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    Hybrid Stepper Motors - 2 Phase & 3 Phase,Encapsulated, New Released

    Hybrid Stepper Motors [Encapsulated, 2 Phase & 3 Phas]

    Hybrid Stepper Motors are highly precise, digitally controlled motors that are able to provide reliable operation without using detectors to sense or indicate position. The operation of the motor is controlled through electrical pulses. The direction of current flowing through the windings of the motor is switched with each pulse. The electrical pulse is converted into shaft rotation in steps of a fixed angle. Together with the driver, it constitutes an open loop system, which is cost effective and simple to construct.

    Press here for our full Cataloge & Datasheets

    Press here for Stepping Motor Index

    Press here for Wiring Connection

    Press here for Shaft Options

    Press here for Schematic Diagrams & Stepping Sequence

    Press here for Lead Wire & Cables

    2 Phase Stepper Motors

    New: Encapsulated Stepping Moto- 2 phase.14HK
    Step Angle: 0.9°
    Flange Size: NEMA 14, [35 x 35mm]
    Key features: 35% more toque, quieter & smoother, longer life.

    New: Encapsulated Stepping Moto- 3 phase.14HC
    Step Angle: 1.2°
    Flange Size: NEMA 14 [35 x 35mm].
    Key features: 35% more toque, quieter & smoother, longer life.

    New: Encapsulated Stepping Moto- 3 phase.17HC
    Step Angle: 1.2°
    Flange Size: NEMA 17 [42 x 42mm]
    Key features: 35% more toque, quieter & smoother, longer life.

    New: 2 phase.8HY
    Step Angle: 1.8°
    Flange Size: NEMA 8, [20 x 20mm]
    Key features: high accuracy; low inertia; small size



    2 phase.10HF

    Step Angle: 3.75°
    Flange Size: NEMA 10, [25.4 x 25.4mm]
    Key features: high speed; low noise; high acceleration



    2 phase.11HS

    Step Angle: 1.8°
    Flange Size: NEMA 11, [28 x 28mm]
    Key features: high accuracy; low inertia; small size


    New: 2 phase.14HS
    Step Angle: 1.8°
    Flange Size: NEMA 14, [35 x 35mm]
    Key features: high torque, small size, smooth movement

    2 phase.14HA
    Step Angle: 0.9°
    Flange Size: NEMA 14, [35 x 35mm]
    Key features: high accuracy; smooth movement; low noise


    2 phase.14HY
    Step Angle: 1.8°
    Flange Size: NEMA 14, [35 x 35mm]
    Key features: high acceleration; low inertia; small size


    New: 2 phase.16HF
    Step Angle: 3.75°
    Flange Size: NEMA 16, [39 x 39mm]
    Key features: high speed; small size; high acceleration

    2 phase.16HS
    Step Angle: 1.8°
    Flange Size: NEMA 16, [39 x 39mm]
    Key features: high accuracy; small size; high torque; smooth movement


    2 phase.17HA
    Step Angle: 0.9
    Flange Size: NEMA 17, [42 x 42mm]
    Key features: high accuracy; smooth movement; low noise


    2 phase.17HD
    Step Angle: 1.8°
    Flange Size: NEMA 17, [42 x 42mm]
    Key features: high torque; low noise; small size


    2 phase.17HDN
    Step Angle: 1.8°
    Flange Size: NEMA 17, [42 x 42mm]
    Key features: high torque; high accuracy; smooth movement


    2 phase.17HE
    Step Angle: 3.6°
    Flange Size: NEMA 17, [42 x 42mm]
    Key features: high acceleration; low inertia; low noise


    2 phase.23HS
    Step Angle: 1.8°
    Flange Size: NEMA 23, [56 x 56mm]
    Key features: high torque; high accuracy; smooth movement


    2 phase.23HY
    Step Angle: 1.8°
    Flange Size: NEMA 23, [Ø 57mm]
    Key features: high accuracy; low inertia; high acceleration


    2 phase.24HS
    Step Angle: 1.8°
    Flange Size: NEMA 24, [60 x 60mm]
    Key features: high torque; high accuracy; smooth movement;


    2 phase.34HD
    Step Angle: 1.8°
    Flange Size: NEMA 34, [85 x 85mm]
    Key features: high accuracy; high torque; smooth movement


    2 phase.34HY
    Step Angle: 1.8°
    Flange Size: NEMA 34, [Ø 86mm]
    Key features: high accuracy; high torque; smooth movement


    3 Phase Stepper Motors

    3 phase.24HC
    Step Angle: 1.2°
    Flange Size: NEMA 24, [60 x 60mm]
    Key features: very high accuracy; very smooth movement; low vibration


    3 phase.34HC
    Step Angle: 1.2°
    Flange Size: NEMA 34, [85 x 85mm]
    Key features: very high accuracy; very smooth movement; low vibration


    Hybrid Stepping Motor
    Hybrid Stepping Motors are highly precise, digitally controlled motors that are able to provide reliable operation without using detectors to sense or indicate position. The operation of the motor is controlled through electrical pulses. The direction of current flowing through the windings of the motor is switched with each pulse. The electrical pulse is converted into shaft rotation in steps of a fixed angle. Together with the driver, it constitutes an open loop controlling system, which is of low cost and simple to construct.

    Characteristics

    Precise Position Control
    The specified number of pulses determines the output degree[s] generated.

    Linear Speed Selection
    The running speed is linearly variable and determined by the frequency of the pulses.

    Forward & Reverse, Pause and Holding Function
    The forward & reverse rotation is controlled by the polarity. There is still holding torque even while the motor rotor is being locked. There is still current flowing through the motor winding, but no pulse signal creating rotation from the outside controller.

    Low Speed Feature
    Low frequency pulses being input, a stepping motor can operate at very low rotating speeds. This can be done without a speed reduction gearbox and thereby save power and maintain precision.

    Long Life
    The brushless design combined with an advanced ball bearing system provides hybrid stepping motors with a very long life. In fact, the stepping motor life is determined by the life of the bearings. Stepping motors are widely being used in many types of digitally controlled motion control applications, such as printers, intelligent [performance] stage lighting, office, bank and industrial equipment, medical, packaging, textile, telecommunication, aerospace, robotics and automotive.



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