Cascade Refrigeration Technology
Utilizes a dual-stage compressor system to achieve ultra-low temperatures efficiently. This architecture ensures rapid pull-down times and maintains deep cryogenic levels even under heavy laboratory loads.

An ultra-low temperature chiller (ranging from -80°C to -40°C) is a machine capable of lowering the temperature of solids, gases, or liquids to extremely low levels. Its operating principle is primarily based on vapor compression refrigeration; specifically, a cascade refrigeration design is employed for temperatures as low as -50°C, while a single-unit, two-stage compression system is utilized for temperatures above -40°C. The underlying mechanism involves compressing a refrigerant into a high-temperature, high-pressure gas; this gas is then cooled by a condenser into a high-pressure liquid, which subsequently expands through an expansion valve into a low-temperature, low-pressure gas—thereby achieving the objective of lowering the target object's temperature. While this principle is similar to that of conventional refrigeration systems, our company distinguishes itself through its superior expertise and performance in the ultra-low temperature domain.
Ultra-low temperature chillers are widely utilized in research and development across various fields, including life sciences, chemistry, and physics. For instance, in the biomedical sector, these chillers are indispensable for the preservation of cells, lyophilized samples, tissues, organs, and even entire organisms; indeed, many groundbreaking advancements in biomedical research would be impossible without the application of ultra-low temperature technology. Furthermore, ultra-low temperature chillers are extensively integrated into manufacturing processes within industries such as semiconductors and optoelectronics—specifically for applications involving ultra-high vacuum cooling and pulse valve refrigeration.
The advent of ultra-low temperature chillers has brought immense convenience to scientific research and industrial development. Although these units were considered relatively expensive equipment just a decade ago, years of dedicated R&D by our company's senior engineers have resulted in a significant reduction in manufacturing costs; nevertheless, users still require trained professionals to handle their operation and maintenance.
Cooling capacity :
1 ~ 300 kWMOQ :
1 unitUltra-Low Temperature Refrigeration System
The HX series ultra-low temperature system is designed for demanding industrial and scientific research applications. Featuring advanced cascade refrigeration technology, it provides stable and reliable cooling for materials testing, chemical synthesis, and pharmaceutical processing under extreme thermal conditions.
Utilizes a dual-stage compressor system to achieve ultra-low temperatures efficiently. This architecture ensures rapid pull-down times and maintains deep cryogenic levels even under heavy laboratory loads.
Built with high-quality global brand compressors and components. The system includes multi-layer safety protections for pressure, temperature, and electrical load to ensure 24/7 continuous operation.
Equipped with a microcomputer control system and touch-screen interface. It allows for precise PID temperature adjustment and real-time monitoring of operational data for specialized research needs.
| System Variant | Technical Features & Targeted Applications |
|---|---|
| -80℃ Cryogenic Chiller | Standard cascade system for pharmaceutical reactors and low-temp material storage. |
| -120℃ Ultra-Low System | Specialized three-stage cascade refrigeration for extreme scientific aerospace testing. |
| Explosion-Proof ULT | Fully Ex-rated components for hazardous chemical environments and oil processing. |
| Water-Cooled Screw Unit | High-capacity low-temperature cooling for large-scale industrial production lines. |
| Air-Cooled Integrated | Compact design for laboratories with limited space, no cooling tower required. |
| Custom Skid-Mounted | Turnkey integrated solutions including pumps and tanks for rapid installation. |
High Cooling Efficiency |
Stable Temp Control |
Energy Optimization |
Long-term Durability |
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