CM402 CM212 X-axis motor KXF0CWNAA00 N510005279AA Mitsubishi servo HC-MFS43-S25

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Part number: N510005279AA KXF0CWNAA00
Part Name: CM402 CM212 X-axis Servo Motor
Model Type: HC-MFS43-S25
Weight: 1.5kg (N.W)
Brand: Mitsubishi
Size(WxHxD)mm: 92 x 60 x 25
CM402 CM212 X-axis motor KXF0CWNAA00 N510005279AA Mitsubishi servo HC-MFS43-S25

Mitsubishi HC-MFS43-S25 Servo Motor: High-Speed, High-Torque Performance for CM402 X-Axis Applications

HC-MFS43-S25 is a Mitsubishi servo motor that offers several features, advantages, and technical parameters. It is commonly used as a CM402 X-axis servo motor in the manufacturing industry. Here are some of the characteristics and benefits of this servo motor:

Features:

    • High-speed operation for increased productivity
    • High torque output for improved performance
    • Smooth rotation and precise control for accurate positioning
    • Compact design for easy installation in tight spaces
    • Low noise operation for a quieter work environment
    • Advanced heat dissipation technology for extended motor life

Advantages:

    • Reduced maintenance costs due to the motor’s durable construction
    • Improved production efficiency and accuracy
    • Reduced downtime due to its reliable performance
    • Increased flexibility and adaptability to various applications
    • Energy-efficient operation for reduced operating costs

Technical Parameters:

    • Rated Output: 4.3 kW
    • Rated Torque: 35.3 N-m
    • Rated Speed: 3000 min-1
    • Max Speed: 4500 min-1
    • Encoder Resolution: 131072 p/rev
    • Power Supply: 3-phase AC 200V-230V

Maximizing Performance and Precision: A Step-by-Step Guide to Operating the Mitsubishi Servo Motor HC-MFS43-S25

  1. Wiring: Connect the power supply and feedback device according to the motor’s specifications. Ensure that the wiring is correct before applying power.
  2. Parameter Setting: Use the servo motor’s parameter setting tool or software to configure the motor’s operating parameters such as speed, acceleration, deceleration, and position control. The parameters will vary depending on the specific application.
  3. System Integration: Integrate the servo motor with the motion control system or controller to enable the motor to receive commands and feedback signals. Test the integration to ensure proper communication between the motor and the controller.
  4. Operation: Turn on the power and run the system. Verify that the motor is operating correctly by checking its speed, torque, and positioning accuracy. Adjust the parameters as needed to optimize the motor’s performance.
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