Introduction

Low Temperature Circulating Chiller ultra-low temperature operations from -115°C to -80°C for demanding applications. The design allows for easy maintenance, reducing system downtime. Its advanced insulation minimizes thermal loss and energy waste. It is suitable for long-duration experiments requiring steady low temperatures. Our chiller is used in superconductor research, low-thermal physics experiments and automotive component stress 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 is used in superconductor research, low-temperature physics experiments, automotive component stress testing, thermal cycling studies, and controlled cooling for metallurgical processes.

Specifications

Temperature Range -115°C to -80°C
Temperature Control controller, control outlet temperature, 7-inch touch screen
Circulation Pump Max 30L/min 2 bar
Refrigerant Mixed refrigerant 2
Cooling Capacity at -90°C 1.7 kW
Cooling Capacity at -100°C 1.2 kW
Power 14kw max

Features

Integrated Safety Functions

Quiet Operational Design

Optimized Refrigerant Usage

Enhanced Temperature Accuracy

Programmable Control Options

FAQs

1. Can the Low Temperature Circulating chiller be used in applications that require precise temperature control?

Yes, the chiller offers precise temperature control, making it ideal for scientific and industrial applications requiring consistent low-temperature conditions. It utilizes a controller to ensure accurate outlet temperature regulation, which is crucial for maintaining stability in experiments. The system’s advanced design guarantees minimal temperature fluctuations, ensuring reliable results in sensitive applications. Whether for cryogenic research or pharmaceutical testing, it provides the exact cooling performance needed for high-precision processes.

2. What industries can benefit from the Low Temperature Circulating Chiller?

It is perfect for industries like pharmaceuticals, cryogenic research, automotive, and material testing that requires stable and precise low temperatures. The chiller is also beneficial for sectors such as electronics manufacturing, battery research, and food storage, where temperature stability is critical for product integrity and performance. Its versatility allows it to be used in a wide range of scientific research and industrial applications that demand ultra-low temperature environments for optimal results.

3. Does the Low Temperature Circulating chiller have any energy-saving features?

Yes, the Low Temperature Circulating chiller is designed with advanced insulation and high-efficiency components to minimize thermal loss and energy consumption. It also incorporates a smart control system that optimizes energy usage based on the operational load, ensuring the chiller operates at peak efficiency. The use of mixed refrigerants further enhances the chiller’s energy performance by enabling faster cooling with lower energy consumption.

4. Can the Low Temperature Circulating chiller handle long-duration experiments?

Yes, the Low Temperature Circulating chiller is specifically designed to handle long-duration experiments while maintaining stable low temperatures over extended periods. Its robust construction and reliable performance ensure that temperature consistency is preserved throughout the entire duration of the experiment. With its efficient cooling system and durable components, the chiller can operate continuously without compromising performance.

5. How does the Low Temperature Circulating chiller ensure safety in demanding environments?

The Low Temperature Circulating chiller is built to meet industry safety standards, ensuring reliable and safe operation in challenging environments. It features over-temperature protection, automatic shutdown mechanisms, and high-quality components designed to prevent system failures. Additionally, its easy-to-access filter allows for regular maintenance, reducing the risk of malfunctions. The robust insulation and well-sealed construction also protect against potential leaks and environmental hazards.

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