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The Influence of Cell Structure and Content of Xenon in Ne-Xe Mixture on Discharge Characteristics in Shadow Mask PDP

机译:Ne-Xe混合物中氙的电池结构和氙含量对荫罩PDP放电特性的影响

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The 3-D simulation with fluid model is used to study the discharge characteristics of SMPDP. The influence of the discharge cell structure and the content of xenon in Ne-Xe mixture gas of SMPDP has been investigated. The address voltage, the sustain voltage, the production of UV, the discharge efficiency etc. have been compared in different cases. Simulation results show that the discharge becomes weaker and the time lag of the discharge is longer with (he smaller size of discharge cell under the same conditions. Simulation results also show that same as the three electrodes surface discharge PDP, the discharge efficiency could be enhanced with the increasing of the content of xenon in Ne-Xe mixture and die address voltage and sustain voltage need to be increased to maintain the similar discharge. It can also be seen from the simulation result that there is an optimum aspect of the discharge cell to get good discharge characteristics.
机译:使用流体模型进行3D模拟来研究SMPDP的排放特性。研究了SMPDP的Ne-Xe混合气体中放电单元结构和氙含量的影响。在不同情况下,比较了地址电压,维持电压,UV的产生,放电效率等。仿真结果表明,在相同条件下,随着放电单元尺寸的减小,放电变得更弱,放电时间延迟更长。仿真结果还表明,与三电极表面放电PDP相同,可以提高放电效率随着Ne-Xe混合物中氙含量的增加,芯片的寻址电压和维持电压也需要增加以维持相似的放电,从模拟结果还可以看出,放电单元有一个最佳方面获得良好的放电特性。

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