Introduction

Low Temperature Circulating Chiller offers cooling capacity of 79kW at 20°C for optimal management. It uses eco-friendly refrigerants to minimize environmental impact. The high-flow circulation pump ensures stable coolant delivery. Its smart diagnostics enable quick error identification. Our chiller is suitable for cryogenic research, vacuum system cooling, scanner support, x-ray equipment stabilization, photonics testing, and thermal cycling in electronics.

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 suitable for cryogenic research, vacuum cooling, scanner support, x-ray stabilization, photonics testing, thermal cycling, industrial printing, calibration, and energy prototypes.

Specifications

Temperature Range 5°C to 30°C
Temperature Control ±0.5°C
Circulation Pump Max 14m³/h 2 bar
Refrigerant R410A/R134A
Cooling Capacity at 20°C 79kW
Power 400V 50HZ / 460V 60HZ

Features

Wide Voltage Compatibility

Enhanced System Diagnostics

Real-Time Data Display

High-Capacity Circulation Pump

Stable Pressure Regulation

FAQs

1. What is the power requirement of the Low Temperature Circulating chiller?

The Low Temperature Circulating chiller operates on 400V 50HZ or 460V 60HZ, offering flexibility to fit various power system configurations. This ensures compatibility with a wide range of industrial and laboratory environments. The power supply options provide stable performance in different regions, meeting local voltage standards. With its versatile power inputs, the chiller can be seamlessly integrated into existing infrastructure without the need for additional adjustments.

2. Does the Low Temperature Circulating chiller provide real-time performance data?

Yes, the Low Temperature Circulating chiller features a color touchscreen that displays real-time cooling performance data, allowing users to monitor and adjust settings as needed. This interface provides detailed insights into the system's operation, including temperature readings, pump status, and cooling capacity. The display makes it easier to ensure optimal performance, identify issues promptly, and fine-tune parameters for specific applications. It enhances user experience and operational efficiency, making maintenance and troubleshooting more straightforward.

3. What are the maximum flow rates for the chiller’s circulation pump?

The chiller features a high-flow circulation pump with a maximum flow rate of 14m³/h at 2 bar, ensuring stable coolant delivery. This robust flow rate allows for efficient heat transfer, making it suitable for high-demand applications. The pump is designed to maintain consistent coolant flow, ensuring optimal temperature control across various systems. Its capacity is ideal for cooling large volumes or systems that require high cooling efficiency and stability under varying operational conditions.

4. Can the Low Temperature Circulating chiller be used for testing electronic components?

Yes, the chiller is ideal for thermal cycling in electronics, providing precise temperature control for testing the performance and reliability of electronic components. It ensures that the components undergo rapid temperature fluctuations, simulating real-world conditions. This process helps in identifying potential failures and ensuring that the components meet stringent quality and reliability standards. The chiller's stability and precision make it an essential tool for manufacturers and researchers working with sensitive electronic devices.

5. How does the Low Temperature Circulating chiller support industrial cooling processes?

The chiller provides consistent and reliable cooling for industrial applications such as energy systems, calibration, and material stress testing, ensuring optimal operating conditions. It helps maintain precise temperatures, preventing overheating and ensuring that systems run smoothly and efficiently. The chiller is designed to handle high cooling capacities, making it suitable for demanding industrial environments. Whether it's cooling machinery, stabilizing materials, or testing equipment performance, the chiller plays a crucial role in enhancing productivity and ensuring the longevity of industrial systems.

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