Introduction
Low Temperature Circulating Chiller offers a temperature range of 5°C to 30°C for optimal management. The system delivers rapid cooling performance with minimal energy consumption. Its robust operation is ideal for temperature-sensitive materials and instruments. It is designed with environmental responsibility, using low- refrigerants. Our chiller is used in industrial testing, environmental simulation, high-precision thermal control, medical equipment stabilization.
This laboratory chillers is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Low Temperature Circulating Chiller is used in laboratory cooling, industrial testing, environmental simulation, high-precision temperature control, medical equipment stabilization, cooling for analytical instruments, semiconductor testing, aerospace R&D.
Specifications
| Temperature Range | 5°C to 30°C |
| Temperature Control | ±0.5°C |
| Circulation Pump Max | 19m³/h 2 bar |
| Refrigerant | R410A/R134A |
| Cooling Capacity at 20°C | 110 kW |
| Power | 400V 50HZ / 460V 60HZ |
Features
Smooth Operation Cycle
Touch Interface Controls
Protective Circuit Integration
Fast Error Detection
Safety Shutdown Feature
FAQs
1. What are the main applications of Low Temperature Circulating Chiller?
It is ideal for laboratory cooling, industrial testing, environmental simulation, medical equipment stabilization, and high-precision temperature control. The chiller is also commonly used in semiconductor testing and aerospace R&D. It supports reactor cooling, diagnostic systems, photonics experiments, and thermal cycling. Additionally, it is suitable for energy prototype testing, calibration, and other processes requiring accurate and stable thermal management.
2. Can the Low Temperature Circulating Chiller be used in a space-constrained environment?
Yes, the compact design of the Low Temperature Circulating Chiller allows for easy installation in environments with limited space, while still maintaining high-performance cooling and temperature control. Its space-saving structure makes it an ideal choice for labs, industrial settings, or research environments where space is limited but performance cannot be compromised. The chiller is engineered to ensure optimal operation in confined areas without sacrificing cooling efficiency. Its flexibility in installation allows for integration into various systems and setups.
3. Can Low Temperature Circulating Chiller be integrated with other systems?
Yes, it can be integrated with various laboratory and industrial systems that require precise thermal management. It is compatible with analytical instruments, reactors, diagnostic equipment, and thermal testing setups. The chiller supports remote control and monitoring capabilities for enhanced system integration. Its flexible interface allows seamless connectivity with automation systems in research and production environments.
4. What kind of maintenance does the Low Temperature Circulating Chiller require?
Routine maintenance includes checking coolant levels, inspecting filters, and ensuring proper airflow and refrigerant pressure. Periodic cleaning of heat exchangers and verification of pump performance are also recommended. Electrical connections and control systems should be inspected regularly to ensure safe operation. Following the manufacturer’s maintenance schedule helps maintain long-term efficiency and prevents unexpected downtime.
5. Is the Low Temperature Circulating Chiller suitable for semiconductor or aerospace applications?
Yes, it is widely used in semiconductor testing, aerospace R&D, and other high-precision environments. Its stable temperature control ensures reliability in sensitive processes like chip fabrication and avionics testing. The chiller supports thermal cycling, vacuum chamber cooling, and materials stress testing. Its ability to maintain consistent temperatures enhances performance and accuracy in critical research and production setups.
6. What type of circulation pump does the chiller use?
It features a high-flow circulation pump designed to maintain stable coolant delivery across various applications. The pump ensures consistent flow rates, supporting uniform temperature distribution throughout the system. It is built to handle continuous operation under demanding conditions. The pump’s robust construction contributes to the chiller’s overall reliability and efficiency in precision cooling tasks.
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