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Effect of Base Vacuum Level on Plasma Display Panel Discharge Characteristics and Efficacy

机译:基本真空度对等离子显示屏放电特性和功效的影响

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摘要

This paper focuses on the effects of the base vacuum level on the electrical and optical characteristics of plasma display panels (PDPs). It is demonstrated that impurity gases, which remain inside the PDP panel during the pumping cycle of a sealing process, consists of H_2O, CO_2, CO or N_2, and O_2, and the amount of impurity gases decreased rapidly as the base vacuum level increased, particularly near 10~(-5) Torr. After the pumping process, a discharge gas of Ne-Xe (4%) was introduced inside the panel, and the relationship between efficiency and base vacuum level was analyzed. For the base vacuum level of 1 x 10~(-4) Torr, firing voltage was 232 V at the discharge gas pressure of 400 Torr and luminous efficiency was 1.5 lm/W at a 180 V sustaining pulse. In contrast, for 1 x 10~(-6)Torr, the firing voltage was reduced to 215 V and luminous efficiency was improved considerably to 2.5 lm/W. Finally, we successfully fabricated an operational tip-less PDP by the vacuum in-line sealing method.
机译:本文重点介绍基本真空度对等离子显示面板(PDP)的电和光学特性的影响。结果表明,在密封过程的抽气过程中,残留在PDP面板内部的杂质气体由H_2O,CO_2,CO或N_2和O_2组成,并且随着基本真空度的提高,杂质气体的数量迅速减少,特别是在10〜(-5)Torr附近。抽气后,将Ne-Xe(4%)的废气引入面板内部,并分析效率与基本真空度之间的关系。对于1 x 10〜(-4)Torr的基本真空度,放电电压为400 Torr时,点火电压为232 V,在180 V维持脉冲下,发光效率为1.5 lm / W。相反,对于1 x 10〜(-6)Torr,点火电压降至215 V,发光效率大大提高至2.5 lm / W。最后,我们通过真空在线密封方法成功制造了可操作的无尖端PDP。

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