MSK050C-0300-NN-M2-UG0-RNNN
MSK IndraDyn S Synchronous Motors
The MSK050C-0300-NN-M2-UG0-RNNN from Bosch Rexroth Indramat features natural convection cooling and a multiturn optical encoder. Part of the MSK IndraDyn S Synchronous Motors series, it achieves 15 Nm max torque and 4700 rpm top speed. This servomotor also offers 5.5 Nm continuous torque and a winding inductance of 46.1 H.
It uses a rotatable 240° encoder interface with 2048 signal periods resolution. The motor size is 050 with increased concentricity design. With a plain shaft and winding code 0300, it supports 12.4 A max current.
Technical Specifications
Cooling
Natural convection
Encoder Connector
Rotatable, 240°
Encoder Interface
EnDat2.1
Encoder Resolution
2048 signal periods
Encoder Technology
Optical
Encoder Turn Type
Multiturn Absolute
Motor Length
C
Motor Size
050
Holding Brake
Without holding brake
Design
Increased concentricity
Product Type
IndraDyn S Synchronous Servomotor
Shaft Type
Plain shaft
Winding Code
0300
Continuous Current at Standstill 100 K
3.4 A
Continuous Torque at Standstill 100 K
5.5 Nm
Maximum Current
12.4 A
Maximum Torque
15.0 Nm
Winding Inductivity
46,100 mH
Frequently Asked Questions
How does the optical encoder in MSK050C-0300-NN-M2-UG0-RNNN improve system accuracy?
The optical encoder ensures precise feedback with 2048 signal periods. This accuracy supports demanding positioning tasks where repeatability is essential.
Why is a multiturn absolute encoder used in MSK050C-0300-NN-M2-UG0-RNNN?
A multiturn absolute encoder tracks position across multiple rotations. This eliminates homing sequences after power cycles, saving setup time.
What advantage does increased concentricity in MSK050C-0300-NN-M2-UG0-RNNN provide?
Increased concentricity minimizes shaft misalignment and vibration. This leads to smoother performance in continuous motion applications.
How does the plain shaft design of MSK050C-0300-NN-M2-UG0-RNNN support integration?
The plain shaft allows flexible coupling with various mechanical systems. It simplifies installation in both linear and rotary equipment.
Why is the EnDat 2.1 interface used in this motor?
EnDat 2.1 provides digital communication with error checking. It ensures reliable transfer of position data to the controller.
Common Misspellings
MSK 050C-0300-NN-M2-UG0-RNNN
MSK-050C-0300-NN-M2-UG0-RNNN
MSK050C 0300 NN M2 UG0 RNNN
MSK050C-0300-NN-M2-UG0
msk050c-0300-nn-m2-ug0-rnnn
MSK050C0300NNM2UG0RNNN
MSKO50C-0300-NN-M2-UG0-RNNN
MSKO5OC-O3OO-NN-M2-UGO-RNNN
MSK050C0300NNM2UG0RNNN
MSK050C 0300 NN M2 UG0 RNNN
MSK50C-0300-NN-M2-UG0-RNNN
Internal Product Review
The synchronous servo motor MSK050C-0300-NN-M2-UG0-RNNN features an optical encoder with EnDat 2.1 and 2048 signal periods. It is built by Bosch Rexroth Indramat and offers 3.4 A of continuous current during standstill and a plain shaft with improved concentricity. This makes it worthwhile for robotics, packaging, and semiconductor gear.
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