AKM22H-ANMNAD-00 Kollmorgen
Wake Industrial LLC is not an authorized distributor of this product.
The Kollmorgen AKM22H-ANMNAD-00 is part of the AKM Synchronous Servo Motors series and features a 58mm frame dimension with a smooth shaft. This servo motor uses an IEC flange with accuracy N and comes without a brake system. It has a rotor length index of 2 and a winding designation of H.
Internal Product Review
The AKM22H-ANMNAD-00 is a Kollmorgen AKM synchronous servo motor with an IEC flange configuration and a smooth shaft for clean mechanical integration. The without-brake design and H winding make this unit a strong choice for efficient motion control and straightforward commissioning.
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Product Description:
The AKM22H-ANMNAD-00 is a compact synchronous servo motor created by Kollmorgen for torque-controlled axes in automated assembly lines, pick-and-place gantries, and electronics placement equipment. The unit belongs to the AKM Synchronous Servo Motors series and provides closed-loop rotational positioning when paired with a compatible digital drive. By converting a balanced three-phase supply into continuous magnetic torque, it serves as the primary mechanical actuator wherever precise speed tracking and high cycle accuracy are required. Its compact format also supports machinery with closely spaced motion axes and limited installation space.
The motor is delivered without a brake, so any required static holding torque must be supplied by the drive or an external clamp. The front face follows an IEC flange pattern with accuracy class N, aligning the pilot and bolt circle with standard gearboxes without requiring shims. A 58 mm frame dimension keeps the stator narrow enough for clustered multi-axis plates while providing adequate space for heat dissipation. The coil geometry uses an H winding, which provides the voltage constant and nominal current characteristics intended for medium-speed applications. This winding allows the connected servo drive to regulate current for responsive torque production during acceleration, positioning, and controlled deceleration. The flange arrangement also supports rigid face mounting, helping maintain shaft alignment between the motor and the connected machine component.
Dynamic behavior is influenced by the smooth shaft, which transfers torque through a clamping coupling without the localized discontinuity associated with a keyed output. A correctly fitted coupling distributes clamping force around the shaft surface and helps maintain concentric alignment during repeated motion cycles. The rotor length index 2 indicates a magnetic stack selected to increase continuous power while keeping rotor inertia moderate. Moderate inertia supports responsive acceleration without placing an unnecessary dynamic load on the connected drive system. The motor’s proportions suit applications that require frequent starts, controlled stops, and repeatable changes in rotational direction. Cable and feedback routing can be organized with other components from the same motor platform when several controlled axes are installed within one machine.