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Discharge Characteristics of Cross-Shaped Microdischarge Cells in ac-Plasma Display Panel

机译:交流等离子显示屏中十字形微放电单元的放电特性

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摘要

This paper proposes a highly efficient cross-shaped cell structure to improve the luminous efficiency of an alternate current plasma display panel (ac-PDP). The microdischarge characteristics of the proposed structure are examined in an all-green 6-in test panel with various pressures and Xe-concentrations. Since the proposed cross-shaped cell structure has a longer Indium Tin Gride (ITO) path between the two sustain electrodes and wider sidewall phosphor area, the following microdischarge characteristics were observed when compared with the conventional stripe-type cell structure. First, the sustain voltage margin was lower by about 15 V under a high Xe-concentration of 10%. Second, the rate of increase in the luminous efficiency was higher with a high pressure and high Xe-concentration. Finally, when adopting an auxiliary address pulse driving scheme, the luminous efficiency was unproved by about 44% (2.38 lm/W) with a high Xe-concentration of 10%.
机译:本文提出了一种高效的十字形单元结构,以提高交流电等离子体显示面板(ac-PDP)的发光效率。在具有不同压力和Xe浓度的全绿色6英寸测试面板中检查了所提出结构的微放电特性。由于所提出的十字形电池结构在两个维持电极之间具有较长的铟锡化物(ITO)路径,并且侧壁荧光粉区域更宽,因此与常规的条型电池结构相比,观察到以下微放电特性。首先,在10%的高Xe浓度下,维持电压裕度降低了约15V。第二,在高压和高Xe浓度下,发光效率的增加率更高。最后,当采用辅助地址脉冲驱动方案时,以10%的高Xe浓度无法提高发光效率约44%(2.38 lm / W)。

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