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Realization of High Color Uniformity for Phosphor-Converted White Light-Emitting Diodes Through a Stamp-Printed Phosphor Coating

机译:通过印模荧光粉涂层实现荧光粉转换的白光发光二极管的高色彩均匀性

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摘要

In this letter, we demonstrate a stamp-printed phosphor coating process to realize high angular color uniformity (ACU) for phosphor-converted white light-emitting diodes. In the proposed phosphor coating method, the phosphor gel is printed on desirable areas, where it forms variable geometries through the transfer of the stamp bump. The phosphor coating method shows high flexibility in its fabrication of various phosphor layer geometries, including the frustum, inverted frustum, cube, and catenoid. ACU performances of different phosphor layer geometries were measured. The obtained results show that the catenoid phosphor layer with the side inward width of 0.07 mm shows an excellent uniform angular correlated color temperature (CCT) distribution. Its maximum CCT variation is only 150 K at the viewing angles ranging from -80° to 80° when the average CCT is approximately 6300 K. The analysis of the ACU performances of different phosphor layer geometries is presented.
机译:在这封信中,我们演示了一种邮票印刷的磷光体涂层工艺,该工艺可实现磷光体转换后的白色发光二极管的高角度色彩均匀性(ACU)。在所提出的磷光体涂覆方法中,磷光体凝胶被印刷在期望的区域上,在该区域中,其通过印模凸块的转移形成可变的几何形状。磷光体涂覆方法在其各种磷光体层几何结构的制造中显示出很高的灵活性,包括截头锥体,倒截头锥体,立方体和链状体。测量了不同荧光粉层几何形状的ACU性能。所获得的结果表明,侧面向内宽度为0.07mm的链状荧光体层表现出优异的均匀的角度相关色温(CCT)分布。当平均CCT约为6300 K时,在-80°至80°的视角范围内,其最大CCT变化仅为150K。本文介绍了不同荧光粉层几何形状的ACU性能分析。

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