AM247L-1020 Beckhoff
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The Beckhoff AM247L-1020 is part of the AM Synchronous Servo Motors series and features a flange size of 194 mm and a shaft with groove and feather key built to DIN 6885 standards. This servomotor delivers a rated power of 0.47 kW with a rated speed of 3000 rpm and a rated torque of 2.2 Nm. It uses OCT multi-turn feedback and operates with a peak current of 9 A and a standstill torque of 3 Nm.
Internal Product Review
The AM247L-1020 is a Beckhoff synchronous servomotor with 0.47 kW rated power and 2.2 Nm rated torque. OCT multi-turn feedback and 3000 rpm rated speed support accurate positioning and smooth dynamic response in servo applications. A strong choice for automation axes that demand stable performance and dependable control.
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Product Description:
The AM247L-1020 is a synchronous servo motor produced by Beckhoff and assigned to the AM Synchronous Servo Motors series. Designed for closed-loop positioning and velocity control, the unit interfaces directly with EtherCAT drive modules to actuate axes in packaging lines, pick-and-place gantries, and other automated machinery. By converting electrical energy into regulated rotational motion, the motor provides the mechanical basis for precise, repeatable movement in industrial automation cells. This makes it suitable for coordinated motion tasks that require repeatable starts, stops, and speed changes during production.
Electrical ratings center on a continuous phase current of 2 A, while overload conditions may draw 9 A for short periods. At that current level, the rotor maintains a mechanical output of 0.47 kW and reaches a synchronous speed of 3000 rpm. The available drive torque under nominal load is 2.2 Nm, and the rotor inertia is 1.6 kg cm² for smooth indexing behavior. Current, voltage, and inductance constants are 2.3 A at standstill, 81 mV/1000 rpm back EMF, and 25 mH winding inductance. Position data are returned through OCT multi-turn feedback. The motor uses a 194 mm square flange and a shaft with a groove and feather key made to DIN 6885, and it has no holding brake.
The motor develops 3 Nm of torque while motionless, which exceeds the stated static friction load of 0.05 Nm. For each ampere commanded, the electromagnetic structure produces 1.33 Nm/A, supporting fine torque linearity with vector-controlled amplifiers. The copper mass and housing surface give a thermal time constant of 15 min, allowing moderate duty-cycle peaks before temperature limits are approached. Electrical losses are governed by a coil resistance of 11 Ω, which helps predict heat generation for protective drive selection and cabinet ventilation.