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Custom Water Chiller for Laser Cooling

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Custom Water Chiller for Laser Cooling

 

The rapid and large-scale application of each industrial technology is promoting the rapid progress and development of industrialization. There are many types of industrial lasers, including solid-state lasers, gas lasers, liquid lasers, semiconductor lasers, dye lasers, and fiber lasers. These lasers are widely used in various processes such as laser coding, laser marking, laser cleaning, laser welding, and laser cutting.

Industrial lasers generate a lot of heat when they are in use. In order to maintain the performance and life of the laser, it is very important to dissipate the heat generated by the laser in time. In fact, we can achieve precise temperature control through the cooling system of the chiller. The wide application of lasers in the industrial field provides precise and precise production efficiency. Installing a chiller can provide inestimable value in production efficiency when designed into such advanced technology.

cryogenic cooling chiller

So why use a chiller? Because even if the application fields of the laser are different, the temperature control requirements of the machine remain the same. Using a chiller can keep the industrial laser at a constant temperature, so that the laser can achieve the best work effect. Generally speaking, lasers are designed to work in high-temperature environments, and adjusting the laser temperature helps the system dissipate heat, thereby preventing critical components from overheating. In addition, this temperature adjustment significantly prolongs the service life of the laser.

So, what benefits can we bring to the laser after we attach a chiller to the laser?

First, the wavelength of the laser can be kept constant. Because the output wavelength is very sensitive to temperature. Using a chiller will help keep the laser elements consistent and provide reliable laser performance. In addition, adjusting the power and wavelength of the laser can extend the useful life of the laser.

Second, waste heat can be removed. Lasers generate a lot of heat when they work. Installing a chiller can greatly cool down the laser and remove waste heat in time. This ensures the stability of the laser temperature, the consistency of the flow rate and the production quality of the laser equipment.

Again, the installation of the chiller can also prevent vibration. In some working areas of the laser, sometimes it will cause a decrease in beam quality and unnecessary vibration. Proper temperature control plays an important role in maintaining the laser beam and shape, which can reduce the reject rate in time.

In addition, thermal stress on the laser can be reduced. A large temperature change will put a great burden on the operating system. Using a chiller to cool down the laser can minimize this pressure. It can reduce the output of defective products and reduce the number of system failures.

Finally, chillers can help lasers reach higher levels of production. Laser systems are very sensitive. If cooling measures are not taken in time, the heat generated by the laser operation may cause unplanned downtime, component failure and loss of profit, etc.

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