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Resonant Energy-Recovery Circuit With Asymmetric Voltage Excitation and No Circulating Current for Plasma Display Panel

机译:等离子显示面板中具有非对称电压激励和无循环电流的谐振能量回收电路

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摘要

A sustain driver with a resonant energy recovery circuit is proposed based on asymmetric voltage excitation for a complete resonant commutation of panel capacitor in plasma display panels (PDPs). The developed driver configures the sustain circuit and the resonant circuit in such a way that the resonant network is energized by higher voltage level and lower level than half sustain voltage in charging and discharging the panel capacitor, respectively. This proposed operation can guarantee perfect commutation of the panel capacitor voltage, zero-voltage switching of the sustain switches, and reduced electromagnetic interference due to no surge current. Furthermore, the developed sustain circuit is designed to eliminate the conduction losses and the current stresses on the circuit and the switching devices caused by the reverse recovery operation of the diodes. The energy trapped in the resonant inductors due to the inevitable diode reverse-recovery phenomena, which generates additional conduction losses and thermal problem with circulating currents, is recovered in the proposed circuit.
机译:提出了一种基于不对称电压激励的具有谐振能量恢复电路的维持驱动器,用于等离子显示面板(PDP)中面板电容器的完全谐振换向。所开发的驱动器以如下方式配置维持电路和谐振电路,即,在对面板电容器进行充电和放电时,谐振网络分别由比维持电压的一半高的电压电平和更低的电平激励。该提议的操作可以保证面板电容器电压的完美换向,维持开关的零电压开关,以及由于无浪涌电流而减少的电磁干扰。此外,开发的维持电路被设计为消除由二极管的反向恢复操作引起的传导损耗和电路和开关装置上的电流应力。在所提出的电路中,由于不可避免的二极管反向恢复现象而在谐振电感器中捕获的能量得以回收,这会产生额外的传导损耗和循环电流带来的热问题。

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