Introduction
Low Temperature Circulating Chiller offers a temperature control of ±0.5°C for optimal cooling. The system is equipped with advanced smart diagnostics for quick error detection. Its compact design allows for easy installation in space-constrained environments. It supports a wide range of thermal control to meet specific application needs. Our chiller is ideal for laboratory cooling, high-performance industrial testing, environmental simulation, cryogenic research, aerospace applications, semiconductor manufacturing.
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 supports laboratory cooling, high-performance industrial testing, environmental simulation, cryogenic research, aerospace applications, semiconductor manufacturing, precision temperature control in photonics, medical imaging, and high-precision electronic applications.
Specifications
| Temperature Range | 5°C to 30°C |
| Temperature Control | ±0.5°C |
| Circulation Pump Max | 28m³/h 2 bar |
| Refrigerant | R410A/R134A |
| Cooling Capacity at 20°C | 155 kW |
| Power | 400V 50HZ / 460V 60HZ |
Features
Built-in Safety Controls
Stainless Steel Connectors
Thermal Overload Protection
Modular System Structure
Fast Installation Process
FAQs
1. Is the Low Temperature Circulating chiller suitable for cryogenic applications?
Yes, the Low Temperature Circulating Chiller is well-suited for cryogenic research and applications requiring extremely precise temperature control. It is designed to maintain stable, low temperatures in demanding environments. The chiller’s advanced control system ensures consistent thermal regulation, even in highly sensitive processes. Its use of low- refrigerants further enhances its reliability in cryogenic applications, reducing environmental impact while ensuring top-tier performance.
2. What is the cooling capacity of the Low Temperature Circulating Chiller?
The chiller offers a cooling capacity that ensures optimal performance for both laboratory cooling and high-performance industrial testing at various temperature levels. It is designed to handle high thermal loads efficiently, maintaining precise temperature control even in demanding conditions. With its robust cooling capacity, the chiller supports applications requiring rapid temperature regulation. This makes it suitable for a wide range of industries, from medical to aerospace, ensuring reliable and consistent performance.
3. Does the Low Temperature Circulating chiller offer smart diagnostics for error detection?
Yes, the Low Temperature Circulating Chiller is equipped with advanced smart diagnostics, helping to quickly detect and resolve issues, reducing downtime. The system continuously monitors key parameters and alerts users to potential malfunctions, ensuring immediate action can be taken. This proactive approach minimizes the risk of system failures and extends the chiller's lifespan. Additionally, the diagnostics interface is user-friendly, allowing for easy troubleshooting and maintenance without requiring specialized expertise.
4. What maintenance is required for the Low Temperature Circulating Chiller?
Routine maintenance includes checking coolant levels, inspecting filters, and ensuring the proper functioning of the pump and refrigerant system to ensure optimal performance. Regular cleaning of the condenser and evaporator coils is also recommended to maintain heat exchange efficiency. It is important to monitor system pressures and temperatures to detect any irregularities early. Additionally, periodic calibration of temperature sensors ensures accurate readings and reliable temperature control.
5. Can the Low Temperature Circulating chiller be used in space-constrained environments?
Yes, the compact design of the Low Temperature Circulating Chiller allows for easy installation in environments with limited space, providing reliable cooling performance. Its smaller footprint ensures it can fit into tight areas without compromising on cooling efficiency. The chiller is engineered to offer high performance despite its size, making it ideal for laboratories, industrial setups, and other facilities where space is at a premium. Additionally, its design allows for flexible placement, helping optimize the use of available space while maintaining effective thermal management.
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