Manufacturing method of level bubble detection and debugging system for spirit level
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- Time of issue:2021-04-26 19:04
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(Summary description)At present, the adjustment and calibration of the accuracy of the level bubble on the level is mainly through manual manual calibration.
Manufacturing method of level bubble detection and debugging system for spirit level
(Summary description)At present, the adjustment and calibration of the accuracy of the level bubble on the level is mainly through manual manual calibration.
- Categories:Industry News
- Author:
- Source:
- Time of issue:2021-04-26 19:04
- Views:
At present, the adjustment and calibration of the accuracy of the level bubble on the level is mainly through manual manual calibration. The operator detects the deviation of the level bubble angle and inner wall symmetry through the level bubble detection device on the reference inspection platform, and then adjusts the level bubble through the fixture to adjust the level bubble. Bubble compound precision requirements. The whole process is completed manually by the operator. Due to differences in the quality of operators and operating levels, it is difficult to ensure the stability of product quality. In addition, the efficiency of manual calibration and debugging is low, and it is difficult to meet the needs of production.
SUMMARY OF THE INVENTION In order to solve the problems existing in the prior art, the present utility model provides a level bubble detection and debugging system that can intelligently calibrate the accuracy of the level bubble. The technical solution of the utility model to solve the existing problems is a level bubble detection and debugging system. As an improvement of the utility model, it includes a photoelectric detection module for detecting the level bubble, a PLC control module that receives information from the photoelectric detection module, and debugging For a correction-driven servo motor, the PLC control module includes an information receiving module, an information processing module, and a signal conversion sending module. The information receiving module is connected to the output terminal of the photoelectric detection module, and the signal conversion sending module is connected to the servo motor. As a further improvement of the utility model, the photoelectric detection module, the PLC control module, and the servo motor constitute a closed loop. As a further improvement of the utility model, the photoelectric detection module, the PLC control module, and the servo motor constitute an open loop.
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