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Phosphor concentration and geometry for high power white light emitting diode

机译:大功率白色发光二极管的荧光粉浓度和几何形状

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The most common method of making white light emitting diode (LED) is to mix the blue light from the LED die and the wavelength converted yellow light from the phosphor layer. The color conversion efficiency depends on the geometry and concentration of the phosphor layer including phosphor material. Thus the optimization of the phosphor geometry and concentration make increase the luminous efficiency of the white LED. In this paper, the remote phosphor scheme is optimized focusing on increasing the luminous efficiency in high power. The phosphor layer is separated by the silicone resin from the LED die. The silicone resin covers the LED die with dome shape to increase the extraction efficiency. The phosphor layer has very large volume with dilute concentration. The separation of phosphor layer from LED die and very large volumetric dilute phosphor layer were great important role in increasing the luminous flux. The improved luminous flux was 15% for lmm~2 LED die at 700mA.
机译:制作白色发光二极管(LED)的最常见方法是将来自LED管芯的蓝光与来自磷光体层的经波长转换的黄光混合。颜色转换效率取决于包括磷光体材料的磷光体层的几何形状和浓度。因此,磷光体几何形状和浓度的优化使得增加了白色LED的发光效率。本文针对远程荧光粉方案进行了优化,重点是提高高功率下的发光效率。磷光体层被硅树脂与LED管芯隔开。硅树脂以圆顶形状覆盖LED芯片,以提高提取效率。磷光体层具有非常大的体积且具有稀的浓度。将磷光体层与LED管芯分离以及非常大的体积稀释磷光体层在增加光通量方面起着重要作用。对于1mm〜2 LED芯片,在700mA的电流通量提高了15%。

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