I’m pleased to offer our GENERATOR STATOR COOLING PUMP, built for durable performance in demanding genset applications. As a High-Quality solution from a trusted Supplier, it delivers precise cooling to stator windings, lowering thermal stress and extending equipment life. I designed this pump with a rugged ceramic seal, abrasion-resistant housing, and a high-efficiency impeller to run cooler and quieter. It fits standard mounting patterns and accepts a range of flow rates, so you can tailor cooling to your generator's load profile. In field tests it reduces overheating incidents and minimizes unplanned downtime. I provide full technical support, spare parts, and fast delivery for OEMs and engineering teams alike. If you’re sourcing dependable cooling for critical projects, this pump is a smart fit—reliable, efficient, and easy to integrate. Reach out for datasheets, pricing, and a tailored quote today.
A reliable generator stator cooling pump is essential for uninterrupted power plant operation. Our pumps are engineered for continuous duty with corrosion-resistant materials, precision-balanced rotors, hydraulic-optimized impellers and robust sealing systems to minimize downtime and maintenance. Designed to fit a wide range of generator models and harsh operating environments, they deliver stable flow, low vibration and high thermal efficiency that protect stator windings and extend equipment life. Backed by advanced machining, rigorous quality control and full performance testing (hydraulic, vibration and endurance), we offer customizable solutions, OEM/ODM options and comprehensive technical documentation. Fast lead times, global logistics support and ready spare parts ensure smooth commissioning and long-term service. Global buyers seeking dependable, high-efficiency cooling pumps can request detailed specifications and performance data to evaluate fit and reliability.
| Model | Typical Generator Rating (MVA) | Cooling Circuit | Pump Type | Nominal Flow (m³/h) | Max Head (m) | Operating Temp Range (°C) | Wetted Materials | Efficiency (%) | Maintenance Interval (months) | Notes |
|---|---|---|---|---|---|---|---|---|---|---|
| GSCP-20 | 0.5 – 2 | Stator end-winding | Centrifugal (inline) | 8 | 6 | 5 – 90 | 316L SS, EPDM | 62 | 12 | Compact vertical inline for tight installations |
| GSCP-50 | 2 – 5 | End-winding / targeted jets | Magnetic-coupled centrifugal | 25 | 12 | -10 – 95 | Duplex SS, FKM | 70 | 18 | Sealless design minimizes leakage risk |
| GSCP-120 | 5 – 15 | End-winding + wedge channels | Vertical multistage | 80 | 35 | -5 – 105 | Carbon steel casing, 316L internals | 78 | 24 | Designed for higher head circulation loops |
| GSCP-300 | 15 – 40 | Full stator loop | Horizontal split-case | 200 | 20 | -10 – 120 | Cast iron body, SS internals | 82 | 24 | Split-case eases on-site servicing |
| GSCP-600 | 40 – 100 | Stator + rotor combined circuit | Axial-flow / mixed | 600 | 10 | -5 – 120 | 316L SS, polymer liners | 84 | 30 | High-flow, low-head for large units |
| GSCP-900 | 100 – 200 | High-volume stator circulation | Axial-flow (large bore) | 1,200 | 8 | -10 – 120 | Duplex SS, carbon fiber impellers | 88 | 36 | Optimized for peak volumetric efficiency |
| GSCP-1500 | 200+ | Redundant pump module (parallel) | Axial / mixed-flow modular | 2,500 | 6 | -10 – 120 | 316L SS, abrasion-resistant coatings | 85 | 30 | Modular racks for N+1 redundancy |
| GSCP-2500 | Very large plants | Whole-generator cooling loop | High-capacity axial-flow | 4,000 | 5 | -10 – 110 | 316L SS, ceramics where applicable | 83 | 30 | Engineered for continuous heavy-duty operation |