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Optical design of the Fresnel lens for LED-driven flashlight

机译:LED驱动手电筒的菲涅耳透镜的光学设计

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摘要

The Fresnel lens is composed of micrometer-sized v-groove structures that determine the maximum illuminance and brightness uniformity of LED-driven flashlights, which are used in high-quality photography. The fabrication quality of the microstructures and the accuracy of the geometrical curvature of the Fresnel lens affect the optical characteristics of the emitted light traveling through the lens, which in turn determines the maximum illuminance and brightness uniformity. This paper presents a systematic design procedure for fabricating the Fresnel lens and investigates the influence of geometrical design and fabrication process on optical performance. The optical analysis was performed using the commercial software TracePro. The results revealed that a small tip radius of the v-groove microstructure facilitates brightness uniformity. Furthermore, both the simulation and the experimental results revealed that Fresnel lenses fabricated through injection molding or injection compression molding have either errors of microstructure height more than 3%-6% or curvature errors higher than 6%, which would affect the optical performance, especially the brightness uniformity. (C) 2016 Optical Society of America
机译:菲涅耳透镜由微米级的v形凹槽结构组成,该结构可确定用于高品质摄影的LED驱动手电筒的最大照度和亮度均匀性。菲涅耳透镜的微结构的制造质量和几何曲率的准确性会影响穿过透镜的发射光的光学特性,进而决定最大照度和亮度均匀性。本文提出了一种菲涅耳透镜的系统设计程序,并研究了几何设计和制造工艺对光学性能的影响。使用商业软件TracePro进行光学分析。结果表明,v形槽微结构的尖端半径较小,有助于亮度均匀。此外,仿真和实验结果均表明,通过注模或注压成型制造的菲涅耳透镜的微观结构高度误差大于3%-6%或曲率误差大于6%,这将影响光学性能,特别是亮度均匀性。 (C)2016美国眼镜学会

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