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Liquid Crystal Polymer for QFN packaging: Predicted thermo-mechanical fatigue and Design for Reliability

机译:用于QFN封装的液晶聚合物:预测的热机械疲劳和可靠性设计

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Thermoplastic resins, such as Liquid Crystal Polymers (LCPs), have many attractive properties for microelectronic cavity package manufacturing (in particular low gas permeation and low dielectric constant). In order to reduce anisotropic mechanical properties inducing a potential fragility of the material and then a lack of reliability of the package, various approaches are currently studied in particular the addition of mineral fillers. A dedicated Design of Experiments (DoE) is performed to assess the optimal thermo-mechanical properties of the LCP compound and then the optimal composition of the package leading to the maximum operating lifetime. In this way the long-term reliability of an electronic package (Quad Flat No-lead QFN package) based on various formulations of the LCP composite is assessed by thermo-mechanical simulation using Finite Element Method (FEM). A Design for Reliability (DfR) methodology is proposed according to the simulation results based on Taguchi methodology. This methodology allows the determination of the optimal composition (nature/proportion/size/chemical functionalization of fillers) of the LCP package by reducing the number of experimental studies that are very time consuming. (C) 2015 Elsevier Ltd. All rights reserved.
机译:热塑性树脂,例如液晶聚合物(LCP),对于微电子空腔封装的制造具有许多吸引人的特性(尤其是低气体渗透性和低介电常数)。为了降低各向异性的机械性能,从而引起材料的潜在脆性,然后降低包装的可靠性,目前正在研究各种方法,特别是添加矿物填​​料。进行了专门的实验设计(DoE),以评估LCP化合物的最佳热机械性能,然后评估包装的最佳组成,从而获得最长的使用寿命。以此方式,通过使用有限元方法(FEM)进行的热机械模拟,可以评估基于LCP复合材料各种配方的电子封装(四方扁平无铅QFN封装)的长期可靠性。根据基于Taguchi方法的仿真结果,提出了可靠性设计(DfR)方法。通过减少非常耗时的实验研究,该方法可以确定LCP包装的最佳成分(填料的性质/比例/尺寸/化学功能化)。 (C)2015 Elsevier Ltd.保留所有权利。

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