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Which micromotors are commonly used in industrial robots?

Industrial robots are capable of carrying out a variety of tasks, including walking, jumping, spinning, etc. The rotary drive of micromotors enables all of these actions. The following Vshida micro motors briefly describe the types of micro motors frequently used in industrial robots. Different parts and purposes of industrial robots employ different types of micro motors.

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1. Servo motor: In industrial robots, servo motors are another crucial component utilized to regulate angle, linear speed, and position. The servo axis's target location and the amount of movement are controlled by an electrical signal from the microprocessor. A PWM signal typically controls the servo motor's position.

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2. DC motor: A DC motor is an electric motor. A current-carrying conductor is positioned in a magnetic field and made to spin in relation to its starting point. Brushed DC motors and brushless DC motors are the two main categories. Currently, brushed DC motors are the most popular motors because to their small size, excellent rotation control, and great efficiency. Brushless DC motors are more expensive than brushed DC motors, but they have the benefits of simple maintenance, long life, and low noise.

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3. Stepper motor: Among all motors, the stepper motor is one of the most sophisticated. In essence, the motor rotates in steps of degrees and is pulse-controlled; the precise number of rotations required for each step will vary depending on the manufacturer or model. Bipolar and unipolar stepper motors are the two primary varieties. The torque of stepper motors diminishes with speed in contrast to DC motors.

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4. An AC motor uses AC current as power. The coil will break the magnetic field line and produce AC current as it rotates between the magnet's two poles. This AC current can be conveyed through the wire for a considerable amount of time. There are two categories of AC motors: synchronous and asynchronous. A winding stator and a rotor make up the majority of an asynchronous motor. The wire is attached to the power supply. An electromagnetic field is created in the coil by the current, and this electromagnetic field gives the rotor power to move. A motor of the synchronous kind runs at a fixed speed and synchronously with the frequency of an AC line.


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