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Design of a 300-W Isolated Power Supply for Ultrafast Tracking Converters

机译:超快速跟踪转换器的300W隔离电源设计

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This paper presents the design of a medium-power-rating isolated power supply for ultrafast tracking converters and MOS-gate driver circuits in medium- and high-voltage applications. The key feature of the design is its very low circuit input-to-output parasitic capacitance, which maximizes its immunity from noise due to fast changes in voltage. The converter is a voltage-controlled current source, utilizing a transformer with extremely low interwinding parasitic capacitance, which is achieved by separating the windings by a significant distance. Experimental measurements show that an overall circuit input-to-output parasitic capacitance of 10 pF in a 300-W prototype can be achieved. The circuit input-to-output capacitance per watt is therefore 30 times lower than that of existing approaches. A mathematical model of the interwinding capacitance of the proposed transformer, circuit analysis, and experimental results are provided to prove the feasibility of the converter.
机译:本文介绍了中压和高压应用中用于超快速跟踪转换器和MOS栅极驱动器电路的中等功率额定隔离电源的设计。该设计的关键特征是其极低的电路输入至输出寄生电容,可最大程度地防止由于电压快速变化而产生的噪声。该转换器是一个电压控制电流源,它利用具有极低的绕组间寄生电容的变压器来实现,这种变压器是通过将绕组隔开相当大的距离来实现的。实验测量表明,在300W原型中,整个电路的输入至输出寄生电容可以达到10 pF。因此,每瓦的电路输入输出电容比现有方法低30倍。提供了所提出的变压器的绕组电容的数学模型,电路分析和实验结果,以证明该转换器的可行性。

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