SGDV-5R5A25A000EX002 Original Yaskawa High performance servo driver SGDV-5R5A25A000EX002
Introducing the Yaskawa SGDV-5R5A25A000EX002 Servo Driver
The Yaskawa SGDV-5R5A25A000EX002 is engineered to elevate your automation capabilities with cutting-edge technology and exceptional performance reliability. Designed for sophisticated applications, this high-performance servo driver sets the standard for efficiency in motion control systems. Whether you are upgrading existing machinery or building a new system, the SGDV series is your ideal partner for precision and reliability.
Product Overview
Parameter | Specification |
---|---|
Brand | Yaskawa |
Model | SGDV-5R5A25A000EX002 |
Motor Capacity | 0.75 kW |
Power Supply Voltage | Three Phase AC200V |
Design Sequence | A |
Hardware Specification | Base Mounting Type (Standard) |
Communication Interface | MECHATROLINK-III |
Tracking Performance | No Deviation Standard |
High Performance and Advanced Functionality
Part of the renowned Sigma-V-EX series, the SGDV-5R5A25A000EX002 is equipped with innovative features aimed at enhancing your operational efficacy. The EX002 model boasts superior command tracking performance, resulting in unmatched accuracy in trajectory control. Coupled with an impressive communication cycle of 125 μs, you are guaranteed responsiveness that outperforms traditional servo solutions.
Seamless Integration and Cost Efficiency
The SGDV-5R5A25A000EX002 supports up to 62 stations through a streamlined communication line, effectively minimizing wiring costs and installation times. This consolidation not only enhances reliability but also optimizes your operational workflows. Our single command connector design simplifies integration, allowing for quick connections and effortless usage.
Precision Motion Control
Our servo driver excels in providing high-precision motion control capabilities, achieving advanced synchronization in torque, position, and velocity. With the ability to switch control modes in real-time, the SGDV-5R5A25A000EX002 adapts seamlessly to complex mechanical tasks, ensuring smooth transitions and enhanced performance across applications.