MKD025B-144-GP0-KS REXROTH servo motor

Brand: Bosch Rexroth/Indramat
Model: MKD025B-144-GP0-KS
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


MKD025B-144-GP0-KS REXROTH servo motor


Introduction to MKD025B-144-GP0-KS Motor

I. General Overview

The MKD025B-144-GP0-KS 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 MKD025B-144-GP0-KS 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 MKD025B-144-GP0-KS motor, highlighting its key features, application scenarios, and technical parameters.

 

MKD025B-144-GP0-KS weight:8.8KG

How to distinguish between AC motor and frequency conversion motor
I. Introduction

In thefield ofmotors, there are two common types:ACandDCmotors, each with different
Second, Definitions and Principles

Industrial frequency motor

Synchronous speed motor, also known as a power frequency motor, refers to an alternating

current electric motor that operates at a power frequency of 50Hz or 60Hz. The term “power frequency” in

its name signifies the power frequency on which this motor relies. The working principle of a power frequency

motor is based onelectromagnetic induction, where the rotating magnetic field generated by the stator interacts

with thecurrentin the rotor, producing torque to drive the motor to rotate.