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928oz.In 6A 86H3P 14mm Keyway Nema 34 High Torque Stepper Motor

CHANGZHOU JKONGMOTOR CO.,LTD

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928oz.In 6A 86H3P 14mm Keyway Nema 34 High Torque Stepper Motor

Country/Region china
City & Province changzhou jiangsu
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Product Details

 
278oz.In - 972oz.In 2-7N.M 86H3P 1.2 Degree NEMA34 Stepping Motor
 

Nema 34 stepper motor from CHANGZHOU JKONGMOTOR CO,.LTD is a high torque stepper motor for CNC machine. They can be accurately controlled in distance and speed by changing the number of pulses and their frequencies. Therefore, these stepper motors are very suitable for positioning applications.

This stepper motor is an open-loop stepper motor. Under open loop control, the stepper motor is controlled by a pulse sequence having a determined time interval and no feedback to the sensor and corresponding electronic circuitry is required in the control system. Nema 34 stepper motor has received many positive reviews from our customers, this high torque stepper motor performed well in various applications. We provide the detailed parameters for each stepper motor, so our customers can calculate which stepper motor is best for their machine.

 
NEMA34 Stepping Motor Description:
NEMA34 stepping motor, 86mm 3 Phase square stepper motor.
45kg.cm Stepper motor, high torque stepper motor with 86mm size.
60kg.cm stepping motor.
 
NEMA34 Stepping Motor Genaral Specification:

ItemSpecifications
Step Angle1.2°
Temperature Rise80℃max
Ambient Temperature-20℃~+50℃
Insulation Resistance100Ω Min. ,500VDC
Dielectric Strength500VAC for 1minute
Shaft Radial Play0.02Max. (450g-load)
Shaft Axial Play0.08Max. (450g-load)
Max. radial force75N (20mm from the flange)
Max. axial force15N

 
NEMA34 Stepping Motor Specifications:

Model No.

Step Angle

Motor Length

Current

/Phase

Resistance

/Phase

Inductance

/Phase

Holding Torque

Rotor Inertia

Mass

( °)

(L)mm

A

Ω

mH

N.m

g.cm2

Kg

JK86H3P65-3006

1.2

65

3

0.5

1.6

2

1100

1.65

JK86H3P98-5206

1.2

98

5.2

0.6

3

4.5

2320

2.70

JK86H3P113-5206

1.2

113

5.2

0.9

5.9

6

3100

3.50

JK86H3P150-5006

1.2

150

5.0

1.5

3

7

4650

5.10

 
NEMA34 Stepping Motor Dimensions:(Unit=mm)


 


 
NEMA34 Stepping Motor Wiring Diagram:



NEMA34 Stepping Motor Advantages

 

  • 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.

 

NEMA34 Stepping Motor Applications

Computer controlled stepper motors are a type of motion-control positioning system. They are typically digitally controlled as part of an open loop system for use in holding or positioning applications.
In the field of lasers and optics they are frequently used in precision positioning equipment such as linear actuators, linear stages, rotation stages, goniometers, and mirror mounts. Other uses are in packaging machinery, and positioning of valve pilot stages for fluid control systems.
Commercially, stepper motors are used in floppy disk drives, flatbed scanners, computer printers, plotters, image scanners, compact disc drives, intelligent lighting, camera lenses, CNC machines and, more recently, in 3D printers.

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