
The NASH TC is a two-stage liquid ring vacuum pump designed for medium to high-capacity applications where deeper vacuum levels and stable performance are required.
Its two-stage configuration improves overall efficiency and enables lower absolute pressures compared to single-stage designs, making it well suited for more demanding process conditions.

By utilizing a modular, horizontally split casing design, the TC simplifies maintenance access and supports easier integration into existing systems or engineered packages. The inherent liquid ring technology allows the pump to handle saturated gases, vapors, and entrained liquids without internal damage or performance instability.
Built for continuous-duty operation, the TC series delivers reliable vacuum performance in processes where consistency, durability, and resistance to contamination are critical.
Key Characteristics
- Suction Capacity: Medium to high-capacity ranges depending on configuration
- Vacuum Range: Capable of achieving deeper vacuum levels than single-stage pumps
- Design: Two-stage liquid ring with horizontally split casing
- Construction: Robust materials suited for industrial environments
- Operation: Continuous-duty performance with stable vacuum control
- Serviceability: Simplified maintenance with accessible internal components
Ideal Applications
The NASH TC series provides a practical solution where deeper vacuum capability, process reliability, and long-term operational stability are required in demanding industrial environments.
The TC two-stage design is particularly effective in processes requiring deeper vacuum levels and consistent performance under wet or contaminated conditions. It is commonly applied in:
- Chemical processing and solvent recovery
- Power generation (condenser air removal)
- Pulp and paper vacuum systems
- Food processing and packaging
- Central vacuum systems for industrial plants
Industries Served
- Chemical Processing
- Power Generation
- Pulp and Paper
- Food & Beverage
- Industrial Manufacturing
- Environmental & Wastewater












