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Advanced discharge modes in an ac plasma display with an auxiliary electrode

机译:带有辅助电极的交流等离子显示器中的高级放电模式

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摘要

The characteristics of advanced discharge modes were investigated through measurements of spatiotemporal infrared emission, discharge current, infrared intensity, and luminous efficacy in an ac plasma display panel with an auxiliary electrode located between scan and common electrodes. Pulse waveforms that included auxiliary pulses applied to the auxiliary electrode after every sustain pulse were used. The proposed advanced discharge modes are as follows: In mode 1, strong discharges are generated by the sustain pulses only, whereas strong discharges are generated by the sustain pulses and a weak discharge is generated by the auxiliary pulse applied after the scan pulse in mode 2. In mode 3-1, strong discharges are generated by the sustain pulses and weak discharges are generated by the auxiliary pulses applied after the scan and common pulses, while all sustain and auxiliary pulses generate discharges having similar intensities in mode 3-2. Mode 1 and mode 2 are efficient modes; the luminous efficacy was improved in mode 1 owing to more homogeneous discharge due to the auxiliary electrode and a priming effect due to the auxiliary pulse. The luminous efficacy was also improved in mode 2, because of decreased power consumption induced by a decrease in wall charges and sustained or increased luminance due to priming particles. Mode 3-1 and mode 3-2 are inefficient modes; the luminous efficacy was reduced in mode 3-1 as a result of a decrease in the luminance due to insufficiently generated priming particles. The luminous efficacy was also reduced in mode 3-2, because of short-coplanar-gap discharges of the sustain pulses. It was found that advanced discharge modes were changed successively from mode 1 to mode 3-2 when sustain or auxiliary pulses of higher voltage were applied. The maximum luminous efficacy can be obtained in mode 1 at a low sustain pulse voltage and in mode 2 at mid and high sustain pulse voltages.
机译:通过在带有位于扫描电极和公共电极之间的辅助电极的ac等离子显示面板中测量时空红外发射,放电电流,红外强度和发光效率,研究了高级放电模式的特性。使用包括在每个维持脉冲之后施加到辅助电极的辅助脉冲的脉冲波形。提议的高级放电模式如下:在模式1中,仅通过维持脉冲产生强放电,而在维持模式2中,在扫描脉冲之后施加的辅助脉冲产生强放电,而辅助放电则产生弱放电。在模式3-1中,由维持脉冲产生强放电,由在扫描之后施加的辅助脉冲和公共脉冲产生弱放电,而在模式3-2中,所有维持脉冲和辅助脉冲均产生具有相似强度的放电。模式1和模式2是有效模式;由于辅助电极产生的均匀放电和辅助脉冲产生的启动效应,模式1的发光效率得到了改善。在模式2中,由于壁电荷减少引起的功耗降低以及底涂颗粒导致的亮度持续或增加,因此发光效率也得到了提高。模式3-1和模式3-2是低效模式;由于由于未充分产生底涂颗粒而导致亮度降低,因此在模式3-1中发光效率降低。由于维持脉冲的短共面间隙放电,在模式3-2中发光效率也降低了。已经发现,当施加较高电压的维持或辅助脉冲时,高级放电模式从模式1连续地改变为模式3-2。在低维持脉冲电压下的模式1中和中,高维持脉冲电压下的模式2中可以获得最大发光效率。

著录项

  • 来源
    《Journal of Applied Physics 》 |2009年第2期| 023304.1-023304.12| 共12页
  • 作者单位

    School of Electrical Engineering, KAIST, Daejeon 305-701, Republic of Korea;

    School of Electrical Engineering, KAIST, Daejeon 305-701, Republic of Korea;

    School of Electrical Engineering, KAIST, Daejeon 305-701, Republic of Korea;

    School of Electrical Engineering, KAIST, Daejeon 305-701, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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