Used ALCATEL / ADIXEN / PFEIFFER ATH 1000M #147550 for sale

ALCATEL / ADIXEN / PFEIFFER ATH 1000M
ID: 147550
Turbo pump with controller and cables.
ALCATEL / ADIXEN / PFEIFFER ATH 1000M is a high-performance, robust mechanical booster pump designed to provide reliable high pumping speeds and improved efficiency for high-vacuum applications. Featuring a rugged cast iron housing, ADIXEN ATH 1000M is highly resistant to corrosion and can endure the toughest industrial conditions. Powered by a highly efficient and long-life synchronous motor, ALCATEL ATH 1000M is capable of operating continuously despite frequent and rapid changes in temperature or pressure. PFEIFFER ATH 1000M offers maximum flow rates up to 1000 liters per minute, making it well-suited for a variety of vacuum-related tasks. Furthermore, ATH 1000M utilizes a series of dual-stage rotary vane pumps to create a powerful vacuum up to 0.5 mbar. ALCATEL / ADIXEN / PFEIFFER ATH 1000M offers a number of features which make it attractive to users. Its quiet operation is achieved thanks to its low-vibration design, while its mechanical operation and closed-loop system help to reduce power consumption and run-time longer. ADIXEN ATH 1000M can be operated in either a one- or two-stage configuration, allowing users to achieve just the right vacuuming levels. Additionally, ALCATEL ATH 1000M is designed with a robust air-cooled system which ensures reliable operation over long periods of time. PFEIFFER ATH 1000M can also be controlled using a variety of standard control systems, allowing users to integrate it into complex processes. ATH 1000M is a well-rounded choice for industrial vacuum applications. Its rugged construction and long-life components make it a reliable and cost-effective choice for the most demanding requirements. It is ideal for tasks such as industrial vacuum packaging, drying, degassing, distillation, evacuation of process vessels. With its wide range of functions and reliable performance, ALCATEL / ADIXEN / PFEIFFER ATH 1000M can help users to optimize their vacuum-related processes and achieve improved efficiency.
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