MS2N07-B1BNN-ASUG0-NNANN-NN

MPN: R911378551

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The MS2N07-B1BNN-ASUG0-NNANN-NN synchronous servo motor delivers a rated power of 1.47 kW, a rated torque of 4.6 Nm, and operates at a rated speed of 3000 rpm. Part of the MS2N Synchronous Servo Motors series by Bosch Rexroth Indramat, it features natural convection cooling and an IP65-rated enclosure for robust performance.

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Product Description:

The MS2N07-B1BNN-ASUG0-NNANN-NN servo motor is built by Bosch with a self-cooling IC410 design, to ensure efficient heat dissipation though natural convection. It comes with a single revolution, HIPERFACE® interface encoder system that provide 1 VSS of sinusoidal output signal and uses 50 mA of current from a regulated DC source of 7 to 12 V.

The MS2N07-B1BNN-ASUG0-NNANN-NN motor consumes a rated power of 2080 W and 4.040 A of current from a 3-phase 400 V AC source supply. It delivers a rated torque of 6.80 Nm and operates at a steady speed of 2920 r/minute while its peak speeding capability goes up to 6000 r/minute. This motor has a stationary torque value of 7.40 Nm at 60K and 8.20 Nm at 100K. Its rotor inertia is 0.00197 kg·m² and it is designed with a high torque constant of 1.890 Nm for every ampere of current usage at 68°F. The MS2N motor provide a peak torque of 22.80 Nm at cold condition and 21.0 Nm at 100K of warm condition. Its winding resistance is 4.620 Ohm and its winding inductance is measured as 0.03129 H. This motor features a high voltage constant of 115.10 V/1000 rounds and in overload scenario it uses 14.80 A of peak current for a brief duration.

The MS2N07-B1BNN-ASUG0-NNANN-NN motor comes without a holding brake and it possess a standard flange exactness of 140 mm. It has a smooth shaft accompanied by a sealing ring and the shaft measures 58 mm in length x 32 mm in thickness. The MS2N motor is protected with a PT1000 temperature sensor from thermal overloading. It is painted black from the outside with a standard RAL 9005 varnish and it weighs 9.5 kg.

Connector Orientation
Axial
Cooling Type
Natural Convection
Current (rated)
3.3 A
Enclosure
IP65
Encoder Output Signal
1 VSS (sinusoidal)
Encoder Supply Voltage
7–12 V DC (regulated)
Feedback
Single-turn Encoder
Maximum Torque
13 Nm
Rated Power
1.47 kW
Rated Speed
3000 rpm
Rated Torque
4.6 Nm
Shaft Dimensions
58 mm length × 32 mm diameter
Voltage
400 V
Voltage Constant
115.1 V/1000 rpm
Winding Inductance
31.29 mH
  • MS2N07B1BNNASUG0NNANNNN
  • MS2N07 B1BNN ASUG0 NNANN NN
  • ms2n07-b1bnn-asug0-nnann-nn

Frequently Asked Questions about MS2N07-B1BNN-ASUG0-NNANN-NN:

Q: Why is the HIPERFACE® encoder used in the MS2N07-B1BNN-ASUG0-NNANN-NN motor?

A: The HIPERFACE® encoder provides precise feedback with a sinusoidal 1 VSS signal, ensuring accurate motor control. It enables both position and speed detection for better synchronization.

Q: How does the IC410 self-cooling design benefit the MS2N07-B1BNN-ASUG0-NNANN-NN motor?

A: The IC410 design enables natural convection cooling, eliminating the need for external fans. This reduces maintenance and allows quieter operation in clean environments.

Q: What is the function of the PT1000 sensor in the MS2N07-B1BNN-ASUG0-NNANN-NN?

A: The PT1000 sensor continuously monitors winding temperature for real-time thermal protection. This prevents damage due to overheating in demanding applications.

Q: How does the smooth shaft design impact the MS2N motor’s installation?

A: A smooth shaft simplifies integration with direct-coupled loads or custom couplings. The sealing ring adds protection in environments with dust or moisture exposure.

Q: Why does the MS2N07-B1BNN-ASUG0-NNANN-NN motor use 115.1 V/1000 r voltage constant?

A: A higher voltage constant ensures better back EMF control and dynamic performance. It aids in smoother torque delivery at variable speeds.


Internal Product Review

  • ‘‘The MS2N07-B1BNN-ASUG0-NNANN-NN is a high-efficiency servo motor. It features a 3-phase 400 V AC input, 1.89 Nm/A torque constant and PT1000 temperature protection. This motor is commonly used in robotic arms and CNC machining centers requiring rapid acceleration with precise thermal monitoring.’’

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