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Reliability Assessment of Power MOSFETs Working in Avalanche Mode Based on a Thermal Strain Direct Measurement Approach

机译:基于热应变直接测量方法的雪崩模式功率MOSFET的可靠性评估

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摘要

A strong demand for even more compact and reliable power electronic devices has powered the development of advanced design techniques. A key role is played in these techniques by the reliability assessment, a procedure that estimates the expected lifetime according to given mission profiles. The reliability assessment of a low voltage MOSFET working in avalanche mode is considered in this paper through an experimental approach based on the Coffin–Manson law. Differently from previously proposed techniques, based on a thermodynamic analysis, a direct measurement of the thermal strain over the source aluminum layer is instead exploited. The consistence of the proposed technique is evaluated by comparing estimation of the progressive increment of the -state resistance with results of endurance tests and estimation obtained from previously presented reliability models. The described technique can be applied to assess the reliability of MOSFETs in applications typical of the automotive field, where they are tasked to power inductive loads in unclamped mode. More in general, the method can be exploited to characterize the front metal of MOSFET devices subjected to power cycling, or short-circuit stress tests.
机译:对更加紧凑和可靠的电力电子设备的强烈需求推动了先进设计技术的发展。可靠性评估在这些技术中发挥了关键作用,可靠性评估是根据给定任务概况估算预期寿命的过程。通过基于科芬–曼森定律的实验方法,本文考虑了以雪崩模式工作的低压MOSFET的可靠性评估。与先前提出的技术不同,基于热力学分析,取而代之的是直接测量源铝层上的热应变。通过比较-state电阻的渐进增量的估计值与耐久测试的结果以及从先前介绍的可靠性模型获得的估计值,可以评估所提出技术的一致性。所描述的技术可用于评估MOSFET在汽车领域典型应用中的可靠性,在这些应用中,MOSFET的任务是在非钳位模式下为电感负载供电。更一般而言,可以利用该方法来表征经过功率循环或短路应力测试的MOSFET器件的正面金属。

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