Gorman Rupp 14825-714 Oscillating Pump 230V Self-Priming
The Gorman Rupp 14825-714 oscillating pump is a compact, self-priming solution engineered for low-flow fluid transfer and circulation applications. Designed with an elastomeric impeller and electromagnetic oscillation system, this pump delivers consistent performance without dynamic seals, reducing maintenance and enhancing reliability in demanding environments.
Ideal for OEM integration, laboratory systems, and chemical handling, the 14825-714 provides smooth, low-pressure operation with excellent corrosion resistance thanks to its polypropylene and EPDM construction. Its quiet leaf spring design and lightweight build make it especially suited for precision applications such as medical devices, analytical equipment, and detergent dispensing systems.
Key Features
- Self-priming up to 48 inches
- Low flow range: approx. 0.2 – 0.8 GPM
- Corrosion-resistant polypropylene construction
- No dynamic seals for reduced maintenance
- Quiet operation with leaf spring mechanism
- Compact, lightweight design (~1 lb)
- Continuous duty capability
Applications
- Chemical transfer and mixing
- Laboratory and analytical equipment
- Medical and scientific devices
- Detergent dispensing systems
- Film and microfilm processing
- OEM fluid circulation systems
Specifications
- Model: 14825-714
- Voltage: 230V, 50/60 Hz
- Flow Rate: 0.2 – 0.8 GPM
- Max Head: ~8.3 ft
- Port Size: 7/16" (12 mm) ID hose (inlet/outlet)
- Max Fluid Temperature: 104°F (40°C)
- Materials: Polypropylene, EPDM
- Dimensions: ~7.12" L x 2.38" W x 2.3–2.7" H
FAQs
What type of fluids can the 14825-714 pump handle?
It is designed for water-like fluids and compatible chemicals, with reduced performance at higher viscosities.
Is the pump suitable for continuous operation?
Yes, oscillating pumps in this series are designed for continuous duty in OEM and industrial systems.
Does this pump require priming?
No, it is self-priming up to approximately 48 inches under normal conditions.
What makes oscillating pumps different from centrifugal pumps?
They use an electromagnetic oscillating impeller rather than a rotating impeller, allowing compact design and low-flow precision.
Can this pump be used for metering applications?
It is not ideal for precise metering due to natural flow variation, but works well for transfer and circulation.