Steady state analysis for an off-line series resonant converter

W. Moussa, J. E. Morris
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Abstract

A steady state analysis of an offline, high frequency series resonant converter that operates from 200 VDC and produces 5.0 VDC at 10 A is presented. Regulation is accomplished through varying the switching frequency while keeping the ON time of the switch constant. The switching cycle is split into separate stages, each stage analyzed through a description of its state equations. Some of the features of this converter are: the switches turn both on and off into zero current, the inductor (L) current and capacitor (C) voltage waveforms have finite slopes causing less electromagnetic interference (as opposed to pulse-width-modulation converters) the transformer's leakage inductance can be used in part or entirely as the resonant inductor, and the current in L and the voltage across C do not resonate continuously-instead, they assume fixed values at the end of every cycle.<>
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离线串联谐振变换器稳态分析
本文介绍了一种工作电压为200vdc,输出电压为10a,电压为5.0 VDC的离线高频串联谐振变换器的稳态分析。调节是通过改变开关频率,同时保持开关的接通时间不变来完成的。切换周期被分成几个独立的阶段,每个阶段通过描述其状态方程进行分析。这个转换器的一些特性:开关打开和关闭两个为零电流、电感(L)的电流和电容(C)电压波形有有限的斜坡产生更少的电磁干扰(相对于脉宽调制转换器)变压器的漏电感可用于部分或完全谐振电感、L和C的电压和电流不continuously-instead产生共鸣,他们认为固定值在每个周期的终结。>
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