journal of Electrostatics;2018-08
5. Electrostatic induced Voltage and Electrical Discharge generated in Electronic Equipment when charged Human Body moves in Office Building;The Journal of The Institute of Electrical Engineers of Japan;2018-06-01
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