MS2N06-B1BNN-BMUH0-NNNNN-NN

MPN: R914500427

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The MS2N06-B1BNN-BMUH0-NNNNN-NN servo motor features a flange size of 100 mm, rated power of 1.0 kW, rated torque of 4.1 Nm, and a peak torque of 12.3 Nm. Part of the MS2N Synchronous Servo Motors series by Bosch Rexroth Indramat, it boasts IP65 protection and operates at a rated speed of 3000 rpm.

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Product Description:

The MS2N06-B1BNN-BMUH0-NNNNN-NN is a high-precision servo motor with a medium rotor inertia type, and it features a rotor inertia rating of 0.00048 kg/m². This synchronous motor is manufactured by Bosch Rexroth Indramat, and has a shaft diameter of 24 mm to provide secure coupling and to transfer torque efficiently without the use of mechanical backlash.

The MS2N06-B1BNN-BMUH0-NNNNN-NN servo motor has a standard encoder with 128 signal periods using Hiperface communication. The standstill torque at 60k of this motor is 3.25 Nm, and that is sufficient holding force in stationary modes without causing excessive heat. During operations, this synchronous servo motor is able to output a maximum torque of 10.2 Nm and thus can be fit for applications with high loads and dynamic torque requirements. This motor’s winding inductance of 52.4 mH ensure maximum current output regulation, thus resulting in quiet operation and minimal electromagnetic interference. Having 5 pole pairs, this synchronous servo motor ensures smooth magnetic field rotation, which is essential for producing even torque output at different speeds. The thermal class of this servo motor is 155 (F) as per EN 60034-1:2010 + Cor.:2010, which enables it to run continuously in hot industrial settings.

This motor’s warning temperature is set at 140 °C to ensure thermal protection before reaching critical levels, thereby maintaining component integrity. The cooling mechanism of the MS2N06-B1BNN-BMUH0-NNNNN-NN is based on self-cooling, made for natural heat dissipation through its casing without external fans. The coating on the outside of this motor is Varnish RAL 9005, which provides surface protection against environmental stress, ensuring durability even in harsh environments. This motor operates within an absolute air humidity of 1 to 29 g/m³ to guarantee stable operation in a wide range of ambient conditions.

Absolute air humidity
1 to 29 g/m³
Cooling type
Self-cooling
Encoder type
STANDARD - 128 signal periods, Hiperface
International protection code
IP64
Maximum torque
10.2 Nm
Motor coating
Varnish RAL 9005
Motor-warning temperature
140 °C
Number of pole pairs
5
Rotor inertia type
Medium inertia
Rotor inertia value
0.00048 kg/m²
Shaft diameter
24 mm
Standstill torque at 60k
3.25 Nm
Thermal class (EN 60034-1:2010 + Cor.:2010)
155 (F)
Winding inductance
52.4 mH
  • MS2N06B1BNNBMUH0NNNNNNN
  • MS2N06 B1BNN BMUH0 NNNNN NN
  • ms2n06-b1bnn-bmuh0-nnnnn-nn

Frequently Asked Questions about MS2N06-B1BNN-BMUH0-NNNNN-NN:

Q: How does the Hiperface encoder benefit servo performance?

A: Hiperface enables high-resolution feedback and smooth synchronization with controllers. It improves motion precision in high-speed automation tasks.

Q: Why is a 52.4 mH winding inductance important in this motor?

A: It ensures controlled current flow, reducing ripple and improving operational smoothness. This contributes to enhanced drive system efficiency.

Q: What role do 5 pole pairs play in torque consistency?

A: They help maintain uniform torque across speed ranges. This is critical for stable operation under variable load conditions.

Q: How does the medium rotor inertia of MS2N06-B1BNN-BMUH0-NNNNN-NN support dynamic loads?

A: It balances quick acceleration with system stability. This feature is essential in automation processes with frequent direction changes.

Q: Why is self-cooling advantageous for MS2N06-B1BNN-BMUH0-NNNNN-NN?

A: Self-cooling eliminates the need for external air systems. It reduces complexity in installation and maintenance.


Internal Product Review

  • ‘‘The MS2N06-B1BNN-BMUH0-NNNNN-NN features a 3.25 Nm standstill torque and 10.2 Nm maximum torque for high-load precision tasks. Its 0.00048 kg/m² rotor inertia supports stable acceleration. With a 140 °C motor-warning temperature and 24 mm shaft diameter, this motor is engineered for efficient performance in demanding industrial motion systems.’’

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