Introduction
Low Temperature Circulating Chiller a cooling capacity of 1.1 kW at -90°C and 0.8 kW at -100°C for stable performance. Its durable construction withstands the rigors of continuous operation in demanding environments. It is equipped with advanced an easy-to-access filter for routine maintenance, ensuring uninterrupted operation. The system operates across a wide temperature range, making it adaptable to various industrial needs. Our chiller provides stable cooling for biological and chemical research, pharmaceuticals, and laboratory testing.
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 provides stable cooling for biological and chemical research, pharmaceuticals, and laboratory testing, enabling precise temperature control to ensure optimal conditions for preservation, studies, and analysis.
Specifications
| Temperature Range | -115°C to -80°C |
| Temperature Control | controller, control outlet temperature, 7-inch touch screen |
| Circulation Pump Max | 20L/min 2 bar |
| Refrigerant | Mixed refrigerant 2 |
| Cooling Capacity at -90°C | 1.1 kW |
| Cooling Capacity at -100°C | 0.8 kW |
| Power | 8.5kw max |
Features
Automatic Fault Detection System
Eco-Friendly Refrigerant Usage
Adjustable Pump Pressure
Fast Cooling Response Time
Advanced Temperature Regulation
FAQs
1. What makes the Low Temperature Circulating Chiller suitable for biological and chemical research?
The Low Temperature Circulating Chiller is ideal for biological and chemical research due to its precise temperature control, stable cooling capacity, and durable construction. It ensures optimal conditions for sensitive biological samples, providing consistent, ultra-low temperatures essential for preserving materials during experiments. The chiller offers high reliability, ensuring uninterrupted operation during critical research processes. Additionally, its advanced control mechanisms maintain temperature stability, contributing to accurate and reproducible results across a wide range of laboratory applications.
2. How does the Low Temperature Circulating chiller ensure minimal downtime?
The Low Temperature Circulating chiller ensures minimal downtime through its easy-access filter and reliable components designed for low maintenance, supporting continuous operation in demanding environments. Its robust construction reduces the risk of breakdowns, making it ideal for long-term use in both industrial and laboratory settings. The user-friendly design enables quick and efficient servicing, minimizing downtime. Additionally, the chiller is equipped with automatic diagnostic functions, alerting users to potential issues before they lead to significant disruptions, ensuring consistent performance.
3. What are the power requirements for the Low Temperature Circulating Chiller?
The Low Temperature Circulating Chiller operates with a maximum power consumption of 8.5 kW, ensuring efficient and reliable cooling while minimizing energy use. This power requirement allows the chiller to maintain ultra-low temperatures effectively without excessive energy consumption, making it both cost-efficient and environmentally friendly. The system is designed to deliver optimal cooling performance in industrial and laboratory environments while adhering to energy efficiency standards. Its power consumption is well-balanced, ensuring consistent performance without unnecessary strain on energy resources.
4. How is the Low Temperature Circulating chiller's performance affected by external temperature conditions?
The Low Temperature Circulating chiller performs optimally in controlled environments, but extreme external temperature conditions can slightly affect its efficiency. When exposed to very high or low ambient temperatures, the chiller may need to work harder to maintain the desired cooling levels, potentially leading to increased energy consumption. To ensure the best performance and efficiency, it is recommended to operate the chiller within the specified temperature range. This helps maintain stable cooling and prevents overloading the system, ensuring long-term reliability and consistent results.
5. Can the Low Temperature Circulating chiller be used in a controlled laboratory environment?
Yes, the Low Temperature Circulating chiller is ideal for controlled laboratory settings, where precise and stable low temperatures are required for scientific research and testing. Its ability to maintain consistent cooling ensures that sensitive samples and materials are preserved under optimal conditions. The chiller is designed to meet the rigorous demands of various laboratory applications, from biological studies to chemical analysis. Its reliable performance and advanced control systems make it a perfect choice for environments that require accurate temperature regulation and minimal fluctuations for accurate experimental results.
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