An integrated design approach for the hardware optimization of electrical power modules for automotive electrotraction

J. Wilde, W. Staiger, M. Thoben
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引用次数: 6

Abstract

In this paper, a systematic approach is presented for the design and optimization of forced liquid cooled electronic modules with high power dissipation. The steps of the design cycle include hydrodynamical evaluation of the heat sink, thermal management, thermomechanical optimization and especially lifetime prediction of soldered joints. Utilized engineering tools comprise computational fluid dynamics, finite differences and finite element programs. These are coupled via software interfaces in order to enable data exchange as well as efficient cooperation of the designers. Applying these means, performance, reliability and costs of a certain module have been optimized. By use of a design-for-reliability procedure substantial savings with regard to development time, prototyping effort and consequently costs can been achieved.
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汽车电动牵引电源模块硬件优化的集成设计方法
本文提出了一种系统的高功耗强制液冷电子模块的设计与优化方法。设计周期的步骤包括散热器的流体动力学评估、热管理、热力学优化,特别是焊接接头的寿命预测。所使用的工程工具包括计算流体动力学、有限差分和有限元程序。这些通过软件接口耦合,以实现数据交换以及设计人员的有效合作。应用这些方法,对某模块的性能、可靠性和成本进行了优化。通过使用为可靠性而设计的程序,可以节省大量的开发时间、原型制作工作和最终的成本。
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