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The Effect of Disordered Microscale Holes in the Front Dielectric Layer of AC Plasma Display Panels

机译:AC等离子显示面板前介电层中无序微孔的影响

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Using polymethyl methacrylate (PMMA) beads, disordered microscale holes were fabricated in the front dielectric layer of ac plasma display panels. The density of the disordered microscale holes was easily controlled by varying the weight percentage of the PMMA beads. As their density increased, the voltage of self-erasing discharge and the minimum sustain voltage decreased. In addition, the sustain discharge time lag was improved according to the measurement results of the response time and spatiotemporal infrared emission from an intensified charge-coupled device camera. The wall voltage at the state of sustain discharge was investigated by measuring the threshold voltage using wall voltage measurement system. In the test panel of the front dielectric layer with disordered microscale holes, the wall voltage increased. In addition, the increase in the wall voltage at the state of sustain discharge was improved as the density of the disordered microscale holes increased. The decrease in the self-erasing discharge and minimum sustain voltage and the improvement of the sustain discharge time lag resulted from a strong electric field that originated in the increase in the wall voltage.
机译:使用聚甲基丙烯酸甲酯(PMMA)珠,在ac等离子显示面板的前介电层中制造了无序的微孔。通过改变PMMA珠的重量百分比,可以容易地控制无序的微孔的密度。随着它们的密度增加,自擦除放电的电压和最小维持电压降低。另外,根据增强型电荷耦合器件相机的响应时间和时空红外发射的测量结果,可以改善维持放电时间延迟。通过使用壁电压测量系统测量阈值电压来研究维持放电状态下的壁电压。在具有无序微孔的前介电层的测试面板中,壁电压增加。另外,随着无序微米级孔的密度增加,在维持放电状态下壁电压的增加得到改善。自擦除放电和最小维持电压的降低以及维持放电时间滞后的改善归因于源自壁电压升高的强电场。

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