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Evaluating heat dissipation in edge-lit LED backlight module using Taguchi method

机译:使用Taguchi方法评估侧光式LED背光模块的散热

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Flat panel displays (FPD) are becoming thinner and lighter, and edge-lit backlight modules are gradually replacing direct-lit devices. The number of LEDs is being reduced and high-power LEDs are increasingly being used for illumination. The effectiveness of free convection in the dissipation of heat generated from LEDs is limited in such constricted spaces, resulting in a loss of luminosity and a reduction in the lifespan of the LED devices. In this study, the experimental measurement and simulation of the 8-Watt edge-lit LED backlight module with 40 LEDs in 740 mm* 425 mm* 12 mm size was conducted. This study investigated heat dissipation using ANSYS simulation software, the results of which were in agreement with the experimental data, with a difference of only 1.6°C in the maximum temperature. The edge-lit LED backlight module with heat dissipation mechanism was estimated by using the proposed model. The result demonstrated that the maximum temperature of the heat sink with fins was lower 3°C than without fins. A design of heat sink with fins is contributed to reducing LED temperature. In addition, Taguchi method was introduced for seeking the optimal configurations of heat sink by using the proposed model. In the study, 4 control factors with 2 degree levels, (A) heat transfer pattern on heat sink surface, (B) the thickness of heat sink, (C) the width of heat sink and (D) fin area, were considered. The results indicated that heat sink area with 2.4 mm thick and 60 mm wide, and heat sink with a fin area of 16682 mm provided optimal heat dissipation efficiency under the given convection conditions. This study provides an effective approach with which to evaluate thermal management in edge-lit LED backlight modules, thereby reducing the time required for development.
机译:平板显示器(FPD)越来越薄,重量越来越轻,侧光式背光模块正逐步取代直下式设备。 LED的数量正在减少,大功率LED越来越多地用于照明。在这种狭窄的空间中,自由对流在散发由LED产生的热量方面的有效性受到限制,从而导致光度损失和LED器件寿命缩短。在这项研究中,对具有40个740 mm * 425 mm * 12 mm尺寸的LED的8瓦侧光式LED背光模块进行了实验测量和仿真。这项研究使用ANSYS仿真软件研究了散热,其结果与实验数据一致,最高温度相差仅1.6°C。利用该模型对具有散热机制的侧光式LED背光模组进行了估算。结果表明,具有散热片的散热器的最高温度比没有散热片的散热器的最高温度低3°C。带散热片的散热器设计有助于降低LED温度。另外,引入Taguchi方法,通过使用所提出的模型来寻找散热器的最佳配置。在研究中,考虑了2个级别的4个控制因素,(A)散热片表面的传热模式,(B)散热片的厚度,(C)散热片的宽度和(D)散热片面积。结果表明,在给定对流条件下,散热片面积为2.4 mm厚,60 mm宽,翅片面积为16682 mm,可以提供最佳的散热效率。这项研究提供了一种评估边缘照明LED背光模块中的热管理的有效方法,从而减少了开发所需的时间。

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