SGDV-120D05B Original Yaskawa Servo driver for linear servo motor SGDV-120D05B
Introducing the Yaskawa SGDV-120D05B – A New Era in Servo Efficiency
The Yaskawa SGDV-120D05B servo driver ushers in a new level of precision and performance for linear servo motors. As part of the Sigma-V series, this state-of-the-art servo unit is designed to bring your automation projects to life with ease and efficiency. Whether you are involved in robotics, manufacturing, or specialized machinery, the SGDV-120D05B’s advanced features are tailored to meet diverse industrial needs.
Product Specifications and Features
Brand | Yaskawa |
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Model | SGDV-120D05B |
Application | Servo driver for linear servo motor |
Max Motor Capacity | 3 kW |
Power Supply Voltage | Three-phase AC 400V |
Design Sequence | B type |
Connection Interface | Analog voltage, pulse sequence type |
Installation Type | Base mounting type (standard) |
Operating Environment | 0 to 40 °C, 20 to 80% humidity (non-condensing) |
Protection Class | IP65 |
Max Speed | Up to 6000 r/min |
Remarkable Features for Modern Applications
With the Yaskawa SGDV-120D05B, exceptional mechanical performance meets intuitive operation. The Sigma-V series introduces a groundbreaking self-tuning function that simplifies the setup process, ensuring optimal performance without the hassle of manual adjustments. Experience seamless operation across various applications including semiconductor manufacturing, handling machinery, and food processing. The versatile adaptability of the SGDV-120D05B caters to diverse needs, making it an invaluable asset across industries.
Application Versatility
Designed to serve a broad spectrum of applications, the SGDV-120D05B can power robots, placement machines, punch PCB machinery, and more. Its compatibility with various motor configurations including options with braking systems or belt speed reducers ensures that your operational requirements are met efficiently. This servo driver is built to deliver a smooth running experience, significantly reducing speed fluctuations while enhancing control.