Design and implementation of a low-cost and compact floating gate drive power circuit for GaN-based flying capacitor multi-level converters

Zichao Ye, Y. Lei, Wen-Chuen Liu, P. Shenoy, R. Pilawa-Podgurski
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引用次数: 51

Abstract

A major challenge in the implementation of flying capacitor multi-level (FCML) converters is providing power to the gate drive circuits. A common method is to use isolated DC/DC converters, which are bulky, expensive and energy inefficient. This work discusses the design and implementation of an alternative gate drive power supply circuit, which utilizes three techniques termed cascaded bootstrap, double charge pump and gate-driven charge pump. These techniques leverage the inherent properties of GaN switches and the FCML topology to transfer power to floating switches, and can be implemented with capacitors and diodes only. Experimental results show that the proposed circuit can cut the size of the power stage of a state-of-the-art 7-level FCML converter by half, at 1/6 of the cost.
基于氮化镓的飞电容多电平变换器的低成本、紧凑型浮栅驱动电源电路设计与实现
实现飞电容多电平(FCML)变换器的一个主要挑战是为栅极驱动电路提供电源。一种常见的方法是使用隔离的DC/DC转换器,这种转换器体积大、价格昂贵且能源效率低。本文讨论了一种替代栅极驱动电源电路的设计和实现,该电路采用了级联自举、双电荷泵和栅极驱动电荷泵三种技术。这些技术利用GaN开关的固有特性和FCML拓扑将功率传输到浮动开关,并且可以仅用电容器和二极管实现。实验结果表明,所提出的电路可以将目前最先进的7电平FCML转换器的功率级尺寸缩小一半,成本仅为其1/6。
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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