The Bosch Rexroth Indramat MSK071C-0200-NN-M3-UG0-NNNN from the MSK IndraDyn S Synchronous Motors series combines precision engineering with robust performance. This IndraDyn S Synchronous Servomotor features a motor size of 071 and a motor length C design, yielding a compact solution for high-speed applications. The unit operates at a rated speed code of 0200, delivering consistent output under varying loads. Its plain shaft configuration and natural convection cooling ensure reliable operation in environments where forced-air systems are impractical.
In continuous standstill conditions at 100 K, the motor provides a continuous current of 6.1 A and a continuous torque of 14.0 Nm, scaling up to a maximum current of 23.4 A and a maximum torque of 44.0 Nm for short-duration peaks. The high winding inductivity of 19,500 mH supports smooth torque transitions, while the capacitive encoder technology ensures precise feedback. With a Hiperface interface and 16 signal periods resolution, the integrated multiturn absolute encoder offers accurate position control and rapid commissioning.
Designed without a holding brake, this standard-design servomotor optimizes weight and inertia for dynamic motion control. The rotatable 240° encoder connector facilitates flexible mounting, reducing cabling strain in compact installations. As a product of Bosch Rexroth Indramat’s MSK Series, the MSK071C-0200-NN-M3-UG0-NNNN delivers a balanced blend of torque density, thermal stability, and integration flexibility for advanced automation systems.
Cooling
Natural convection
Encoder Connector
Rotatable, 240°
Encoder Technology
Capacitive
Encoder Turn Type
Multiturn Absolute
Encoder Interface
Hiperface
Encoder Resolution
16 signal periods
Motor Length
C
Motor Size
071
Holding Brake
Without holding brake
Design
Standard
Product Type
IndraDyn S Synchronous Servomotor
Shaft Type
Plain shaft
Rated Speed Code
0200
Continuous Current at Standstill 100 K
6.1 A
Continuous Torque at Standstill 100 K
14.0 Nm
Maximum Current
23.4 A
Maximum Torque
44.0 Nm
Winding Inductivity
19,500 mH