Optimal Design of Integrated Magnetics and PCB Winding for CLL Resonant Converter

Jun Zou, Mingming Ji, Fan Yang, Yue Liu, Hongfei Wu
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Abstract

Optimal design and implementation of high-efficiency and high-power-density CLL resonant converter with gallium nitride transistor and integrated magnetics is presented. The matrix transformer and resonant inductor are integrated into a magnetic core. The core loss after integration is reduced by flux cancellation and verified by finite element analysis (FEA) tools. A symmetrical PCB winding layout is presented for a 7:2 transformer turns ratio. To reduce the common mode noise caused by the interlayer capacitance of the PCB winding, half of the shielding is used as the primary winding. Finally, a 1.2-MHz 750-W 270-V/48-V CLL converter prototype is demonstrated to verify the effectiveness of the magnetic integration structure with PCB-winding. The peak efficiency of the prototype is 96.6% and the power density is 720W/in3.
CLL谐振变换器集成磁性及PCB绕组的优化设计
介绍了一种高效、高功率密度氮化镓晶体管CLL谐振变换器的优化设计与实现。矩阵变压器和谐振电感集成在一个磁芯中。通过磁通抵消减小了积分后的堆芯损耗,并通过有限元分析工具进行了验证。针对7:2的变压器匝数比,提出了一种对称的PCB绕组布局。为了降低PCB绕组层间电容引起的共模噪声,采用一半的屏蔽层作为初级绕组。最后,设计了一个1.2 mhz 750-W 270-V/ 48v CLL变换器样机,验证了pcb绕组磁集成结构的有效性。样机的峰值效率为96.6%,功率密度为720W/in3。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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