| Temperature | 5℃ to 30℃ |
| Cooling capacity | 1.52 kW |
| Refrigerant | R22 (Or R134a / R407c) |
| Compressor power | 0.605 × 1 |
| Water Tank Volume | 11 L |
| Water Flow | 15 L/min |
| Power supply | 1N / 220 V / 50 Hz |
| Dimension (L × B × H) | 470 × 380 × 589 mm |
| Net Weight | 37 kg |
Laser Chiller ADLAC-501 is used to maintain stable temperatures in laser systems, preventing overheating and performance fluctuations. It is essential in laboratories, medical devices, and industrial applications where precise thermal control is critical.
1. Where is the Laser Chiller ADLAC-501 is commonly used?
Laser Chiller ADLAC-501 is widely used in laboratories to maintain precise temperature control for sensitive laser instruments. It is also essential in medical facilities where stable cooling ensures accurate laser treatments. In industrial settings, it supports laser machines used for cutting, welding, and engraving. The chiller helps prevent overheating, protecting equipment from damage. Overall, it ensures consistent and reliable laser performance across various applications.
2. What is the significance of having an 11L water tank volume in the Laser Chiller ADLAC-501?
Laser Chiller ADLAC-501 has water tank with the capacity of 11 litres that provides an ample coolant reserve to ensure stable and consistent cooling. It helps minimize temperature fluctuations during continuous operation. The tank size supports efficient heat absorption and dissipation, improving chiller performance. It also reduces the frequency of refilling or maintenance interruptions.
3. What safety alerts are included in the Laser Chiller ADLAC-501 system?
Laser Chiller ADLAC-501 is equipped with multiple safety alerts to protect both the equipment and the user. These include alarms for overheating, low coolant levels, and compressor overload. The alerts help prevent damage by notifying users of abnormal conditions early. This enables timely intervention and maintenance to avoid costly repairs. Overall, the safety alerts enhance system reliability and operational safety.
4. What is phase reverse protection, and how does it benefit Laser Chiller ADLAC-501?
Phase reverse protection safeguards the Laser Chiller ADLAC-501 motor from damage caused by incorrect electrical phase connections. It detects when the power supply phases are reversed and prevents the compressor from running under such conditions. This feature helps avoid motor burnout and electrical faults. By ensuring proper motor operation, it extends the lifespan of the chiller. Overall, phase reverse protection enhances system reliability and safety.
5. Why is a Laser Chiller ADLAC-501 important in a laboratory setting?
Laser Chiller ADLAC-501 is essential in laboratories to maintain precise temperature control for sensitive equipment and experiments. It prevents overheating, ensuring instruments like lasers and microscopes function accurately. Stable cooling protects samples and reagents from damage caused by temperature fluctuations. This reliability enhances both safety and efficiency during research.
6. 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.
7. 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.
8. 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 | 1.673 kW |
| Refrigerant | R22 (Or R134a / R407c) |
| Temperature | 5℃ to 30℃ |
| Cooling capacity | 2.45 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 | 2.9 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 |
| Type: | Integrated water cooling system |
| Cooling Capacity: | ≥ 1.2 kW |
| Pressure: | 0.08 to 0.17 MPa |
| Type: | Integrated air cooling system |
| Cooling Capacity: | ≥ 1.2 kW |
| Pressure: | 0.08 to 0.17 MPa |
| Temperature Range: | 5℃ to 35℃ |
| Working Current: | 9.4 to 10.8A |
| Refrigeration capacity: | 5.48 kW |
| Temperature: | 5℃ to 35℃ |
| Working Current: | 6.2 A |
| Refrigeration capacity: | 8.5 kW |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 30 kW/h |
| Power supply: | 3N / 380 V / 50 Hz |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 15 kW /h |
| Power supply: | 3N / 380 V / 50 Hz |
| 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℃ |
| Refrigeration capacity: | 24 kW/h |
| Power supply: | 3N / 380 V / 50 Hz |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 18 kW/h |
| Power supply: | 3N / 380 V / 50 Hz |
| Temperature Range: | 8℃ to 30℃ |
| Refrigeration capacity: | 2.7 kW |
| Flow meter : | 2.0 L/min |
| 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 |
| 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: | 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: | 120 L |
| Cooling capacity: | 22.4 kW |
| Flow rate: | 150 L/min |