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Modular high-power all-waterproof fiber laser

A waterproof optical fiber and laser technology, applied in the direction of lasers, laser components, laser components, etc., can solve problems such as circuit short-circuit burning, damage to laser circuit drive and control systems, human and financial losses, etc.

Inactive Publication Date: 2020-07-28
四川思创激光科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] High-power fiber lasers generally use a water-cooling system to dissipate heat. The cooling water temperature is generally 21-28°C. Working in a high-temperature, high-humidity environment, fiber lasers are prone to condensation, which accelerates the aging of electronic components and even causes circuit short circuits to burn out, seriously Damage the laser circuit drive and control system; and when working in a dusty environment, dust and other debris can easily adhere to the surface of the optical fiber, causing local overheating of the optical fiber, affecting the performance of optical passive components, and even causing irreversible damage to the optical path. Damage; when the system circuit hardware or optical path fails, the machine needs to be completely disassembled for detection, and cannot be repaired on site, so it can only be solved by returning to the factory, resulting in unnecessary human and financial losses

Method used

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  • Modular high-power all-waterproof fiber laser
  • Modular high-power all-waterproof fiber laser
  • Modular high-power all-waterproof fiber laser

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Embodiment Construction

[0025] With the development of high-power fiber lasers, the application potential of lasers is constantly being developed. The application scope includes industrial production, national defense and military, power obstacle removal, 3D printing, precision medicine, etc. The industry span is getting wider and wider, and the application environment is getting wider and wider. As it becomes more complex and harsh, higher requirements must be placed on the reliability, stability and environmental applicability of lasers. In the existing technology, in order to improve the environmental applicability of the fiber laser and ensure the stability and reliability of the laser, the following solutions are generally adopted at this stage:

[0026] (1) Install a constant temperature and humidity air conditioner or dehumidifier outside the laser;

[0027] (2) Add a dust cover outside the laser and seal it;

[0028] (3) Place the laser in a closed air-conditioned room;

[0029] (4) The cha...

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PUM

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Abstract

The embodiment of the invention discloses a modular high-power full-waterproof fiber laser. The fiber laser comprises a laser case, a light path module and a circuit module, wherein a cooling plate isarranged in the laser case, the light path module and the circuit module are arranged in the laser case, a front panel and a rear panel are respectively arranged at two ends of the laser case, an operation panel and a detection module are arranged on the front panel, and the rear panel is provided with a water supply quick connector, a waterproof power supply interface, a waterproof control interface and an air switch operation hole. The fiber laser is advantaged in that through the separated structure of the light path module and the circuit module, a user can directly replace the module onsite to achieve on-site maintenance, moreover, the laser case is arranged to be of a fully-closed structure, so the case of the laser has waterproof and dustproof effects.

Description

technical field [0001] The invention relates to a fiber laser, in particular to a modular high-power fully waterproof fiber laser. Background technique [0002] High-power fiber lasers generally use a water-cooling system to dissipate heat. The cooling water temperature is generally 21-28°C. Working in a high-temperature, high-humidity environment, fiber lasers are prone to condensation, which accelerates the aging of electronic components and even causes circuit short circuits to burn out, seriously Damage the laser circuit drive and control system; and when working in a dusty environment, dust and other debris can easily adhere to the surface of the optical fiber, causing local overheating of the optical fiber, affecting the performance of optical passive components, and even causing irreversible damage to the optical path. Damage; when the system circuit hardware or optical path fails, the machine needs to be completely disassembled for detection, and cannot be repaired o...

Claims

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Application Information

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IPC IPC(8): H01S3/02H01S3/04H01S3/042H01S3/067
CPCH01S3/025H01S3/0407H01S3/042H01S3/06704
Inventor 郭帅梁小宝黄丹李琦
Owner 四川思创激光科技有限公司
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