R2AA08075FXH00M Sanyo Denki
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The Sanyo Denki R2AA08075FXH00M is a middle inertia servo motor from the R SANMOTION Servo Motors series with a rated output of 750 W and an 80 mm flange size. It uses an absolute encoder for incremental systems and supports a maximum rotation speed of 6000 min-1. The motor operates at a supply voltage of 200 volts and meets both CE and UL identification standards.
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Product Description:
The R2AA08075FXH00M is a servo motor manufactured by Sanyo Denki within the R SANMOTION Servo Motors series. It serves as an electromechanical actuator in industrial automation, converting pulse-width-modulated drive current into controlled shaft torque. This operation supports repeatable positioning and regulated speed in packaging lines, electronic assembly stations, robot joints, and other automated machinery. The motor works with the electrical and feedback architecture used across the series, allowing it to communicate with a compatible servo drive and motion controller.
The motor has a rated mechanical output of 750 W, allowing it to deliver three-quarters of a kilowatt of continuous power at its designated operating point. Its winding is designed for a nominal bus voltage of 200 V, making it suitable for compatible low-voltage three-phase servo drives. The motor can reach a peak mechanical speed of 6000 rpm when the connected drive maintains the required electrical frequency and controls the back electromotive force within the permitted range. Position feedback is supplied by an absolute encoder for an incremental system, which provides multi-turn position data through an interface compatible with differential incremental signals. An 80 mm mounting flange provides a compact square mounting interface and supports direct attachment to suitable planetary gearboxes or machine plates. Its bolt pattern helps maintain motor alignment when the shaft is coupled to the driven mechanism.
A medium-inertia rotor balances responsive acceleration with stable load matching in mechanisms that have moderate moving mass. This rotor design can reduce sensitivity to sudden load changes while preserving the response needed for repetitive positioning cycles. The motor is supplied with no electromechanical brake, so drive-generated holding torque or an external locking device must secure the load when required. Compliance with CE and UL requirements indicates that the motor meets applicable European and North American requirements for insulation, leakage current, and thermal performance. The unit uses a standard configuration, with the baseline sealing, shaft style, and winding class provided for this series variant. These features suit installations that do not require a special brake, modified shaft arrangement, or customized enclosure option.