Automatic optical collimating system and device

By working in concert with optical reference sensing, multi-axis adjustment and intelligent control modules, the problems of poor consistency and low efficiency in the centering operation of the aiming device are solved, realizing high-precision, fully automated production and improving production stability and product quality management.

CN122409145APending Publication Date: 2026-07-17
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Filing Date
2026-05-20
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing aiming device centering operations suffer from low production efficiency, poor product consistency, inability to quantify performance parameters, significant impact of human factors on production stability, difficulty in identifying incoming material anomalies during manual operation, poor compatibility of automated calibration equipment, unstable optical path reference, lack of torque closed-loop monitoring during adjustment, and difficulty in achieving high-precision centering, parallax detection, and integrated verification of adjustment pin stroke.

Method used

By employing an optical reference sensing module, a product positioning adaptation module, an auxiliary optical coupling module, a multi-axis adjustment execution module, and an intelligent control module, non-contact spot position acquisition and quantitative identification, adaptive positioning clamping and electrical conduction are achieved, a stable detection optical path is constructed, and spatial alignment, precision rotation and torque closed-loop monitoring are performed. Combined with the intelligent control module, the entire process is automated for scheduling and judgment.

Benefits of technology

It achieves fully automated centering calibration, improving production efficiency and product consistency. It has high centering detection accuracy, stable parallax judgment, high adjustment accuracy, comprehensive incoming material anomaly identification, and traceable production data, meeting the needs of automated production with high precision, high stability, and high compatibility.

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Abstract

本发明公开瞄准器自动光学分中系统及装置,系统包括光学基准感知、产品定位适配、辅助光学耦合、多轴调节执行及智能控制模块;装置包括模拟光路视觉检测、定位夹具、陪测镜片及双调节测试组件。通过平行光管、L型双相机与分光棱镜构成双维度成像光路,陪测镜片自动进给实现光路耦合,配合行程识别、中点解算及PID闭环算法,自动完成调节钉行程寻优、中点定位与精密校准,同时实现扭力监测与性能量化判定。本发明实现全流程自动化分中检测,定位精度高、一致性好,有效提升生产效率与产品良率,适用于瞄准器自动化生产校准。
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