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Inverted-Cone-Lens Encapsulant With Gradient Surface for Ring-Remote-Phosphor Structure

机译:环形远程磷光体结构用渐变表面倒锥透镜密封剂

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The ordinary ring-remote-phosphor structure consisting of an inverted-cone-lens encapsulant and a surrounding ring-remote-phosphor layer reduces the probability of the backward light from the phosphor layer to the absorptive light-emitting diode (LED) chip and then increases the package extraction efficiency. However, some of the blue light emitting from the LED chip impinges on the inverted-cone-lens surface and then escapes without hitting the ring-remote-phosphor layer. The blue light leakage from the inverted-cone-lens surface is a serious problem for the ring-remote-phosphor structure devices in use, because it will lower the actual illumination effects and result in discomfort for the eyes. In this paper, we discuss the predominant factors of the blue light leakage from the inverted-cone-lens surface and propose an improve ring-remote-phosphor structure that utilizes an inverted-cone-lens encapsulant with gradient surface to decrease the blue light leakage. Ray-tracing simulations are performed to analyze the blue light leakages from the ordinary and improved inverted-cone-lens encapsulants in the ring-remote-phosphor structures. The simulation results show that the improved inverted-cone-lens encapsulants get almost no blue light leakage from the inverted-cone-lens surface directly and then lessen the discomfort for the eyes. Our results further demonstrate that the improved ring-remote-phosphor structure device will have higher angular color uniformity than the ordinary one.
机译:由倒置锥形透镜密封剂和周围的环形磷光体层组成的普通环形磷光体结构可降低从磷光体层向吸收性发光二极管(LED)芯片的反向光的可能性,然后再降低提高包装提取效率。但是,从LED芯片发出的某些蓝光入射在倒锥透镜表面上,然后逸出而不会碰到环形磷光体层。从倒锥透镜表面泄漏的蓝光对于所使用的环形-远-磷光体结构装置来说是一个严重的问题,因为它将降低实际的照明效果并导致眼睛不适。在本文中,我们讨论了倒锥透镜表面蓝光泄漏的主要因素,并提出了一种改进的环-磷光体结构,该结构利用具有梯度表面的倒锥透镜密封剂来减少蓝光泄漏。进行射线追踪模拟以分析来自环-远程磷光体结构中普通和改进的倒锥形透镜密封剂的蓝光泄漏。仿真结果表明,改进的倒锥透镜灌封剂几乎不会直接从倒锥透镜表面泄漏蓝光,从而减轻了眼睛的不适感。我们的结果进一步证明,改进的环-偏光磷光体结构装置将具有比普通装置更高的角颜色均匀性。

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