R2AD08075FCH11M Sanyo Denki
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The Sanyo Denki R2AD08075FCH11M is a middle inertia servo motor from the R SANMOTION Servo Motors series with a rated output of 750 W. It features an 80 mm flange size, an absolute encoder for incremental systems, and includes a 24 VDC holding brake. The motor is CE and UL certified and supports a maximum rotation speed of 6000 min-1.
Internal Product Review
The R2AD08075FCH11M is a Sanyo Denki SANMOTION R series servo motor designed for precise motion control with middle inertia characteristics and a 750 W rated output. An absolute encoder for incremental systems and a 24 VDC holding brake support accurate positioning and controlled stopping in automated equipment. CE and UL identification plus a 6000 min-1 maximum rotation speed make the motor a strong fit for high-performance machinery.
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Product Description:
The R2AD08075FCH11M is a servo motor produced by Sanyo Denki for the R SANMOTION Servo Motors series. It serves as a rotary actuator in automated machinery, receiving torque and speed commands from a compatible drive to position loads with high repeatability and limited overshoot. The motor converts electrical control signals into regulated shaft motion for pick-and-place heads, feed rollers, indexing tables, and other motion axes. Its controlled response helps machinery maintain accurate movement during frequent acceleration, deceleration, and positioning cycles.
The motor mounts to gearboxes or machine frames through an 80 mm square flange that follows common IEC dimensions and provides a stable mechanical interface. Its continuous output is rated at 750 W, indicating the mechanical power available at the shaft without exceeding the applicable thermal limits. A maximum speed of 6000 rpm supports high-throughput operation in indexing and material-handling applications. To maintain the shaft position after motor power is removed, the unit has a 24 V DC holding brake that clamps the rotor through a spring-applied mechanism. Rotor position feedback is supplied by an absolute encoder compatible with incremental system interfaces, allowing the drive to receive stored position data at power-up without requiring a homing cycle.
A medium-inertia rotor balances responsive acceleration with resistance to abrupt load disturbances, making the motor suitable for medium-mass mechanical systems. This rotor design can also reduce sensitivity to resonance when the motor operates with feed mechanisms, compact gearboxes, or direct-coupled loads. The motor carries CE and UL compliance marks, indicating conformity with applicable requirements for insulation, leakage current, and temperature rise. Its winding arrangement and connector layout support integration with compatible SANMOTION drives, while the holding brake and encoder connections remain separate from the main motor power conductors for organized cable routing.