P50B08075HXS2

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The P50B08075HXS2 servo motor is manufactured by Sanyo Denki. As part of the P5 Super BL Servo Motors series, it offers a rated output of 750W and a continuous stall torque of 3.92 Nm. The motor has a maximum rotating speed of 4500 min^-1. It weighs 3.9 kg and features a brake excitation voltage of 90V.

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Product Description:

The P50B08075HXS2 servo motor is designed by Sanyo Denki. The motor is highly in-demand at the industrial automation facilities. The manufacturer is dedicated towards its product quality and customer satisfaction.

The P50B08075HXS2 servo motor does not include a holding brake and uses an incremental encoder for position detection. The encoder type ensures consistent motion tracking during repetitive industrial cycles. Its construction includes a sealed enclosure rated at IP50 which protects it from limited dust ingress. The motor vibration grade is V15 which supports operations under constant movement or impact. The P50B08075HXS2 servo motor provides 750 W of rated output for medium duty operations. It generates 2.94 Nm of torque and the torque produced at standstill position is 3.92 Nm. The motor rotates at a rated speed of 3000 min⁻¹ and supports the same value as its maximum speed. The rotor inertia is rated at 1.926 × 10⁻⁴ kgm² to support smooth acceleration control and stable deceleration in dynamic motion system operations. The P50B08075HXS2 servo motor has a flange size of 80 mm which fits standard mounting structures. It includes a dynamic braking energy capacity of 360 J which enhances stopping accuracy under active loads. The insulation material is manufactured according to Class F standards to tolerate higher thermal stress. It uses a continuous time rating for uninterrupted duty in controlled environments.

The P50B08075HXS2 servo motor can operate in ambient temperatures from 0 °C to 40 °C. It functions efficiently under standard humidity ranges expected in industrial environments. The exterior is coated in Munsell paint which adds corrosion resistance and visibility in equipment assemblies. The motor supports precise movement control for integration in automated lines and industrial robots.

Applicable Amplifier Model
PZ0A050
Brake Excitation Voltage
90V (24V optional)
Continuous Stall Torque
3.92 Nm
Induced Voltage Constant
15.6±10% mV/min^-1
Instantaneous Maximum Stall Armature Current
23.7 Arms
Instantaneous Maximum Stall Torque
8.82 Nm
Mass Including Wiring-saving Inc
3.9 kg
Maximum Rotating Speed
4500 min^-1
Operating Temperature Range
0 to 40°C
Rated Armature Current
6.0 Arms
Rated Output
750W
Rated Rotating Speed
3000 min^-1
Rated Torque
2.94 Nm
Rotor Inertia (incremental Encoder)
1.926 x 10^-4 kg.m² (GD²/4)
Torque Constant
0.447 Nm/Arms

Frequently Asked Questions about P50B08075HXS2:

Q: Why does the P50B08075HXS2 use a Class F insulation system?

A: Class F insulation in P50B08075HXS2 allows the motor to tolerate higher thermal stress improving performance in high load conditions.

Q: How does the IP50 rating benefit the P50B08075HXS2 motor?

A: The IP50 rating provides limited protection from dust preventing debris from affecting internal motion components during prolonged use.

Q: What is the function of dynamic braking energy in this servo motor?

A: The 360 J dynamic braking energy helps decelerate the motor rapidly improving safety and response during emergency stops.

Q: Why is rotor inertia important in the P50B08075HXS2?

A: The rotor inertia of 1.926 × 10⁻⁴ kg·m² ensures smooth acceleration reducing mechanical stress during quick directional changes.

Q: What is the importance of a sealed enclosure in P50B08075HXS2?

A: A sealed enclosure helps protect the internal encoder and windings from contaminants ensuring longer operational reliability.


Internal Product Review

  • ‘‘The P50B08075HXS2 servo motor is reliable for precision driven systems requiring a 750 W rated output and 80 mm flange compatibility. It offers a dynamic braking capacity of 360 J and rotor inertia of 1.926 × 10⁻⁴ kg·m². It is best for compact automation equipment needing high torque. ’’

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