Characteristics of Discharge Currents Measured through Body-Attached Metal for Modeling ESD from Wearable Electronic Devices

Author:

ISHIDA Takeshi1,XIAO Fengchao2,KAMI Yoshio2,FUJIWARA Osamu2,NITTA Shuichi1

Affiliation:

1. Noise Laboratory Co. LTD.

2. The University of Electro-Communications

Publisher

Institute of Electronics, Information and Communications Engineers (IEICE)

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Software

Reference9 articles.

1. [1] P. Lukowicz, A. Timm-Giel, M. Lawo, and O. Herzog, “WearIT@work: Toward real-world industrial wearable computing,” IEEE Pervasive Comput., vol.6, no.4, pp.8-13, 2007.

2. [2] IEC (International Electrotechnical Commission), “IEC 61000: Electromagnetic compatibility (EMC) — Part 4-2: Testing and measurement techniques — Electrostatic discharge immunity test,” Edition 2.0, Dec. 2008.

3. [3] T. Ishida, F. Xiao, Y. Kami, O. Fujiwara, and S. Nitta, “A study of electrostatic discharge immunity testing for wearable equipment,” IEICE Technical Report, EMCJ2014-72, Nov. 2014 (in Japanese).

4. [4] D. Pommerenke, “ESD: Transient fields, arc simulation and rise time limit,” J. Electrostat., vol.36, no.1, pp.31-54, 1995.

5. [5] O. Fujiwara, “An analytical approach to model indirect effect caused by electromagnetic discharge,” IEICE Trans. Commun., vol.E79-B, no.4, pp.483-489, April 1996.

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