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Design of a long focal length mid-wavelength infrared optical system

机译:长焦距中波长红外光学系统的设计

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Based on a 640×512 cooled staring focal plane array(FPA) detector, pixel size 15μm×15μm. a long focal length mid-wavelength infrared optical system was designed. In this paper, the working wavelength is 3μm~5μm, the temperature range is -30°C~+50°C. this system can realize 1000mm focal length, the F-number is 4, the full field of view is 0.70°. satisfy 100% cold shield efficiency. A re-imaging refractive system was adopted in this designed optical system consists of a main objective group and a projection group. First of all. the structural selection and the initial parameter calculation were introduced. Secondly, on the basis of variety of the temperature, a focusing len was presented in this system to adjust to produce a clear image. Last but not the least, to improve image quality and environment adaptability, the analysis of temperature change and ghost image were described particularly. The design results prove that at the spatial frequency of 33 lp/mm, the axis MTF of the optical system is greater than 0.35, the system can offer a high resolution and excellent images, and it has the advantages of good adaptability, simple structure, easy to adjust, and high transmittance.
机译:基于640×512冷却凝视焦平面阵列(FPA)检测器,像素大小为15μm×15μm。设计了一种长焦距中波长红外光学系统。本文的工作波长为3μm〜5μm,温度范围为-30°C〜+ 50°C。该系统可实现1000mm焦距,F值为4,全视野为0.70°。满足100%的冷屏蔽效率。此设计的光学系统采用了重新成像折射系统,该系统由一个主要物镜组和一个投影组组成。首先。介绍了结构选择和初始参数计算。其次,根据温度的变化,在该系统中提出了聚焦透镜,以进行调节以产生清晰的图像。最后但并非最不重要的一点是,为了提高图像质量和环境适应性,特别描述了温度变化和重影的分析。设计结果证明,在空间频率为33 lp / mm时,光学系统的轴MTF大于0.35,该系统可以提供高分辨率和出色的图像,并且具有适应性好,结构简单,调整方便,透光率高。

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