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首页> 外文期刊>Advances in Electrical and Electronic Engineering >Improvement of Color Quality and Luminous Flux of WLEDs with Dual-Layer Remote Phosphor Configurations
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Improvement of Color Quality and Luminous Flux of WLEDs with Dual-Layer Remote Phosphor Configurations

机译:通过双层远程荧光粉配置改善WLED的颜色质量和光通量

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In comparison with the conformal phosphor or in-cup phosphor structure, remote phosphor structure has a superior luminous flux whereas its color quality is inferior to the others’. Due to this drawback, it is essential to conduct experiments to find the solution for the improvement of the color quality of WLEDs using remote phosphor structure. In this study, a dual-layer remote phosphor structure that is capable of enhancing the Color Rendering Index (CRI) and Color Quality Scale (CQS) for WLEDs was proposed. Three kinds of WLEDs with the similar structures but different color temperatures varying at 5600 K, 7000 K, and 8500 K are used in this article. The mission of this paper is to place a yellow-green emitting SrBaSiO4:Eu2+ phosphor layer or a red-emitting SrwFxByOz:Eu2+,Sm2+ phosphor layer on the YAG:Ce3+ phosphor layer and then select the most appropriate value of SrwFxByOz:Eu2+,Sm2+ concentration to get the greatest color quality. Experimental results were exactly as expected since SrwFxByOz:Eu2+,Sm2+ really succeeded in increasing CRI and CQS. Specifically, the larger the SrwFxByOz:Eu2+,Sm2+ concentration, the higher the CRI and CQS, resulting from the increase of the red light component in WLEDs. Meanwhile, the quality degree of luminous flux depends tightly on the SrBaSiO4:Eu2+ phosphor layer. However, if the SrwFxByOz:Eu2+,Sm2+ and SrBaSiO4:Eu2+ concentration exceeds, the luminous flux and color quality will have a tendency to drop off thanks to the theory of Mie scattering and the Lambert-Beer law. The result of this paper is a valuable reference in the production of high-quality WLEDs.
机译:与保形磷光体或杯内磷光体结构相比,远距离磷光体结构具有更高的光通量,而其颜色质量却低于其他结构。由于这个缺点,必须进行实验以找到使用远程荧光粉结构改善WLED色彩质量的解决方案。在这项研究中,提出了一种双层远程荧光粉结构,该结构能够增强WLED的显色指数(CRI)和颜色质量等级(CQS)。本文使用三种具有相似结构但色温不同的WLED,它们的色温分别为5600 K,7000 K和8500K。本文的任务是在YAG:Ce3 +荧光粉层上放置发黄绿色的SrBaSiO4:Eu2 +荧光粉层或红色发光的SrwFxByOz:Eu2 +,Sm2 +荧光粉层,然后选择最合适的SrwFxByOz:Eu2 +,Sm2 +浓度以获得最大的色彩质量。由于SrwFxByOz:Eu2 +,Sm2 +确实成功地提高了CRI和CQS,因此实验结果完全符合预期。具体而言,SrwFxByOz:Eu2 +,Sm2 +浓度越大,CRI和CQS越高,这是由于WLED中红色光分量的增加所致。同时,光通量的质量程度严格取决于SrBaSiO4:Eu2 +荧光粉层。但是,如果超过SrwFxByOz:Eu2 +,Sm2 +和SrBaSiO4:Eu2 +的浓度,则由于Mie散射理论和Lambert-Beer定律,光通量和颜色质量将趋于下降。本文的结果为生产高质量WLED提供了有价值的参考。

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