| Temperature Range | -25℃ to +35℃ |
| Temperature Control | ±0.5℃ |
| Circulating Pump Max | 20 L/min, 1.5bar |
| Refrigerant | R404A |
| Cooling capacity at 0℃ | 1.5 kW |
| Cooling capacity at -10℃ | 1 kW |
| Cooling capacity at -20℃ | 0.55 kW |
| Power | 220 V / 50 Hz |
Low Temperature Circulating Chiller ADLTC-501 is used in labs for precise temperature control during analytical, chemical, and biological processes. It ensures stable cooling for sensitive laboratory instruments and reactions.
1. What is a Low Temperature Circulating Chiller ADLTC-501?
Low Temperature Circulating Chiller ADLTC-501 is a high-performance laboratory cooling system designed for precise temperature control. This unit is equipped with a high-efficiency circulating pump, ensuring consistent fluid flow. It has compact design that allows for easy integration into laboratory setups with limited space. Additionally, system includes multiple safety features such as over-temperature alarms, sensor faults, and compressor overheating protection.
2. How does a Low Temperature Circulating Chiller ADLTC-501 maintain temperature stability?
Low Temperature Circulating Chiller ADLTC-501 maintains temperature stability by continuously circulating a cooled fluid through a closed loop system. It uses sensors to monitor the fluid temperature and adjusts the refrigeration cycle accordingly. Their compressor, condenser, and evaporator work together to remove heat efficiently. A precise control system regulates the coolant flow and cooling power to match the load.
3. What are the applications of Low Temperature Circulating Chiller ADLTC-501?
Low Temperature Circulating Chiller ADLTC-501 is used in laboratories for cooling analytical instruments and chemical reactions. It supports pharmaceutical development by maintaining precise temperatures during drug formulation. In biotechnology, they help control environments for biological samples and processes.
4. What does closed circulation mean in Low Temperature Circulating Chiller ADLTC-501?
Closed circulation in Low Temperature Circulating Chiller ADLTC-501 means the system where the cooling fluid circulates continuously in a sealed loop. This design prevents contamination and evaporation of the coolant. It also helps to maintain consistent temperature and pressure throughout the system. Circulation reduces water consumption and environmental pollution. It is ideal for sensitive laboratory and industrial applications requiring stable and reliable cooling.
5. What is the cooling capacity of Low Temperature Circulating Chiller ADLTC at 10 °C?
A cooling capacity of Low Temperature Circulating Chiller ADLTC at 10 °C is 1kW. It means the chiller can remove 1 kilowatt of heat when operating at 10 degrees Celsius. This indicates the system has efficiency in maintaining low temperatures during operation. It is suitable for small to medium-scale lab and industrial cooling applications. Designed to ensure stable thermal performance for equipment requiring precise thermal control.
6. What are Low Temperature Circulating Chillers?
Low Temperature Circulating Chillers are device designed to cool and circulate fluids at low, controlled temperatures. They are commonly used in laboratories, industrial processes, and medical systems. These chillers ensure stable performance even under varying ambient conditions. They help maintain precise temperature control for sensitive equipment or reactions. Typical fluids include water, glycol mixtures, or silicone oils.
7. What are the common uses of Low Temperature Circulating Chillers?
Low Temperature Circulating Chillers are widely used in laboratories for chemical and biological research. They support pharmaceutical manufacturing processes requiring precise thermal control. In industrial settings, they cool machinery, lasers, and reaction vessels. Such systems are also used in medical equipment and diagnostic devices. Semiconductor and electronics industries use them for heat-sensitive processes.
8. How do Low Temperature Circulating Chillers work?
Low Temperature Circulating Chillers work by using a refrigeration system to cool a thermal fluid. The chilled fluid is circulated through external equipment or systems to absorb and remove heat. A pump maintains steady flow, ensuring consistent cooling performance. Thermal controllers regulate and maintain the desired fluid temperature. These systems operate continuously to deliver stable, low-temperature conditions.
| Temperature Range | -45℃ to +30℃ |
| Temperature Control | ±0.5℃ |
| Circulating Pump Max | 20 L/min, 1.5bar |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 15 kW /h |
| Water flow: | 100 L/min |
| Temperature: | 5℃ to 35℃ |
| Working Current: | 6.2 A |
| Refrigeration capacity: | 8.5 kW |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 30 kW/h |
| Water flow: | 200 L/min |
| Temperature Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 18 kW/h |
| Water flow: | 100 L/min |
| Cooling: | 6 kW (5,160 kcal/h) |
| Compressor: | Rotary Compressor |
| Refrigerant: | R22 |
| 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 Range: | 5℃ to 35℃ |
| Refrigeration capacity: | 24 kW/h |
| Water flow: | 150 L/min |
| Type: | Integrated water 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 |
| Temperature Range: | 8℃ to 30℃ |
| Refrigeration capacity: | 2.7 kW |
| Flow meter : | 2.0 L/min |
| Water tank capacity: | 120 L |
| Cooling capacity: | 22.4 kW |
| Flow rate: | 150 L/min |
| Water tank capacity: | 140 L |
| Cooling capacity: | 28 kW |
| Flow rate: | 200 L/min |
| Water tank capacity: | 40 L |
| Cooling capacity: | 5.6 kW |
| Flow rate: | 40 L/min |
| Water tank capacity: | 70 L |
| Cooling capacity: | 16.8 kW |
| Flow rate: | 100 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: | 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 |
| Temperature: | 5℃ to 30℃ |
| Cooling capacity: | 1.673 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: | 2.45 kW |
| Refrigerant: | R22 (Or R134a / R407c) |
| Temperature: | 5℃ to 30℃ |
| Cooling capacity: | 2.9 kW |
| Refrigerant: | R22 (Or R134a / R407c) |
| Temperature: | 5℃ to 30℃ |
| Cooling capacity: | 5.48 kW |
| Refrigerant: | R22 (Or R134a / R407c) |
| Temperature: | 5℃ to 30℃ |
| Cooling capacity: | 4 kW |
| Refrigerant: | R22 (Or R134a / R407c) |