Description:
Disc stack bowl design, rated @ 90 GPH maximum feed. .33 HP XP motor 115/230/1/60/3450 RPM, complete with covers and plug. Very good condition.
The De Laval Gyro Tester 2 centrifuge, 316SS. is engineered for high-efficiency separation processes, making it an ideal choice for various industrial applications. With its disc stack bowl design, this centrifuge is capable of achieving a maximum feed rate of 90 gallons per hour (GPH), ensuring optimal throughput for your operations. The unit is powered by a robust .33 HP XP motor, which operates at 115/230 volts and is designed for single-phase power at 60 Hz, delivering a high rotational speed of 3450 RPM. This combination of features allows for effective separation of solids from liquids, making it suitable for industries such as food processing, pharmaceuticals, and chemical manufacturing.
Constructed from 316 stainless steel, the De Laval Gyro Tester 2 centrifuge is built to withstand the rigors of industrial use while providing excellent corrosion resistance. This material choice ensures longevity and reliability, particularly in environments where exposure to harsh chemicals is common. The centrifuge comes complete with covers and a plug, facilitating easy installation and operation. Its very good condition indicates that it has been well-maintained, making it a valuable addition to any facility looking to enhance its separation capabilities without the need for extensive refurbishment or replacement.
In addition to its impressive performance specifications, the De Laval Gyro Tester 2 centrifuge is designed with user convenience in mind. The straightforward design allows for easy access to components for maintenance and cleaning, which is crucial for maintaining operational efficiency and product quality. Whether you are scaling up production or optimizing existing processes, this centrifuge offers a reliable solution that meets the demands of modern industrial applications.
Key Features:
High-Speed Performance, Durable Construction, Easy Maintenance, Optimal Throughput, Corrosion Resistance
