SGMJV-A5AAA2S Original Yaskawa Middle inertia rotary servo motor SGMJV-A5AAA2S
Introducing the Yaskawa SGMJV-A5AAA2S Servo Motor
Engineered for precision, adaptability, and reliability, the Yaskawa SGMJV-A5AAA2S servo motor stands out as a premier choice for high-performance applications across various industries. Whether in semiconductor manufacturing, robotic automation, or food processing, this specialized motor meets the demands of today’s advanced technological landscape. With its robust features and comprehensive safety modules, this model ensures optimal performance while maintaining stringent safety standards, making it a reliable companion for any machinery.
Product Overview
Feature | Specification |
---|---|
Brand | Yaskawa |
Model | SGMJV-A5AAA2S |
Rated Output | 0.05 kW (50W) |
Power Supply Voltage | AC200V |
Encoder Type | 13 Bit Delta (standard) |
Maximum Speed | 6000 rpm |
Protection Mode | IP65 (fully enclosed) |
Operating Temperature | 0 ~ 40°C |
Performance Capabilities
The SGMJV-A5AAA2S boasts medium inertia and an instantaneous maximum torque rating of 350%, which ensures swift acceleration and deceleration. It features a high-resolution serial encoder (with options for 13 or 20 bits) that enhances positional accuracy and control. The motor’s design includes a straight shaft without a keyway, complemented by options for an oil seal to fit various operational needs. Its versatility makes it ideal for multiple applications, including:
- Semiconductor manufacturing equipment
- Placement machines
- Punch machines for printed circuit boards
- Robotic systems
- Material handling machinery
- Food processing machinery
Reliability and Safety Features
Designed with a continuous rated time and a low vibration level (V15), the SGMJV-A5AAA2S is built to operate steadily in varied conditions. Additional features include high insulation resistance and exceptional heat resistance (Grade B). It adheres to international standards like IEC61800-5-2, achieving superior safety with functions such as Torque Off Safe (STO) and various stop safe modes, ensuring that mechanical systems achieve the highest level of operational safety.