1. Laser cooling
The laser generates a lot of heat when working. Excessive temperature will cause the laser output power to drop or even damage the laser. The laser chiller effectively reduces the temperature of the laser by circulating coolant (such as water or other cooling media) to ensure that it operates in the best working state.
2. Cooling of optical components
The optical components (such as lenses and reflectors) in the laser equipment will also generate heat during the laser operation process, affecting the focusing effect of the laser beam. The laser chiller can provide stable cooling for these optical components to ensure the precise focusing of the laser beam and improve the processing quality.
3. Improve processing accuracy
The temperature stability directly affects the output power and beam quality of the laser. The laser chiller can keep the laser within a constant temperature range and reduce the output instability caused by temperature fluctuations, thereby improving the accuracy and consistency of laser processing.
4. Extend equipment life
Proper temperature control can reduce thermal damage to the laser, reduce the failure rate, and thus extend the service life of the laser. The use of laser chillers helps maintain the long-term stability of the laser and reduce maintenance and replacement costs.
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