MS2N07-D0BHN-ASUH0-NNNNN-NN

MPN: R911387863

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The Bosch Rexroth Indramat MS2N07-D0BHN-ASUH0-NNNNN-NN is part of the MS2N Synchronous Servo Motors series and operates with self-cooling via convection. It delivers a rated torque of 4.1 Nm and a maximum torque of 15 Nm. The motor features an IP65 protection class and includes a rotatable plug connection.

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Product Description:

The MS2N07-D0BHN-ASUH0-NNNNN-NN Synchronous Servo Motor is designed and developed by Bosch, one of the most recognized efficiency and precision automation companies in the world. This servo motor is designed for accuracy and has a frame size of D and low rotor inertia to ensure a quick dynamic response. The rated speed is 2000 RPM at 100K which is excellent for precise motion tasks.

The MS2N07-D0BHN-ASUH0-NNNNN-NN Synchronous Servo Motor has a winding designed for speed stability at 2000 rpm for consistent operation of the motor. This motor has a self-cooling mode with no external cooling required for maximum efficiency. The shaft design is smooth and comes provided that it is without a shaft sealing ring. It has the standard bearing type for solid support. The encoder system offers entry-level performance with 16 signal periods with the Hiperface interface. It is constructed as a single-turn encoder also, with one absolute revolution being able to accurately detect position. Double cable connections, M23 and M17 provide the electrical connection, and can both be rotated for flexible installation. The design standard is B5 / IM3001, and has an integrated PT1000 for thermal monitoring. The torque constant at 20 °C is 2.76 Nm/A, while the voltage constant is at 167.5 V/1000/min for electrical efficiencies. The winding resistance is measured at 1.30 ohms, and winding inductance is at 20.2 mH, which helps with stability under different loading conditions.

The MS2N07-D0BHN-ASUH0-NNNNN-NN Synchronous Servo Motor supports a max current of 36.4 A. The thermal time constant of the winding is 54.0 seconds while the thermal time constant of the motor itself is 18.7 minutes, which provides a guarantee that the motor can safely operate when utilized over longer periods of time. The motor has a varnish coating, which is standard, and is a RAL varnish in RAL 9005 of black, which provides protection and durable features. The leakage capacitance value is 4.1 nF which provides known insulation characteristics.

Frame length
D
Leakage capacitance
4.1 nF
Maximum current
36.4 A
Rated speed at 100K
2000 Rpm
Rotor inertia
Low
Thermal time constant of motor
18.7 min
Thermal time constant of winding
54.0 sec
Torque constant at 20 °C
2.76 Nm/A
Voltage constant at 20 °C
167.5 V/1000/min
Winding inductance
20.2 mH
Winding resistance
1.30 ohms
Winding speed
2000 rpm
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Frequently Asked Questions about MS2N07-D0BHN-ASUH0-NNNNN-NN:

Q: How does the low rotor inertia in MS2N07-D0BHN-ASUH0-NNNNN-NN servo motor improve performance?

A: The low rotor inertia allows faster acceleration and deceleration. This helps achieve highly dynamic responses in precise motion control tasks.

Q: Why is the PT1000 integration important in this servo motor?

A: The PT1000 sensor provides real-time winding temperature monitoring. This helps prevent overheating and ensures long-term reliability under continuous duty.

Q: How does the encoder resolution of 16 signal periods benefit the motor?

A: The encoder resolution enhances position feedback accuracy. This results in smoother motion profiles and precise control during automation processes.

Q: Why is a smooth shaft design without a sealing ring used in MS2N07-D0BHN-ASUH0-NNNNN-NN servomotor?

A: The smooth shaft reduces friction and mechanical wear. This ensures higher reliability in applications where sealing is not required.

Q: How does winding inductance of 20.2 mH affect motor operation?

A: The inductance provides stable current regulation during load fluctuations. This ensures smooth torque output and reliable drive operation.


Internal Product Review

  • ‘‘The MS2N07-D0BHN-ASUH0-NNNNN-NN Servo Motor provides precise motion with Hiperface encoder feedback. It's 36.4 A peak current supports demanding cycles, while 1.30 ohms winding resistance stabilizes performance. This motor is vital in automation requiring reliable torque delivery of 2.76 Nm/A.’’

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