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    Nema 17 Stepper Motor, 2 Phase, 0.8A, 16N·cm

    Buy Nema 17 hybrid stepper motor at low price, 2 phase 4 wire, 0.8A, 16N·cm, step angle 1.8°, motor length 30mm. This high torque bipolar stepper motor is used for CNC machine, electronic and textile equipment.
    SKU: ATO-STEP-17X080
    Free Shipping Worldwide
    Delivery date: 6-12 days

    Low cost Nema 17 hybrid stepper motor for sale, precise positioning, fast response and high torque, widely used in CNC router, electronic equipment, textile equipment and medical equipment, etc.


    Model ATO-FY42EX080A
    Matched the Driver Model ATO-FYQM302A (Click it to see more info)
    Step Angle 1.8°
    Flanged Size 42 x 42mm (Nema 17)
    Motor Length 30mm
    Shaft Diameter 5mm
    Rated Current 0.8A
    Holding Torque 16 N·cm (0.16 N·m, 23
    Phase Resistance 3.8Ω
    Phase Inductance 4.5mH
    Rotor Inertia 30g·cm2
    Lead Wires 4 Wire
    Step Angle Accuracy ±5% (Full Step, No Load)
    Resistance Accuracy ±10% (20℃)
    Inductance Accuracy ±20% (1KHz)
    Temperature Rise 80℃ Max. (rated current, 2 phase on)
    Ambient Temperature -20℃~+50℃
    Insulation Resistance 100MΩ Min. 500VDC
    Dielectric Strength 1Min. 500VAC
    Shaft Radial Play 0.02Max. 450g Load
    Shaft Axial Play 0.08Max. 450g Load
    Radial Max. Load 28N
    Axial Max. Load 10N
    Weight 0.20kg
    Warranty Period 12 months
    Certificate CE, ROHs, FCC

    Dimensions (Unit: mm)


    Dimensions of Nema 17 2 Phase Hybrid Stepper Motor

    Shaft Type

    Shaft Type of nema 17 2 Phase Hybrid Stepper Motor

    Wiring Diagram

    Wiring Diagram of Nema 17 2 Phase Stepper Motor

    Speed-Torque Curve Diagram

    Speed Torque Curve Diagram of Nema 17 2 Phase Hybrid Stepper Motor

    Tips: Why do you need a hybrid stepper motor?

    Hybrid stepper motor is an electric motor specially used for precise control of position and speed. The features of stepper motors are "digital" and "error non-accumulation." For each pulse signal sent by the controller, the stepper motor rotates at a fixed angle under the action of its driver, and the rotation of the stepper motor runs step by step at this fixed angle. You can control the angular displacement by controlling the number of pulses, so as to achieve the purpose of accurate positioning; at the same time, and you can control the speed and acceleration of the motor rotation by controlling the pulse frequency, so as to achieve the purpose of speed regulation. It is widely used in various open-loop control by using the characteristic that the stepper motor does not accumulate errors.

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