Robots Motor

Robots Motor

Model: TW-ST86 Series
Classification:Stepping Motor
Application:office automation, robots, electronics, textile industries .Etc
Notes: The motors can be designed according to customer requirements
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Product Introduction

1.Product Introduction of the High Quality Stepping Motor

ST86HC Stepping Motor is well received in the market. It is attractive in price and quality. The length of the motor is 67-150mm. But the length can be designed according to request. We also supply universal motors and DC motors.


2.Working principle


Robot motors provide power by creating rotation. Current flows through the stator coils of the motor, creating a magnetic field. The magnetic field will alternately attract and repel the stator and rotor, keeping them in constant motion. The rotor in the motor is usually a DC motor or a stepper motor. After a DC motor creates a magnetic field in the stator coils, passing an electric current causes torque to produce rotation. Stepper motors use quantitative voltage signals to precisely position the rotor for precise rotation.


3.Product Parameter of the High Quality Stepping Motor


Model

No.

Step Angle

(°)

Rated Voltage

(V)

Rated Current

(A)

Phase Resistance

(Ω)

Phase Inductance

(mH)

Holding Torque

(Kg. cm)

Rotor Inertia

(gNaN2)

Motor Length

(mm)

Leads

No.

Motor Weight

(Kg)

86HC67-1756

1.2

7.4

1.75

4.25

12.3

22.6

1100

67

6

1.9

86HC97-2006

1.2

10.8

2

5.4

23

43

1400

97

6

3.1

86HC67-5806

1.2

5.2

5.8

0.9

3.2

46

1400

97

6

3.1

86HC97-5206

1.2

6.2

5.2

1.2

5.2

45

1400

97

6

3.1

For detail information, please refer to the attachment.


4.Product Feature And Application of the High Quality Stepping Motor


It is usually applies to office automation, robots, electronics, textile industries fields.


5. Production Details of the High Quality Stepping Motor


The motor size and motor material can be designed by request

Custom design: Welcome

image002.jpg


6.Advantages


1. Efficiency: Robot motors usually use DC or AC, so their efficiency is much higher than other types of motors. This is because they are able to convert most of the incoming electrical energy into mechanical energy, thus reducing wasted energy and making the robot's movement more efficient.


2. Controllability: Robot motors can be precisely controlled, enabling the robot to perform various tasks and actions. For example, by changing the current and voltage of the motors, the robot can move or change its direction. Therefore, robot motors provide both the basis for the control of the robot and the flexibility for the robot's actions.


3. Durability: Robot motors are designed to withstand high voltage and high load, so they have high durability and longevity. In addition, since the robot motor generally does not need to use a transmission device, the number of robot parts and the friction of mechanical moving parts are reduced, and the life of the robot motor is further improved.


4. Reliability: Robotic motors are highly reliable because they do not have friction between mechanical parts. In addition, motors are usually sealed against the intrusion of dust, water, and other external elements, making them less prone to failure.


5. Versatility: Robot motors are usually very flexible and can be adapted to a variety of different robot jobs. For example, a steering gear motor is a very versatile robot motor because of its ability to precisely control the robot's angle and position. DC motors and stepper motors are suitable for tasks that require a lot of control, such as the movement of robots and various industrial applications.


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