MKD112C-024-KP3-BN Rexroth Motor Supply

Brand: Bosch Rexroth/Indramat
Model: MKD112C-024-KP3-BN
The maximum torque can reach 631Nm,

The maximum speed can reach 9000rpm

High protection level, usually reaching IP65 or above

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Description


MKD112C-024-KP3-BN Rexroth Motor Supply


Introduction to MKD112C-024-KP3-BN Motor

I. General Overview

The MKD112C-024-KP3-BN is a high-performance synchronous servo motor produced by Bosch Rexroth, belonging to the IndraDyn S series. This motor is widely used in industrial automation due to its high torque, high speed, high precision, and excellent environmental adaptability.

II. Key Features

  1. High Torque Output:
    • The maximum torque can reach 631Nm, meeting the needs of various high-load applications.
    • Smooth torque output with minimal fluctuations ensures stable equipment operation.
  2. Wide Speed Range:
    • The maximum speed can reach 9000rpm, suitable for applications requiring high-speed operation.
    • A wide speed adjustment range allows for flexible adjustments based on actual needs.
  3. High-Precision Control:
    • Equipped with a multi-turn absolute Hiperface encoder with an increment of 128, providing high-precision position feedback.
    • High encoder resolution ensures precise and stable motor movement.
  4. Excellent Environmental Adaptability:
    • High protection class, typically IP65 or above, enabling stable operation in harsh environments.
    • Optional liquid cooling system available to handle heat dissipation in high-power applications.
  5. Compact Structure:
    • The motor is designed to be compact, with a small size and light weight, facilitating easy installation and maintenance.
    • Flat shaft design with shaft sealing rings prevents dust and moisture from entering the motor interior.

III. Application Scenarios

The MKD112C-024-KP3-BN motor is widely used in various industrial automation fields requiring high precision and high torque, including but not limited to:

  1. Robot Arms:
    • Provides high torque and precise position control, ensuring flexible movement and accurate positioning of robot arms.
  2. Automated Production Lines:
    • Used to drive various automated equipment, such as conveyors and assembly machines, improving production efficiency and product quality.
  3. Packaging Machinery:
    • Suitable for high-speed packaging machinery, such as filling machines and sealing machines, ensuring stable and accurate packaging processes.
  4. Conveyor Systems:
    • Used to drive conveyor belts, rollers, and other conveying equipment, enabling fast and accurate material transportation.

IV. Technical Parameters

  • Rated Power: Varies depending on the specific model and application scenario, but typically meets the needs of high-load applications.
  • Rated Voltage: Usually an AC voltage, with the specific value determined by the motor model and配套 (matching) drive.
  • Rated Current: Determined based on the motor power and voltage, ensuring stable motor operation under rated conditions.
  • Encoder Type: Multi-turn absolute Hiperface encoder, providing high-precision position feedback.
  • Protection Class: Typically IP65 or above, ensuring stable motor operation in harsh environments.
  • Cooling Method: Natural convection cooling or optional liquid cooling system, selected based on application scenario and power requirements.

This introduction provides a comprehensive overview of the MKD112C-024-KP3-BN motor, highlighting its key features, application scenarios, and technical parameters.

 

MKD112C-024-KP3-BN weight:8.8KG

Which is more expensive, a synchronous motor or a frequency converter motor?

Under normal circumstances, the price of a frequency conversion motor is higher than that of a conventional motor.

This is because a frequency conversion motor needs to be used with a frequency converter, which is itself a more

complexpower electronic device that requires the use of high-quality electronic components, thus making its cost relatively high.

In addition, the design and manufacturing of frequency

conversion motors also need to consider more factors, such as the adaptability to the power output of the frequency converter,

the control of heat and noise that may be generated during the frequency conversion speed regulation process, etc., which will also affect its cost.

On the other hand, while induction motors are relatively inexpensive, they are limited in terms of speed control and
operating efficiency. If precise speed control is required or there are higher demands for energy utilization efficiency, frequency conversion motors are needed.

It should be noted that the difference in specific prices depends on various factors such as motor model, brand, specifications, etc.,

and the difference will also be different in different cases. Therefore, when choosing a motor, it is necessary to consider comprehensively according to actual needs.