Description
Overview
Essential details:MAD100B-0250-SA-C0-AH0-05-H3 Asynchronous servo motors IndraDyn A
DESCRIPTION
With their high power density, the MAD100B-0250-SA-C0-AH0-05-H3 is predestined for servo and main spindle applications, such as in machine tools, printing presses or metal forming technology.
High-resolution single-turn or multi-turn encoder systems and outstanding true running quality guarantee maximum handling precision. In addition to the optional keyway and holding brake, these motors can also be supplied with a special bearing assembly for high-speed applications or for applications with increased radial load.
The motor protection class IP65 even includes the fan motor, making it suitable for harsh industrial use. The easy-maintenance design of the motor means that it is even possible to exchange the fan while the motor is running – particularly advantageous in the printing industry
Asynchronous servo motor is a kind of motor widely used in industrial machinery and automation control system. It is mainly through the single chip microcomputer or other advanced controller to achieve accurate speed and position control. Compared with ordinary asynchronous motors, asynchronous servo motors have significant advantages in terms of stability, control and accuracy.
Product parameter
• Maximum speeds up to 11,000 rpm
• Encoder systems for a wide and diverse range of applications
• High degree of protection IP65
• Easy-maintenance motor design
APPLICATION
The working principle of the asynchronous servo motor is based on the electromagnetic principle, and the relative motion between the stator winding and the rotor magnetic field is converted into the rotating shaft output. The stator windings are powered by a power source to generate a rotating magnetic field, while the rotor has a magnetic material inside that can be affected by the stator’s magnetic field. When the power supply is added to the stator winding, the stator generates a rotating magnetic field, which will exert a certain power on the rotor, but because the rotor is affected by its own inertia, friction and load, it cannot immediately reach the same speed as the stator, so it will produce a certain torque difference.
To reduce this torque difference, the asynchronous servo motor uses a feedback control system to monitor the position and speed of the rotor. This system measures the actual rotor position and speed and compares it with the desired position and speed. By comparison, the actual torque difference can be calculated, and the current input can be adjusted accordingly to achieve the feedback control of the rotor. In this way, during the operation of the motor, the rotor can gradually approach the desired rotation speed and position according to the adjustment of the feedback control system.
The main control of the asynchronous servo motor utilizes sensors and electronic controllers to achieve accurate power output and rotation speed adjustment, which helps to improve production efficiency and product quality. Therefore, it is widely used in automated production lines, robots, semiconductor equipment, medical equipment, aerospace, precision machinery and other fields.
In addition, the asynchronous servo motor also has the advantages of fast response speed, strong controllability, long service life and high precision. However, its cost is high, and the control system needs to be fine-tuned, otherwise it may cause motor errors, resulting in unstable motor operation.
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