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Resonant plasma display panel driver with voltage boost technique

机译:具有升压技术的共振等离子体显示面板驱动器

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摘要

A simple sustain driver with energy recovery function has been proposed based on a voltage boost technique for plasma display panels (PDPs). The proposed driver, decoupled between the two electrodes, consists of three semiconductor devices, one resonant inductor, and one external capacitor for energy source in the respective X and Y side. The proposed driver has inherent protection function from possible surge voltage caused by parasitic inductance resonance, resulting in no additional protective devices. Thus, the developed sustain circuit with favorable decoupled configuration can be implemented with low-cost and simple structure based on reduced number of components, compared to conventional driver approaches. Since the proposed driver is designed to use the reactive energies in both the capacitor and the inductor, the voltage stress of the capacitor is considerably reduced. Furthermore, the driver utilizing boosting function provides immunity to inevitable parasitic components in circuit components and patterns due to the voltage boost operation. Moreover, the proposed driver, which has higher resonance inductance and lower current stresses, is more fit to high-frequency sustain operations with increased number of sustain pulses for higher brightness than conventional approaches.
机译:基于等离子显示面板(PDP)的升压技术,已经提出了一种具有能量恢复功能的简单维持驱动器。提出的驱动器在两个电极之间解耦,由三个半导体器件,一个谐振电感器和一个用于X和Y侧能量源的外部电容器组成。提出的驱动器具有固有的保护功能,可防止由寄生电感谐振引起的浪涌电压,从而无需额外的保护装置。因此,与传统的驱动器方法相比,基于减少的部件数量,可以以低成本和简单的结构来实现具有有利的解耦配置的发达的维持电路。由于提出的驱动器设计为在电容器和电感器中都使用无功电能,因此电容器的电压应力大大降低了。此外,由于升压操作,利用升压功能的驱动器可抵抗电路组件和图形中不可避免的寄生组件。此外,与传统方法相比,具有较高谐振电感和较低电流应力的拟议驱动器更适合于高频维持操作,且维持脉冲数量增加,亮度更高。

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