Introduction
Low Temperature Circulating Chiller fast and reliable heating with its 3.5 kW heating power. It incorporates built-in high and low pressure sensors for enhanced operational safety. Its -based logic enhances automation and control reliability. The refrigeration cycle is optimized for energy efficiency. Our chiller supports pharmaceutical production by maintaining precise temperature control during mixing, crystallization, and fermentation.
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 supports pharmaceutical production by maintaining precise temperature control during mixing, crystallization, and fermentation, helping ensure product quality, batch consistency, and regulatory compliance.
Specifications
| Temperature Range | 5°C to 90°C |
| Temperature Control | controller, control the water tank outlet temperature |
| Temperature Control Accuracy | ±0.3°C |
| Circulation Pump Max | 20L/min 2 bar |
| Refrigerant | A/R407C |
| Heating Power | 3.5 kW |
| Cooling Capacity at 10°C | 4 kW |
| Power | AC380V 50HZ / AC460V 50HZ |
Features
Advanced Self-Diagnosis Feature
Comprehensive Overload Protection
Reliable Thermal Protection
Cold Rolled Steel Shell
Dual Heating Cooling Mode
FAQs
1. What is the temperature range of the Low Temperature Circulating Chiller?
The Low Temperature Circulating Chiller offers a temperature range from 5°C to 90°C, ensuring precise control for various applications. This wide range allows the chiller to accommodate both heating and cooling requirements. It is designed for applications that require consistent and accurate temperature regulation. The chiller's versatility makes it ideal for industries such as pharmaceuticals, biotechnology, and chemical processing. With reliable performance across this range, it helps maintain the integrity of sensitive processes.
2. What is the heating power of the Low Temperature Circulating Chiller?
The Low Temperature Circulating Chiller provides 3.5 kW of heating power for fast and reliable heating. This high heating capacity ensures rapid temperature adjustments, improving overall process efficiency. It is designed to handle both cooling and heating cycles effectively, making it versatile for various industrial applications. Whether for maintaining precise temperatures or achieving quick temperature changes, this chiller offers consistent and dependable performance.
3. How does the Low Temperature Circulating Chiller support pharmaceutical production?
The Low Temperature Circulating Chiller maintains precise temperature control during processes like mixing, crystallization, and fermentation, which helps ensure product quality and regulatory compliance. By maintaining consistent temperatures, the chiller ensures that sensitive pharmaceutical processes are carried out under optimal conditions. This precision helps improve batch consistency, reduce variability, and enhance the overall reliability of production. Additionally, the chiller plays a crucial role in meeting stringent regulatory requirements for temperature-sensitive products in the pharmaceutical industry.
4. What safety features does the Low Temperature Circulating Chiller include?
It comes with built-in high and low pressure sensors, offering enhanced operational safety during use. These sensors help monitor and maintain optimal pressure levels, preventing potential damage to the system. The chiller also includes overload protection and thermal protection devices, ensuring reliable performance under various operating conditions. Additionally, the unit is equipped with self-diagnosis functions that provide real-time alerts, allowing for prompt identification and resolution of any issues.
5. What type of refrigerant does the Low Temperature Circulating Chiller use?
The Low Temperature Circulating Chiller uses A/R407C refrigerants for efficient cooling. These refrigerants are known for their excellent heat transfer properties and energy efficiency, ensuring optimal performance while maintaining environmental responsibility. A and R407C are also commonly used in cooling systems, as they have a lower environmental impact compared to older refrigerants. By using these eco-friendly refrigerants, the chiller offers both reliable performance and compliance with global environmental standards.
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