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A lazy way to design infrared lens

机译:懒惰的红外镜头设计方法

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We designed a compact middle-wave infrared (MWIR) lens with a large focal length ratio (about 1.5:1), used in the 3.7 to 4.8 μm range. The lens is consisted of a compact front group and a re-imaging group. Thanks to the compact front group configuration, it is possible to install a filter wheel mechanism in such a tight space. The total track length of the lens is about 50mm, which includes a 2mm thick protective window and a cold shield of 12mm. The full field of view of the lens is about 3.6°, and F number is less than 1.6, the image circle is about 4.6mm in diameter. The design performance of the lens reaches diffraction limitation, and doesn't change a lot during a temperature range of -40℃~-+60 ℃. This essay proposed a stepwise design method of infrared optical system guided by the qualitative approach. The method fully utilize the powerful global optimization ability, with a little effort to write code snippet in optical design software, frees optical engineer from tedious calculation of the original structure.
机译:我们设计了一种紧凑的中波红外(MWIR)透镜,其焦距比大(约1.5:1),在3.7至4.8μm范围内使用。镜头由紧凑的前组和重新成像组组成。得益于紧凑的前组配置,可以在如此狭窄的空间内安装滤轮机构。镜头的总轨迹长度约为50毫米,其中包括2毫米厚的保护窗和12毫米的防寒罩。镜头的全视野约为3.6°,F数小于1.6,像圈直径约为4.6mm。镜片的设计性能达到衍射极限,在-40℃〜-+ 60℃的温度范围内变化不大。本文以定性方法为指导,提出了一种逐步设计红外光学系统的方法。该方法充分利用了强大的全局优化能力,只需花费一点精力就可以在光学设计软件中编写代码片段,从而使光学工程师摆脱了原始结构的繁琐计算。

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