MS2N10-D1BNA-AMBK0-NNNNN-NN
MPN: R914000805
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The MS2N10-D1BNA-AMBK0-NNNNN-NN synchronous servo motor boasts a rated torque of 48 Nm, a maximum torque of 110 Nm, and a rated speed of 3000 rpm. Part of the MS2N Synchronous Servo Motors from Bosch Rexroth Indramat, it includes a singleturn absolute encoder and operates with a rated voltage of 400 V AC.
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Product Description:
The MS2N10-D1BNA-AMBK0-NNNNN-NN Servo motor from Bosch manufacturer is designed for precision drive tasks. It is part of the MS2N product family and is designed with a frame size of 10. The length code D represents a medium-to-long configuration. According to class 1, the rotor inertia falls into the average band. The mounting method is IM B5, which specifies a flange-mounted arrangement.
The surface of the MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor is protected with a black coating according to RAL 9005. The thermal endurance of the motor is rated for 155 °C as it is listed as insulation class F. It has the protection level of IP65 and is supported by a shaft sealing ring. The cooling is maintained by axial forced ventilation at 230 V and 50 Hz. The average operating sound pressure level is about 75 dB(A). A PT1000 temperature sensor is included for thermal monitoring. The MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor provides a rated torque of 42.1 Nm under defined duty. The rated rotational speed is 3000 rpm. At this point, the servo motor yields a power level of 13.2 kW. The necessary operating current for the motor amounts to 27.0 A. The standstill torque is measured at 78.0 Nm. The corresponding standstill current is 48.5 A. The peak torque of the motor is 174 Nm at 20 °C.
The MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor has a torque constant of 1.76 Nm/A at 20 °C. The voltage coefficient is 107.6 V per 1000 revolutions per minute at 20 °C. The winding resistance is rated at 0.178 ohms. The parasitic capacitance associated with the MSN servo motor equals 3.33 nF. The maximum permissible speed is 6000 revolutions per minute. This limit applies to both mechanical and electrical operations.
Frequently Asked Questions about MS2N10-D1BNA-AMBK0-NNNNN-NN:
Q: What alignment factors affect MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor integration?
A: The MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor requires precise mechanical alignment to avoid bearing stress. Misalignment introduces vibration, reducing component life and positioning accuracy.
Q: How does grounding affect MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor stability?
A: Improper grounding of the MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor can cause signal interference or fault tripping. Effective EMC grounding ensures safe and predictable motion system behavior.
Q: Why does the MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor need shielded cabling?
A: The MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor uses high-frequency signals sensitive to noise. Shielded cabling prevents feedback distortion, critical in closed-loop automation systems.
Q: What drive configuration challenges occur with MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor?
A: The MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor requires precise tuning of controller parameters. An incorrect setup can cause oscillations or delayed servo response in dynamic loads.
Q: How do cooling systems affect MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor integration?
A: The MS2N10-D1BNA-AMBK0-NNNNN-NN servo motor depends on forced ventilation to maintain thermal stability. Poor airflow planning compromises heat dissipation and shortens duty performance.