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Fiber Laser Chiller DIC025ADH-LC2 Suitable for 1500W to 2000W fiber lasers cooling capacity of 7200W.

Laser Chiller > Fiber Laser Chiller > DIC025ADH-LC2

DIC025ADH-LC2 Application Range: Suitable for 1500W to 2000W fiber lasers, cooling capacity of 7200W.
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  • DIC025ADH-LC2

Product Description

Laser Chiller > Fiber Laser Chiller > DIC025ADH-LC2

DIC025ADH-LC2 Application Range: Suitable for 1500W to 2000W fiber lasers, cooling capacity of 7200W. Features and Functions:

  1. 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.

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

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

  4. Flow display function with adjustable flow alarm values according to 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 the cooling needs of the laser, while the other aligns with ambient temperature for laser output cooling.

The DIC025ADH-LC2 chiller is specifically designed to efficiently cool fiber lasers in the 1500W to 2000W power range. It offers precise temperature control, advanced safety features, remote monitoring capabilities, and dual water temperature design to ensure optimal performance and longevity of the laser system in industrial applications.

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A chiller suitable for 1500W to 2000W fiber lasers plays a crucial role in maintaining stable operating temperatures and ensuring the longevity and reliability of the laser system. Here are the key features and considerations for such a chiller:

Key Features:

  1. Cooling Capacity: The chiller should have a cooling capacity that matches or exceeds the heat dissipation requirements of a 1500W to 2000W fiber laser. In this case, a cooling capacity of around 7200W, as provided by the DIC025ADH-LC2, is suitable.

  2. Temperature Control: Precision temperature control is essential to prevent overheating and maintain consistent laser performance. Look for a chiller with temperature control accuracy typically ranging from ±0.5°C to ±1.0°C.

  3. Refrigeration System: Quality refrigeration components including compressors, condensers, and evaporators are necessary for efficient heat dissipation. Ensure the system is robust and designed for continuous operation under varying load conditions.

  4. Safety Features: High/low-temperature alarms, high/low-pressure protections, and anti-freeze mechanisms safeguard the chiller and laser system from operational hazards and potential damage.

  5. Energy Efficiency: Opt for chillers with energy-saving features such as variable speed fans or intelligent cooling control systems. This helps reduce energy consumption while maintaining optimal cooling performance.

  6. Remote Monitoring: Integration with RS485 communication enables remote monitoring and control via a PC, allowing operators to monitor temperature levels, adjust settings, and receive alerts remotely for proactive maintenance.

  7. Water Quality Management: Effective water filtration systems (e.g., particle filters, carbon filters, deionization units) are crucial to maintain coolant purity and prevent contaminants from affecting laser optics and performance.

Application Considerations:

  • Environmental Conditions: Consider the ambient temperature and humidity levels of the operating environment to ensure the chiller can maintain stable cooling performance under varying conditions.

  • Installation and Maintenance: Ensure the chiller is installed correctly and maintained according to manufacturer guidelines to maximize its operational lifespan and performance reliability.

Choosing the right chiller for a 1500W to 2000W fiber laser involves matching cooling capacity with laser heat dissipation requirements, ensuring precise temperature control, and incorporating robust safety and monitoring features. This ensures optimal laser performance and extends the lifespan of critical laser components in industrial and manufacturing applications.


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