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Review of shelf life evaluation methods and a physics of failure approach for shelf life estimation for electronic components

机译:评估电子元件保质期的保质期评估方法和失效原理

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Long term storage reliability or shelf life is not well understood in the electronic industry. In this article, we identified inconsistent shelf life interpretations used in the electronics industry and inadequacies of recommended shelf live values and shelf life evaluation methods in standards, manufacturers' documents and in the literature. A Physics of Failure (PoF) shelf life estimation approach that applies to most storage-induced mechanisms in electronic components is developed. In this approach, storage induced mechanisms are categorized into three main groups: 1) storage mechanisms that continues into use conditions, 2) storage mechanisms that affect usability of a component and 3) storage mechanisms that triggers other failure mechanisms under subsequent life cycle stresses. Failure Mechanism, Mode and Effect Analysis (FMMA) taking into account both storage and use conditions of the component is first performed to select the most critical storage induced mechanism. Depending on the mechanism and its category, physics of failure model and acceptance criteria can be selected for shelf life estimation. This approach is demonstrated with electrolyte evaporation in electrolytic capacitors and moisture diffusion induced delamination in plastic encapsulated components.
机译:在电子行业中,人们对长期存储的可靠性或保质期知之甚少。在本文中,我们确定了在电子行业中使用的不一致的货架寿命解释,以及标准,制造商文档和文献中推荐的货架寿命值和货架寿命评估方法的不足之处。开发了一种适用于电子组件中大多数存储引起的机制的故障物理(PoF)保质期估计方法。在这种方法中,存储引起的机制可分为三大类:1)继续处于使用状态的存储机制; 2)影响组件可用性的存储机制; 3)在随后的生命周期压力下触发其他故障机制的存储机制。首先执行考虑了组件存储和使用条件的失效机制,模式和效果分析(FMMA),以选择最关键的存储诱发机制。根据机理及其类别,可以选择失效模型的物理性质和可接受标准来评估保质期。电解电容器中的电解质蒸发和塑料封装部件中的水分扩散引起的分层证明了这种方法。

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