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Resonant Switching Cell Model for High-Frequency Single-Ended Resonant Converters

机译:高频单端谐振转换器的谐振开关单元模型

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This paper proposes a resonant switching cell model to analyze and design the single-ended resonant dc-dc converters. The single-ended zero-voltage switching (ZVS) converters such as the Class E converter are efficient for megahertz switching because they feature low turn-ox and turn-OFF switching lasses. Also, they use only a ground-referenced switch, allowing a simple gate drive circuit. In this paper, we investigate the single-ended resonant converter with the small input inductance, whereas the conventional Class E converter has a large input inductance. The main contribution of this paper is to propose the resonant switching cell as an analytic model that simplifies the analysis and the design of the resonant dc-dc converters. Furthermore, this paper presents the design method of the resonant switching cell model for minimizing the resonant current magnitude and conduction loss while the converter maintains ZVS property. The experimental results from a 10-MHz GaN-based prototype demonstrate the feasibility and effectiveness of the analysis and design based on the proposed resonant switching cell model.
机译:本文提出了一种谐振切换单元模型来分析和设计单端谐振DC-DC转换器。单端零电压切换(ZVS)转换器,如E类转换器对于Megahertz开关是有效的,因为它们具有低转速和关闭切换损伤。此外,它们仅使用地址开关,允许简单的栅极驱动电路。在本文中,我们研究了具有小输入电感的单端谐振转换器,而传统的E类转换器具有大的输入电感。本文的主要贡献是提出谐振切换单元作为分析模型,简化了谐振DC-DC转换器的分析和设计。此外,本文介绍了谐振切换单元模型的设计方法,以最小化谐振电流幅度和导通损耗,而转换器保持ZVS属性。基于10MHz GaN的原型的实验结果证明了基于所提出的共振切换单元模型的分析和设计的可行性和有效性。

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