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首页> 外文期刊>IEEE Transactions on Plasma Science >Comparison of Electric Field and Priming Particle Effects on Address Discharge Time Lag and Addressing Characteristics of High-Xe Content AC PDP
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Comparison of Electric Field and Priming Particle Effects on Address Discharge Time Lag and Addressing Characteristics of High-Xe Content AC PDP

机译:电场和启动粒子对地址放电延时和高Xe含量AC PDP寻址特性的影响比较

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摘要

The alternating current plasma display panel (AC PDP) is generally driven by the subfield method to realize the gray scale, and each subfield is composed of reset, address and display period. Therefore, a significant time should be allocated to an address period in high-resolution PDP, which results in a short display period and a reduction of brightness, and so the dual scan method has been widely used to solve this problem. In this case, however, the address electrodes need to be physically divided into two parts and driven by different data drive integrated circuits (ICs), thereby causing a cost up due to doubling the number of data drive ICs. In this paper, we investigate the factors that could influence the address discharge time lag and, in particular, the electric field effects and priming particle effects are compared in order to achieve high speed addressing. In this regard, the address characteristics of high-Xe content panel are investigated from which it was found that the address discharge time lag was reduced to one half that of the conventional method when the priming particles are provided.
机译:交流电等离子体显示面板(AC PDP)通常由子场驱动,以实现灰度,每个子场由复位,地址和显示周期组成。因此,在高分辨率PDP中,应将大量时间分配给寻址周期,这导致显示周期短和亮度降低,因此双重扫描方法已被广泛用于解决该问题。然而,在这种情况下,需要将寻址电极物理上分为两部分并由不同的数据驱动集成电路(IC)驱动,从而由于使数据驱动IC的数量加倍而导致成本增加。在本文中,我们研究了可能影响寻址放电时间延迟的因素,特别是比较了电场效应和启动粒子效应,以实现高速寻址。在这方面,研究了高Xe含量面板的地址特性,从中发现,当提供底涂颗粒时,地址放电时间延迟减少到传统方法的一半。

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