P50B05020DXS00 Sanyo Denki
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The Sanyo Denki P50B05020DXS00 is a standard brushless servo motor from the P5 Super BL Servo Motors series. It delivers a rated output of 200 W with a rated speed of 3,000 min-1 and a rated torque of 0.637 N·m. The motor features a wiring-saved incremental encoder with a resolution of 2,000 P/R and has a mass of 1.07 kg.
Internal Product Review
The P50B05020DXS00 is a Sanyo Denki P5 Super BL servo motor with 200 W rated output and 3,000 min⁻1 rated speed. Brushless motor technology and a wiring-saved incremental encoder support smooth response and dependable feedback in precision motion applications. Rated torque of 0.637 N·m gives the motor a very balanced performance profile for compact servo axes.
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Product Description:
The P50B05020DXS00 is a brushless servo motor manufactured by Sanyo Denki and offered within the P5 Super BL Servo Motors series. As a compact rotary actuator, it converts drive current from a matching amplifier into precise shaft torque for positioning or speed regulation tasks in automated equipment. The motor uses permanent-magnet technology and an internal wiring-saving incremental encoder, allowing controllers to read the rotor position without separate sensor cabling.
The rated output is 200 W, and the motor delivers 0.686 N·m of continuous stall torque while sustaining a rated torque of 0.637 N·m at a nominal shaft speed of 3,000 rpm. Acceleration capability comes from a rated current of 1.6 A rms and a peak current of 5.5 A rms, supported by a torque constant of 0.436 N·m/A rms. The wiring-saving encoder provides feedback at 2,000 pulses per revolution, and the mechanical time constant of 0.9 ms helps the motor reach the commanded speed quickly. A flange dimension of 54 mm accommodates compact gearheads, and the peak stall torque reaches 1.96 N·m during brief overloads. The rated power rate is 24.2 kW/s, supporting rapid changes in speed during demanding motion cycles.
The complete assembly has a mass of 1.07 kg, which reduces the load imposed on compact mounting structures, while the rotor inertia remains only 0.173 × 10⁻⁴ kg·m² for responsive reversals. A resistance of 3.4 Ω per phase limits current surges, and the electrical time constant of 2.9 ms works with the mechanical constant to support stable current loops. The motor does not include a holding brake, so the shaft remains free when power is removed, making external clamping necessary when the load must stay fixed. The standard motor design tolerates transient speeds up to 4,500 rpm, providing additional speed capacity during brief feed transitions or controlled overshoot conditions.