首页> 外文期刊>Photonics Journal, IEEE >A Cylindrical Tuber Encapsulant Geometry for Enhancing Optical Performance of Chip-on-Board Packaging Light-Emitting Diodes
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A Cylindrical Tuber Encapsulant Geometry for Enhancing Optical Performance of Chip-on-Board Packaging Light-Emitting Diodes

机译:圆柱形块茎密封剂几何形状,以增强芯片载板上封装的发光二极管的光学性能

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摘要

Low light efficiency and poor angular color uniformity (ACU) are the key challenges of chip-on-board packaging light-emitting diodes (LEDs). In this paper, we demonstrate a phosphor geometry, and its controlling method for enhancing the optical performance of chip-on-board packaging LEDs, its fabrication flexibility, and availability are validated by experiments, and its effect on the optical performance is analyzed by optical simulations and experiments. The simulation results show that compared with the conventional flat geometry, the cylindrical tuber geometry can effectively improve the light efficiency and ACU, and the light efficiency enhancement increases with correlated color temperature. Experimental results show that for the case that the encapsulation layer only consists of silicone, the proposed geometry enhances the light efficiency up to 63.1%. In addition, for another case, in which the encapsulation layer consists of silicone and phosphor particles, when the average correlated color temperature (CCT) is about 5000 K, the proposed geometry increases the light efficiency by 11.7%, and the angular CCT deviations for the flat geometry and the proposed geometry are 1805 and 475 K, respectively.
机译:低光效率和差的角度颜色均匀性(ACU)是板载芯片封装的发光二极管(LED)的关键挑战。在本文中,我们演示了一种荧光粉几何形状,并通过实验验证了其用于增强板上芯片封装LED的光学性能的控制方法,其制造灵活性和可用性,并通过光学分析了其对光学性能的影响。模拟和实验。仿真结果表明,与常规的平面几何形状相比,圆柱形块茎几何形状可以有效地提高光效率和ACU,并且随着相关色温的增加,光效率的提高也越来越大。实验结果表明,对于包封层仅由硅树脂组成的情况,所提出的几何形状将光效率提高了63.1%。此外,在另一种情况下,封装层由硅树脂和磷光体颗粒组成,当平均相关色温(CCT)约为5000 K时,建议的几何形状使光效率提高了11.7%,并且角CCT偏差为平面几何形状和建议的几何形状分别为1805和475K。

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