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CARBON NANOTUBES AND AN OPTICAL METHOD FOR LIFE CONSUMPTION MONITORING OF ELECTRONIC ASSEMBLIES

机译:碳纳米管和电子组件寿命消耗监测的光学方法

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Life consumption monitoring is a method of quantifying the degradation of a system by monitoring the life cycle environment. With current research demonstrating the value of nanotubes as sensors, they may prove to be an inexpensive, compact, and reliable means to monitor not only system environments, but also physical signs of degradation. Life consumption monitoring of electronic assemblies can be cost-effectively done using optical strain measurement techniques. In this study, current output from an optical sensor can be used to interpret combined temperature and vibration histories. This may be accomplished by passing monofrequency light through optical fibers in a peripheral arrangement on a dummy chip. Any deviation from the null condition results in misalignment of the fibers, and hence reduction in intensity and current output. With appropriate failure data at different stress levels, it is possible to determine damage and estimate the remaining life. The key challenges are to determine whether such an optical health monitoring scheme can be sufficiently accurate and robust, and whether the results can be applied to a variety of packages at any location on a circuit assembly.
机译:生命消耗监测是通过监测生命周期环境来量化系统的降解的方法。利用当前的研究,将纳米管的值作为传感器,它们可能被证明是不仅可以监测系统环境的廉价,紧凑且可靠的手段,而且是劣化的物理迹象。使用光学应变测量技术可以成本有效地完成电子组件的寿命消耗监测。在该研究中,光学传感器的电流输出可用于解释组合温度和振动历史。这可以通过在虚设芯片上的外围布置中通过光纤通过光纤来实现。与零条件的任何偏差导致纤维的未对准,从而降低强度和电流输出。在不同应力水平的适当故障数据中,可以确定损坏并估计剩余的寿命。关键挑战是确定这种光学健康监测方案是否可以充分准确和稳健,以及是否可以将结果应用于电路组件上的任何位置的各种包装。

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