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Improvement of spatial color uniformity in white light-emitting diodes with self-positioned phosphor layer

机译:具有自定位荧光粉层的白色发光二极管的空间颜色均匀性的改善

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To reduce the variance of color temperature among packages and the spatial color temperature variance in the package, we adopted a unique phosphor conformal coating technique in the packaging process, thereby fabricating the self-positioned phosphor layer. Additionally, to acquire the spatial color uniformity without considerable shrinkage of luminous efficacy, we applied sub-micrometer scale titanium dioxide particles as diffuser in the phosphor layer of white LED with a vertical type chip and investigated the effects of diffuser on the spatial color uniformity and optical performance. Regardless of the diffuser content, spatial color uniformity improved and luminous efficacy decreased with the increase of the diffuser content. At the optimum of particle content, spatial color uniformity is reduced by 50% but luminous efficacy decreased only by 3%.
机译:为了减少包装之间的色温变化和包装中的空间色温变化,我们在包装过程中采用了独特的荧光粉保形涂层技术,从而制造了自定位荧光粉层。此外,为了获得空间颜色均匀性而不会大幅降低发光效率,我们在具有垂直型芯片的白色LED的荧光粉层中应用了亚微米级的二氧化钛颗粒作为扩散体,并研究了扩散体对空间色彩均匀性和发光效率的影响。光学性能。无论散射体含量如何,随着散射体含量的增加,空间颜色均匀性都会提高,发光效率会降低。在最佳颗粒含量下,空间颜色均匀性降低了50%,但发光效率仅降低了3%。

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