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Optimization of sustaining frequency for high efficiency driving in AC-PDP

机译:优化交流频率以实现AC-PDP中的高效驱动

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摘要

The panel structure widely adopted in commercial AGPDP is three electrodes surface discharge type. At a given panel structure, a driving method should be optimized to get a sufficient luminous efficiency. The display image of AC-PDP could be realized by the repeated light emission from the discharge. Because most of discharge power is consumed in the sustaining period, the optimization of sustaining waveform is very important for the high luminous efficiency. ADS (Address and Display period Separated) driving method is commonly used. The average driving frequency of ADS driving method is ranged by several tens kilo of kHz, however the actual frequency of sustaining period is in range of 100kHz to 200kHz. Based on this study, when the phosphor emits the visible light, it has a decay time of few milliseconds due to the material characteristics. If the decay time is longer than the sustaining pulse period, the VUV could not effectively transfer to the phosphor to emit the visible light. Consequently the luminous efficiency decreases in proportion to the driving frequency. It is found that the luminous efficiency could be significantly improved by the low frequency sustaining driving method.
机译:商业AGPDP中广泛采用的面板结构是三电极表面放电型。在给定的面板结构下,应优化驱动方法以获得足够的发光效率。 AC-PDP的显示图像可以通过放电重复发光来实现。由于在维持期间消耗了大部分放电功率,因此维持波形的最优化对于高发光效率非常重要。通常使用ADS(地址和显示时间段分隔)驱动方法。 ADS驱动方法的平均驱动频率范围为几十千kHz,但是实际的维持周期频率在100kHz至200kHz的范围内。根据这项研究,当磷光体发出可见光时,由于材料特性,其衰减时间为几毫秒。如果衰减时间长于维持脉冲周期,则VUV无法有效转移到磷光体上以发射可见光。因此,发光效率与驱动频率成比例地降低。发现通过低频维持驱动方法可以显着提高发光效率。

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