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Reliability analysis of an ACA attached flex-on-board assembly for industrial application

机译:用于工业应用的ACA连接的板上柔性组件的可靠性分析

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Purpose - The purpose of this paper is to examine the long-term reliability of an anisotropic conductive adhesive (ACA) attached polyethylene terephthalate (PET) flex-on-board (FOB) assembly for industrial application used in harsh environments. In addition, the possibility of reducing reliability testing time was studied. Design/methodology/approach - A -40/+125℃ thermal cycling test with 5- and 14-minute soak times was used to study the reliability. To study the functionality of the FOB assembly during testing, a real-time resistance measurement was used together with a 90° peel strength test. Failure analysis was performed on samples using scanning electron microscopy and cross sectioning. Findings - No failures or noticeable increase in the measured resistance values were seen during testing. The peel strength, however, decreased significantly with both soak times used. The highest drop in the mechanical strength occurred at the start of the temperature cycling tests. The time spent at the high temperature extreme seemed to have a greater impact on the peel strength than the number of temperature cycles. The failure mode of peel tested samples changed due to temperature cycling from interfacial delamination to cohesive failure. The temperature cycling was also observed to induce voiding inside the adhesive. Originality/value - The paper illustrates the applicability of ACA attached PET flex in high reliability industrial applications. Additionally, testing methods for high reliability adhesive interconnections are discussed. Especially, the effect of temperature cycling soak time on peel test results and reliability testing time is studied.
机译:目的-本文的目的是研究在恶劣环境下用于工业应用的各向异性导电粘合剂(ACA)附着的聚对苯二甲酸乙二醇酯(PET)板上挠性(FOB)组件的长期可靠性。另外,研究了减少可靠性测试时间的可能性。设计/方法/方法-使用-40 / + 125℃的热循环测试(浸泡时间为5分钟和14分钟)来研究可靠性。为了研究测试期间FOB组件的功能,将实时电阻测量与90°剥离强度测试一起使用。使用扫描电子显微镜和横截面对样品进行失效分析。发现-在测试过程中未发现故障或测量到的电阻值明显增加。然而,使用两次浸泡时间,剥离强度均显着降低。机械强度的最高下降出现在温度循环测试开始时。在高温极端条件下花费的时间似乎比温度循环次数对剥离强度的影响更大。剥离测试样品的失效模式由于温度循环从界面分层到内聚失效而改变。还观察到温度循环导致粘合剂内部的空隙。原创性/价值-本文阐述了ACA附着的PET柔性纤维在高可靠性工业应用中的适用性。另外,讨论了用于高可靠性粘合剂互连的测试方法。特别地,研究了温度循环浸泡时间对剥离测试结果和可靠性测试时间的影响。

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