The A06B-6093-H151 is a GE Fanuc BETA series servo amplifier designed to provide reliable, high-precision motion control for CNC machinery and automated production systems. Operating at 240 VAC with a maximum output current of 3.2 A, it delivers stable power to support fast, accurate servo motor operation. The unit features an I/O Link interface, enabling seamless communication and integration with CNC controllers and peripheral automation components. Built to handle demanding industrial conditions, the SVU-12 model ensures efficient power management, responsive feedback processing, and enhanced servo accuracy for high-speed machining and dynamic motion profiles.
Key Features
- High-Accuracy Servo Control: Designed to deliver precise motion regulation, enabling tight positional control and smooth servo operation in CNC systems.
- Robust 240 V Operation: Supports stable electrical performance at 240 VAC, providing consistent output for demanding automation and machining tasks.
- Integrated I/O Link Interface: Ensures fast, reliable communication with CNC controllers and automation components for streamlined system integration.
- Efficient Current Delivery: Provides up to 3.2 A of rated output, supporting responsive servo behavior and consistent torque performance.
- Beta Series SVU-12 Architecture: Built within GE Fanuc’s BETA servo platform for reliable operation, optimized feedback handling, and long-term performance.
- Durable Industrial Construction: Engineered to withstand continuous-duty operation, thermal stress, and vibration in high-speed manufacturing environments.
- Enhanced System Responsiveness: Processes high-speed feedback signals for improved accuracy during rapid acceleration, deceleration, and directional changes.
- Suitable for Advanced CNC Applications: Ideal for machining centers, automation cells, and precision industrial systems requiring dependable motion control.
The A06B-6093-H151 delivers the reliability and precision required for high-performance servo control in CNC machines and advanced automated production systems.