MSK061C-0600-NN-M1-UG1-RNNN
The Bosch Rexroth Indramat MSK061C-0600-NN-M1-UG1-RNNN motor is part of the MSK IndraDyn S Synchronous Motors series, designed for precise torque control and high-speed shaft rotation in industrial automation. With a maximum speed of 6000 min-1 and a maximum torque of 32.0 Nm, this synchronous servomotor excels in applications requiring rapid acceleration and dynamic positioning. Its moment of inertia of 0.00080 kg·m² ensures low rotational resistance, allowing for swift responses to command inputs in demanding production environments.
Featuring detailed technical specifications, the MSK061C-0600-NN-M1-UG1-RNNN offers natural convection cooling, eliminating the need for external fans and reducing maintenance complexity. The built-in optical encoder provides 128 signal periods via the Hiperface multiturn interface, ensuring accurate position feedback even after power interruptions. A rotatable encoder connector capable of 240° rotation facilitates flexible installation in confined spaces. The motor’s plain shaft and increased concentricity design contribute to precise coupling with driven equipment, while a sound pressure level under 75 dB[A] makes it suitable for noise-sensitive settings.
Durability and efficiency are enhanced by a standard sealing ring that guards internal components against dust and moisture ingress. Although no holding brake is included, the motor’s holding brake torque rating of 10 Nm indicates compatibility with optional brake modules when required. The winding code 0600 and winding resistance of 0.8 Ohm at 20°C support consistent thermal performance, with continuous torque ratings of 8.8 Nm at 100 K and 8.0 Nm at 60 K. Continuous currents of 10.5 A at 100 K and 9.5 A at 60 K further demonstrate its capacity for sustained operation under varied thermal conditions. In industrial applications, this servomotor’s combination of high torque density, robust encoder feedback, and convection-based cooling delivers reliable, maintenance-free performance for automated manufacturing systems.