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An Active Resonant Circuit with the Dynamic Resonant Period Control Technique for Fast Zero Voltage Switching in GaN-Based Active Clamp Flyback Converters

机译:具有动态谐振周期控制技术的主动谐振电路,用于GaN基活动钳位反激式转换器的快速零电压切换

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This paper proposes an active clamp flyback (ACF) converter with GaN devices. Compared to Si FETs, when the main GaN FET is at full zero voltage switching (FZVS), maximum switching loss reduction can be achieved. Thus, the use of dynamic resonant period control (DRPC) technique to achieve fast ZVS can reduce 87% of the transformer leakage inductance energy loss on the active resonant circuit (ARC). When the load changes, the DRPC technique dynamically adjusts the auxiliary switch on-time to prevent large voltage stress on the primary side components. At full load, the leakage energy loss can be reduced, thereby transferring more energy to the secondary side with an efficiency of up to 94%.
机译:本文提出了一种带GaN器件的Active Clamp反激(ACF)转换器。与SI FET相比,当主甘FET处于全零电压开关(FZV)时,可以实现最大的开关损耗。因此,使用动态谐振周期控制(DRPC)技术实现快速ZVs可以减少有源谐振电路(ARC)上的变压器泄漏电感能量损失的87%。当负载变化时,DRPC技术动态调节辅助开关,以防止初级侧部件上的大电压应力。在满载时,可以降低泄漏能量损失,从而将更多能量转移到次级侧,其效率高达94%。

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