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Article
A Combined Model For Transient And Self-Heating Of Snapback Type ESD Protection Devices
Electrical Overstress/Electrostatic Discharge Symposium Proceedings
  • Xin Yan
  • Seyed Mostafa Mousavi
  • Li Shen
  • Yang Xu
  • Wei Zhang
  • Sergej Bub
  • Steffen Holland
  • David Pommerenke, Missouri University of Science and Technology
  • Daryl G. Beetner, Missouri University of Science and Technology
Abstract

A simplified physics-based model for predicting the transient response and self-heating behavior of silicon-controlled rectifier (SCR) snapback-type transient voltage suppressors (TVS) is presented. Comparisons of the predicted quasi-static behavior and transient waveforms with measurements suggest that the proposed model accurately captures the most important characteristics of the device. Its simplified nature means it can be easily tuned using only data obtained from package-level measurements.

Department(s)
Electrical and Computer Engineering
Comments

National Science Foundation, Grant IIP-1916535

International Standard Book Number (ISBN)
978-158537347-5
Document Type
Article - Conference proceedings
Document Version
Citation
File Type
text
Language(s)
English
Rights
© 2023 Institute of Electrical and Electronics Engineers, All rights reserved.
Publication Date
1-1-2023
Publication Date
01 Jan 2023
Citation Information
Xin Yan, Seyed Mostafa Mousavi, Li Shen, Yang Xu, et al.. "A Combined Model For Transient And Self-Heating Of Snapback Type ESD Protection Devices" Electrical Overstress/Electrostatic Discharge Symposium Proceedings (2023) ISSN: 0739-5159
Available at: http://works.bepress.com/daryl-beetner/146/