AKM52K-SSS2S-06 Kollmorgen
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The Kollmorgen AKM52K-SSS2S-06 is part of the AKM Synchronous Servo Motors series and has a frame dimension of 108 mm. This servo motor features a 24V holding brake, a special connector arrangement, and a special feedback system. It also comes with a special flange and shaft detail, and is built with winding designation K.
Internal Product Review
The AKM52K-SSS2S-06 is a Kollmorgen AKM synchronous servo motor built with winding designation K and a special connector arrangement. A 24V holding brake and special feedback arrangement support accurate positioning and dependable axis control. This servo motor stands out as a well-tailored choice for demanding motion applications.
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Product Description:
The AKM52K-SSS2S-06 is a brushless servo motor manufactured by Kollmorgen in the AKM Synchronous Servo Motors series. It is intended for closed-loop motion tasks that require rapid acceleration and accurate positioning, including indexing tables, pick-and-place arms, and packaging machine axes. By converting commanded current from a servo amplifier into controlled torque, the motor supports repeatable motion in automated production equipment. Its brushless design also supports smooth commutation and stable operation across frequent starts, stops, and direction changes.
The motor includes a 24 V holding brake, which keeps the shaft locked during power loss so suspended or vertical loads do not drift. A square flange dimension of 108 mm aligns with common IEC bolt patterns for direct mounting to gearheads or machine frames. Cabling exits through a special connector arrangement that combines power, feedback, and brake leads in a keyed housing, reducing the chance of incorrect mating and keeping the connection area compact. Rotor position data is provided by a special feedback arrangement selected for high resolution and noise immunity, helping the drive maintain stable speed and position control in electrically noisy areas. Installation space is also addressed by a special flange that differs from the standard outline to suit unique machine clearances.
Dynamic response is influenced by rotor length index 2, which helps keep inertia moderate so the drive can change speed quickly without excessive overshoot. The output shaft uses a special shaft detail intended for custom couplings rather than a basic standard interface. That arrangement is useful when the machine already uses a nonstandard hub or coupling geometry. Electrical matching depends on winding designation K, so the paired amplifier must supply the voltage and current characteristics associated with that winding. The drive parameter set must also match that winding so current control and torque production remain consistent during operation.