Title :
Full-Wave Simulation of an Electrostatic Discharge Generator Discharging in Air-Discharge Mode Into a Product
Author :
Liu, Dazhao ; Nandy, Argha ; Zhou, Fan ; Huang, Wei ; Xiao, Jiang ; Seol, Byongsu ; Lee, Jongsung ; Fan, Jun ; Pommerenke, David
Author_Institution :
Electromagn. Compatibility Lab., Missouri Univ. of Sci. & Technol., Rolla, MO, USA
Abstract :
This paper introduces a methodology to simulate the currents and fields during an air discharge electrostatic discharge (ESD) into a product by combining a linear description of the behavior of the DUT with a nonlinear arc resistance equation. The most commonly used test standard IEC 61000-4-2 requires using contact-mode discharges to metallic surfaces and air-discharge mode to nonconducting surfaces. In the contact mode, an ESD generator is a linear system. In the air-discharge mode, a highly nonlinear arc is a part of the current loop. This paper proposes a method that combines the linear ESD generator full-wave model and the nonlinear arc model to simulate currents and fields in air-discharge mode. Measurements are presented comparing discharge currents and fields for two cases: ESD generator discharges into a ground plane, and ESD generator discharges into a small product.
Keywords :
arcs (electric); electrostatic discharge; IEC 61000-4-2 test standard; air discharge mode; air-discharge mode; contact-mode discharges; discharge currents; electrostatic discharge generator; full-wave simulation; nonlinear arc resistance equation; Air-discharge mode; cosimulation; electrostatic discharge (ESD) generator; full-wave modeling;
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2010.2087025