For the use of the two to three-stage dry compressing "DS" and "RUTA" pump systems, we combine the DRYVAC backing pumps with RUVAC WA(U), WS(U), WH(U) and RA. A single flow layout can achieve pumping speeds of 250 to 16,000 m³/h. Higher pumping speeds can be achieved by arranging pumps in parallel. The achievable working pressures are defined by the number of pump stages or parallel pump systems.
Like world-class sprinters, vacuum pumps often need to deliver powerful bursts of energy on demand. For applications like load lock for inline coaters, those peaks are traditionally covered by connecting several, less powerful pumps and running them at a constant speed – even during idle times. But what if load locks for inline coaters in the architectural glass, solar, display and other markets, could be made more efficient thanks to fewer, more powerful pumps that “knew” when to run hard and when to save energy? That, in a nutshell, is what motivated Leybold to create the world’s first intelligent vacuum pump: the DRYVAC PowerBoost system.
Based on the longstanding experience in the design and manufacture of vacuum pump systems, Leybold offers standardized pump systems which will match most applications – the TRIVAC pump systems. TRIVAC pump systems excel by being compact, reliable and service-friendly.
SOGEVAC vacuum systems are based on SOGEVAC rotary vane pumps in combination with Roots blowers from the RUVAC WA, WS or WH families are the industrial standard for all moderately demanding processes. A continually increasing number of applications in industry and research are relying on vacuum technology. Thus, widely differing requirements have emerged regarding the vacuum generating systems.
Turbomolecular pump systems for researchers relying on vacuum The smart high vacuum TURBOLAB systems are compact, fully assembled and ready-to-operate! Typical applications
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