一种具有电感式电源系统结构的新型电源模块

Laili Wang, D. Malcolm, Yanfei Liu
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引用次数: 8

摘要

本文提出了一种具有高功率密度和高效率的集成电源模块。设计了一种多功能集成磁性元件。该元件既有滤波电感器的作用,又有整个电源模块外壳的作用。在有限元分析的辅助下,对该电感器的设计和优化进行了论证。它比传统设计的电感具有更高的电感值。它具有更大的线圈绕组和更大的表面积,因此比塑料包装更低的DCR和更好的热性能。得益于这些优势,基于电感构建的功率模块可以实现比基于传统塑料封装解决方案更高的效率和更低的温度。通过分析与仿真相结合的方法对电感器的设计进行了论证。建立了电感样机,并将其应用于集成电源模块中进行了实验测试。执行功率模块的损耗击穿,以显示磁性元件的损耗。所提出的电源模块性能优于塑料封装方案。
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An innovative power module with power-system-in-inductor structure
This paper presents an integrated power module with the features of high power density and high efficiency. A multi-functional integrated magnetic component is designed. The component has the roles of both the filter inductor and the case of the whole power module. With the assist of finite element analysis (FEA), design and optimization of the proposed inductor are demonstrated. It has higher inductance value than the inductor used in conventional designs. It has bigger coil winding and larger surface area, leading to lower DCR and better thermal performances than plastic packaging. Benefiting from these advantages, the power module constructed based on the inductor can achieve higher efficiency and lower temperature than those based on traditional plastic packaging solutions. Design of the inductor is demonstrated through the combination of analytical and simulation methods. An inductor prototype is built and used in an integrated power module to do experimental tests. Loss breakdown of the power module is executed to show the loss of the magnetic component. The proposed power module shows better performances than the plastic packaging solution.
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