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Reliability Design of Dual Sided Cooled Power Semiconductor Module for Hybrid and Electric Vehicles

机译:混合动力汽车双面冷却功率半导体模块的可靠性设计

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Power semiconductor market is expecting a substantial growth with global high interests and efforts to develop and popularize low carbon vehicles. The power electronics components and systems play key roles in hybrid and electric driving, controlling and assisting, and one of the most important devices is the power semiconductor module in the powertrain system. For high performance and safety requirements of hybrid and electric vehicles (HEV/EV), as well as for harsh operating environment, the performance and reliability of automotive module must be at exceptional high standard. In this work, a new automotive power module with dual sided cooled (DSC) capability is developed. The reliability design is focused in terms of thermal, electrical and process reliability. The module has been designed with optimization of performance, reliability, weight and cost, and is being qualified for automotive standard. By incorporating a planar DSC structure and capability, the junction to case thermal resistance (R_(th J-C)) is reduced by about 50% compared to the advanced direct liquid cooling (DLC) automotive module, which enhances the thermal reliability. The planar packaging without emitter bonding wires in the proposed DSC module improves thermal and electrical performance and reliability, such as reduction of parasitic resistance and inductance, improvement of temperature uniformity, increase of efficiency and short circuit capability. The weight and cost can be saved by about 30% by eliminating baseplate. By introducing the advanced die and terminal attach technologies in assembly process, the reliability are reinforced further. The module is assembled with medium volume by the proposed design and process, and is being evaluated in the power control unit of HEV/EV.
机译:电力半导体市场预计全球高利益和努力的大幅增长和努力发展和普及低碳车辆。电力电子元件和系统在混合动力和电动驱动,控制和辅助中播放关键作用,并且最重要的设备之一是动力总成系统中的功率半导体模块。用于混合动力和电动车辆(HEV / EV)的高性能和安全要求,以及苛刻的操作环境,汽车模块的性能和可靠性必须处于特殊的高标准。在这项工作中,开发了一种具有双面冷却(DSC)能力的新型汽车电源模块。可靠性设计在热,电气和工艺可靠性方面集中。该模块设计,具有优化性能,可靠性,重量和成本,并且是有资格的汽车标准。通过采用平面DSC结构和能力,与先进的直接液体冷却(DLC)汽车模块相比,符合壳体热阻(R_(THJ-C))的结降低约50%,这提高了热可靠性。在所提出的DSC模块中没有发射极键合线的平面包装提高了热电平和电气性能和可靠性,例如寄生电阻和电感的降低,温度均匀性的提高,效率的增加和短路能力。通过消除底板,重量和成本可以节省约30%。通过在装配过程中引入先进的模具和终端附着技术,可以进一步加强可靠性。该模块通过所提出的设计和过程组装中等体积,并在HEV / EV的功率控制单元中进行评估。

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