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Design of High Power Density DC Bus Converter Based on LLC Resonant Converter with Synchronous Rectifier

机译:基于LLC谐振转换器的高功率密度直流总线转换器设计与同步整流器

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The LLC resonant converter can easily achieve soft-switching and magnetic components integration that makes it an excellent candidate for DC Bus Converter. In low voltage high output current applications, the design of synchronous rectifier (SR) and transformer is the key issue. A SR driving scheme with less circuit complexity is adopted for switching frequency at the resonant frequency in this paper. Using Magnetic Motive Force (MMF) diagrams both in space and time, the loss model of the center-tapped planar transformer is proposed that provides insight into the mechanism of the skin and proximity losses and that also yields quantitative results. The Finite-Element analysis (FEA) is applied to demonstrate the loss model. A prototype of 1/4 brick, 48V to 12V, 500W output Bus Converter is built to verify the result. 96.6% efficiency at full load and 300W/in3 power density are achieved.
机译:LLC谐振转换器可以容易地实现软件开关和磁性分量集成,使其成为直流总线转换器的优秀候选者。在低压高输出电流应用中,同步整流器(SR)和变压器的设计是关键问题。采用具有较低电路复杂性的SR驱动方案用于在本文中以谐振频率切换频率。使用空间和时间内的磁动力(MMF)图,提出了中心旋转平面变压器的损耗模型,从而提供了对皮肤和接近损耗机制的洞察力,并且还产生定量结果。应用有限元分析(FEA)来展示损失模型。构建了1/4砖块,48V至12V,500W输出总线转换器的原型以验证结果。达到满载的96.6%,实现了300W / IN3功率密度。

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