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Analysis of a new multi-oscillated current resonant type DC-DC converter

机译:一种新型多振荡电流谐振式DC-DC变换器的分析

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摘要

This paper presents the analysis of a new multi-oscillated current resonant type DC-DC converter. Current resonant converters have several remarkable features such as high efficiency, small size, low cost and low noise, and are frequently employed in many portable electronic systems such as personal computers, cellular phones and flat panel displays. The current resonant type converter generally employs pulse frequency modulation for constant voltage control in the output. For this reason, the magnetizing current through the converter not only causes a power loss under a light load, but also a loss during stand-by. Therefore, this type of converter has a problem in that the required smaller size cannot be achieved, because an auxiliary source is necessary for stand-by. In order to solve these problems, a new current resonant type power supply is proposed in which two driving methods are employed. In these driving methods, one MOSFET as a main switch is driven by an auxiliary winding of the transformer and another MOSFET as a main switch is driven by the driving IC with a low withstand voltage. Good agreement of the observed and simulated waveforms was confirmed. In addition, eight distinct states and four distinct operating modes, which compose of the sequence of states, were clarified by experimental and simulated analysis.
机译:本文介绍了一种新型多振荡电流谐振型DC-DC转换器的分析。电流谐振转换器具有诸如高效率,小尺寸,低成本和低噪声的若干显着特征,并且经常用于许多便携式电子系统中,例如个人计算机,蜂窝电话和平板显示器。电流谐振型转换器通常采用脉冲频率调制以在输出中进行恒定电压控制。因此,流过转换器的励磁电流不仅会导致轻负载下的功率损耗,还会造成待机时的损耗。因此,这种类型的转换器的问题在于,由于需要备用电源,因此无法实现所需的较小尺寸。为了解决这些问题,提出了一种采用两种驱动方法的新型电流谐振型电源。在这些驱动方法中,一个MOSFET作为主开关由变压器的辅助绕组驱动,而另一个MOSFET作为主开关由驱动IC以低耐压驱动。确认观察到的和模拟的波形吻合良好。此外,通过实验和模拟分析,阐明了由状态序列组成的八个不同的状态和四个不同的操作模式。

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