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Power cycling test and failure analysis of molded Intelligent Power IGBT Module under different temperature swing durations

机译:不同温度摆幅下模压智能功率IGBT模块的功率循环测试和故障分析

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Molded IGBT modules are widely used in low power motor drive applications due to their advantage like compactness, low cost, and high reliability. Thermo-mechanical stress is generally the main cause of degradation of IGBT modules and thus much research has been performed to investigate the effect of temperature stresses on IGBT modules such as temperature swing and steady-state temperature. The temperature swing duration is also an important factor from a real application point of view, but there is a still lack of quantitative study. In this paper, the impact of temperature swing duration on the lifetime of 600 V, 30 A, 3-phase molded Intelligent Power Modules (IPM) and their failure mechanisms are investigated. The study is based on the accelerated power cycling test results of 36 samples under 6 different conditions and tests are performed under realistic electrical conditions by an advanced power cycling test setup. The results show that the temperature swing duration has a significant effect on the lifetime of IGBT modules. Longer temperature swing duration leads to the smaller number of cycles to failure. Further, it also shows that the bond-wire crack is the main failure mechanism of the tested IGBT modules. (C) 2016 Elsevier Ltd. All rights reserved.
机译:模制IGBT模块具有结构紧凑,成本低和可靠性高等优点,因此广泛用于低功率电机驱动应用。热机械应力通常是导致IGBT模块性能下降的主要原因,因此已经进行了大量研究来研究温度应力对IGBT模块的影响,例如温度摆幅和稳态温度。从实际应用的角度来看,温度摆幅持续时间也是一个重要因素,但是仍然缺乏定量研究。本文研究了温度摆幅持续时间对600 V,30 A三相模压智能功率模块(IPM)的寿命及其故障机理的影响。该研究基于36种样品在6种不同条件下的加速功率循环测试结果,并且通过先进的功率循环测试装置在实际的电气条件下进行了测试。结果表明,温度摆幅持续时间对IGBT模块的寿命有重要影响。温度摆幅持续时间越长,导致失败的循环次数越少。此外,它还表明,焊线裂纹是测试的IGBT模块的主要故障机理。 (C)2016 Elsevier Ltd.保留所有权利。

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