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Yaskawa SG Series SGMPH-04AAE4SD

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SGMPH-04AAE4SD

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The Yaskawa SGMPH-04AAE4SD is an AC servo motor designed for precision in motion control tasks. With a rated output of 400W and operating at a voltage of 200V, it is engineered to function efficiently in various industrial applications.

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2 Year DO Supply Warranty
Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All of our products come with DO Supply's 2-year warranty.
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Technical specifications for SGMPH-04AAE4SD

ManufacturerYaskawa
Product LineSG Series
Part NumberSGMPH-04AAE4SD
Weight2.19 lbs (0.99 kg)
TypeAC Servo Motor
Rated Output400W
Voltage200V
EncoderIncremental
DesignMedium inertia with a flat profile
Rated Speed1,500 rpm
Maximum Speed2,000 rpm
Instantaneous Peak Torque3.82 Nm
Maximum Peak Current8A
Rated Angular Acceleration38500 rad/s²
Moment of Inertia0.331 kg • m² x 10⁻⁴
Holding Brake Capacity7.6W
Holding Brake Coil Resistance76Ω
Rated Torque1.27 Nm
Moment of Inertia With Brake0.44 kg • m² x 10⁻⁴

The Yaskawa SGMPH-04AAE4SD AC servo motor is a highly capable component, providing rated output power of 400 watts. Designed to work at an input voltage of 200 volts, it features an incremental encoder that enhances position accuracy. The motor's medium inertia design creates a flat profile useful for space-constrained installations.

Operating at a rated speed of 1,500 rpm, this motor can reach a maximum speed of up to 2,000 rpm. It delivers an instantaneous peak torque of 3.82 Nm, allowing it to handle dynamic load requirements effectively. The motor supports a maximum peak current of 8 A, ensuring readiness for demanding applications.

In terms of performance, it has a rated angular acceleration of 38,500 rad/s², with a moment of inertia of 0.331 kg • m² x 10⁻⁴. The holding brake provides a capacity of 7.6 watts, with a coil resistance of 76Ω, ensuring operational stability when needed. Its rated torque is 1.27 Nm, providing reliable torque delivery during operation. When the brake is engaged, the moment of inertia is slightly increased to 0.44 kg • m² x 10⁻⁴, making it suitable for various operational scenarios.