AKM53L-ANCNAA00 Kollmorgen
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The Kollmorgen AKM53L-ANCNAA00 is a synchronous servo motor in the AKM Synchronous Servo Motors series, featuring a 108mm frame dimension and no brake system. It uses 2 SpeedTec Ready connectors, includes a BISS B encoder with 2048 lines per revolution, and features single turn optical feedback. The motor has a smooth shaft and an IEC flange with accuracy N.
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Product Description:
The AKM53L-ANCNAA00 is a permanent-magnet synchronous servo motor developed by Kollmorgen within the AKM Synchronous Servo Motors series. Designed for closed-loop motion control, it converts drive current into controlled torque and speed for robotics, material handling, and coordinated multi-axis stations. Its mechanical footprint fits mid-range axes that need moderate continuous torque while maintaining fast dynamic response. The AKM electrical platform also supports tight current regulation when the motor is paired with a modern digital servo drive.
The motor is supplied without a brake, which shortens the housing and lowers inertia in systems that use external holding devices. Power and feedback pass through 2 SpeedTec Ready connectors, supporting secure cable attachment and orderly routing in compact machine layouts. Position data is captured at 2048 lines/rev, and the feedback channel uses a BiSS B encoder interface for digital transmission with bidirectional error checking. The flange uses IEC accuracy N geometry, allowing straightforward integration on standardized mounting surfaces and compatible gearboxes. The standard customization level, AD34 and AD58 feedback format, rotor length index 3, and the plain shaft arrangement place the motor in a common configuration for general automation axes.
The feedback element is single-turn optical, so the drive receives absolute position information within one mechanical revolution. A compact stator built on a 108 mm square frame supports the motor’s mid-size envelope and helps it fit machines with limited mounting space. The smooth shaft supports direct coupling in clean, sealed drive trains and reduces surface interruptions at the output end. Thermal and electrical behavior are set by winding code L, which matches the current, resistance, and speed characteristics expected for general-purpose servo duty. This arrangement supports accurate interpolation, quick acceleration, and steady load control across robotics, transfer systems, and coordinated multi-axis equipment.