MS2N06-B1BNN-BMUH1-NNNNE-NN

MPN: R911384928

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The MS2N06-B1BNN-BMUH1-NNNNE-NN servo motor, part of Bosch Rexroth Indramat's MS2N Synchronous Servo Motors series, features a size 06 design with natural convection cooling. It delivers a rated power of 1.4 kW and a maximum torque of 12 Nm. This IP65-rated motor also includes rotatable connectors and multi-turn absolute encoder feedback.

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Product Description:

The Bosch Rexroth Indramat’s manufactured MS2N06-B1BNN-BMUH1-NNNNE-NN Synchronous Servo Motor is made for automation systems that demand high performance along with compact design and accurate delivery of torque. This motor generates a rated power output of 0.85 kW at 100K to offer effective energy output for medium-load industrial usage.

This MS2N06-B1BNN-BMUH1-NNNNE-NN Synchronous Servo Motor has a 116 mm flange size to ensure safe mounting within standardized mechanical structures used in industrial machines. This motor has a 24 mm shaft diameter, which is suitable for rigid mechanical connection with drives and load transfer assemblies. With a PT1000 temperature sensor onboard, this motor provides high-precision thermal feedback to allow for accurate monitoring and protection. This sensor also provides continuous winding temperature assessment to avoid heat buildup. This motor's winding resistance is 12.2 ohms at 20 °C to optimize electric efficiency and minimize resistive losses in continuous-duty operation. Combined with a winding inductance of 52.4 mH, this motor provides improved current regulation, less harmonic distortion, and smooth torque supply across varying loads. This servo motor delivers a standstill torque of 60 Nm at 100K, useful in static positioning and low-speed torque-based applications.

There is an electrically released holding brake integrated into this MS2N06-B1BNN-BMUH1-NNNNE-NN Synchronous Servo Motor, with a holding torque of 10 Nm for secure position preservation during idle times. The brake current of this motor is also rated at 0.73 A to provide a safe brake response with minimum energy draw. The environmental operation of this motor ranges from 0 to 40 °C, with a relative humidity tolerance between 5 to 75%, so it can handle a variety of industrial applications at ambient conditions. The leakage capacitance of this motor is 0.6 nF to minimize capacitive interference with surrounding sensitive electronics.

Ambient temperature during operation
0-40 °C
Flange size
116 mm
Holding brake
Electrically released
Holding brake rated current
0.73 A
Holding torque
10 Nm
Leakage capacitance of the component
0.6 nF
Rated power at 100K
0.85 kW
Relative air humidity
5 to 75 %
Shaft diameter
24 mm
Standstill torque at 100K
60 Nm
Temperature sensor
PT1000
Winding inductance
52.4 mH
Winding resistance at 20 °C
12.2 Ω
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Frequently Asked Questions about MS2N06-B1BNN-BMUH1-NNNNE-NN:

Q: How does the PT1000 sensor improve temperature control in this motor?

A: The PT1000 sensor provides accurate thermal readings directly from the winding. This allows temperature-based control systems to respond faster to prevent overheating.

Q: Why is a winding inductance of 52.4 mH important in servo applications?

A: Higher inductance helps regulate current flow and reduces voltage spikes. This ensures smoother motor operation and less stress on the drive electronics.

Q: What is the benefit of a 0.6 nF leakage capacitance in MS2N06-B1BNN-BMUH1-NNNNE-NN?

A: Low leakage capacitance minimizes interference with sensitive control circuits. It improves overall electromagnetic compatibility in dense automation systems.

Q: How does the 24 mm shaft diameter impact load transmission?

A: A larger shaft diameter increases torsional strength. It supports heavier mechanical loads with less deflection or backlash.

Q: Why is the holding brake electrically released in this model?

A: An electrically released brake ensures fail-safe locking when power is off. It allows the system to maintain position securely during emergencies.


Internal Product Review

  • ‘‘The MS2N06-B1BNN-BMUH1-NNNNE-NN servo motor offers 0.85 kW rated power and 60 Nm standstill torque, ideal for static load conditions. Its 52.4 mH winding inductance supports stable current flow under dynamic loads. The integrated PT1000 sensor ensures precise thermal feedback, and a 10 Nm holding brake secures position control.’’

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