SGMAV-01ADABE Original Yaskawa Ultra low inertia servo motor SGMAV-01ADABE
Yaskawa SGMAV-01ADABE: An Exceptional Ultra Low Inertia Servo Motor
The Yaskawa SGMAV-01ADABE is a cutting-edge ultra low inertia servo motor designed to meet the demands of a variety of industrial applications. Combining powerful performance with compact dimensions, this motor is engineered for high efficiency and stability across numerous sectors, including semiconductor manufacturing, robotics, and food processing machinery. Its advanced features and robust design make it an ideal solution for engineers and manufacturers seeking reliable and flexible performance in their operations.
Product Specifications
Feature | Specification |
---|---|
Brand | Yaskawa |
Model | SGMAV-01ADABE |
Rated Output | 0.1 kW (100W) |
Power Supply Voltage | AC200V |
Encoder Type | 20 bit Delta (standard) |
Max Speed | 6000 r/min |
Protection Mode | IP65 (fully enclosed self-cooling) |
Operating Temperature | 0 to 40 °C |
Humidity Range | 20% to 80% (non-condensing) |
Installation Method | Flange type |
Performance Highlights
This servo motor boasts a super power rate with instantaneous maximum torque rated at an impressive 300%. The high-resolution serial encoder significantly enhances positional accuracy while minimizing vibration levels (V15). The SGMAV model supports a variety of applications due to its continuous rated time and low inertia characteristics, ensuring that it can handle the demands of dynamic environments with ease.
Key Applications
The SGMAV-01ADABE is suited for an extensive range of applications including but not limited to:
- Semiconductor fabrication equipment
- Placement machines
- Punching of printed circuit boards
- Robotics
- Handling and logistics machinery
- Food processing systems
Superior Safety and Efficiency
Equipped with cutting-edge safety features and compliant with international standards (IEC61800-5-2), the SGMAV-01ADABE is designed with security in mind. It offers functionalities such as Safe Torque Off (STO) and Safe Stop options that ensure reliable operation while enhancing system safety. This design simplifies and miniaturizes complex system architectures, allowing for seamless integration into new or existing frameworks.