The MPL-B580J-MJ72AA, produced by Allen-Bradley, is a servo motor known for its motion and position control capabilities. Unlike standard motors, this servo motor allows precise control over both rotation and output torque, thanks to an integrated feedback device and servo drive. It is compatible with various Allen-Bradley servo drives, including the Kinetix 5500, 5700, 6200/6500, 6000, 300/350, 2000, and 7000 series.
Equipped with a high-resolution, multi-turn encoder, the motor can accurately monitor and control rotational position by measuring both the degree and number of rotations. It has an output power of 7.9 kW, a continuous stall torque of 34 Nm (301 lb-in), and a peak stall torque of 87 Nm (770 lb-in). The motor delivers a continuous stall current of 32 A, and a peak stall current of 115 A, with a rated speed of 3750 RPM. For connectivity, it uses circular (SpeedTec), right-angle, 180° rotatable DIN connectors.
The motor's protection rating varies based on its mounting orientation: IP 51 when mounted horizontally, IP 53 when oriented downward, and IP 50 when facing upward. With the MPL-SSN-F165-32MM shaft seal kit, it achieves an IP66 rating regardless of orientation, providing robust protection against environmental contaminants and process materials.
Featuring a high peak stall torque and significant continuous stall torque, the MPL-B580J-MJ72AA is a brushless, environmentally rugged servo motor with an IP 50 rating. It operates on 460V AC and maintains optimal performance between 0 to 40 degrees Celsius. This motor is part of Allen-Bradley's plug-and-play system when paired with the matching Kinetix series AC servo drives, ensuring high-performance speed and position control. The built-in multi-turn high-resolution encoder relays precise position data to the servo controller. The rotor, made from special materials, enhances flux density, power output, and minimizes power losses and harmonics. To reduce electrical noise, it is recommended to keep signal cables separate from motor power cabling and avoid routing over air exhaust openings of adjacent devices.
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