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fiber laser chiller DLY-1500-AD5-B for a 1500W fiber laser

Fiber Laser Chiller > DLY-1500-AD5-B

Application Range: Suitable for a 1500W fiber laser, cooling capacity of 5200W.
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  • DLY-1500-AD5-B

Product Description

Laser Chiller > Fiber Laser Chiller > DLY-1500-AD5-B

Application Range: Suitable for a 1500W fiber laser, cooling capacity of 5200W.

Features and Functions:

  1. High-quality refrigeration components with fan speed control and electronic expansion valve energy regulation, achieving temperature control accuracy of ±0.2°C to ±0.8°C.

  2. Equipped with RS485 communication function for remote monitoring via PC.

  3. Includes dual protections for high/low temperature and high/low pressure, with intelligent anti-freeze protection.

  4. Features flow display function with adjustable flow alarm values as per customer requirements.

  5. 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 laser cooling needs, while the other aligns with ambient temperature for laser output cooling.

  6. Double 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 and functions ensure that the DLY-1500-AD5-B effectively meets the cooling requirements of a 1500W fiber laser, offering multiple protection features and remote monitoring capability, suitable for demanding applications such as industrial laser processing.

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A fiber laser chiller is a cooling system specifically designed to regulate the temperature of fiber lasers used in various industrial applications. These chillers are essential because fiber lasers generate heat during operation, which can affect their performance and longevity if not properly managed.

Key features of fiber laser chillers typically include:

  1. Cooling Capacity: They are rated based on their cooling capacity, often specified in watts or BTUs, to match the heat output of the fiber laser.

  2. Temperature Control: Precise temperature control is crucial (often with accuracies of ±0.1°C to ±1°C) to ensure the fiber laser operates within optimal temperature ranges.

  3. Design: They are designed with efficient refrigeration systems, incorporating components like compressors, evaporators, condensers, and pumps to circulate and cool the coolant (usually water or a water-glycol mixture).

  4. Safety and Protection: Many fiber laser chillers feature safety mechanisms such as high/low-temperature alarms, flow rate alarms, and protections against freezing and electrical faults.

  5. Remote Monitoring: Some models are equipped with connectivity options (like RS485 communication) for remote monitoring and control, allowing operators to monitor temperature, performance, and diagnostics remotely.

  6. Energy Efficiency: They are designed to be energy-efficient, often incorporating features like variable speed fans and energy-saving modes to optimize power consumption.

Overall, fiber laser chillers play a critical role in maintaining the stability and efficiency of fiber lasers, ensuring consistent performance and extending their operational lifespan in industrial settings.

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