基于硅锗材料低成本中波红外光学系统无热化设计

Athermalization Design of a Low-cost Medium-wave Infrared Optical System Based on Si/Ge Material

  • 摘要: 为实现中波制冷红外导引头的低成本、无热化设计,采用两轴框架式总体布局方式,基于硅锗光学材料,利用一次成像3片式光学结构(Si-Ge-Si),选用斯特林制冷型面阵规模640×512像素尺寸为15 μm的中波红外探测器作为接收器件,设计一种高分辨率低成本中波制冷红外成像制导光学系统,并实现了宽温范围内的无热化设计。设计结果表明,光学系统焦距为55 mm,视场大小为10°×8°,在33 lp/mm处,轴上0视场的调制传递函数(Modulation Transfer Function,MTF)不低于0.6,轴外0.7视场传递函数不低于0.40,畸变小于1%,冷光阑效率100%。同时,结合整流罩进行针对性优化设计,系统冷反射现象基本消除,在-40℃~+70℃温度范围内具有良好的成像效果。光学系统结构简单,易加工装校,良品率高。经实测样机,光学系统成像质量优良,各项性能指标满足技术指标要求。

     

    Abstract: To realize the low-cost and athermalization design of medium-wave infrared seekers, a high-resolution medium-wave infrared imaging guidance optical system with infrared imaging guidance was designed with low-cost and wide-temperature-range athermalization. The general layout is a two-axis frame; the system chooses one imaging configuration with three pieces of lenses based on Si/Ge material. The detector chooses a Stirling-cooled 640 pixel×512 pixel detector with the pixel size of 15 μm. The prototype design results show that the optical system focal length is 100 mm, field size is 10°×8° at 33 lp/mm, the axis view of the modulation transfer function (MTF) is not less than 0.6, 0.7 field of the off-axis modulation transfer function (MTF) is not less than 0.40, the system distortion is less than 1%, and the efficiency of the cold stop is 100%. Moreover, the narcissus of the system is almost elimination based on pertinence optimization design with fairing. In the temperature range of -40 to 70℃, good image effect was realized. The optical system has the advantages of a simple structure, ease of processing and adjustment, and high yield rate; the imaging quality of the optical system is excellent, and the performance indexes meet the technical specifications.

     

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