MS2N05-D0BRN-ASDL0-NNNNN-NN

MPN: R911395963

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The MS2N05-D0BRN-ASDL0-NNNNN-NN synchronous servo motor features a rated speed of 3000 rpm, a rated power of 0.55 kW, and self-cooling technology. Part of the MS2N Synchronous Servo Motors by Bosch Rexroth Indramat, it offers IP65 protection and utilizes single cable (Hiperface DSL) connection for efficient operation.

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Product Description:

The MS2N05-D0BRN-ASDL0-NNNNN-NN Synchronous Servo Motor is manufactured by Bosch Indramat a renowned producer of servo motors and industrial automation technology which offers advanced and reliable solutions in motion control. It provides a standstill torque of 7.9 Nm with a corresponding current of 6.05 A at 60 K. At 100 K it delivers an increased standstill torque of 9.35 Nm operating with a current of 7.2 A for enhanced performance under higher load conditions.

The MS2N05-D0BRN-ASDL0-NNNNN-NN Synchronous Servo Motor features a rated speed of 3510 revolutions per minute at 100 K which confirms reliable output for continuous motion tasks. The rotor inertia is precisely rated at 0.00040 kgm² for stable and efficient acceleration in high-speed automation systems. The motor is capable of delivering a maximum torque of 34.0 Nm at a standard ambient temperature of 20 °C. At 100 K the motor maintains strong output with a maximum torque of 31.3 Nm. Under full load, the servo motor draws a peak current of 30.3 A. This motor is ideal for high-speed machinery as it can achieve a maximum electrical speed of 6000 revolutions per minute. It integrates five pole pairs to confirm balanced and consistent magnetic field production. The torque constant at 20 °C is measured at 1.4 Nm per Ampere contributing to accurate torque control. The voltage constant under the same condition is rated at 84.8 V per 1000 min⁻¹ which aligns with high-precision system requirements.

The MS2N05-D0BRN-ASDL0-NNNNN-NN Synchronous Servo Motor includes a winding resistance of 1.76 Ohm at 20 °C. The winding inductance is 11.18 mH for optimal coil performance. It has a component leakage capacitance of 3.29 nF which aids in electrical insulation. The thermal time constant of the winding is 45.8 seconds, while the motor thermal time constant is 18.5 minutes.

Maximum current
30.3 A
Maximum speed (electrical)
6000 1/min
Maximum torque 100K
31.3 Nm
Maximum torque 20 °C
34.0 Nm
Moment of inertia of rotor
0.00040 kgm^2
Number of pole pairs
5
Rated speed - 100K
3510 1/min
Standstill current - 60K
6.05 A
Standstill torque - 60K
7.9 Nm
Torque constant at 20 °C
1.4 Nm/A
Voltage constant at 20 °C
84.8 V/1000 min^-1
  • MS2N05D0BRNASDL0NNNNNNN
  • MS2N05 D0BRN ASDL0 NNNNN NN
  • ms2n05-d0brn-asdl0-nnnnn-nn

Frequently Asked Questions about MS2N05-D0BRN-ASDL0-NNNNN-NN:

Q: How does a peak current of 30.3 A influence the motor’s response time?

A: The high peak current capacity allows for sharp bursts of torque, reducing lag and enhancing responsiveness in fast-moving applications.

Q: What impact does the winding resistance of 1.76 Ohm have on motor control?

A: The resistance level supports efficient thermal management and affects current draw, which is crucial for managing drive electronics under load.

Q: How does the rated speed of 3510 rpm at 100 K help in continuous operations?

A: The stable high-speed rating ensures uninterrupted performance under thermal stress, making it suitable for demanding industrial processes.

Q: Why is leakage capacitance of 3.29 nF significant for servo motors?

A: The leakage capacitance improves electrical insulation and reduces EMI interference, maintaining signal integrity in sensitive automation environments.

Q: How does the torque constant of 1.4 Nm/A improve control precision in MS2N05-D0BRN-ASDL0-NNNNN-NN?

A: The torque constant provides a direct linear relationship between current and torque output, essential for closed-loop control and fine-tuned system behavior.


Internal Product Review

  • ‘‘The MS2N05-D0BRN-ASDL0-NNNNN-NN delivers impressive motion control with its 6000 rpm max speed and 31.3 Nm max torque at 100 K. Its 45.8-second winding thermal time constant supports stable operation. This motor is vital for high-efficiency systems requiring tight response and thermal endurance. It also has a leakage capacitance of 3.29 nF for improved electrical insulation.’’

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