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Enhancing angular color uniformity of white light-emitting diodes by cone-type phosphor layer geometry

机译:通过锥形荧光粉层几何形状增强白色发光二极管的角度颜色均匀性

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Angular color uniformity (ACU) is an important optical parameter for phosphor-converted white light-emitting diodes (LEDs). The phosphor layer geometry usually presents the spherical-cap shape by the conventional dispensing coating method, thus yellow ring phenomenon appears in the radiation pattern and leads to poor ACU. In this paper, a kind of cone-type phosphor layer geometry was proposed to enhance the ACU of white LEDs. Optical simulations were performed by the Monte Carlo ray-tracing method. Results show that the proposed cone-type phosphor layer geometry has significant positive effect on enhancing the ACU of white LEDs. Compared to the conventional phosphor layer geometry of spherical cap with the same volume, the ACU is increased by more than 19% by the cone-type phosphor layer geometry. With the same correlated color temperature (CCT) and phosphor concentration, the ACU is increased by more than 20% and the phosphor layer volume is reduced by more than 4.5% to save material cost.
机译:角颜色均匀性(ACU)是磷光转换白光发光二极管(LED)的重要光学参数。磷光体层的几何形状通常通过常规的点涂涂覆方法呈现球形帽状,因此在辐射图案中出现黄环现象并导致不良的ACU。本文提出了一种锥形的荧光粉层几何形状,以增强白光LED的ACU。光学模拟是通过蒙特卡洛射线追踪法进行的。结果表明,所提出的锥形荧光粉层几何形状对增强白色LED的ACU具有明显的积极作用。与具有相同体积的球形帽的常规荧光粉层几何形状相比,锥型荧光粉层几何形状的ACU增加了19%以上。在相同的相关色温(CCT)和荧光粉浓度的情况下,ACU增加了20%以上,荧光粉层体积减少了4.5%以上,从而节省了材料成本。

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