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1.8 Degree Nema 34 5N.M Brake Stepper Motor

Categories Brake Stepper Motor
Brand Name: Prostepper
Model Number: PEM86H2160E2K5zM
Certification: CE/ISO/RoHS.
Place of Origin: JIANGSU,CHINA
MOQ: 10pcs
Price: USD100.1-118.1/PCS
Payment Terms: T/T, Western Union, L/C,
Supply Ability: 250000pcs /per month
Delivery Time: 7-25 work days
Packaging Details: 38.5*24*23
Brand: Prostepper
Product model: PEM86H2160E2K5zM
Holding torque: 12N.m
Brake Torque: 5N.m
Current: 6A
Motor length: 160mm
Weight: 6.1kg
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1.8 Degree Nema 34 5N.M Brake Stepper Motor

Stepping Motor 1.8 degree Brake Stepper Motor With Encoder nema34 For 3d printer


Specifications


  • Stepping Accuracy: ± 5%
  • Resistance Accuracy: ± 10%
  • Inductance Accuracy: ± 20%
  • Temperature Rise: 80°C Max.
  • Ambient Temperature: -20°C ... +50°C
  • Insulation Resistance: 100MOhm min. 500V DC
  • Withstand: 500V AC, 1 Minute


Holding Torque12N.m
Related Current6A/Phase
Resistance0.7Ω/Phase
Inductance7.3MH/Phase
Inertia5400g.cm²
Index

OutputDifferental
Black Torque5N.m

Encoder Specifications Brake Specifications

ModelE1KE2k5zModelPEM57/PEM60
Resolution1000cpr/4000ppr2500cpr/10000pprBrake TypeHolding Brake
TypeIncremental encoderIncremental encoderVoltage24VDC±5%
Output ModeDifferentalDifferentalPower5W
Output SignalA+A-;B+B-A+A-;B+B-;Z+Z-Torque1.3N.m
Supple Voltage5VDC±5%5VDC±5%Release Time50ms

Speed/Torque Characteristics(Reference Value)



Product description of 2 phase hybrid brake stepper motor


  • Automatic assembly line, improve production efficiency, low cost without human operation, one line down intelligent mechanical automatic assembly

  • The Fulling product line is sold to major manufacturing Companies for Industry of automation, medical andhealth care equipment, printer machine, packing device,Information Technology,household appliance
    product,AGV and automobile.

  • Longer Life

    Stepping motor is a mechanical structure,which does not need be changed by electric brush or Hall sensor,thus reducing the probability and increasing the motor life.Stepping motor life usually determined by the life of the bearing.

  • Electromagnetic furnace optimization design, lift torque, reduce temperature rise, so that the motor running smoothly
  • Accurate position Control

    The angular displacement of the stepping motor can be precise controlled by the number of electrical pulses.Angle accuracy can be controlled within ±0.09°without any feedback devices.




Applications of Stepper Motors

Stepper motors are diverse in their uses, but some of the most common include:

  • 3D printing equipment
  • Textile machines
  • Printing presses
  • Gaming machines
  • Medical imaging machinery
  • Small robotics
  • CNC milling machines
  • Welding equipment

Working principle of stepper motor


  • To make the motor shaft turn, first one electromagnet is given power, which makes the gear’s teeth magnetically attracted to the electromagnet’s teeth. The point when the gear’s teeth are thus aligned to the first electromagnet, they are slightly offset from the next electromagnet. So when the next electromagnet is turned ON and the first is turned OFF, the gear rotates slightly to align with the next one and from there the process is repeated. Each of those slight rotations is called a step, with an integer number of steps making a full rotation. In that way, the motor can be turned by a precise. Stepper motor doesn’t rotate continuously, they rotate in steps. There are 4 coils with a 90o angle between each other fixed on the stator. The stepper motor connections are determined by the way the coils are interconnected. In a stepper motor, the coils are not connected. The motor has a 90o rotation step with the coils being energized in a cyclic order, determining the shaft rotation direction. The working of this motor is shown by operating the switch. The coils are activated in series in 1-sec intervals. The shaft rotates 90o each time the next coil is activated. Its low-speed torque will vary directly with current.

Tips: How to overcome the vibration and noises of 2-phase hybrid stepper motor when rotating at low velocity?

  • The vibration and noise of the stepper motor rotating at low velocity its the intrinsic defects, which can be generally overcome by adopting following schemes:
  • If the stepper motor works at resonance region, the resonance region can be evaded by changing mechanical transmissions such as velocity ratio.
  • Use subdivided driver, which is the most common and simple method.
  • Replace for the stepper motor with smaller stepping angle, like 3-phase or 5-phase stepper motor.
  • Replace for AC servo motor, which can nearly overcome vibration and noise, but the cost is quite high.
  • Add magnetic damper to the shaft of motor, such product has been available in the market, but the mechanical structure is changed a lot.
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