3D packaging technology incorporated power conversion module for automotive distributed energy resource application

M. Jin, X. Fu
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Abstract

A three-dimensional (3D) packaged electronic module is proposed in this paper that serves as power conversion module for emerging automotive distributed energy resource (DR) applications. Thermal dissipation and parasitic inductance are identified as two major issues causing energy loss during transmission. Literature and industrial approaches to mitigate these issues are reviewed, which features a DC-DC inverter in hybrid electric vehicle (HEV) or plug-in hybrid electric vehicle (PHEV) as an example. A 3D package technology is therefore developed and CAD simulation tool is then employed to investigated and evaluated its effectiveness in electricity conversion. The result shows the package halves inductive parasitic with significant improvement on thermal efficiency. The implementation of this technology in automotive power converter is expected to achieve high efficient and reliable power conversion.
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3D封装技术集成电源转换模块,用于汽车分布式能源应用
本文提出了一种三维封装电子模块,作为新兴汽车分布式能源(DR)应用的电源转换模块。热耗散和寄生电感是导致传输过程中能量损失的两个主要问题。本文回顾了缓解这些问题的文献和工业方法,其中以混合动力汽车(HEV)或插电式混合动力汽车(PHEV)中的DC-DC逆变器为例。因此,开发了一种3D封装技术,然后使用CAD仿真工具对其在电力转换中的有效性进行了研究和评估。结果表明,该封装将电感寄生减半,热效率显著提高。该技术在汽车电源变换器中的应用有望实现高效、可靠的电源转换。
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