AM3042-0E01-0000 Beckhoff
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The Beckhoff AM3042-0E01-0000 is a standard synchronous servo motor in the AM Synchronous Servo Motors series and features an 87 mm flange size. It has a rotatable angular connector or terminal box for connection, a smooth shaft design, and a resolver feedback type. The motor also includes a 24 VDC holding brake with a holding torque of 9 Nm.
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Product Description:
The AM3042-0E01-0000 is a synchronous servo motor from the AM Synchronous Servo Motors series. It is intended for medium-inertia axes that require rapid acceleration, precise speed regulation, and repeatable positioning. In automated assembly lines, material-handling gantries, and secondary packaging stations, the motor serves as the electromechanical actuator that converts drive controller commands into controlled rotary motion. When paired with a compatible servo drive, it supports responsive speed changes and accurate positioning during frequent start-and-stop cycles.
The motor includes a holding brake energized at 24 VDC, allowing controlled stopping and secure shaft locking when power is removed. Power and feedback wiring are routed through a rotatable angular connector or a terminal box, so the cable exit can be aligned with cabinet or drag-chain constraints. Position data are supplied by a two-pole resolver, an analog feedback device that tolerates heat and vibration while giving the drive continuous angle information. A flange dimension of 87 mm matches IEC-compatible gearboxes and machine mounting plates. During static holding, the brake resists up to 9 Nm of torque, which helps keep vertical or suspended loads in place between commanded moves.
The motor is the Standard version and carries overall length code 2 with winding code E. This combination gives the motor a balanced relationship between torque output and rotor inertia for mid-range drive duties. A smooth shaft simplifies coupling with clamp hubs and avoids the stress concentration associated with keyed interfaces. The standard configuration suits machines that need straightforward integration without custom mechanical changes, and it works well in axes that alternate between rapid motion, precise stopping, and stable holding periods.