Temperature regulation method for optical mounting board and optical mounting board

By dividing the optical mounting base into multiple thermal control zones and using control actuators, combined with linkage index and compensation parameters, the problem of inaccurate temperature control in traditional methods is solved, thereby improving the assembly accuracy and imaging stability of optical components.

CN122411642APending Publication Date: 2026-07-17SHANGHAI INSTITUTE OF TECHNICAL PHYSICS CHINESE ACADEMY OF SCIENCES

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANGHAI INSTITUTE OF TECHNICAL PHYSICS CHINESE ACADEMY OF SCIENCES
Filing Date
2026-05-12
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional temperature control methods are difficult to precisely control the temperature of different areas of the optical mounting base, resulting in insufficient assembly accuracy and imaging stability of optical components.

Method used

The optical mounting base is divided into multiple thermal control zones, and each zone is equipped with a control actuator. By collecting temperature data, the initial control parameters are determined, and the temperature is controlled based on the linkage index and compensation parameters to ensure that the temperature of each zone is within the target range.

Benefits of technology

Precise temperature control of various areas of the optical mounting base plate was achieved, improving the assembly accuracy and imaging stability of optical components.

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Abstract

本申请涉及空间光学工程技术领域,公开了针对光学安装底板的温度调控方法和光学安装底板,光学安装底板被划分为多个热控区域,每个热控区域设置有调控执行器;方法包括采集每个热控区域的第一温度数据,并基于第一温度数据,确定光学安装底板中不同热控区域之间的温度差异;若温度差异表征需进行温度调控,则基于相邻热控区域之间的联动指数和每个热控区域的目标温度区间,确定调控执行器的初始调控参数;按照初始调控参数,控制调控执行器工作,并采集每个热控区域的第二温度数据;基于第二温度数据,确定调控执行器的补偿参数,对调控执行器的初始调控参数进行调整。本申请方案达到了对光学安装底板中各个区域的温度进行精准控制的技术效果。
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