Description
The Bell & Gossett 1EF050LF (Model BE608T) is a maintenance-free, all-bronze, small flex coupled in-line centrifugal pump engineered for demanding hydronic and plumbing applications where corrosion resistance and long service life are critical. Designed for commercial and light-industrial installations, this pump delivers reliable performance with minimal upkeep, thanks to its maintenance-free construction and flex-coupled design that accommodates minor shaft misalignment and reduces vibration transmission.
Key Features
- All-bronze wetted components for superior corrosion resistance in hydronic, domestic water, and fluid-handling systems
- Maintenance-free design minimizes downtime and lowers total cost of ownership
- Small flex coupled in-line configuration simplifies installation within existing piping runs
- Flex coupling absorbs vibration and accommodates minor misalignment for quieter, longer-lasting operation
- In-line design allows the pump to be installed directly in the piping without the need for a separate base or foundation
Electrical Specifications
- Motor Horsepower: 1/2 HP
- Voltage: 208-230/460 VAC
- Phase: Three Phase
- Speed: 1750 RPM
Hydraulic & Mechanical Specifications
- Impeller Diameter: 4.94 inches
- Suction Connection: 1-1/2 inches
- Discharge Connection: 1-1/2 inches
- Pump Type: Centrifugal, In-Line
- Construction: All Bronze
Ideal Applications
- Hydronic heating and cooling circulation systems
- Domestic hot and cold water recirculation
- Commercial building HVAC systems
- Light-industrial fluid transfer
- Potable water systems requiring bronze wetted components
The Bell & Gossett 1EF050LF is backed by Bell & Gossett’s long-standing reputation for quality in hydronic and fluid-handling equipment. Its three-phase motor and 1750 RPM operating speed make it well-suited for commercial environments where consistent, efficient flow is essential. The 1-1/2″ suction and discharge connections ensure compatibility with standard commercial piping configurations, and the all-bronze construction meets the demands of systems where ferrous materials are not appropriate.







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