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2N.M Nema 23 5A 57mm Hybrid Stepper Motor

Changzhou Prostepper Co.,Ltd.
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Changzhou Prostepper Co.,Ltd.

2N.M Nema 23 5A 57mm Hybrid Stepper Motor

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City & Province changzhou jiangsu
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Product Details

NEMA23 2 phase stepping motor 57mm 1.8 degree hybrid stepper motor


 

Mode NoPST57H265-4P20

PST57H265-4P30

 

PST57H265-4L40
Holding Torque             1.7N.m
Related Current            2A/Phase3A/Phase4A/Phase
Resistance                    2 Ω/Phase0.9Ω /Phase0.5Ω/Phase
Inductance                    6MH/Phase2.7MH/Phase1.6MH/Phase
Inertia                           280g.cm2
Weight                          0.72kgs
Length                          55.5mm
Connection                   P

 

Mode NoPST57H276-4P30

PST57H276-4L40

 

PST57H276-4L50
Holding Torque      2N.m
Related Current     3A/Phase4A/Phase5A/Phase
Resistance            1.1Ω/Phase0.65Ω /Phase0.37Ω/Phase
Inductance            4.2MH/Phase2.35MH/Phase1.8MH/Phase
Inertia                    480g.cm2
Weight                   1.1kgs
Length                   76.5mm
Connection                                           PL
 

 

 

Stepper motor features

 

  • Smooth surface
  • Long lasting life
  • Low cost for control achieved
  • High torque at startup and low speeds
  • Ruggedness
  • Simplicity of construction
  • Can operate in an open loop control system
  • Low maintenance
  • Less likely to stall or slip
  • Will work in any environment
  • Can be used in robotics in a wide scale.
  • High reliability
  • The rotation angle of the motor is proportional to the input pulse.
  • The motor has full torque at standstill (if the windings are energized)
  • Precise positioning and repeatability of movement since good stepper motors have an accuracy of 3 – 5% of a step and this error is non-cumulative from one step to the next.
  • Excellent response to starting/stopping/reversing.
  • Very reliable since there are no contact brushes in the motor. Therefore, the life of the motor is simply dependent on the life of the bearing.
  • The motors response to digital input pulses provides open-loop control, making the motor simpler and less costly to control.
  • It is possible to achieve very low-speed synchronous rotation with a load that is directly coupled to the shaft.
  • A wide range of rotational speeds can be realized as the speed is proportional to the frequency of the input pulses.


 

 Hybrid stepper motor's specifications      
                                                            
 

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

 


Description of NEMA23 hybrid stepper motor

 

1. 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.

2. Stepper motors are economical, accurate, and easy to control, and they can operate reliably in a variety of environments (depending on the level of protection IP chosen) preferably in machines with additional enclosures or in clean environments

4. Accurate Speed Control

The rotational speed of the stepping motor can be precisely controlled ,By controlling the frequency of the electric pulse.

5.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.

Applications of 1.8 degree Stepper Motor

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

  1. Textile machines
  2. Printing presses
  3. Gaming machines
  4. Medical imaging machinery
  5. Small robotics
  6. CNC milling machines
  7. Welding equipment

0.9° and 1.8° Hybrid Stepper Motors

 

1.8° Step Angle,The motors are directly compatible with the stepper motor drive boards and also drive either motor (if required) in the half step mode i.e. 0.9° per step resulting in higher resolution, greater performance stability and faster stepping rates. Direction, velocity, acceleration/deceleration can be controlled by a stepper motor controller.,Applying the correct electrical pulse sequence to the windings of the stepper motor results in a 1.8° step angle rotation of the spindle (i.e. 200 steps per revolution). When correctly loaded and driven these motors will produce discrete output steps. The number of steps and speed of rotation are determined by the number of pulses and frequency of the input signal. This provides an ideal method for speed and position control. The motors are directly compatible with stepper motor drive boards.

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