The Bosch Rexroth Indramat MSK101D-0200-NN-M1-BG0-NSNN is a high-performance component in the MSK IndraDyn S Synchronous Motors series. This IndraDyn S Synchronous Servomotor features a Motor Size: 101 and delivers a Maximum Torque: 160.0 Nm, ensuring robust force in demanding motion control applications. Its Continuous Torque at Standstill 100 K: 57.0 Nm supports stable positioning under load, making it ideally suited for precision automation and servo-driven systems.
Designed for reliability, this servomotor employs natural convection cooling to maintain optimal temperatures without auxiliary fans. The motor integrates an optical Encoder Technology with a multiturn absolute Encoder Turn Type and Hiperface Encoder Interface, providing high-accuracy feedback. Its encoder resolution of 128 signal periods allows fine position monitoring, while a winding inductivity of 6,000 mH and Maximum Current: 99.9 A ensure smooth current control and rapid dynamic response.
Built in a standard and explosion protection design, the MSK101D-0200-NN-M1-BG0-NSNN operates reliably in harsh environments. The plain shaft construction and absence of a holding brake simplify integration and reduce maintenance. A dedicated B-Side Power Connector streamlines installation and serviceability. Altogether, this servomotor offers exceptional durability, high torque density, and precise control, delivering significant efficiency gains and long-term cost savings in industrial automation and motion control applications.
Cooling
Natural convection
Power Connector
B-Side
Encoder Technology
Optical
Encoder Turn Type
Multiturn Absolute
Encoder Interface
Hiperface
Encoder Resolution
128 signal periods
Motor Length
D
Motor Size
101
Holding Brake
Without holding brake
Design
Standard and Explosion Protection
Product Type
IndraDyn S Synchronous Servomotor
Shaft Type
Plain shaft
Rated Speed Code
0200
Continuous Current at Standstill 100 K
26.8 A
Continuous Torque at Standstill 100 K
57.0 Nm
Maximum Current
99.9 A
Maximum Torque
160.0 Nm
Winding Inductivity
6,000 mH