Introduction

Low Temperature Circulating Chiller steady flow with a circulation rate of up to 35L/min at 2 bar for efficient cooling. The internal components are designed for energy-efficient performance. It accommodates dual voltage setups for versatile installation. Its wide temperature capability supports diverse research and industrial needs. Our chiller is used in pharmaceutical synthesis, polymer development, and chemical reactions.

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 pharmaceutical synthesis, polymer development, and chemical reactions, maintaining precise temperatures essential for consistency, repeatability, and safety in laboratories and pilot-scale facilities.

Specifications

Temperature Range -40°C to 90°C
Temperature Control ±0.3°C
Circulation Pump Max 35L/min 2 bar
Refrigerant A/R507C
Evaporator Plate Heat Exchanger
Shell material Cold rolled sheet (REL7035)
Heating Power 5.5 kW
Cooling Capacity at -15°C 4.5 kW
Cooling Capacity at -35°C 1.5 kW
Power AC380V 50HZ / AC460V 50HZ

Features

Optimized Thermal Performance

High-Capacity Heat Output

Industrial-Grade Flow Rate

Adaptive Voltage Configuration

Robust Mechanical Structure

FAQs

1. What type of refrigerant does the Low Temperature Circulating Chiller use?

The Low Temperature Circulating Chiller uses environmentally friendly refrigerants, A and C, providing efficient cooling performance while minimizing environmental impact. These refrigerants are non-ozone-depleting and offer low global warming potential, ensuring the chiller meets modern environmental standards. Their use helps reduce energy consumption, making the system both eco-friendly and cost-effective. The chiller is designed to support sustainable practices in both industrial and laboratory settings.

2. Is the Low Temperature Circulating Chiller suitable for dual voltage operation?

Yes, the Low Temperature Circulating Chiller is designed for dual voltage setups, making it versatile for installation in different regions and applications. It supports both AC380V 50Hz and AC460V 50Hz, allowing it to adapt to varying power supply requirements. This feature ensures compatibility with global standards, making the chiller suitable for international use in both research and industrial environments. The dual voltage capability enhances installation flexibility and convenience.

3. What is the temperature range of the Low Temperature Circulating Chiller?

The Low Temperature Circulating Chiller offers a wide temperature range from -40°C to 90°C, supporting diverse industrial and research needs for precise temperature control. This extensive range makes it suitable for a variety of applications, including chemical processes, material testing, and environmental simulations. It ensures that the chiller can maintain the required conditions for different experiments or production processes. The flexibility in temperature control also enhances its versatility in meeting specific cooling and heating demands.

4. What is the shell material of the Low Temperature Circulating Chiller?

The Low Temperature Circulating Chiller features a cold-rolled sheet (REL7035) construction, offering durability and corrosion resistance, even in harsh environments. This material ensures the chiller maintains its integrity under challenging conditions, such as exposure to chemicals or fluctuating temperatures. The corrosion-resistant properties enhance its longevity, reducing the need for frequent maintenance. Additionally, the robust construction contributes to the overall stability and reliability of the chiller, making it a dependable choice for demanding industrial and laboratory applications.

5. How often should the refrigerant be replaced?

The refrigerant should only be replaced if there is a leak or significant drop in cooling performance. Regular checks during maintenance are recommended to ensure the system operates efficiently. If the refrigerant level decreases, it may indicate a potential leak or an issue with the system that needs attention. Keeping the refrigerant at optimal levels ensures maximum cooling efficiency and prevents unnecessary wear on the system. Proper maintenance schedules help prolong the lifespan of the chiller and maintain its energy efficiency.

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