| Standard air-cooled screw pump | Approximately 0.5–5 mbar (50–500 Pa) | 5–300 m³/h | Packaging, vacuum forming, material handling, drying, and general industrial duty | Simple installation; no cooling-water circuit; low utility requirements; oil-free compression | Limited heat rejection; may require derating at high ambient temperature or during continuous high-load operation | Ambient conditions, ventilation, noise, and required inlet capacity |
| Standard water-cooled screw pump | Approximately 0.01–1 mbar (1–100 Pa) | 30–1,200 m³/h | Central vacuum systems, semiconductor support processes, large-scale drying, and continuous industrial production | Efficient heat removal; stable performance at high throughput; suitable for demanding continuous duty | Needs cooling-water supply, filtration, drainage, and water-quality control; higher installation complexity | Cooling-water temperature, flow rate, water treatment, and total operating cost |
| Chemical-duty screw pump | Approximately 0.01–5 mbar depending on purge and gas load | 10–500 m³/h | Solvent evaporation, filtration, distillation, chemical processing, and corrosive or condensable service | Improved corrosion resistance; gas ballast or purge options; better tolerance of condensable vapors | Higher purchase price; purge gas consumption; materials must be matched to the process chemistry | Chemical compatibility, vapor-condensation risk, purge strategy, and exhaust treatment |
| High-vacuum optimized screw pump | Approximately 0.001–0.1 mbar (0.1–10 Pa) | 20–500 m³/h | Vacuum furnaces, coating support, freeze-drying systems, leak testing, and applications requiring lower base pressure | Lower base pressure than general-purpose models; can reduce reliance on oil-sealed backing pumps | Longer pump-down may occur with heavy gas loads; performance is sensitive to contamination and inlet conductance | Required base pressure, chamber volume, conductance, leak rate, and gas-load profile |
| Variable-speed screw pump | Approximately 0.01–5 mbar model dependent | 10–1,200 m³/h | Processes with changing vacuum demand, multi-shift production, and systems requiring energy optimization | Adjustable capacity; reduced energy use at partial load; smoother pressure control | Higher controls complexity; inverter compatibility and motor-cooling limits must be checked | Daily load variation, control range, response time, and energy-cost savings |
| Compact integrated screw package | Approximately 0.1–5 mbar (10–500 Pa) | 5–150 m³/h | Laboratory equipment, small production cells, CNC fixtures, and decentralized vacuum points | Small footprint; fast deployment; integrated controls and accessories; simplified commissioning | Less reserve capacity; limited expansion options; service access may be restricted by the enclosure | Available floor space, connection requirements, service access, and future capacity needs |