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The Impact of a Thermal Spreader on the Temperature Distribution in a Plasma Display Panel

机译:热散布器对等离子显示板温度分布的影响

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Plasma Display Panels (PDPs) are a leading technology for large size television displays. Screen inefficiencies result in considerable localized heat generation within the PDP and necessitate aggressive thermal management to reduce spatial temperature variations across the screen. In the current study, experimental and numerical techniques were used to investigate the effect of a natural graphite heat spreader on hot spots and the temperature distribution across the screen. A commercial, 42 inch high-definition PDP, retrofitted with natural graphite heat spreaders with inplane thermal conductivity varying from 140 to 440 W/mK and thicknesses varying from 0.5 mm to 1.4 mm, served as the test vehicle for this study. Infrared thermography was used to obtain a thermal map of the entire screen for different illumination patterns for each spreader configuration. Using a luminance meter, the luminosity of a selected point on the screen has been measured. A three-dimensional numerical model of this typical PDP, including the glass and spreader layers, as well as the chassis electronics, has been developed and the numerically obtained temperature distributions were compared to the experimental data.
机译:等离子显示面板(PDP)是大型电视显示器的领先技术。屏幕低效率导致PDP内的相当大的局部发热,并且需要积极的热管理,以减少屏幕上的空间温度变化。在目前的研究中,使用实验和数值技术来研究天然石墨散热器对屏幕上的热点和温度分布的影响。商用42英寸高清PDP,用自然石墨热涂布器改装,具有从140至440W / MK变化的完整导热率,厚度从0.5毫米到1.4mm变化,作为本研究的测试载体。红外热成像用于获得用于每个吊具配置的不同照明图案的整个屏幕的热图。使用亮度计,已经测量了屏幕上选定点的亮度。已经开发出该典型PDP的三维数值模型,包括玻璃和吊具层,以及底盘电子器件,并将数值获得的温度分布与实验数据进行比较。

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