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Phosphors-conversion white light LED with omni-directional reflector

机译:磷光体 - 转换白光LED,全向反射器

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To achieve high luminescence white LEDs by UV excited phosphors, this research work presents theoretical results todemonstrate a novel white light LED structure and performance. The main purpose of our work is to solve two issuesencountered, one is UV leak and another is low conversion efficiency of phosphors. A photonic crystal or an omni-directional reflector (ODR) can be used to achieve this goal, as compared with a distributed Bragg reflector (DBR). Theadvantage of the ODR is that the UV light beam at any incidence can be omni-directionally reflected. In this study, a UVLED with a 380-nm wavelength with RGB phosphors and a photonic crystal with specific function were used. Thisnovel white LED was constructed with an air gap between the phosphors layer and the ODR. Theoretical simulationstudy shows that the ODR will enhance the white light generation and prevent UV leak from the device. Theoreticalsimulation shows that a white light LED with an air gap located between the phosphors layer and ODR will have betterperformance than that without it. The simulation data shows that an ODR is the optimized way to reduce UV leak.
机译:为了通过UV兴奋磷光体实现高发光白光LED,本研究工作旨在致力于致力于采用新型白光LED结构和性能的理论结果。我们作品的主要目的是解决两个问题,一个是紫外线泄漏,另一个是磷光体的低转化效率。与分布式布拉格反射器(DBR)相比,光子晶体或全向反射器(ODR)可用于实现该目标。 ODR的Theadvantage是任何入射的UV光束可以是全方位反射的。在该研究中,使用具有RGB磷光体的380nm波长的UVLED和具有特定功能的光子晶体。 ThisOvel白色LED构造出磷光体层和ODR之间的气隙。理论仿真学仪表明,ODR将增强白光发电并防止装置泄漏。理论浓缩表明,位于磷光体层和ODR之间的空气间隙的白光LED将具有比没有其的更好的形式。仿真数据显示ODR是减少UV泄漏的优化方法。

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