Introduction
Low Temperature Circulating Chiller offers precise temperature control of ±0.5°C for optimal cooling. It features a digital touch interface for easy and efficient management. The system ensures stable thermal regulation for sensitive applications. Its color touchscreen displays real-time performance data for better monitoring. Our chiller is used in analytical instrumentation, medical imaging, precision machining, pilot plants, aerospace testing, material stress testing, and fermentation control.
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 ideal in analytical instrumentation, medical imaging, precision machining, aerospace testing, material stress testing, fermentation control, reactor cooling, diagnostic systems and environmental simulation chambers.
Specifications
| Temperature Range | 5°C to 30°C |
| Temperature Control | ±0.5°C |
| Circulation Pump Max | 11m³/h 2 bar |
| Refrigerant | R134A/R407C |
| Cooling Capacity at 20°C | 58kW |
| Power | 400V 50HZ / 460V 60HZ |
Features
Corrosion-resistant Components
Multi-point Temperature Feedback
Energy-optimized Circulation
Advanced Integration
Low-noise Operation System
FAQs
1. Can the Low Temperature Circulating Chiller be used in medical imaging?
Yes, the chiller is ideal for medical imaging applications, where consistent and precise cooling is essential for equipment performance and safety. It ensures that sensitive imaging devices, such as and CT scanners, operate within optimal temperature ranges. The precise temperature control helps maintain the longevity of the equipment and improves image quality. Its stable thermal regulation also supports the reliability of diagnostic results, preventing any interference from temperature fluctuations.
2. What industries benefit from the Low Temperature Circulating Chiller?
This chiller is perfect for industries like analytical instrumentation, medical imaging, aerospace testing, precision machining, material testing, and fermentation control. It provides reliable and efficient cooling for sensitive processes, ensuring precise temperature regulation. In analytical instrumentation, it helps maintain stability for accurate measurements. In aerospace testing, it supports rigorous testing conditions, ensuring equipment operates optimally. In precision machining and material testing, it enhances the performance and longevity of tools and components.
3. How easy is it to manage the temperature settings?
The chiller features a digital touch interface, providing easy access and control for managing temperature settings efficiently. The intuitive design ensures quick adjustments and precise control, making it user-friendly. The touchscreen displays real-time temperature data, allowing for instant monitoring and changes. Additionally, the system ensures consistent and stable cooling for sensitive applications, minimizing the risk of temperature fluctuations.
4. Is the Low Temperature Circulating Chiller suitable for use in aerospace testing?
Yes, the chiller is designed to handle the demanding cooling needs of aerospace testing, ensuring stable performance under varying environmental conditions. It maintains precise temperature control, crucial for testing materials and components subjected to extreme conditions. The chiller’s robust design ensures reliability during long-duration tests, supporting critical aerospace research and development. Its efficient cooling system helps simulate real-world environments accurately, essential for aerospace applications.
5. Does the chiller include any safety features?
The Low Temperature Circulating Chiller includes built-in safety features such as overload protection, high/low pressure sensors, and self-diagnosis functions to ensure reliable operation. These features provide continuous monitoring to prevent potential issues, ensuring the chiller operates smoothly and safely. In the event of irregularities, the system alerts users to take corrective actions. This enhances the longevity and performance of the chiller, making it a reliable choice for sensitive applications.
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