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Optical and thermal design of light emitting diodes omnidirectional bulb

机译:发光二极管全向灯泡的光学和热设计

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The penetration of LED light bulbs into the lighting market is growing quickly in recent years due to significant increase of LED efficiency and reduction of cost. One major issue to be improved is the overall light bulb efficiency, which can fulfill "Energy Star for Lamps" while keeping sufficiently high efficiency. The efficiency issue results mainly from the high directionality of the LED sources and the corresponding solutions to make the emission more diverse. In this paper, a diffusion white reflection sheet (DWRS) with an array of holes is proposed as a high efficiency solution for modulating a light emission profile with SMD type LED source. The hole size is adjusted with fixed hole pitch to both maximize the efficiency and meet the omnidirectional specification. In addition, the concept of thermal plastic insertion molding metal is proposed for thermal management without fins for cooling. The prototype demonstrates the efficiency (Ef.) of 87.6% and LED pad temperature of 85 degrees C, which shows the feasibility as a total solution for high efficiency LED omnidirectional bulbs. (C) 2015 Optical Society of America
机译:近年来,由于LED效率的显着提高和成本的降低,LED灯泡在照明市场的渗透正在迅速增长。有待改进的一个主要问题是灯泡的整体效率,它既可以满足“灯的能源之星”,又可以保持足够高的效率。效率问题主要源于LED光源的高方向性以及使发射更加多样化的相应解决方案。在本文中,提出了一种具有孔阵列的漫射白色反射片(DWRS),作为利用SMD型LED光源调制发光轮廓的高效解决方案。孔的大小以固定的孔间距进行调整,以最大程度地提高效率并满足全向规格。另外,提出了热塑料插入成型金属的概念,用于不带散热片的散热管理。该原型展示了87.6%的效率(Ef。)和85摄氏度的LED焊盘温度,显示了作为高效LED全向灯泡的整体解决方案的可行性。 (C)2015年美国眼镜学会

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