



SAER AP 97 A 1.5HP 1KW PMP
Configurer
- Pump Model:AP 97 A
- Rated Motor Power:1 kW (IE3 Efficiency Class)
- Maximum Flow:30 m³/h
- Operating Flow:17.2 m³/h
- Maximum Head:15.9 m
- Operating Head:11 m
- Speed:2850 rpm (at 50 Hz)
- Shaft Power (P2):0.855 kW (max)
- Efficiency:57.2% (peak)
- Connection Size:G2\
- Rotation:Clockwise from drive end
- Fluid Compatibility:Water at 20°C
- Operating Range:6-30 m³/h flow capacity
- Head Range:Up to 15.9 meters
- Power Range:0.61-0.855 kW shaft power
- Efficiency Curve:Maintains high efficiency across broad operating range

The AP 97 A is a high-efficiency centrifugal pump designed for optimal water transfer applications. With a peak efficiency of 57.2% and a compact design, this pump delivers reliable performance across a wide operating range. Featuring a 1kW IE3 premium efficiency motor and versatile multi-frequency capability, the AP 97 A is engineered for energy-efficient operation in commercial water systems, HVAC applications, and general industrial water transfer where both performance and energy savings are prioritized.
Key Features
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Premium IE3 Efficiency: High-efficiency motor design reduces energy consumption and operating costs
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Optimized Hydraulic Performance: 57.2% peak efficiency across the operating range for maximum energy savings
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Multi-Frequency Operation: Compatible with 35-50 Hz operation for flexible application across different regions and systems
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Compact Design: Space-efficient construction suitable for installations with limited space
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Wide Operating Range: Flow capacity from 6-30 m³/h with head up to 15.9 meters
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Standard Pipe Connections: G2" connections for easy integration into existing piping systems
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Reliable Performance: Consistent operation across varying flow conditions with stable power consumption
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Low NPSH Requirements: Suitable for systems with limited suction head conditions
This high-efficiency pump is ideal for building services, water supply systems, pressure boosting, and general water transfer applications where energy efficiency and reliable performance are essential requirements.