AM8032-0E21-0000 Beckhoff
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The AM8032-0E21-0000 is a standard synchronous servo motor from the AM Synchronous Servo Motors series by Beckhoff. It features a 24 VDC holding brake, rotatable angular connector or terminal box, and an OCT multi-turn feedback type. The motor comes with a 72 mm flange size, offers holding torque between 2 and 3.5 Nm depending on length, and uses a smooth shaft design.
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Product Description:
The AM8032-0E21-0000 is a synchronous servo motor produced by Beckhoff and belongs to the AM Synchronous Servo Motors series. As a rotary actuator, it delivers controlled torque and speed to axes driven by EtherCAT servo drives, positioning loads with high cycle accuracy in packaging, handling, and assembly machines. Within an automation cell, the motor converts pulse-width-modulated current from the drive into mechanical rotation, allowing synchronized motion profiles with I/O events and consistent throughput.
Mechanical dimensions begin with a flange that measures 72 mm, giving a direct reference for mounting to planetary gearboxes or machine frames. Position data is returned through an OCT multi-turn encoder, so absolute shaft angle is retained even after power loss and the drive can enable torque without homing. The holding brake is powered by 24 VDC. Power and feedback leave the housing through a rotatable angular connector, allowing the cable outlet to be oriented during installation and reducing strain in crowded cabinets. The length indicator is listed as code 2, which corresponds to the stator stack depth and the continuous torque class for this frame size.
For holding requirements, the motor includes a holding brake, permitting static clamping during vertical-axis downtime without relying on drive current. Brake torque is rated from 2 Nm to 3.5 Nm, so the motor can support applications that need secure load retention at standstill. A smooth shaft is provided to interface with backlash-free clamp couplings and reduce particle generation in clean zones. The electrical setup follows winding code E, allowing the servo amplifier to apply the correct current limits and flux tables across the rated speed range.