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Innovative connectivity for power dice in mechatronic packaging of automotive power electronics

机译:汽车功率电子机电封装中功率管芯的创新连接

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The automotive industry is today starving for low consumption and environment friendly vehicles. All OEMs and tier-ones are developing programs about Hybrids or Fuel-Cells vehicles. These new developments are going together with the spread of power electronics implemented within the powertrain systems and within more and more electric driven systems, with medium and high power capabilities. It turns out from all those systems that the demand for power electronics equipments, tailored to automotive environment, tremendously raises the need of improved assembly technologies that can provide high durability under high electrical and thermal constrains. Recently, a new robust assembly technology showing excellent compliance with automotive constrains (performance and cost) has been introduced for packaging power dice with mechatronic capabilities. This power mechatronic package is based onto stamped metal tapes embedded in a plastic frame (i.e. IML packaging technology, IML standing for Insulated Molded Leadframe). This IML technology is young compared to other existing railway or industrial assembly techniques but it has already demonstrated numerous advantages in terms of high current and high temperature capabilities. IML power mechatronic technology hosts numerous innovations that have been driven by new approaches like the one described in this document. This paper will introduce research work performed for improving power dice top connections in a way that device current density can increase keeping junction temperatures at reasonable level and enabling dice double side cooling. It will display the reliability comparison between the state of the art of wire bonding technology and the proposed joining process innovations. A comprehensive analysis of reliability has been made using coupled thermo-electrlcal and thermo-mechanicat simulations. The exposed data of this paper demonstrate the very high potentials of that new technology for automotive power mechatronic modules.
机译:如今,汽车行业正迫切需要低消耗和环保的车辆。所有OEM和一级制造商都在开发有关混合动力或燃料电池汽车的计划。这些新发展与动力电子系统在动力总成系统内以及越来越多的具有中功率和高功率功能的电驱动系统中的实现相结合。从所有这些系统中可以看出,针对汽车环境的电力电子设备需求极大地提高了对改进的装配技术的需求,这些装配技术可以在高电气和热约束下提供高耐用性。最近,针对具有机电一体化功能的封装功率骰子,已经引入了一种新的鲁棒组装技术,该技术显示出对汽车约束(性能和成本)的出色兼容性。这种功率机电一体化封装基于嵌入塑料框架中的冲压金属带(即IML封装技术,IML代表绝缘模制引线框架)。与其他现有的铁路或工业装配技术相比,这种IML技术还很年轻,但是就高电流和高温能力而言,它已经展示了许多优点。 IML功率机电技术承载了许多创新,这些创新是由新方法驱动的,例如本文档中介绍的方法。本文将介绍为改善功率管芯顶部连接而进行的研究工作,以使器件电流密度增加,从而将结温保持在合理水平,并实现管芯双面冷却。它将显示引线键合技术与拟议的连接工艺创新之间的可靠性比较。使用热电模拟和热机械模拟耦合对可靠性进行了全面分析。本文的公开数据证明了该新技术在汽车功率机电模块中的巨大潜力。

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