Study of address discharge delay time in shadow mask plasma display panel

被引:0
|
作者
Yang L. [1 ]
Tu Y. [1 ]
Li Q. [1 ]
Zhu Z. [1 ]
Wang B. [1 ]
机构
[1] Display Center, School of Electronic Science and Engineering, Southeast University
关键词
High xenon content; Shadow mask plasma display panel; The formative delay; The statistical delay;
D O I
10.3969/j.issn.1672-7126.2010.02.05
中图分类号
学科分类号
摘要
High xenon content was used in the gas mixtures to improve the luminous efficiency and luminance of the plasma display panel(PDP). The impacts of the address voltage and sustain voltage on the formative delay and the statistical delay time in the address period were studied with a 7-inch experimental panel. The results show that the formative delay decreases with the increase of the address and sustain voltages, but increases with an increase of xenon concentration. And the formative delay is inversely proportional to the energy, which is the electron acquired from the electric filed in a mean free path. The statistical-delay varies little with the variations of the address and sustain voltages, and has no regular rule with the increase of the xenon content. The 7-inch panel can realize 1.6 μs address even in 50% xenon content.
引用
收藏
页码:122 / 127
页数:5
相关论文
共 10 条
  • [1] Tu Y., Zhang X., Yang L., Et al., Three dimensional investigation of a novel plasma display panel with metal barrier plates, pp. 404-408, (2002)
  • [2] Zhang X., Li Q., Tu Y., Et al., A novel AC PDP with shadow mask, pp. 748-752, (2002)
  • [3] Zhang X., Li Q., Tu Y., Et al., A Novel shadow mask PDP with high luminance and contrast, pp. 149-151, (2003)
  • [4] 5, (2009)
  • [5] Nagorny V., Fast addressing of plasma display panels, pp. 60-63, (2006)
  • [6] Seguin A., Tessier L., Doyeux H., Et al., Measurement of addressing speed in plasma display devices, Proceedings of IDW 99, pp. 699-702, (1999)
  • [7] Kim J.S., Yang J.H., Kim T.J., Et al., Comparison of electric field and priming particle effects on address discharge time lag and addressing characteristics of high-Xe content AC PDP, IEEE TRANSACTIONS ON PLASMA SCIENCE, 31, 5, pp. 1083-1090, (2003)
  • [8] Li Z.H., Kwon S.J., A study on the driving discharge characteristics of the AC PDP packaged with in-situ vacuum sealing with the MgO layer coated by optimum evaporation rate, Thin Solid Films, (2009)
  • [9] Hong C.-R., Yoon S.-H., Kim Y.-S., Effects of exo-electron emission from MgO thin film on statistical delay of glow discharge of AC-PDP, Thin Solid Films, (2009)
  • [10] Li Q., Harm T., Yang L., Et al., Influence of crystal structure of doped MgO on jitter time in SM-PDP, pp. 1753-1755, (2008)