Description
The ebmpapst W6D910-GA01-01 is a heavy-duty 3-Phase AC Axial Fan, featuring a Fan Diameter measuring 910 mm. Operating on a 400 VAC nominal voltage at 50 Hz, this fan offers two power-efficient operating points: a high-speed mode delivering 2480 W of power input at 885 RPM with a 5.4 A current draw, and a low-speed mode consuming 1570 W at 685 RPM with a 2.9 A current draw. The fan is built with durable Ball Bearings and an aluminum-sheet-insert impeller with PP plastic coating, providing a robust IP54 protection rating. This fan is specifically engineered for large industrial refrigeration, heat exchangers, cooling towers, and large-scale agricultural and industrial ventilation systems that require high air volume and flexible, efficient operation.
W6D910-GA01-01 Fan Parameters
Model: W6D910-GA01-01
Manufacturer: ebmpapst
Type: AC Axial Fan (3-Phase)
Dimensions: 910 mm (Fan Diameter)
Rated Voltage: 400 VAC
Nominal Frequency: 50 Hz (Dual Speed)
High Speed Fan Speed: 885 RPM
Low Speed Fan Speed: 685 RPM
High Speed Power Input: 2480 W
Low Speed Power Input: 1570 W
High Speed Current Draw: 5.15 A
Low Speed Current Draw: 2.9 A
High Speed Max. Static Pressure: 150 Pa
Low Speed Max. Static Pressure: 90 Pa
High Speed Max. Airflow: 20770 m³/h (Free Air)
Low Speed Max. Airflow: 15980 m³/h (Free Air)
Bearing Type: Ball Bearing
Termination: Terminal Box
Material of Blades: Aluminium sheet insert, coated in PP plastic
IP Rating: IP54
Insulation Class: F
Operating Temperature: -40 to 50 °C
Motor Protection: Thermal Overload Protector (TOP) brought out
Application
The W6D910-GA01-01 is designed for massive industrial applications that demand high-volume airflow and efficient dual-speed operation. Its primary uses are in industrial refrigeration (e.g., condensers, evaporators, freezing tunnels), large commercial air conditioning units, and industrial process cooling systems, where the ability to switch between two distinct performance levels allows for flexible, reliable, and energy-saving operation under varying load and environmental conditions.







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