Introduction
Low Temperature Circulating Chiller a circulation pump that reaches up to 40L/min at 2 bar, ensuring efficient coolant flow. It supports long-duration experiments without temperature fluctuations. Its automatic safety shutoff feature enhances operational safety. The system operates with minimal vibration for smooth operation. Our chiller is suitable for battery research, cryogenic fluid handling, freeze-drying applications, low-temperature physics, and laboratory studies.
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 suitable for battery research, cryogenic fluid handling, freeze-drying applications, low-temperature physics, and laboratory studies requiring precise and consistent temperature control.
Specifications
| Temperature Range | -115°C to -80°C |
| Temperature Control | controller, control outlet temperature, 7-inch touch screen |
| Circulation Pump Max | 40L/min 2 bar |
| Refrigerant | Mixed refrigerant 2 |
| Cooling Capacity at -90°C | 2.8 kW |
| Cooling Capacity at -100°C | 2 kW |
| Power | 20kw max |
Features
Dynamic Temperature Control
Superior Thermal Insulation Design
Minimal Energy Consumption
Fast Cooling Capabilities
Built-In Safety Mechanisms
FAQs
1. Can the Low Temperature Circulating chiller be used for sensitive laboratory testing?
Yes, the Low Temperature Circulating chiller is perfect for laboratory testing, providing stable and precise cooling for experiments that require strict temperature control. Its advanced temperature regulation ensures consistent conditions, minimizing any fluctuations that could impact results. The chiller's reliable performance helps maintain the integrity of sensitive samples during extended testing periods. Whether it's for biological, chemical, or physical research, the chiller supports a wide range of laboratory applications.
2. What safety features does the Low Temperature Circulating chiller have?
The Low Temperature Circulating chiller is equipped with an automatic safety shutoff feature and is built to meet industry safety standards for reliable and safe operation in demanding environments. Additionally, it features overheat protection, a high-quality pressure relief valve, and is designed to minimize risks during continuous operation. These safety features ensure the chiller performs optimally without compromising safety in critical processes.
3. Does the Low Temperature Circulating chiller have a user-friendly interface?
Yes, the Low Temperature Circulating chiller is equipped with a 7-inch touch screen and digital controls, allowing for easy operation and real-time monitoring of critical parameters. The intuitive interface simplifies adjustments, offering users quick access to control settings. It also supports customization for specific needs, improving efficiency in various applications. This user-friendly design ensures seamless interaction for operators in both research and industrial environments.
4. Can the Low Temperature Circulating chiller be used in automotive testing?
Yes, the Low Temperature Circulating chiller is ideal for automotive component stress testing, providing the precise low temperatures required for rigorous testing of automotive materials. It ensures consistent and stable cooling, which is crucial for evaluating the performance and durability of materials under extreme conditions. The chiller's reliable temperature control allows for accurate simulations of real-world automotive environments, ensuring comprehensive testing.
5. What type of refrigerant does the Low Temperature Circulating chiller use?
The Low Temperature Circulating chiller uses mixed refrigerant 2, which offers efficient cooling while meeting environmental standards. This refrigerant blend ensures optimal performance across a wide temperature range, providing reliable and consistent cooling for demanding applications. Additionally, it is chosen for its low environmental impact, helping to reduce energy consumption while maintaining effective heat exchange. The use of mixed refrigerant 2 also contributes to the chiller’s ability to maintain low temperatures efficiently.
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