KOLLMORGEN AKM33E-ANCNR-00 DC brushless servo motor
Specific Parameters
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Rated Output Power: 1.19kW (at 640V DC bus voltage), corresponding to 1.59hp
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Stall Torque: 2.79N·m (24.7lb – in)
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Rated Torque: 2.27N·m
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Maximum Speed: 5000rpm
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Maximum Bus Voltage: 640V DC
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Continuous Current (at 100°C winding temperature rise): 2.58A
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Rated Active Power (at different bus voltages): 0.55kW (at 320V DC bus voltage), 1.1kW (at 560V DC bus voltage)
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Rated Power (converted to horsepower at different bus voltages): 0.74hp (at 320V DC bus voltage), 1.48hp (at 560V DC bus voltage)
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Motor Weight: 2.9kg
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Protection Class: IP65
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Winding Type: E type
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Connectors: 2 rotatable right – angled M23 connectors
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Feedback Device: 16 – bit, 2 – pin hollow – shaft resolver
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Flange Specification: 70x70mm IEC flange (tolerance N)
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Smooth Shaft Height: 30mm
Product Performance
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Efficient Power Output: It can provide stable and efficient power output under different bus voltages, meeting the power requirements of various industrial application scenarios.
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High – Precision Position Feedback: The equipped 16 – bit resolver can accurately feedback the position information of the motor, ensuring high – precision positioning of the motor operation, which is suitable for applications with strict requirements for position accuracy.
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High Reliability: The IP65 protection class enables it to operate stably in harsh environments such as dusty and humid conditions, effectively avoiding failures caused by environmental factors and extending the service life of the motor.
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Good Heat Dissipation Performance: The reasonable structural design and selection of winding materials ensure that the motor can effectively dissipate the generated heat during long – term operation, maintain a stable working temperature, and avoid performance degradation due to overheating.
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Low Cogging Torque: Advanced low – cogging torque technology is adopted to effectively reduce the torque ripple during motor operation, making the motor run more smoothly, reducing mechanical vibration and noise, and improving the stability of equipment operation.
















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