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DLY-15000W-AD2
Laser Chiller > Fiber Laser Chiller > DLY-15000W-AD2
Application Range: Suitable for fiber lasers with a power range of 12000W to 15000W, cooling capacity of 46000W.
Features and Functions:
High-quality refrigeration components with fan speed control and electronic expansion valve energy regulation, achieving temperature control accuracy of ±0.5°C to ±1.0°C.
Equipped with RS485 communication function for remote monitoring via PC.
Dual protections for high/low temperature and high/low pressure, with intelligent anti-freeze protection.
Flow display function with adjustable flow alarm values according to customer requirements.
Dual water temperature design: Automatic constant temperature function with two different set temperatures to meet varied demands. Dual signal output protection ensures one water temperature meets the cooling needs of the laser, while the other aligns with ambient temperature for laser output cooling.
Dual water filter protection: Equipped with pure water and deionized water filters for enhanced equipment safety. Also includes conductivity detection device and signal output, with adjustable conductivity alarm values to effectively protect the laser.
These features make the DLY-15000W-AD2 chiller ideal for efficiently cooling high-power fiber lasers in industrial applications. It offers precise temperature control, robust safety features, advanced monitoring capabilities, and water quality protection, ensuring optimal performance and longevity of the laser system.
A chiller designed for 12000W to 15000W fiber lasers is a specialized cooling system essential for maintaining optimal operating temperatures and ensuring the reliability and longevity of high-power laser systems. Here are the key aspects and considerations for such a chiller:
Cooling Capacity: The chiller must have a sufficient cooling capacity to dissipate the heat generated by fiber lasers in the range of 12000W to 15000W. Typically, the cooling capacity should exceed the laser's heat output to maintain stable temperatures.
Temperature Control: Precision temperature control is critical to ensure the fiber laser operates within its optimal temperature range. The chiller should provide accurate temperature control, often specified within ±0.5°C to ±1.0°C, to prevent overheating and maintain consistent laser performance.
Refrigeration System: It includes components such as compressors, evaporators, condensers, and circulation pumps to circulate and cool the coolant (usually water or a water-glycol mixture) that absorbs heat from the laser system.
Safety Features: Chiller units for high-power fiber lasers typically incorporate safety features such as high/low-temperature alarms, high/low-pressure protections, and anti-freeze mechanisms to ensure operational reliability and protect the laser from thermal damage.
Efficiency: Energy-efficient operation is essential to minimize operating costs. Modern chillers may feature variable speed fans, energy-saving modes, and optimized refrigeration cycles to achieve efficiency while meeting cooling requirements.
Remote Monitoring and Control: Advanced models may include communication interfaces like RS485 for remote monitoring and control. This allows operators to monitor temperature levels, adjust settings, and receive alerts remotely, facilitating proactive maintenance and troubleshooting.
Water Filtration and Quality: To protect the laser optics and maintain system reliability, chillers often incorporate water filtration systems such as particle filters, carbon filters, and deionization units to ensure the coolant remains clean and free of contaminants.
In summary, a chiller designed for 12000W to 15000W fiber lasers plays a crucial role in industrial laser applications by ensuring stable and efficient laser operation. It provides precise temperature control, robust safety features, energy efficiency, and advanced monitoring capabilities to support high-performance laser processing in various industries such as manufacturing, automotive, aerospace, and more.