how to work synchronous motor , synchronous motor , synchronous , synchronous motor Hindi

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  • Опубліковано 27 лют 2023
  • A synchronous motor is a type of AC motor that rotates at a constant speed that is synchronized with the frequency of the AC power supply. The rotor of a synchronous motor rotates at the same frequency as the stator's magnetic field, which is why it is called a synchronous motor.
    In a synchronous motor, the rotor has a set of electromagnets that are arranged around its periphery. These electromagnets are energized by a DC power supply, which creates a magnetic field that interacts with the magnetic field of the stator. The interaction between these two magnetic fields causes the rotor to rotate at a constant speed that is determined by the frequency of the AC power supply and the number of poles in the motor.
    Synchronous motors are used in a variety of applications, such as in industrial machines, electric generators, and clocks. They are particularly useful in applications that require a constant speed, such as in power plants where they are used to drive pumps, fans, and compressors. Synchronous motors are also used in electric clocks and timing devices, where the constant speed is critical for accurate timekeeping.
    How To Work Synchronous motor :- A synchronous motor works on the principle of electromagnetic induction. It consists of two main parts: a stationary stator and a rotating rotor.
    The stator has a set of winding coils that are connected to an AC power source. These coils create a rotating magnetic field, which rotates at the same frequency as the AC power supply.
    The rotor has a set of electromagnets that are arranged around its periphery. These electromagnets are energized by a DC power supply, which creates a magnetic field that interacts with the magnetic field of the stator.
    When the rotor's magnetic field interacts with the rotating magnetic field of the stator, it produces torque on the rotor, which causes it to rotate at the same speed as the rotating magnetic field of the stator. The number of poles in the motor and the frequency of the AC power supply determine the speed of the rotating magnetic field and hence the synchronous motor's speed.
    The DC power supply that energizes the rotor's electromagnets is called a "field excitation" and is usually supplied through slip rings or brushes. The amount of excitation current determines the strength of the magnetic field in the rotor, which affects the motor's performance.
    Synchronous motors are used in a wide range of applications, including power generation, industrial machines, and electric clocks, where a constant speed is required. They are generally more efficient than induction motors at high loads and have a better power factor. However, they require a separate DC power supply for the field excitation and are more expensive than induction motors.
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