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Contents

   



(Top)
 


1 Stator and magnetic pole count  



1.1  Common stator pole/magnet pole configurations  





1.2  Other configurations  







2 See also  





3 References  





4 External links  














Outrunner






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From Wikipedia, the free encyclopedia
 


An outrunner electric motor mounted in the nose of a radio controlled model plane

Anoutrunner is an electric motor having the rotor outside the stator, as though the motor were turned inside out. They are often used in radio-controlled model aircraft.

This type of motor spins its outer shell around its windings, much like motors found in ordinary CD-ROM computer drives. In fact, CD-ROM motors are frequently rewound into brushless outrunner motors for small park flyer aircraft. Parts to aid in converting CD-ROM motors to aircraft use are commercially available.

Usually, outrunners have more poles, so they spin much slower than their inrunner counterparts with their more traditional layout (though still considerably faster than ferrite motors, when compared with motors that use neodymium magnets) while producing far more torque. This makes an outrunner an excellent choice for directly driving electric aircraft propellers since they eliminate the extra weight, complexity, inefficiency and noise of a gearbox. Some front loading direct-drive washing machines use an outrunner motor.

Outrunner motors have quickly become popular and are now available in many sizes. They have also become popular in personal, electric transportation applications such as electric bikes and scooters due to their compact size and high efficiency. [1]

Stator and magnetic pole count

[edit]

The stationary (stator) windings of an outrunner motor are excited by conventional DC brushless motor controllers. A direct current (switched on and off at high frequency for voltage modulation) is typically passed through three or more non-adjacent windings together, and the group so energized is alternated electronically based upon rotor position feedback. The number of permanent magnets in the rotor does not match the number of stator poles, however. This is to reduce cogging torque and create a sinusoidal back emf. The number of magnet poles divided by 2 gives the ratio of magnetic field frequency to motor rotation frequency.

Common stator pole/magnet pole configurations

[edit]

N denotes number of stator "wire wound" poles, P denotes number of rotor "permanent magnet" poles.

Other configurations

[edit]

See also

[edit]

References

[edit]
  1. ^ Kerem, Alper (2021-10-01). "Design, implementation and speed estimation of three-phase 2 kW out-runner permanent magnet BLDC motor for ultralight electric vehicles". Electrical Engineering. 103 (5): 2547–2559. doi:10.1007/s00202-021-01279-5. ISSN 1432-0487.
  • ^ DLRK = Distributed - Lucas, Retzbach and Kühfuss
  • [edit]
    Retrieved from "https://en.wikipedia.org/w/index.php?title=Outrunner&oldid=1233840689"

    Categories: 
    Radio control
    Radio-controlled aircraft
    Electric motors
    Electric aircraft
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    This page was last edited on 11 July 2024, at 05:05 (UTC).

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