Product Center

KST-57D53-D-0005

KST-57D53-D-0005_Kaifull Technology

The KST-57D53-D-0005 stepper motor provides 1.8° step angle, 4.2A rated current, and 2.0N·m holding torque. It is designed for CNC, robotics, and motion control systems requiring high precision and reliability, with Class B insulation and a 500V A.C. insulation withstand voltage.

  • Technical Parameter
  • Product size
  • Instructions for use
  • Data download

Standard parameter



Step Angle



1.8°



Phase number



two-phase



Insulation resistance



100MΩmin.(500V DC)



Insulation class



Class B



Insulation withstand voltage



500V A.C 1 min



Rated current



4.2A



Phase resistance



0.65Ω±15%  AT25°



Phase inductance



2.0mH±20% AT 1KHz, 1Vrms



Holding torque



2.0N.m



Rotor inertia



480g.cm²



weight



1050g


KST-57D53-D-0005_00.png

The KST-57D53-D-0005 stepper motor is a high-quality, reliable motor designed for precision and durability in industrial applications. With a 1.8° step angle and holding torque of 2.0N·m, this motor provides excellent accuracy and power efficiency, making it ideal for use in CNC machinesrobotics, and motion control systems.

This motor operates with a rated current of 4.2A and features a phase resistance of 0.65Ω ± 15% and a phase inductance of 2.0mH ± 20% at 1KHz, 1Vrms. It has a Class B insulation level, ensuring reliable operation under varying temperature conditions. The motor also features a 500V A.C. insulation withstand voltage for enhanced durability in demanding environments.

The moment of inertia is 480g·cm², offering a balanced load handling capacity. With a weight of 1050g and a 57mm frame size, the KST-57D53-D-0005 motor is well-suited for applications requiring both precision and efficiency in environments with medium to high loads.


Product 2D Drawing

  • File name
  • File type
  • Size
  • Download
  • KST-57D53-D-0005.pdf
  • .pdf
  • 3247KB
  • Download

Product 3D Diagram

  • File name
  • File type
  • Size
  • Download
  • KST-57D53-D-0005.STEP
  • .STEP
  • 674KB
  • Download