VPLB0632FPJ12AA Kinetix VP Low Inertia Servo Motor - Overview & Specifications
VPLB0632FPJ12AA Kinetix VP Low Inertia Servo Motor - Overview & Specifications
VPLB0632FPJ12AA Kinetix VP Low Inertia Servo Motor - Overview & Specifications
Previous keyboard_arrow_left
Next keyboard_arrow_right
zoom_in
VPLB0632FPJ12AA Kinetix VP Low Inertia Servo Motor - Overview & Specifications
VPLB0632FPJ12AA Kinetix VP Low Inertia Servo Motor - Overview & Specifications
VPLB0632FPJ12AA Kinetix VP Low Inertia Servo Motor - Overview & Specifications

VPLB0632FPJ12AA Kinetix VP Low Inertia Servo Motor

000000001678
€1,596.79
Delivery time varies for all products, we will confirm the delivery time after ordering.
The VPLB0632FPJ12AA Kinetix VP Low Inertia Servo Motor is designed for precision motion control in automation tasks.
  Saugus apmokėjimas

Greiti ir saugūs apmokėjimai

  Greitas pristatymas

Pristatymas prie durų

  100% kokybės garantija

Kitaip grąžinsime Jūsų pinigus

Description

Product Introduction

Product Code: VPLB0632FPJ12AA
Name: Kinetix VP Low Inertia Servo Motor
This low inertia servo motor is a part of the Kinetix series, specifically engineered for applications requiring high responsiveness and precision. Its design facilitates efficient motion control in various automation processes.

Features

  • Torque: 1.6 Nm
  • Rated speed: 3000 RPM
  • Voltage: 230 VAC
  • Power: 0.5 kW
  • Weight: 2.3 kg
  • Low inertia design for rapid acceleration and deceleration
  • Compatible with Kinetix servo drives
  • IP65 rated for dust and water resistance
  • CE certified

Conclusion

The Kinetix VP Low Inertia Servo Motor is suitable for a range of applications in automation, including robotic systems, CNC machinery, and assembly lines. Its compact size, efficiency, and reliable performance make it an excellent choice for various industrial settings.

This text was generated using AI-based tools and is intended for informational purposes only. While efforts have been made to ensure accuracy, it may contain errors. We recommend contacting our experts for critical information. Your feedback is welcome to help improve the content.

Loading...