AKM52K-ACCNR-00 Kollmorgen
Wake Industrial LLC is not an authorized distributor of this product.
The AKM52K-ACCNR-00 is a synchronous servo motor by Kollmorgen, part of the AKM Synchronous Servo Motors series. It features a 108mm frame, keyway shaft, and uses a resolver feedback system with single-turn inductive feedback and 2 poles. The motor includes 2 SpeedTec Ready connectors and an IEC flange configuration with accuracy N, and it is supplied without a brake.
Internal Product Review
The AKM52K-ACCNR-00 is a Kollmorgen AKM synchronous servo motor featuring resolver feedback and single-turn inductive feedback. A keyway shaft and 2 SpeedTec Ready connectors make the motor well suited for secure coupling and streamlined installation. The standard configuration makes the motor a dependable choice for precise motion control.
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Product Description:
The AKM52K-ACCNR-00 is a brushless servo motor from Kollmorgen and belongs to the AKM Synchronous Servo Motors series. It is intended for closed-loop torque and position control in indexers, pick-and-place axes, and other general-purpose machinery. When connected to a compatible drive, the motor converts commanded current into rotary motion and supports fast response during repeated positioning cycles. Its brushless design keeps commutation electronic rather than mechanical, which supports smooth operation in automated equipment. It can be used wherever accurate positioning and responsive speed control are needed in a compact servo axis.
The motor has a 108 mm frame dimension that matches IEC flange dimensions in this size class. Power and feedback wiring pass through 2 SpeedTec Ready connectors, which support quick bayonet-style locking and compact cable routing. This connector arrangement helps keep cable entry organized in compact machine layouts. The shaft uses a keyway so couplings can transmit torque securely without relying only on clamping force. The K winding code corresponds to the electrical values used with AKD drives. The unit is supplied without a brake, so holding torque must come from the drive or from external mechanical hardware.
Position data is provided by a rear-mounted resolver that uses inductive sensing and remains stable under vibration and temperature changes. The resolver operates with 2 poles for commutation feedback, while the rotor length index 2 configuration keeps inertia suited to axes that need quick acceleration. The motor is supplied at the standard customization level, and its single-turn feedback arrangement reports rotor angle within one mechanical revolution. This combination supports controlled motion at low speed and predictable response during short indexing moves. The feedback hardware is integrated into the motor housing, so the drive can continuously track rotor position during operation.