Low Noise Nema 34 86mm 8.2N.M Brake Stepper Motor
NEMA34 86*120mm Stepping Motor 8.2N.m Brake Stepper Motor With Encoder for plotter
- Product description of 1.8 degree brake stepper motor
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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.
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Automatic machine operation, stable automatic work, high processing efficiency.
Mechanical size 100% meet the requirements, to ensure that there is no greater error in the use process
- Online testing of technical parameters to ensure the consistency of data product parameters
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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
Lower heat Low noise &smooth
The design of prostepper' motor Improved manufacturing processes
selected with new materials gets a lower enable all components of
resistance value when compared with prostepper' stepper motors to
motors of the same thickness and the achieve better matching precision
same torque, this makes a greater degree and more stable internal
of improvement for the thermal structures. This reduces vibration
conductivity performance of the motor, and noise effectively when the
thus greatly reduces the temperature motor operates, which makes
rise of the motor. prostepper' stepper motors stand
out by providing quieter and
smoother operation.
- Speed/Torque Characteristics(Reference Value)
- Specifications
| Holding Torque | 8.2N.m |
| Related Current | 6A/Phase |
| Resistance | 0.5Ω/Phase |
| Inductance | 5.1MH/Phase |
| Inertia | 3600g.cm² |
| Index |
√ |
| Output | Differental |
| Black Torque | 5N.m |
Encoder Specifications Brake Specifications
| Model | E1K | E2k5z | Model | PEM86 |
| Resolution | 1000cpr/4000ppr | 2500cpr/10000ppr | Brake Type | Holding Brake |
| Type | Incremental encoder | Incremental encoder | Voltage | 24VDC±5% |
| Output Mode | Differental | Differental | Power | 7.5W |
| Output Signal | A+A-;B+B- | A+A-;B+B-;Z+Z- | Torque | 5N.m |
| Supple Voltage | 5VDC±5% | 5VDC±5% | Release Time | 50ms |
- 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
- Why choose stepper motor
- While these applications are the most common, they’re a fraction of what stepper motors can be used for. Generally speaking, any application that requires highly accurate positioning, speed control, and low speed torque can benefit from the use of stepper motors.
- While servo motors have their place in industry as well as numerous advantages of their own, stepper motors are an ideal solution in many applications.
- Stepper motors are a robust motion control technology and can be found inside of many common machines and equipment. To learn more, browse stepper motors at Prostepper from the world’s leading suppliers.
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Primary Competitive Advantages:
· Green Product
· Military Specifications
· Packaging
· Price
· Product Features
· Product Performance
· Prompt Delivery
· Quality Approvals
· Service
· Small Orders Accepted
· Brand-name Parts
· Origin
· Experienced Staff
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Note
The winding on this article is a 4 Wire Bipolar.
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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