| Temperature | 5℃ to 30℃ |
| Cooling capacity | 1.673 kW |
| Refrigerant | R22 (Or R134a / R407c) |
| Compressor power | 0.685 × 1 |
| Water Tank Volume | 16 L |
| Water Flow | 33 L/min |
| Dimension (L × B × H) | 413 × 400 × 871 mm |
| Net Weight | 48 kg |
Laser Chiller ADLAC-502 supports the continuous operation of laser equipment by efficiently removing excess heat. It plays a vital role in environments such as research labs, medical treatment centres for reliable cooling and equipment protection.
1. What is the operating temperature range of the Laser Chiller ADLAC-502?
Laser Chiller ADLAC-502 operates within a specific temperature range of 5? to 30? for precision cooling. It maintains optimal thermal conditions for sensitive equipment and processes. This range supports stable performance in laboratory, medical, and industrial environments. It helps prevent overheating and ensures equipment longevity.
2. In which environment is the Laser Chiller ADLAC-502 typically applied?
The Laser Chiller ADLAC-502 is typically applied in environments requiring precise thermal control. It is widely used in research laboratories for cooling laser systems and optical devices. Medical facilities rely on it to maintain stable temperatures in laser treatment equipment. Its consistent cooling ensures reliable operation and protects sensitive components from heat damage.
3. What type of refrigerant is used in the Laser Chiller ADLAC-502?
The Laser Chiller ADLAC-502 is compatible with multiple refrigerants, including R22, R134a, and R407c. These refrigerants are chosen for their effective cooling and thermal stability. They support efficient heat transfer, ensuring reliable operation of the system. The choice of refrigerant can depend on environmental regulations or user preference. This flexibility allows the System to meet various application and compliance needs.
4. What is the Laser Chiller ADLAC-502 capability for continuous operation during extended laser use?
Laser Chiller ADLAC-502 is designed to support continuous operation during extended laser use. It provides consistent cooling to prevent overheating and maintain performance. Built-in safety features protect the system during long running hours. Regular maintenance ensures uninterrupted functionality. This makes it ideal for demanding laser applications requiring stable temperature control.
5. What is the effect of refrigerant on the Laser Chiller ADLAC-502 cooling process?
In Laser Chiller ADLAC-502 refrigerant plays a crucial role in transferring heat out of the system. Its efficiency directly impacts how quickly and effectively the chiller cools. Using the right refrigerant ensures stable performance and energy efficiency. Low-quality or incompatible refrigerants can reduce cooling capacity and harm components.
6. What are the power supply specifications for the Laser Chiller ADLAC-502?
Laser Chiller ADLAC-502 operates on a single-phase power supply of 220V at 50Hz frequency. This standard voltage ensures compatibility with most laboratory and industrial settings. Using the correct power supply helps maintain stable and efficient chiller performance. It is important to verify power requirements before installation to avoid electrical issues. Proper power input contributes to the longevity and reliability of the chiller system.
7. What are Laser Chillers?
Laser chillers are units that cool laser systems by removing excess heat during operation. They maintain stable temperatures to ensure lasers work efficiently and reliably. By circulating cooled liquid, they absorb and remove excess heat from laser components. Such Chillers are essential for extending the lifespan and accuracy of laser equipment.
8. What types of lasers are used by Laser Chillers?
Many types of lasers require Laser Chillers to manage heat during operation. Common examples include CO2 lasers, fiber lasers, and diode lasers. These lasers often operate at high power levels, producing significant heat that needs efficient cooling. Such Chillers are used across industries like manufacturing, medical treatments, and scientific research. The choice of systems depends on the specific laser type and its cooling demands.
9. How do Laser Chillers work?
Laser Chillers work by circulating a coolant through laser components to absorb heat generated during operation. The heated coolant then passes through a refrigeration system that cools it down. This cooled liquid is continuously cycled back to maintain a stable temperature. By efficiently removing heat, laser chillers prevent overheating and ensure consistent laser performance.
| Temperature | 5℃ to 30℃ |
| Cooling capacity | 2.9 kW |
| Refrigerant | R22 (Or R134a / R407c) |
| Temperature | 5℃ to 30℃ |
| Cooling capacity | 1.52 kW |
| Refrigerant | R22 (Or R134a / R407c) |
| Temperature | 5℃ to 30℃ |
| Cooling capacity | 4 kW |
| Refrigerant | R22 (Or R134a / R407c) |
| Temperature | 5℃ to 30℃ |
| Cooling capacity | 5.48 kW |
| Refrigerant | R22 (Or R134a / R407c) |
| Temperature Range: | -45℃ to +30℃ |
| Temperature Control: | ±0.5℃ |
| Circulating Pump Max: | 20 L/min, 1.5bar |
| Temperature Range: | -25℃ to +35℃ |
| Temperature Control: | ±0.5℃ |
| Circulating Pump Max: | 20 L/min, 1.5bar |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 24 kW/h |
| Water flow: | 150 L/min |
| Temperature: | 5℃ to 35℃ |
| Working Current: | 6.2 A |
| Refrigeration capacity: | 8.5 kW |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 15 kW /h |
| Water flow: | 100 L/min |
| Temperature Range: | 8℃ to 30℃ |
| Refrigeration capacity: | 2.7 kW |
| Flow meter : | 2.0 L/min |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 18 kW/h |
| Water flow: | 100 L/min |
| Type: | Integrated water cooling system |
| Cooling Capacity: | ≥ 1.2 kW |
| Pressure: | 0.08 to 0.17 MPa |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 30 kW/h |
| Water flow: | 200 L/min |
| Type: | Integrated air cooling system |
| Cooling Capacity: | ≥ 1.2 kW |
| Pressure: | 0.08 to 0.17 MPa |
| Cooling: | 6 kW (5,160 kcal/h) |
| Compressor : | Rotary Compressor |
| Refrigerant: | R22 |
| Cooling: | 6 kW (5,160 kcal/h) |
| Compressor: | Rotary Compressor |
| Refrigerant: | R22 |
| Temperature Range: | 5℃ to 35℃ |
| Working Current: | 9.4 to 10.8A |
| Refrigeration capacity: | 5.48 kW |
| Water tank capacity: | 140 L |
| Cooling capacity: | 28 kW |
| Flow rate: | 200 L/min |
| Water tank capacity: | 70 L |
| Cooling capacity: | 16.8 kW |
| Flow rate: | 100 L/min |
| Water tank capacity: | 60 L |
| Cooling capacity: | 8.4 kW |
| Flow rate: | 100 L/min |
| Water tank capacity: | 120 L |
| Cooling capacity: | 22.4 kW |
| Flow rate: | 150 L/min |
| Water tank capacity: | 40 L |
| Cooling capacity: | 2.8 kW |
| Flow Rate: | 40 L/min |
| Type: | Air cooled |
| Refrigerant: | R134a or R410A |
| Cooling Capacity: | 1.2–2 kW |
| Water tank capacity: | 60 L |
| Cooling capacity: | 14 kW |
| Flow rate: | 100 L/min |
| Water tank capacity: | 40 L |
| Cooling capacity: | 5.6 kW |
| Flow rate: | 40 L/min |