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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Distinct degradation processes in ZnO varistors: reliability analysis and modeling with accelerated AC tests
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Distinct degradation processes in ZnO varistors: reliability analysis and modeling with accelerated AC tests

机译:ZnO压敏电阻中不同的降解过程:可靠性分析和加速AC测试建模

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In this study, we investigate different degradation mechanisms of zinc oxide (ZnO) varistors. We propose a model that shows how Vv (defined as DC varistor voltage when a 1-mA DC current is applied) changes with time for different stress levels. For this purpose, accelerated degradation tests are applied for different AC current levels and voltage values are then measured. Different from the common practice in the literature that considers degradation with only decreasing Vv values, we demonstrate either an increasing or a decreasing trend in the Vv parameter. The tests show a decreasing trend in Vv for current levels above a certain threshold and an increasing trend for current levels below this threshold. Considering both of these degradation mechanisms, we present a mathematical degradation model. The proposed model exploits the physics of the degradations for a single-grain boundary that is the core structure of a ZnO varistor. To validate the proposed model, we perform Monte Carlo simulations and the results are compared with those obtained from accelerated AC tests. As a summary of this study, we introduce a conceptual accelerated AC test methodology to analyze the reliability of the new ZnO varistor.
机译:在这项研究中,我们研究了氧化锌(ZnO)压敏电阻的不同降解机理。我们提出了一个模型,该模型显示了在不同应力水平下,Vv(在施加1mA DC电流时定义为DC压敏电阻电压)如何随时间变化。为此,对不同的交流电流水平进行加速退化测试,然后测量电压值。与文献中仅考虑降低Vv值进行降级的常规做法不同,我们证明了Vv参数的增加或减少趋势。测试显示,对于高于某个阈值的电流水平,Vv呈下降趋势,而低于该阈值的电流水平则呈上升趋势。考虑到这两种降级机制,我们提出了一个数学降级模型。提出的模型利用了单晶边界退化的物理原理,该边界是ZnO压敏电阻的核心结构。为了验证提出的模型,我们执行了蒙特卡洛模拟,并将结果与​​从加速交流测试中获得的结果进行了比较。作为本研究的总结,我们介绍了一种概念性的加速交流测试方法,以分析新型ZnO压敏电阻的可靠性。

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