P50B07030DXM20 Sanyo Denki
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The Sanyo Denki P50B07030DXM20 is a servo motor from the P5 Super BL Servo Motors series featuring brushless motor technology and a flange size of 76 mm. It delivers a rated output of 300 W, rated torque of 0.931 N·m, and can reach a maximum speed of 4500 min-1. The motor offers an IP55 protection rating and utilizes an ABS-R sensor with a resolution of 8192 divisions.
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Product Description:
The P50B07030DXM20 is a brushless AC servo motor produced by Sanyo Denki within the P5 Super BL Servo Motors series. As a compact 76 mm flange unit, it provides controlled torque and speed for positioning tables, pick-and-place axes, and packaging spindles in automated equipment. By combining rotor-mounted permanent magnets with an ABS-R absolute position sensor, the motor sends direct feedback to the drive controller and maintains precise motion without commutation brushes. This model is supplied without a holding brake, so an external mechanical restraint must secure vertical loads when power is removed.
At its continuous operating point, the motor produces 300 W of mechanical power while running at a rated speed of 3000 rpm. This output corresponds to a rated torque of 0.931 N·m, which indicates the usable continuous load before thermal derating is required. For rapid acceleration or momentary load peaks, the electromagnetic stack can reach a stall torque of 2.94 N·m, and the rotor can operate at up to 4500 rpm when commanded by the drive. A mechanical time constant of 1.8 ms supports quick speed changes, and the square flange aligns with standard gearheads. The phase resistance is 2.9 Ω, providing the drive with an electrical value for overload monitoring and winding protection.
The enclosure has an IP55 rating, permitting installation where dust and low-pressure water jets may be present while protecting the rotor sensor and stator windings. Torque production per phase current is represented by a constant of 0.483 N·m/Arms, giving the controller a linear relationship between commanded current and delivered shaft torque. Current rise follows an electrical time constant of 3.8 ms, allowing magnetic flux to stabilize quickly after the drive applies a command. Position data are reported at 8192 divisions, enabling fine interpolation by the motion controller during multi-axis synchronization. The absolute sensor also retains rotor position information, reducing the need for a separate homing movement after the control system starts.