Lin Huang-Yu, Chen Kuo-Ju, Wang Sheng-Wen, Lin Chien-Chung, Wang Kuan-Yu, Li Jie-Ru, Lee Po-Tsung, Shih Min-Hsiung, Li Xiuling, Chen Huang-Ming, Kuo Hao-Chung
Opt Express. 2015 Feb 9;23(3):A27-33. doi: 10.1364/OE.23.000A27.
This study demonstrates the application of DBR structure into the remote phosphor structure to improve the angular correlated color temperature (CCT) deviation in white light-emitting diodes (WLEDs). In the experiment, the LED device with DBR structure yielded a higher luminous efficiency than a conventional structure. The CCT deviation can be improved from 1758K to 280K in a range of -70 to 70 degree and the luminous flux increases more than 10% due to the enhancement of the light extraction of the blue light. Moreover, the reflectance of the different DBR structures is analyzed with different angles to reveal the reasons of such improvements. As the result, this LED device with DBR structure shows the great potential to use as the next generation lighting source.
本研究展示了将分布布拉格反射(DBR)结构应用于远程荧光粉结构中,以改善白光发光二极管(WLED)的角相关色温(CCT)偏差。在实验中,具有DBR结构的LED器件比传统结构具有更高的发光效率。在-70至70度范围内,CCT偏差可从1758K改善至280K,并且由于蓝光光提取的增强,光通量增加超过10%。此外,分析了不同DBR结构在不同角度下的反射率,以揭示这种改善的原因。结果表明,这种具有DBR结构的LED器件具有作为下一代照明源的巨大潜力。