Magnetic Bearing System - High Technology Solution
The magnetic bearing system is made by magnets placed in radial and axial position, connected with an electronic controller which distributes the power and reads the field data, and auxiliary bearings for resting position.
The magnetic bearing system creates an electromagnetic field which maintains the shaft in a contactless position, allowing its rotation without any friction or resistance.
The magnetic field is able to control and maintain with high precision the position of the shaft supporting the impeller.
The precise positioning of the impeller allows to reduce the air gap with the casing, and therefore the pressure losses, resulting in a compressor with higher power efficiency.
The energy required by the positioning system is very low, less than 400W, making the magnetic bearing highly competitive compared to other technologies.
The magnetic bearing controller records and stores the geometrical data. The correct position is therefore immediately restored at each start.
The magnetic bearing system with contactless and efficient control is designed for maintenance-free operation and unlimited start and stop cycles.
The magnetic bearing system can electronically adapt a damping effect on the rotational vibration, depending on the bearing type and system characteristics. This makes it possible to operate smoothly through the system’s critical speeds.
The load capacity of a magnetic bearing is independent of the rotational speed.
The auxiliary bearings included in the magnetic bearing system offer a safe resting position in case of system failure, for example when reverse rotation occurs due to valve failure.
Thanks to magnetic bearing technology, mechanical components such as the transmission, gaskets, and gearbox are no longer required; the system features a completely contactless and oil-free design.
HAUS Turbo Blower systems are widely used, especially in aeration tanks of wastewater treatment plants, and offer an effective and reliable solution in many industrial processes requiring aeration.
Magnetic bearing blower technology significantly reduces operating costs by providing up to 40% energy savings compared to conventional blower systems. Thanks to the advanced control infrastructure, flow rate and energy optimization can be achieved depending on the oxygen demand of the process; this increases both energy efficiency and process stability.
Technical Features and Advantages
• Operational capability across a wide capacity range
• Low noise level
• Smart control systems
• Remote monitoring and automation integration
Thanks to their magnetic bearing structure, these lubrication-free systems have low maintenance and operating costs, and this advantage has been proven in field applications. Their compact design allows for easy and flexible installation in confined spaces.
HAUS Turbo Blower is offered at competitive prices, backed by domestic production and a mass production infrastructure that meets high quality standards. With its high energy efficiency and low maintenance requirements, it is an innovative solution that quickly amortizes the initial investment and sustainably increases process efficiency.
HAUS continues to develop products focused on energy saving, environmental efficiency, and advanced process technologies to support the sustainable growth of its customers.
MODELLI PRODOTTO
| SPECIFICHE TECNICHE | |
| DIMENSIONI (Lunghezza * Larghezza, Altezza) | 2240x1680, H2200 mm |
| PESO | 2100 kg |
| PRESSIONE DI SCARICO MASSIMA | 800 mbar |
| POTENZA ALBERO MOTORE | 170 kW |
| POTENZA MASSIMA PACCO | 200 kW |
| PORTATA MINIMA | 3.000 m³/h |
| PORTATA MASSIMA | 9.000 m³/h |
| SPECIFICHE TECNICHE | |
| DIMENSIONI (Lunghezza * Larghezza, Altezza) | 1530x1680, H2200 mm |
| PESO | 1800 kg |
| PRESSIONE DI SCARICO MASSIMA | 800 mbar |
| POTENZA ALBERO MOTORE | 200 kW |
| POTENZA MASSIMA PACCO | 200 kW |
| PORTATA MINIMA | 3.000 m³/h |
| PORTATA MASSIMA | 9.500 m³/h |
| SPECIFICHE TECNICHE | |
| DIMENSIONI (Lunghezza * Larghezza, Altezza) | 2480x1680, H2200 mm |
| PESO | 2600 kg |
| PRESSIONE DI SCARICO MASSIMA | 800 mbar |
| POTENZA ALBERO MOTORE | 250 kW |
| POTENZA MASSIMA PACCO | 300 kW |
| PORTATA MINIMA | 4.800 m³/h |
| PORTATA MASSIMA | 13.500 m³/h |
| SPECIFICHE TECNICHE | |
| DIMENSIONI (Lunghezza * Larghezza, Altezza) | 2480x1680, H2200 mm |
| PESO | 3000 kg |
| PRESSIONE DI SCARICO MASSIMA | 800 mbar |
| POTENZA ALBERO MOTORE | 350 kW |
| POTENZA MASSIMA PACCO | 400 kW |
| PORTATA MINIMA | 5.750 m³/h |
| PORTATA MASSIMA | 17.300 m³/h |
| SPECIFICHE TECNICHE | |
| DIMENSIONI (Lunghezza * Larghezza, Altezza) | 2480x1680, H2200 mm |
| PESO | 2600 kg |
| PRESSIONE DI SCARICO MASSIMA | 1200 mbar |
| POTENZA ALBERO MOTORE | 250 kW |
| POTENZA MASSIMA PACCO | 300 kW |
| PORTATA MINIMA | 4.200 m³/h |
| PORTATA MASSIMA | 12.000 m³/h |
| SPECIFICHE TECNICHE | |
| DIMENSIONI (Lunghezza * Larghezza, Altezza) | 1530x1680, H2200 mm |
| PESO | 1800 kg |
| PRESSIONE DI SCARICO MASSIMA | 1200 mbar |
| POTENZA ALBERO MOTORE | 200 kW |
| POTENZA MASSIMA PACCO | 200 kW |
| PORTATA MINIMA | 2.800 m³/h |
| PORTATA MASSIMA | 8.500 m³/h |
| SPECIFICHE TECNICHE | |
| DIMENSIONI (Lunghezza * Larghezza, Altezza) | 2240x1680, H2200 mm |
| PESO | 2100 kg |
| PRESSIONE DI SCARICO MASSIMA | 1200 mbar |
| POTENZA ALBERO MOTORE | 170 kW |
| POTENZA MASSIMA PACCO | 200 kW |
| PORTATA MINIMA | 2.800 m³/h |
| PORTATA MASSIMA | 8.000 m³/h |
| SPECIFICHE TECNICHE | |
| DIMENSIONI (Lunghezza * Larghezza, Altezza) | 2480x1680, H2200 mm |
| PESO | 3050 kg |
| PRESSIONE DI SCARICO MASSIMA | 1600 mbar |
| POTENZA ALBERO MOTORE | 350 kW |
| POTENZA MASSIMA PACCO | 400 kW |
| PORTATA MINIMA | 3.000 m³/h |
| PORTATA MASSIMA | 9.000 m³/h |
SEZIONE PRODOTTO











