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Design and Simulation of an Improved Soft-Switched Synchronous Buck Converter

机译:改进软开关同步降压转换器的设计与仿真

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This paper proposes an improved soft switched synchronous buck converter in a fixed load condition. The switching energy can be fully recovered during current commutation phase in the gate driver while the diode conduction losses in the low and high side switches can be substantially reduced by employing additional L and C resonant in the circuit. Using PSpice simulation, the optimization technique has been studied. From the predetermined pulse width of the generated signals, the optimized resonant inductor current is observed to generate less oscillation and hence lower the switching loss. In addition, an optimized dead time interval is inserted between high side and low side of the transistors in the synchronous buck converter to minimize their body diode conduction losses. The detailed operations of both circuits are analyzed.
机译:本文提出了一种在固定负载条件下改进的软开关同步降压转换器。在栅极驱动器中的电流换向相位期间可以完全回收切换能量,而通过在电路中采用附加的L和C谐振,可以基本上减小低和高侧开关中的二极管导通损耗。使用PSPICE仿真,已经研究了优化技术。根据所产生信号的预定脉冲宽度,观察到优化的谐振电感电流以产生较少的振荡,从而降低开关损耗。另外,优化的死区时间间隔在同步降压转换器中的晶体管的高侧和低侧之间插入以最小化它们的主体二极管传导损耗。分析了两个电路的详细操作。

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