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On component reliability and system reliability for automotive applications

机译:关于汽车应用的组件可靠性和系统可靠性

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A new strategy is proposed for automotive system reliability design. Such strategy aims to overcome the discrepancy between single component reliability and system lifetime/performance requirements. While the design for X (DfX, X: reliability, testability, manufacturability, …) methodology is part of every state-of-the art semiconductor development, it remains that reliability specifications and ppm goals of a products are strongly application and sector specific. It is therefore especially necessary to understand the aging behavior of system-integrated components, each of which must work beyond their foreseen lifetime targets, as well as to understand the effect of steady-state and varying failure rates on system performance. We propose to extend component failure rate assessment based on the regular useful life phase (exponential distributions) by also including early and wear out phase completely with corresponding Weibull distributions with their scale parameters dependent on competing dominant modes in these regimes. By doing so, the system design and verification cycle can be shortened and further improved, saving both time and costs.
机译:提出了一种用于汽车系统可靠性设计的新策略。这种策略旨在克服单个组件可靠性与系统寿命/性能要求之间的差异。尽管X的设计(DfX,X:可靠性,可测试性,可制造性,…)方法是每个最新半导体开发的一部分,但仍然存在产品的可靠性规格和ppm目标强烈地取决于应用和特定领域的情况。因此,特别有必要了解系统集成组件的老化行为,每个组件都必须超出其预期的使用寿命目标,并且要了解稳态和故障率对系统性能的影响。我们建议通过还包括早期和磨损阶段以及相应的威布尔分布,其尺度参数取决于这些制度中竞争性主导模式,从而扩展基于常规使用寿命(指数分布)的零件失效率评估。这样,可以缩短并进一步改善系统设计和验证周期,从而节省时间和成本。

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