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Journal Article Human body model electrostatic discharge tester using metal oxide semiconductor‐controlled thyristors
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Authors
Dong Yun Jung, Kun Sik Park, Sang In Kim, Sungkyu Kwon, Doo Hyung Cho, Hyun Gyu Jang, Jongil Won, Jong-Won Lim
Issue Date
2023-06
Citation
ETRI Journal, v.45, no.3, pp.543-550
ISSN
1225-6463
Publisher
한국전자통신연구원
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.4218/etrij.2022-0077
Abstract
Electrostatic discharge (ESD) testing for human body model tests is an essential part of the reliability evaluation of electronic/electrical devices and components. However, global environmental concerns have called for the need to replace the mercury‐wetted relay switches, which have been used in ESD testers. Therefore, herein, we propose an ESD tester using metal oxide semiconductor‐controlled thyristor (MCT) devices with a significantly higher rising rate of anode current (di/dt) characteristics. These MCTs, which have a breakdown voltage beyond 3000 V, were developed through an in‐house foundry. As a replacement for the existing mercury relays, the proposed ESD tester with the developed MCT satisfies all the requirements stipulated in the JS‐001 standard for conditions at or below 2000 V. Moreover, unlike traditional relays, the proposed ESD tester does not generate resonance; therefore, no additional circuitry is required for resonant removal. To the best of our knowledge, the proposed ESD tester is the first study to meet the JS‐001 specification by applying a new switch instead of an existing mercury‐wetted relay.
KSP Keywords
Breakdown voltage(BDV), Electrical devices, Electro Static Discharge(ESD), Environmental concerns, Metal-oxide(MOX), Model tests, Reliability Evaluation, Rising rate, anode current, human body model(HBM), metal oxide semiconductor
This work is distributed under the term of Korea Open Government License (KOGL)
(Type 4: : Type 1 + Commercial Use Prohibition+Change Prohibition)
Type 4: