利用多层远端结构中附加的荧光粉材料提高wled的性能

Nguyen Hai Son Dang, Doan Minh Thong Nguyen, Thi Phuong Loan Nguyen, Doan Quoc Anh Nguyen, Hsiao-Yi Lee
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引用次数: 1

摘要

角色均匀度(ACU)是评价led照明性能的重要指标之一。三层远端荧光粉结构被认为是一种提高WLED ACU的机制。本文对三层结构的效率分析进行了具体论证。此外,还有三层(TL)和双层(DL)几何形状之间的详细比较,以加强使用TL封装进行WLED光学增强的想法。实验采用了平均相关色温分别为6600 K和7700 K的wled。结果表明,DL设计获得的显色指数高于TL封装获得的显色指数。然而,无论ACCTs如何,TL显示出比DL更好的颜色质量标度(CQS)。此外,TL不仅能产生更好的CQS,还能提高流明效率。最重要的是,TL WLED模型的ACU远高于DL模型,这是由于在所有ACCTs上的相关色温降低偏差造成的。这一结果在7700 K的高ACCT下更为明显,也就是说,高ACCT WLED的ACU在TL结构下表现出更明显的增强。从这些结果来看,三层远程荧光粉结构在高质量wled的生产中脱颖而出。这是一篇在知识共享署名许可(http://creativecommons.org/licenses/by/4.0/)条款下发布的开放获取文章,该许可允许在任何媒介上不受限制地使用、分发和复制,只要原始作品被适当引用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhance WLEDs Performance with Additional Phosphor Materials in Multi-Layer Remote Structure
One of the most important factors used to evaluate lighting performances ofWLEDs is the angular color uniformity (ACU). The triple-layer remote phosphor structure is considered as a proposed mechanism for elevating the ACU of a WLED. The analysis on the triple-layer structure's efficiency is specifically demonstrated in this article. Additionally, there are detailed comparisons between the triple-layer (TL) and the dual-layer (DL) geometries to reinforce the idea of using TL packaging for WLED optical enhancements. The WLEDs with average correlated color temperatures (ACCTs) of 6600 K and 7700 K are utilized for experiments. According to the outcomes, the attained color rendering index from DL design is higher than the one from TL package. However, the TL shows better color quality scale (CQS) than the DL, regardless of ACCTs. Besides, not only does the TL yield better CQS but also heighten the lumen efficiency. On top of that, the ACU of TL WLED model is much higher than that of the DL as a result of deviated correlated color temperature reduction at all ACCTs. This result is more obvious at the high ACCT of 7700 K, in other words, the ACU of a high-ACCT WLED shows more visible enhancement with TL structure. From these results, the triple-layer remote phosphor structure stands out as the promising advancement in the production of high-quality WLEDs.This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium provided the original work is properly cited.
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