China Suppliers Factory Industrial Water-Cooled Chiller for CO2 Laser Cooling Applications
Product Details
High Efficiency & Energy Savings
Water-cooled chillers are known for their superior energy efficiency compared to air-cooled systems. By utilizing water, which has a higher heat transfer capacity than air, they can dissipate heat more effectively, leading to lower energy consumption and operating costs in large-scale cooling applications.
01
Better Heat Dissipation
Water has a higher thermal conductivity than air, which allows water-cooled chillers to achieve more effective heat exchange. This results in better overall cooling performance, particularly in environments that require constant or large amounts of cooling, such as industrial processes and commercial buildings.
02
Stable Temperature Control
Water chillers provide more precise and stable temperature control, making them ideal for sensitive applications like pharmaceuticals, data centers, and laboratories, where consistent temperatures are crucial for optimal performance and safety.
03
Stable Temperature Control
Compared to air-cooled chillers, water-cooled chillers typically have a more compact design, making them ideal for spaces where room for large equipment is limited. The system’s reliance on water rather than air means it requires less space for heat exchange surfaces.
04Longer Lifespan and Reliability
Water-cooled chillers tend to have a longer operational lifespan when properly maintained. Since water is a more efficient medium for heat transfer, the system experiences less wear and tear, leading to enhanced reliability and reduced maintenance requirements.
05| Model | CW3000 | CW5200 | CW5300 | CW-6000 |
| Voltage | AC 1P 110V | AC 1P 110V | AC 1P 110V | AC 1P 220V |
| Frequency | 50/60Hz | 60Hz | 60Hz | 50 |
| Current | 0.4~0.9A | 0.4~5.3A | 0.5~8.9A | 0.5~7.2A |
| Machine power | 0.1KW | 0.43KW | 0.77kW | 0.98kW |
| Compressor power | / | 0.38kW | 0.66kW | 1.06kW |
| Nominal cooling capacity | / | 1.03kw | 1.67kw | 3.14kw |
| Pump power | / | 0.03kw | 0.05kw | 0.05kW |
| Max. lift | 10m | 10m | 12m | 12m |
| Max.flow | 10L/min | 10L/min | 13L/min | 13L/min |
| N.W. | 8.7kgs | 21.5kgs | 22.7kgs | 53kgs |
| G.W. | 11kgs | 24.5kgs | 25.7kgs | 63kgs |
| Precision | / | ±0.3℃ | ±0.3℃ | ±0.5℃ |
| Tank capacity | 9L | 6L | 6L | 15L |
| Inlet and outlet | OD 10mm barbed connector | Rp1/2" | ||
| Dimension | 49 X 27 X 38cm | 58 X 29 X 47cm | 67 X 47 X 89cm (L X W X H) | |
| Package Dimension | 59 X 38 X 47cm | 65 X 39X 56cm | 74 X 61 X 103cm | |
| Suitable laser tube power | ≤80W | 80W-120W | 120W-130W | Above 130W |
| The working current can be different under different working conditions. The above information is for reference only. Please subject to the actual delivered product. | ||||
Frequently Asked Questions
What are the main advantages of water-cooled chillers over air-cooled ones?
Water-cooled chillers offer superior energy efficiency and heat dissipation because water has a higher thermal conductivity and heat transfer capacity than air. They also provide more stable temperature control and typically feature a more compact design.
Why do water-cooled chillers have a longer operational lifespan?
Since water is a highly efficient medium for heat transfer, the system experiences less thermal stress and mechanical wear and tear during operation. With proper maintenance, this leads to enhanced reliability and a longer service life.
Which chiller model is suitable for a laser tube power above 130W?
According to the technical specifications, the CW-6000 model is recommended for laser tube powers above 130W, as it offers a nominal cooling capacity of 3.14kw and a larger 15L tank capacity.
What is the temperature control precision of the CW5200 and CW5300 models?
Both the CW5200 and CW5300 models offer a high temperature control precision of ±0.3℃, making them ideal for sensitive applications that require highly consistent temperatures.
Does the compact design of water-cooled chillers affect their performance?
No. Because water is highly efficient at transferring heat, these systems require less physical space for heat exchange surfaces compared to air-cooled models, allowing them to remain compact without sacrificing cooling performance.

