网络拓扑
放大器
电感器
功率(物理)
转换器
电子线路
电气工程
拓扑(电路)
电子工程
工程类
电容电路
振荡(细胞信号)
计算机科学
电容器
物理
电压
操作系统
生物
量子力学
遗传学
CMOS芯片
作者
Dongmin Kim,Jongyoon Chae,Ki-Bum Park,Gun‐Woo Moon
标识
DOI:10.1109/tpel.2023.3303649
摘要
This article proposes a self-oscillated feedback network for push–pull resonant topologies. Resonant topologies such as Class E power amplifiers are suitable for very high frequency (VHF) switching applications as they ideally have no switching losses. However, since VHF gate driving still requires complex and expensive auxiliary circuits, a self-oscillated driving method can be considered. Conventional self-oscillated feedback networks are only applicable to single-ended topologies, which are limited to low-power applications. On the other hand, the proposed self-oscillated feedback network is expandable to push–pull topologies and can significantly increase power handling capability. The proposed circuit maintains complementary symmetry by utilizing the coupled inductor and virtual ground characteristics and satisfies the oscillation criteria for all operating conditions. The proposed circuit is experimentally verified through a 3.3 MHz, 30 W push–pull power oscillator prototype.
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