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    Stepper Motors

    Stepper motors are DC motors that move in steps. Having computer-controlled stepping means you can get very precise positioning and speed control. As stepper motors have precise repeatable steps they are ideal for applications that require precise positioning. Normal DC motors don't have much torque at low speeds but a stepper motor features maximum torque at low speeds.

    For a comprehensive guide to Stepper Motors please see our guide web/generalDisplay.html?id=ideas-and-advice/stepper-motors-guide

    Benefits of Stepper Motors

    • Excellent Slow Speed Torque
    • Precise Positioning
    • Long lifespan
    • Flexible application
    • Low-Speed Synchronous Rotation
    • Reliable

    Types of Stepper Motors

    Bipolar Stepper Motor

    Bipolar Stepper Motors contain an onboard driver that uses an H bridge circuit to reverse the current flow through the phases. Bipolar motors are generally better than unipolar motors. They have more torque and are more efficient. Bipolar stepper motors use electromagnetic coils which are energized on command, to turn a shaft. Using this system, the shaft can be turned in measured movements, and can also be reversed.

    Hybrid Stepper Motor

    Hybrid Stepper Motors allow for yet more precision, through techniques such as half-stepping and micro-stepping. Microstepping is a way of increasing the fixed number of steps within a motor by programming a driver to send an alternating sine/cosine waveform to the coils. Hybrid stepper motors combine aspects of both permanent magnet (PM) and variable reluctance (VR) stepper motors.

    Permanent Magnet Stepper Motor

    Permanent Magnet Stepper Motor has a rotor that is made from two permanent magnet rotors which are slightly offset from each other. It’s an electromechanical energy conversion device, which converts electrical energy to mechanical energy.

       Applications

    • 3D Printers
    • CNC
    • Camera Platforms
    • Robotics
    • Process Automation

    Why use a Stepper Motor?

    Stepper motors are an incredibly versatile, reliable, cost-effective, and accurate way of controlling precise motor movements, allowing users to increase the dexterity and efficiency of programmed movements across a huge variety of applications and industries.

    226 Producten voor Stepper Motors

    Applied Motion Systems
    Dual Hybridge
    1.8°
    0.88Nm
    8
    12 → 70 V
    23mm
    6.35mm
    5 A
    -
    18.4mm
    92.4mm
    -
    -
    -
    -
    200 → 51200 spm
    Schneider Electric
    -
    -
    40Nm
    -
    -
    -
    14mm
    -
    -
    -
    -
    -
    -
    -
    -
    -
    Festo
    Hybrid
    1.8°
    0.8Nm
    -
    48 V
    -
    6.35mm
    5 A
    -
    20.6mm
    102.5mm
    -
    0.15Ω
    -
    -
    2720 rpm
    Sanyo Denki
    Hybrid, Single Shaft
    1.8°
    1.27Nm
    4
    36 V
    56 x 56mm
    6.35mm
    2 A
    Bipolar
    20.6mm
    56mm
    -
    1.05Ω
    -
    -
    -
    Trinamic
    Hybrid
    1.8°
    1.1Nm
    4
    2.1 V
    -
    8mm
    -
    -
    -
    -
    -
    -
    -
    -
    -
    Sanyo Denki
    -
    -
    -
    -
    24 V dc
    -
    7.5mm
    -
    -
    -
    -
    -
    -
    -
    -
    -
    McLennan Servo Supplies
    Permanent Magnet
    7.5°
    25mNm
    -
    12 V
    -
    2mm
    180 mA
    Unipolar
    -
    -
    2
    -
    -
    -
    -
    Festo
    Hybrid
    1.8°
    1.4Nm
    -
    48 V
    -
    6.35mm
    5 A
    -
    20.6mm
    124mm
    -
    0.25Ω
    -
    -
    1940 rpm
    Sanyo Denki
    Hybrid, Single Shaft
    1.8°
    0.75Nm
    4
    24 V dc
    56 x 56mm
    7.5mm
    2 A
    Bipolar
    20.6mm
    56mm
    -
    1.1Ω
    -
    -
    3000 rpm
    Sanyo Denki
    Single Shaft
    1.8°
    2.5Nm
    4
    24 V dc
    56 x 56mm
    7.5mm
    2 A
    Bipolar
    20.6mm
    56mm
    -
    -
    -
    -
    3000 rpm
    Sanyo Denki
    Hybrid, Double Shaft
    1.8°
    0.20Nm
    6
    24 V
    42 x 42mm
    5mm
    1.2 A
    Unipolar
    24mm
    34.5mm
    -
    2.4Ω
    -
    -
    -
    McLennan Servo Supplies
    Permanent Magnet
    7.5°
    9.0mNm
    6
    5 V
    -
    2mm
    250 mA
    Unipolar
    9.78mm
    13.72mm
    2
    19.6Ω
    -
    -
    -
    Sanyo Denki
    Hybrid, Single Shaft
    1.8°
    0.51Nm
    6
    24 V
    42 x 42mm
    5mm
    1 A
    Bipolar
    24mm
    49.5mm
    -
    4.8Ω
    -
    -
    -
    Sanyo Denki
    Hybrid, Single Shaft
    1.8°
    1.0Nm
    4
    24 V
    56 x 56mm
    6.35mm
    2 A
    Bipolar
    20.6mm
    53.8mm
    -
    1.5Ω
    -
    -
    -
    Applied Motion Systems
    Dual Hybridge
    1.8°
    0.88Nm
    8
    12 → 70 V
    42mm
    6.35mm
    5 A
    -
    18.4mm
    92.4mm
    -
    -
    -
    -
    200 → 51200 spm
    Sanyo Denki
    Hybrid, Single Shaft
    1.8°
    1.27Nm
    6
    24 V
    56 x 56mm
    6.35mm
    3 A
    Unipolar
    20.6mm
    77.3mm
    -
    0.9Ω
    -
    -
    -
    Sanyo Denki
    -
    -
    -
    -
    24 V dc
    -
    7.5mm
    -
    -
    -
    -
    -
    -
    -
    -
    -
    Portescap
    CanStack
    7.5°
    131mNm
    4
    12 V
    42 x 56.5mm
    3mm
    400 mA
    Bipolar
    11.4mm
    33.38mm
    12
    30Ω
    -
    -
    250 rpm
    Sanyo Denki
    Hybrid, Double Shaft
    1.8°
    0.30Nm
    6
    24 V
    42 x 42mm
    5mm
    1.2 A
    Unipolar
    24mm
    40.5mm
    -
    2.9Ω
    -
    -
    -
    Sanyo Denki
    Hybrid, Double Shaft
    1.8°
    0.39Nm
    4
    24 V
    42 x 42mm
    5mm
    1 A
    Bipolar
    24mm
    40.5mm
    -
    4.1Ω
    -
    -
    -
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