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首页> 外文期刊>Molecular crystals and liquid crystals >Modified Driving Waveform for Ridged Dielectric Structure Based on V-t Closed Curve Analysis in AC PDP
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Modified Driving Waveform for Ridged Dielectric Structure Based on V-t Closed Curve Analysis in AC PDP

机译:基于V-t闭合曲线分析的AC PDP脊形介质结构的修正驱动波形

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摘要

The discharge characteristics of an AC plasma display panel (PDP) with the ridged dielectric structure were investigated. In particular, characteristics such as firing voltage and related wall voltage based on the V-t closed curve measurement were compared in the ridged and conventional dielectric structures. The front plate of the AC PDP with the conventional panel structure is composed of glass, electrodes and dielectric. In the ridged dielectric structure, the middle part of the dielectric layer is eliminated to allow for light to pass through more easily. This structural modification causes the plasma discharge between the two front electrodes to occur at a lower voltage. Meanwhile, as the ridged dielectric structure differs from the conventional dielectric structure, various problems arise if the conventional driving waveform is used. Especially, as the discharge firing voltage characteristics between the scan and sustain electrodes of the ridged dielectric structure is different, it is necessary to modify the reset and address waveforms accordingly. In this study, the V-t closed curves are investigated to compare the discharge firing voltages in the conventional and ridged dielectric structures. Based on the investigation, a modified driving waveform for the ridged dielectric structure was proposed. Using the proposed waveforms, the address discharge time of the ridged dielectric structure was reduced by approximately 200ns.
机译:研究了具有脊形介电结构的AC等离子显示面板(PDP)的放电特性。特别地,在脊形和常规介电结构中比较了基于V-t闭合曲线测量的特性,例如点火电压和相关壁电压。具有传统面板结构的AC PDP的前面板由玻璃,电极和电介质组成。在脊形电介质结构中,电介质层的中间部分被消除,以使光更容易通过。这种结构上的改变使得两个前电极之间的等离子体放电在较低的电压下发生。同时,由于脊状电介质结构与常规电介质结构不同,如果使用常规驱动波形,则会出现各种问题。特别是,由于脊状电介质结构的扫描电极和维持电极之间的放电点火电压特性不同,因此需要相应地修改复位波形和寻址波形。在这项研究中,研究了V-t闭合曲线,以比较常规和脊形介电结构中的放电激发电压。在此基础上,提出了脊形介电结构的修正驱动波形。使用建议的波形,脊形介电结构的寻址放电时间减少了大约200ns。

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