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Plastic-encapsulated microcircuit reliability and cost-effectiveness study

机译:塑料封装微电路的可靠性和成本效益研究

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摘要

This study evaluates the reliability and cost-effectiveness of using commercial plastic-encapsulated microcircuits (PEM) in a typical military system, with a view to increasing their acceptability in military applications. The cost comparison indicates an average 6-fold decrease in cost when commercial devices are used. Assurance testing did not reveal any special problems with commercial parts. Thus, if commercial PEM were proven to be sufficiently reliable for an intended military application, large cost savings would be gained by using them instead of hermetic packages. The 4.5 sigma enhanced inspection program and the process-control methods suggested here would enhance the manufacturing yield of the PLGR (precision lightweight global positioning system receiver) by encouraging improvements in the manufacturing process while simultaneously cutting the cost of a 100% rescreen to qualify the final product. Neither the requirements assurance tests (including the step-stress test-analyze-and-fix test), nor the reliability demonstration test, nor the operational test, showed more failures than are typical for any new development, and no problems unique to PEM were observed. Thus, the use of PEM did not lead to any special problems that caused PLGR-use specifications to be violated. Complete failure analysis of the isolated parts is in progress, and the results will help to understand the specific reliability issues involved with the use of PEM in military systems. These issues can then be addressed to improve the acceptability of such devices in future military applications.
机译:这项研究评估了在典型的军事系统中使用商用塑料封装微电路(PEM)的可靠性和成本效益,以提高其在军事应用中的可接受性。成本比较表明,使用商用设备时,成本平均下降了6倍。保证测试没有发现商业零件的任何特殊问题。因此,如果事实证明商用PEM对于预期的军事应用具有足够的可靠性,则使用它们代替密封包装可节省大量成本。此处建议的4.5 sigma增强型检查程序和过程控制方法将通过鼓励制造工艺的改进,同时削减100%的重新筛检成本来提高PLGR(精密轻巧的全球定位系统接收器)的生产良率。最终产品。需求保证测试(包括逐步压力测试,分析和修复测试),可靠性演示测试或运营测试都没有显示出比任何新开发都更多的失败,而且PEM并没有出现任何独特的问题。观测到的。因此,PEM的使用不会导致任何导致PLGR使用规范受到违反的特殊问题。隔离部件的完整故障分析正在进行中,其结果将有助于您了解军事系统中使用PEM涉及的特定可靠性问题。然后可以解决这些问题,以提高此类设备在未来的军事应用中的可接受性。

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