
SGDV5R5AE1A002000500 Original Yaskawa Equipment DeviceNet communication function type servo driver SGDV5R5AE1A002000500
Introducing the Yaskawa SGDV5R5AE1A002000500 Servo Driver
Yaskawa, a leader in servo technology, proudly presents the SGDV5R5AE1A002000500 model, engineered to redefine motion control solutions. This cutting-edge servo driver features DeviceNet communication functionality, ensuring seamless integration into a variety of applications. Whether you are optimizing performance on the factory floor or in a robotics project, this servo driver promises reliability and adaptability.
Key Features and Technical Specifications
Attribute | Specification |
---|---|
Brand | Yaskawa |
Model | SGDV5R5AE1A002000500 |
Maximum Motor Capacity | 0.75 kW |
Power Supply Voltage | Three Phase AC 200V |
Interface | Rotary Type Servo Motor |
Optional Modules | DeviceNet Module |
Encoder Type | 16 Bit Absolute Value |
Rated Speed | 3000 r/min |
Enhanced Communication and Control
This servo driver utilizes an advanced DeviceNet communication protocol built on an open field network, facilitating intuitive motion control. By leveraging the capabilities of the upper controller, operators can efficiently monitor the servo’s real-time status and alarm notifications via a robust network. This feature not only streamlines maintenance tasks but also significantly reduces debugging time, enhancing overall operational efficiency.
Rich Positioning Functions
The SGDV5R5AE1A002000500 showcases a suite of versatile positioning capabilities. From simple positioning commands to complex sequences involving continuous rotation and return-to-origin functions, this model meets diverse application needs with elegance and precision. Its ability to execute these tasks smoothly sets a new benchmark in servo motor performance.
Optimized Performance and Maintenance
The Yaskawa SGDV5R5AE1A002000500 model stands out with its significant enhancements aimed at operational efficiency and response time. Thanks to its reduced CPU processing time and innovative control algorithms, this servo driver minimizes parameter setting and maintenance periods. The implementation of automatic adjustment functions empowers the device to adapt swiftly to mechanical changes, thereby ensuring longevity and reliability.