Used OERLIKON / LEYBOLD WSU 1001H #9184719 for sale

Manufacturer
OERLIKON / LEYBOLD
Model
WSU 1001H
ID: 9184719
Vintage: 2014
Roots pump 2014 vintage.
OERLIKON / LEYBOLD WSU 1001H is a two stage rotary vane pump designed for use in high-vacuum and conductive applications. The design of LEYBOLD WSU 1001H combines a low-drive frequency with a high volume flow rate, allowing it to achieve vacuums down to 0.2 mbar. OERLIKON WSU 1001H is capable of handling gas, air, and other volatile gases with special seals. The exterior of the unit is resistant to corroding agents and house a reliable motor for longer service life and higher efficiency. WSU 1001H consists of two stages, a scrollable turbine and an impeller-driven primary chamber. The scrollable turbine is used to generate a low-frequency drive, allowing a higher level of suction pressure. This is coupled with the high-speed impeller and assisted by the scroll system to produce a high volume flow rate. The impeller is specially designed for optimal performance, and is made from high-grade stainless steel for longevity and reliability. OERLIKON / LEYBOLD WSU 1001H also features a built in check valve in the second stage, that ensures that the pump remains stable at all vacuum levels. This is a critical component for maintaining high performance in demanding environments. In addition, the design of the unit also features an efficient thermostatic bypass valve, ensuring that pump temperatures remain within specification. LEYBOLD WSU 1001H also features a built-in dampening system, which works to reduce noise and vibration. This allows for reliable operation in difficult environments, and noise levels as low as 62 dB. Overall, OERLIKON WSU 1001H is a robust and highly efficient two stage rotary vane pump. Thanks to its combination of low-drive frequencies and high volume flow rate, WSU 1001H is capable of experiencing vacuums down to 0.2 mbar. The special seals, thermostatic bypass valve, and built-in check valve and dampener work together to ensure optimal performance in any conditions.
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