There are soft switching conditions of all switches, low voltage stresses on the output diodes, and smaller input and output filters in this topology.
该拓扑具有所有功率开关均为软开关,输出二极管电压应力低和输入输出滤波器小的特点。
As the working frequency of the switches in SMPS (switch Mode Power Supply) increases, the switching loss increases, too. Soft switch technique can overcome this problem.
开关电源的高频化使得功率开关的损耗加大,采用软开关技术是减小该损耗的有效手段。
Because the main switches of the secondary only conduct voltage pulses, the soft switching of them can naturally be realized.
由于次级主开关管是对电压脉冲进行开关,自然实现了软开关。
The improved control method can make the two power switches turn on and off all under soft switching conditions and further increase the switch operating frequency and power density.
通过改进控制方式,可以使这两个功率开关的导通和关断都工作在软开关条件下,从而可以进一步提高开关频率,达到增加功率密度的目的。
To protect power switches, soft-starting circuit was designed to overcome the surge current.
同时采用软启动电路防止浪涌电流,保护功率开关管。
The concept of leading switches and lagging switches is introduced to realize soft-switching.
为了实现软开关,引入超前管和滞后管的概念。
Moreover, this thesis analyzed the resonant process of ARCP soft-switching inverter, as well as the control strategies for auxiliary switches.
本文还分析了辅助谐振变换极软开关逆变器的谐振过程,以及辅助管的控制方式,提出了一种通用的谐振参数选取方法。
Moreover, this thesis analyzed the resonant process of ARCP soft-switching inverter, as well as the control strategies for auxiliary switches.
本文还分析了辅助谐振变换极软开关逆变器的谐振过程,以及辅助管的控制方式,提出了一种通用的谐振参数选取方法。
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