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Primary optics for efficient high-brightness LED color mixing

机译:主要光学元件可实现高效的高亮度LED色彩混合

摘要

In SSL general illumination, there is a clear trend to high flux packages with higher efficiency and higher CRI addressed with the use of multiple color chips and phosphors. However, such light sources require the optics provide color mixing, both in the near-field and far-field. This design problem is specially challenging for collimated luminaries, in which diffusers (which dramatically reduce the brightness) cannot be applied without enlarging the exit aperture too much. In this work we present first injection molded prototypes of a novel primary shell-shaped optics that have microlenses on both sides to provide Köhler integration. This shell is design so when it is placed on top of an inhomogeneous multichip Lambertian LED, creates a highly homogeneous virtual source (i.e, spatially and angularly mixed), also Lambertian, which is located in the same position with only small increment of the size (about 10-20%, so the average brightness is similar to the brightness of the source). This shell-mixer device is very versatile and permits now to use a lens or a reflector secondary optics to collimate the light as desired, without color separation effects. Experimental measurements have shown optical efficiency of the shell of 95%, and highly homogeneous angular intensity distribution of collimated beams, in good agreement with the ray-tracing simulations.
机译:在SSL通用照明中,存在明显的趋势,即通过使用多种颜色的芯片和荧光粉来解决具有更高效率和更高CRI的高通量封装。但是,这样的光源需要光学器件在近场和远场中都提供颜色混合。这种设计问题对于准直照明设备尤其具有挑战性,在这种情况下,如果不过度增大出射孔,就不能使用漫射器(会大大降低亮度)。在这项工作中,我们提出了一种新颖的初级壳形光学器件的第一个注塑原型,该光学器件的两侧均具有微透镜以提供科勒集成。此外壳经过精心设计,当将其放置在不均匀的多芯片朗伯LED上方时,会创建高度均一的虚拟光源(即,空间和角度混合),也就是朗伯,其位于相同位置且尺寸仅小幅增加(大约10-20%,因此平均亮度类似于光源的亮度)。这种壳混合器设备非常通用,现在允许使用透镜或反射器辅助光学器件来按需准直光,而没有分色效果。实验测量表明,壳的光学效率为95%,并且准直光束的角强度分布非常均匀,与射线追踪模拟非常吻合。

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