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Analysis and design of resonant rectifier for high-frequency dc-dc converters

机译:高频DC-DC变换器谐振整流器的分析与设计

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This paper presents an analysis and a novel design method of the resonant rectifier for dc-dc power converters operating in MHz frequency range. Compared to the conventional rectifier circuits such as a half-wave rectifier and a full-bridge one, the resonant rectifier features zero or low dv/dt at the turn-on and turn-off instant of the diode in the rectifier. Therefore, it significantly reduces undesirable oscillation of parasitic inductance and capacitance caused by high dv/dt and thereby provides benefits of lower noise and loss for MHz-frequency switching. In this work, we analyze the resonant rectifier where the inductor resonates with the junction capacitance of the diode, whereas most prior works use a large inductor as a dc current source. In addition, we propose the design scheme based on the analysis that the rectifier operates as an impedance inverter. The impedance inversion of the rectifier enables zero voltage switching (ZVS) and narrow-band frequency modulation of the converter for wide load ranges. Experimental results from a GaN-based prototype verify the feasibility and the effectiveness of the proposed design.
机译:本文介绍了一种工作在MHz频率范围内的DC-DC电源转换器的谐振整流器的分析方法和一种新颖的设计方法。与传统的整流器电路(例如半波整流器和全桥整流器)相比,谐振整流器在整流器中的二极管导通和关断瞬间的dv / dt为零或较低。因此,它显着减少了由于高dv / dt引起的寄生电感和电容的不希望有的振荡,从而为MHz频率切换提供了更低的噪声和损耗。在这项工作中,我们分析了谐振整流器,其中电感器与二极管的结电容发生谐振,而大多数现有技术使用大电感器作为直流电流源。另外,基于分析结果提出了整流器作为阻抗逆变器的设计方案。整流器的阻抗反转可在宽负载范围内实现零电压开关(ZVS)和转换器的窄带频率调制。基于GaN的原型的实验结果证明了所提出设计的可行性和有效性。

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