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Optimal design of GaN and PCB-winding Based Transformer-Inductor-Integrated Magnetics for CLL resonant converter

机译:用于CLL谐振转换器的基于GaN和PCB绕组的变压器-电感器集成磁学的优化设计

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A transformer-inductor-integrated magnetic structure with PCB-winding is presented for a GaN-based CLL resonant converter. In comparison with a conventional LLC resonant converter, the resonant inductor of the CLL resonant converter is placed on the secondary side of the transformer to eliminate the circulating current-related losses. Core losses of both the transformer and the resonant inductor are reduced by sharing a common magnetic plate between them. To suppress the common-mode noise induced by the PCB-winding, part of the primary windings are used as shielding layers, and a symmetrical PCB winding structure is implemented for a 10:2 turns ratio transformer. A 700kHz 400V/48V CLL converter is designed and tested to verify the effectiveness of the integrated magnetics.
机译:提出了一种用于GaN基CLL谐振转换器的带PCB绕组的变压器-电感器集成磁性结构。与传统的LLC谐振转换器相比,CLL谐振转换器的谐振电感器放置在变压器的次级侧,以消除与循环电流有关的损耗。通过在变压器和谐振电感器之间共享一块共用的磁板,可以降低它们的铁损。为了抑制PCB绕组引起的共模噪声,部分初级绕组用作屏蔽层,并为匝数比为10:2的变压器实现了对称的PCB绕组结构。设计并测试了一个700kHz 400V / 48V CLL转换器,以验证集成磁性元件的有效性。

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