Introduction
Low Temperature Circulating Chiller with a circulation pump rated at 20 safety parameters prevent operational errors.It incorporates reinforced thermal insulation for minimal heat exchange. The modular refrigeration components simplify maintenance and upgrades. Our chiller supports cold trap systems, catalyst testing, photonics cooling, thermal cycling, and medical preservation.
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 cold trap systems, catalyst testing, photonics cooling, thermal cycling, and medical preservation, ensuring stable cooling for sensitive applications in scientific, pharmaceutical, and electronics industries.
Specifications
| Temperature Range | -100°C to -65°C |
| Temperature Control | controller, control outlet temperature, 7-inch touch screen |
| Circulation Pump Max | 20L/min 2 bar |
| Refrigerant | Mixed refrigerant 1 |
| Cooling Capacity at -80°C | 1.4 kW |
| Cooling Capacity at -90°C | 1.1 kW |
| Power | 8.5kw max |
Features
Built-in Alarm System
Modular Refrigeration Components
Leak-Resistant Piping Structure
External Circulation Capability
Dual-Stage Cooling Process
FAQs
1. What types of applications is the Low Temperature Circulating Chiller suitable for?
The chiller is ideal for applications in deep freezing, organ storage, polymer analysis, catalyst testing, vacuum chamber cooling, photonics cooling, and medical sample preservation. It ensures stable, reliable cooling for sensitive processes and provides precise thermal regulation for high-performance environments. Its versatility also makes it suitable for scientific research, industrial applications, and healthcare facilities requiring consistent sub-zero temperatures. Whether for laboratory experiments or industrial setups, the chiller maintains efficient, long-term cooling performance across diverse applications.
2. What kind of circulation pump does the chiller have?
The chiller is equipped with a high-performance circulation pump rated at 20 L/min at 2 bar, ensuring efficient and reliable cooling across various applications. This pump provides stable and consistent coolant flow, which is essential for maintaining precise temperature control in both laboratory and industrial settings. Its design is optimized for energy efficiency, contributing to the chiller's overall low energy consumption. The pump is also engineered for durability, ensuring long-lasting performance and minimal maintenance requirements in demanding environments.
3. Can the chiller be used in an automated system?
Yes, the chiller can be integrated into automated systems for remote monitoring, control, and real-time adjustments, making it ideal for continuous industrial and laboratory operations. Its advanced control system, including a controller and touch screen interface, enables seamless integration with other automation tools. This functionality enhances operational efficiency, allowing for automated adjustments based on real-time data, reducing the need for manual intervention and ensuring consistent cooling performance. Additionally, the integration supports enhanced safety protocols, ensuring optimal chiller operation even in complex, high-demand environments.
4. Does the Low Temperature Circulating Chiller require a dedicated power supply?
Yes, the chiller requires a dedicated power supply, typically operating on 6 kW max, depending on the configuration and application requirements. The power requirements ensure stable and consistent performance, especially for ultra-low temperature operations. The system is designed to accommodate various voltage and frequency configurations, making it suitable for different industrial and laboratory setups. A dedicated power supply helps in managing the power load effectively, ensuring safety and preventing power fluctuations that could disrupt the chiller's cooling efficiency.
5. How does the chiller’s thermal insulation help performance?
The chiller features reinforced thermal insulation, which reduces heat exchange and improves energy efficiency, allowing for stable cooling performance and minimizing energy loss. The advanced insulation ensures that the chiller maintains consistent low temperatures without excessive energy consumption, resulting in more effective cooling for sensitive applications. By limiting external temperature fluctuations, the thermal insulation also enhances the chiller’s overall reliability and longevity.
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