AM3542-0030 Beckhoff
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The Beckhoff AM3542-0030 is part of the AM Synchronous Servo Motors series and features a flange size of 87 mm with a smooth shaft design. This synchronous servomotor has increased mass moment of inertia and is built without a holding brake. It utilizes Hiperface single-turn 128 SinCos feedback from F6.
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Product Description:
The AM3542-0030 is a synchronous servo motor engineered by Beckhoff and placed in the AM Synchronous Servo Motors series. The unit serves as a rotary actuator that translates drive current from a matching inverter into precise torque for motion axes in packaging lines, pick-and-place heads, and other position-critical equipment. By integrating directly with Beckhoff drive platforms, the motor supports closed-loop motion control so mechanical loads can be accelerated, decelerated, and held at commanded speeds in industrial automation cells.
Feedback to the controller is provided through the Hiperface interface, which delivers 128 SinCos measuring periods per revolution and provides high-resolution position data for tight velocity control. A flange diameter of 87 mm sets the mounting face and bolt circle for standard machine frames. The rotor is supplied without a holding brake, so external mechanical locking or drive torque must secure vertical axes during power-off states. The housing uses length code 2, which indicates the stator stack depth used for this power class and helps place the motor within its frame family.
The motor is built as an increased mass moment of inertia variant, so its rotor stores more kinetic energy and helps smooth speed fluctuations when coupled to high-inertia loads. A smooth shaft simplifies coupling with zero-backlash clamps and avoids keyway stress concentrations in precision assemblies. Encoder initialization uses code F6, allowing automatic parameter transfer when paired with compatible EtherCAT drives. Within the wider Synchronous Servomotors product classification, the motor remains suitable for repeatable motion tasks that require stable positioning, consistent feedback processing, and direct integration with Beckhoff motor and feedback connections.