Influence of the noble gas mixture composition on the performance of a plasma display panel

Influence of the noble gas mixture composition on the performance of a plasma display panel
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稀有气体混合物成分对等离子体显示面板性能的影响

DOI:
10.1063/1.1465102
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发表时间:
2002
影响因子:
3.2
通讯作者:
G. Oversluizen
G. Oversluizen
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
M. Gillies;G. Oversluizen

文献摘要

被引文献

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惰性气体混合物组成对等离子体显示板性能的影响进行了研究,在测试板的设计类似于商业面板中使用的。单一气体和二元和三元混合物的He,Ne,Ar,Kr,和氘,其中氘浓度从0%到100%变化。该性能的特征在于面板亮度、功效和放电电压。据发现,虽然可以在几个多组分混合物中实现效率和亮度的增加,但有必要检查点火电压Vf的相关增加。如果考虑亮度对Vf的依赖性,那么二进制NexXe1−x混合是最佳的,可以在最低的Vf下实现最高的功效值。在高的惰性气体分压混合物中的最大功效增益因子相对于在默认的商业panel中应用的混合物是约3的因子。惰性气体混合物组合物对等离子体显示面板性能的影响在具有类似于商业面板中使用的设计的测试面板中进行研究。单一气体和二元和三元混合物的He,Ne,Ar,Kr,和氘,其中氘浓度从0%到100%变化。该性能的特征在于面板亮度、功效和放电电压。据发现,虽然可以在几个多组分混合物中实现效率和亮度的增加,但有必要检查点火电压Vf的相关增加。如果考虑亮度对Vf的依赖性,那么二进制NexXe1−x混合是最佳的,可以在最低的Vf下实现最高的功效值。相对于默认商业面板中应用的混合物,高Xe分压混合物中的最大功效增益因子约为3倍。
The influence of the noble gas mixture composition on the plasma display panel performance is investigated in test panels with a design which resembles the one used in commercial panels. Single gases and binary and ternary mixtures of He, Ne, Ar, Kr, and Xe are applied, where the Xe concentration is varied from 0% to 100%. The performance is characterized in terms of the panel luminance, efficacy, and discharge voltages. It is found that while an increase in efficacy and luminance can be achieved in several multicomponent mixtures it is necessary to examine the associated increase in the firing voltage, Vf. If one considers the luminance versus Vf dependence, then binary NexXe1−x mixtures are optimal to achieve the highest efficacy values at the lowest Vf. The maximum efficacy gain factor in high Xe partial pressure mixtures is about a factor of 3 with respect to the mixture applied in default commercial panels.The influence of the noble gas mixture composition on the plasma display panel performance is investigated in test panels with a design which resembles the one used in commercial panels. Single gases and binary and ternary mixtures of He, Ne, Ar, Kr, and Xe are applied, where the Xe concentration is varied from 0% to 100%. The performance is characterized in terms of the panel luminance, efficacy, and discharge voltages. It is found that while an increase in efficacy and luminance can be achieved in several multicomponent mixtures it is necessary to examine the associated increase in the firing voltage, Vf. If one considers the luminance versus Vf dependence, then binary NexXe1−x mixtures are optimal to achieve the highest efficacy values at the lowest Vf. The maximum efficacy gain factor in high Xe partial pressure mixtures is about a factor of 3 with respect to the mixture applied in default commercial panels.