AMI8124-3001-0J10 Beckhoff
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The Beckhoff AMI8124-3001-0J10 is a compact integrated servo drive from the AMI Integrated Drive Motors series. It features a convection cooling system, a 17-bit single-turn absolute encoder for position detection, and a smooth shaft design. The servo drive supports EtherCAT communication and has a flange size of 58 mm with an IP54 protection rating.
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Product Description:
The AMI8124-3001-0J10 is a compact integrated servo drive manufactured by Beckhoff for the AMI Integrated Drive Motors series. It combines a synchronous motor, power stage, and feedback system inside a single IP-rated enclosure, eliminating the need for a separate cabinet drive. The unit is intended for decentralized motion axes on conveying, pick-and-place, or small assembly equipment where short cable runs and direct network access simplify installation.
The drive connects to control systems through EtherCAT, enabling deterministic communication without additional gateways. Rotor position is resolved by a 17-bit single-turn absolute encoder that provides fine granularity within each revolution. Mechanical attachment follows the F2 (58 mm) flange standard, while a smooth shaft supports connection to clamping couplings. A J-coded stator winding, energized by the internal inverter, supports a maximum mechanical speed of 12,000 rpm. Torque generation relies on a six-pole permanent-magnet rotor, balancing high dynamic response with compact dimensions. Heat produced by the power electronics is removed by convection through the aluminum housing, and the motion interface conforms to the MDP profile. The motor is supplied without a holding brake, reducing overall mass and axial length.
The cast housing carries an IP54 protection rating at both the body and shaft, guarding against dust ingress and water spray. Continuous operation is permitted at ambient temperatures from 0 °C to +40 °C. The unit may be stored or transported at temperatures from -25 °C to +70 °C without performance loss. Reliable operation is maintained at 5% to 95% relative humidity, provided condensation is avoided. TwinSAFE safety functions are not integrated, so machine-level safety circuitry must handle power isolation. Position data remain absolute within one revolution after the power is cycled, allowing the controller to recover angular position without a homing sequence. Convection cooling removes heat without auxiliary fans, reducing the number of moving components and avoiding the airflow requirements associated with forced cooling.