MSK060B-0600-NN-S2-UG1-RNNN
MPN: R911306638
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In-Stock, Ships 3-5 Days
The MSK060B-0600-NN-S2-UG1-RNNN is manufactured by Rexroth Indramat Bosch as part of the MSK Servo Motor Series. It features a continuous torque of 5.5 Nm and a continuous current of 3.3 A. It also displays a maximum torque of 15.0 Nmand a maximum current of 12.0 A and a winding inductive of 73,000 mH
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Product Description:
As technology improves, the modern needs of the machine users and designers continue to change and Bosch Rexroth has remained at the forefront in offering motion control components that are scalable, extremely rugged, future-proof and innovative. Whether your needs surround supply modules, drive controllers, servo drives, low inertia motors, synchronous motors, spindle drives, or even mains filters, Bosch Rexroth got your back. You’ll enjoy automation aftermarket accessories that are customizable to your particular application needs and that can also accommodate an array of appliances. The integrated systems and continuous testing at Bosch Rexroth assures you of unmatched quality and sustainable performance.
The MSK060B-0600-NN-S2-UG1-RNNN synchronous motor may be cooled naturally or through surface cooling. With the surface cooling, and the unit on a standstill, the continuous torque is 10.4 Nm and the continuous current is absent. At 60K, the continuous current at standstill is estimated to be 9.5A while the continuous torque is 8Nm. With 100K overtemperature and the unit stationary, the continuous torque is estimated to be 8.8 Nm while the continuous current stands at 10.5 Amps. While the unit’s peak current is 38A, the maximum torque is 24 Nm.
When you maintain the temperature of the MSK060B-0600-NN-S2-UG1-RNNN motor at 200C, the constant voltage will be 57V/min-1, the torque constant 0.93Nm/A, and the winding resistance will be 0.8 Ohms. The estimated maximum speed of this unit is 6000 min-1, the number of poles required is 4 and the winding inductivity is estimated to be 8.6mH. The motor’s ideal operating temperature is estimated to be 0 to 400C and the thermal time constant is 14 minutes. The component’s leakage capacitance stands at 2.2nF and the rotor moment of inertia without brakes is 0.0008KgXm2.