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A long-wave infrared mechanically passive athermal vehicle-mounted lens and its installation method

A long-wave infrared, passive technology, applied in the field of optical lenses, can solve problems such as image plane drift, image quality degradation, and focal length changes of the optical system, and achieve the effect of compact structure, accurate precision, and high resolution

Active Publication Date: 2019-06-07
FUJIAN FUGUANG TIANTONG OPTICS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Because infrared optical materials and mechanical materials will produce thermal deformation when the temperature changes, the drastic change of working temperature will cause the focal length change of the optical system, the image surface is elegant, and the image quality is reduced.

Method used

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  • A long-wave infrared mechanically passive athermal vehicle-mounted lens and its installation method
  • A long-wave infrared mechanically passive athermal vehicle-mounted lens and its installation method
  • A long-wave infrared mechanically passive athermal vehicle-mounted lens and its installation method

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Embodiment Construction

[0020] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0021] Such as Figure 1~2 As shown, the embodiment of the present invention provides a long-wave infrared mechanically passive athermal vehicle-mounted lens. The optical system of the lens includes lenses A with positive refractive powers and optical lenses arranged at intervals from left to right along the incident direction of light. The lens group B with negative focal power and the lens C with positive refractive power, the lens A and the lens C are both positive crescent lenses, and the lens rear group B is a negative crescent lens; the lens A and the lens The air gap between the rear group B is 5.21mm, the air gap between the lens rear group B and C lens C is 3.78mm; the lens also includes a main lens barrel 5, the lens A, the lens rear group B and the The lenses C are sequentially spaced from left to right and arranged in cooperation w...

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Abstract

The invention relates to a long-wave infrared mechanically passive athermal vehicle-mounted lens and an installation method thereof. The optical system of the lens includes lens A with positive refractive power and optical focal length arranged at intervals from left to right along the incident direction of light. The rear lens group B with negative power and the lens C with positive refractive power, both the lens A and the lens C are positive crescent lenses, and the lens rear group B is a negative crescent lens; the lens A and the lens rear The air gap between group B is 5.21mm, and the air gap between the lens rear group B and C lens C is 3.78mm; the lens also includes a main lens barrel, the lens A, lens rear group B and lens C It is arranged in cooperation with the inner wall of the main lens barrel at intervals from left to right. The invention makes use of the thermal expansion and contraction properties of the material and the application of the compensation shrapnel to make the athermal design structure simpler, the overall product structure smaller, lighter in weight, and high in reliability, and to meet the user's requirements for product imaging performance , the structure is also more convenient for customers to use.

Description

technical field [0001] The invention relates to the field of optical lenses, in particular to a long-wave infrared mechanically passive athermal vehicle-mounted lens and an installation method thereof. Background technique [0002] With the rapid development of science and technology and the continuous development and maturity of uncooled detector technology, long-wave infrared uncooled optical systems have been widely used in both military and civilian fields. Since infrared optical materials and mechanical materials will produce thermal deformation when the temperature changes, drastic changes in operating temperature will cause changes in the focal length of the optical system, image surface drift, and image quality degradation. In order to eliminate or reduce the impact of temperature changes on the imaging of the optical system, corresponding compensation techniques must be used to keep the focal length of the optical system constant within a large temperature range to ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G02B13/14G02B7/02G03B30/00
CPCG02B7/028G02B13/14
Inventor 魏泽岚何武强郑勇强陈潇
Owner FUJIAN FUGUANG TIANTONG OPTICS
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