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3층으로 적층된 ZnO 바리스터의 열분포 해석Thermal Distribution Analysis of Triple-Stacked ZnO Varistor

Other Titles
Thermal Distribution Analysis of Triple-Stacked ZnO Varistor
Authors
장경욱
Issue Date
Jul-2023
Publisher
한국전기전자재료학회
Keywords
Triple-stacked ZnO varistor; Multilayer ZnO varistor; Comsol 5.2; FEM
Citation
전기전자재료학회논문지, v.36, no.4, pp.391 - 396
Journal Title
전기전자재료학회논문지
Volume
36
Number
4
Start Page
391
End Page
396
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/88365
ISSN
1226-7945
Abstract
Recently, as power and electronic devices have increased in frequency and capacity, it has become a major concern to protect electronic circuits and electronic components used in these devices from abnormal voltages such as various surges and pulse noise. To respond to variously rated voltages applied to power electronic devices, the rated voltages of various varistors can be obtained by controlling the size of internal particles of the varistor or controlling the number of layers of the varistor. During bonding, the problem of unbalanced thermal runaway occurring between the electrode and the varistor interface causes degradation of the varistor and shortens its life of the varistor. In this study, to solve the problem of unbalanced heat distribution of stacked varistors to adjust the operating voltage, the contents of the ZnO-based varistor composition were 96 wt% ZnO, 1 mol% Sb2O3, 1 mol% Bi2O3, 0.5 mol% CoO, 0.5 mol% MnO, and 1 mol% TiO2. A multi-layered ZnO varistor was modeled by bonding a single varistor with a composition in three layers according to the operating voltage. The thermal distribution of the triple-layered ZnO varistor was analyzed for the thermal runaway phenomenon that occurred during varistor operation using the finite element method according to Comsol 5.2.
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College of IT Convergence (Department of Electrical Engineering)
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