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Low standby power consumption and high cross regulation of active clamp flyback converter with SSPR

机译:具有SSPR的有源钳位反激式转换器的低待机功耗和高交叉调节

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Energy and environmental conservation have prompted interest in high efficiency and low standby power consumption in industrial switch mode power supply (SMPS) applications. However, it is difficult to satisfy both conditions simultaneously due to conflicting design considerations. In this paper, methods of low standby power consumption and high cross regulation are proposed using a novel active clamp control circuit and secondary side post regulator (SSPR) for a flyback converter with multiple output channels. The proposed active clamp control reduces the power consumption of the clamp circuit in standby mode, and the SSPR improves cross regulation performance and minimizes standby energy leakage. The superiority of the proposed converter is verified using theoretical analysis and experimental results on a 110W prototype converter.
机译:节能和环保引起了人们对工业开关模式电源(SMPS)应用中的高效率和低待机功耗的兴趣。但是,由于设计上的矛盾,很难同时满足两个条件。本文针对具有多个输出通道的反激式转换器,使用新型有源钳位控制电路和次级侧后置稳压器(SSPR),提出了低待机功耗和高交叉调节的方法。所提出的有源钳位控制降低了待机模式下钳位电路的功耗,并且SSPR改善了交叉调节性能,并最大程度地降低了待机能量泄漏。通过理论分析和在110W原型转换器上的实验结果,验证了所提出转换器的优越性。

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