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Single-period motors have a stator. They do not have the rotating magnetic field qualities of polyphase or polyphase motors. The magnetic area developed by the stator windings is pulsating, not rotating. When the rotor is stationary, the expansion and contraction of the stator’s magnetic field create an electrical existing in the rotor. The existing makes the rotor magnetic discipline with the opposite polarity to the stator magnetic subject. The opposite polarity applies rotational drive to the higher and reduce areas of the rotor. Given that this power passes via the middle of the rotor, it stays equivalent in each and every course, maintaining the rotor stationary. If the rotor starts to change, it proceeds to switch in the course it started, simply because the rotor’s momentum results in a rotational force in that direction. Solitary-phase motors are utilized in minimal-electricity applications this sort of as ceiling fans, mixer grinders, and house appliances such as transportable electricity resources.

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