MSK040C-0450-NN-M3-UG0-NNNN, Bosch Rexroth Indramat, MSK IndraDyn S Synchronous Motors represent a precision-engineered solution in servo drive technology. This Product Type is designed in a Standard configuration with a Plain shaft for seamless mechanical coupling. Featuring a compact Motor Size 040 and a tailored Motor Length C footprint, it delivers responsive motion control in constrained machine spaces. The series emphasizes reliability with a brushless topology and capacitive sensing.
Incorporating a Multiturn Absolute encoder, the motor employs Capacitive technology with a Rotatable, 240° connector for flexible routing. The Hiperface interface and 16 signal periods resolution ensure high-fidelity position feedback. Rated for a Rated Speed Code 0450, it offers a Continuous Torque at Standstill 100 K of 3.1 Nm and maintains Continuous Current at Standstill 100 K of 3.1 A. Under dynamic loads, it sustains a Maximum Torque of 8.1 Nm with peaks up to Maximum Current of 9.6 A, underpinned by a Winding Inductivity of 37,900 mH. Natural convection Cooling eliminates fans, and the motor is supplied Without holding brake for minimal inertia.
Engineered for rapid integration into CNC, robotics, and automated assembly, the MSK040C-0450-NN-M3-UG0-NNNN delivers deterministic control with minimal tuning. The brushless design and high-resolution Hiperface feedback ensure exceptional repeatability and long-term stability. Its fanless cooling and rugged construction offer low maintenance and high uptime in industrial environments.
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
040
Holding Brake
Without holding brake
Design
Standard
Product Type
IndraDyn S Synchronous Servomotor
Shaft Type
Plain shaft
Rated Speed Code
0450
Continuous Current at Standstill 100 K
3.1 A
Continuous Torque at Standstill 100 K
3.1 Nm
Maximum Current
9.6 A
Maximum Torque
8.1 Nm
Winding Inductivity
37,900 mH