R36SSNA-R2-NS-NV-06 Pacific Scientific
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The Pacific Scientific R36SSNA-R2-NS-NV-06 is a servo motor from the R Servomotors series with a standard housing style. It uses rare earth samarium cobalt as its magnet material and features a frameless resolver transmitter type size 21 for primary feedback. This model does not include a holding brake or shaft seal.
Internal Product Review
The R36SSNA-R2-NS-NV-06 is a Pacific Scientific servo motor built with rare earth samarium cobalt magnets for strong, stable electromagnetic performance. Frameless resolver primary feedback supports accurate motion control, and the standard housing allows straightforward machine integration. The no-brake configuration makes the R36SSNA-R2-NS-NV-06 a very practical choice for streamlined servo assemblies.
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Product Description:
The R36SSNA-R2-NS-NV-06 is a rotary servo motor manufactured by Pacific Scientific for the R Servomotors series. It converts commanded current into precise shaft torque and velocity, allowing automated equipment to perform indexed or continuous moves with repeatable accuracy. The compact frame is suitable for pick-and-place stations, conveyors, and light process axes where limited space and fast dynamic response are important.
The motor is supplied with no brake, which removes residual drag and simplifies the inertial model; however, machines that must secure vertical loads will need an external holding mechanism. Inside the standard housing, the stator windings couple to rare-earth samarium-cobalt magnets, providing a high energy product and stable magnetic flux at elevated temperatures. Rotor position is reported by a frameless size 21 resolver, whose transmitter format produces sine-cosine signals compatible with suitable servo drives. This analog feedback provides continuous rotor-angle information while the system is operating. The resolver also allows the drive to determine the shaft angle within one mechanical revolution at startup without requiring encoder electronics inside the motor cavity.
The unit is a servo motor, so its phase windings are optimized for rapid current reversal and low electrical time constants rather than direct across-the-line operation. There is no secondary feedback, so controller wiring is limited to the primary resolver and power conductors, reducing cable bulk in moving-axis cable assemblies. Because of the lack of a shaft seal, the motor should be installed in a clean environment or behind a gearbox where process fluids and dust are contained. The resolver provides durable analog feedback without the optical components used in many encoders. External load retention is necessary when the application requires the shaft to remain stationary after motor power is removed.