AM3053-0K00 Beckhoff
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The AM3053-0K00 is a standard synchronous servo motor produced by Beckhoff and is part of the AM Synchronous Servo Motors series. It features a two-pole resolver feedback type, a 104 mm flange size, and a smooth shaft design. This motor is delivered without a holding brake and uses winding code K.
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Product Description:
The AM3053-0K00 synchronous servo motor is produced by Beckhoff within the AM Synchronous Servo Motors series. This rotary unit is intended for closed-loop motion axes in industrial automation, where precise torque and speed regulation support pick-and-place stations, packaging lines, and gantry systems. The motor converts electrical commands from a compatible servo drive into controlled rotary movement. Its permanent-magnet design supports responsive acceleration and accurate positioning during repetitive operating cycles. Compatibility with EtherCAT drive systems allows command and feedback data to be coordinated with other automated machine functions.
A 104 mm square flange conforms to IEC mounting patterns and supports repeatable alignment when the motor is attached to a machine frame or gearbox. Rotor position is returned through two-pole resolver feedback, which supplies analog sine-cosine signals that the drive converts into angular position data for electronic commutation. The motor has a smooth shaft, so torque is transferred through a friction-locked clamping hub rather than a keyed connection. It is supplied without a holding brake, so an external locking device is required when a vertical load must remain secured after power is removed. The stator uses a K winding with electrical characteristics intended for operation with the matched servo amplifier. Correct drive parameters allow the control system to regulate current in response to speed, torque, and position commands.
The motor is supplied in the standard design and has an overall length code of 3. This housing length helps determine the axial clearance required behind the mounting surface when the motor is installed in a compact machine. The enclosure provides room for cable entry while accommodating the internal feedback components. Its square profile also supports orderly placement in multi-axis arrangements where adjacent motors and cable routes must remain accessible. Installation planning should account for coupling length, connector access, ventilation space, and the external load-retention device when one is required. The motor can be paired with suitable control hardware for synchronized positioning, regulated spindle movement, or other automated rotary-axis tasks.