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Zero-voltage switching two-transformer full-bridge PWM lossless diode-clamp rectifier for PDP sustain power module (IECON '04)

机译:零电压开关两变压器全桥PWM无损二极管钳位整流器,用于PDP维持电源模块(IECON '04)

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This paper presents a zero-voltage switching (ZVS) two-transformer full-bridge (TTFB) PWM converter with lossless diode-clamp rectifier for a plasma display panel (POP) sustaining power module (PSPM). The TTFB has series-connected two transformers which act as an output inductor as well as a main transformer, i.e. as the forward and the flyback transformer. Although the doubled leakage inductor of the two-transformer make it easier to achieve the ZVS of the lagging leg switch along the wide load range, it instigates a serious voltage ringing across the output rectifier diodes, which would require the dissipative snubber circuit, cause the serious power dissipation, and increase the voltage stress across those diodes. To overcome these problems, a new lossless diode-clamp rectifier (LDCR) is employed as the output rectifier, which helps the voltage across rectifier diodes to be clamped at a half the output voltage (V/sub 0//2) or the output voltage (V/sub 0/). Therefore, no dissipative snubber for the rectifier diodes is needed and a high efficiency as well as a low noise output voltage can be realized. In addition, the clamping capacitor of the LDCR can help to considerably reduce the primary circulating current. The operations, analysis and design consideration of proposed converter are presented. Also, a 425 W, 385-170 V dc prototype is constructed and experimental results verified the validity of the proposed converter.
机译:本文介绍了一种用于等离子显示面板(POP)维持电源模块(PSPM)的具有无损二极管钳位整流器的零电压开关(ZVS)两变压器全桥(TTFB)PWM转换器。 TTFB具有两个串联的变压器,它们既充当输出电感器又充当主变压器,即正向和反激变压器。尽管双变压器的双漏电感使在较宽的负载范围内更容易实现滞后支路开关的ZVS,但它会在输出整流二极管上产生严重的电压振铃,这将需要耗散的缓冲电路,从而导致严重的功耗,并增加了这些二极管两端的电压应力。为了克服这些问题,新的无损二极管钳位整流器(LDCR)被用作输出整流器,这有助于将整流二极管两端的电压钳位在输出电压(V / sub 0 // 2)或输出电压的一半。电压(V / sub 0 /)。因此,不需要用于整流二极管的耗散缓冲器,并且可以实现高效率以及低噪声输出电压。另外,LDCR的钳位电容器可以帮助大大减少初级循环电流。提出了所建议的转换器的操作,分析和设计考虑。此外,构建了425 W,385-170 V dc原型,实验结果验证了所提出转换器的有效性。

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