MS2N10-D1BFN-CMVK0-NNNNN-NN

MPN: R914000500

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The MS2N10-D1BFN-CMVK0-NNNNN-NN synchronous servo motor features flange mounting, natural convection cooling, a multiturn absolute encoder, and a rotatable connector. Part of the MS2N Synchronous Servo Motors series by Bosch Rexroth Indramat, it offers IP65 protection and operates at a rated voltage of 400 V.

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Product Description:

The MS2N Synchronous Servo Motor series by Bosch Rexroth is ideal for robotics, automation and other motion control applications. The MS2N10-D1BFN-CMVK0-NNNNN-NN servo motor electrical connection utilizes a double cable M40/M17 system with a rotatable feature for easy integration into various setups.

The MS2N10-D1BFN-CMVK0-NNNNN-NN servo motor offers a rated power of 7.35 kW which is suitable for high demand operations in various industries. The motor winding resistance at 20°C is 0.70 ohm. With a winding inductance of 12.2 mH the motor provides stable performance even in variable load conditions. The motor thermal time constant is 38.8 minutes which allows for efficient heat dissipation and consistent performance under heavy load conditions. The MS2N10-D1BFN-CMVK0-NNNNN-NN servo motor is designed to provide durability with a weight of 36 kg while maintaining a compact form factor for ease of integration. The motor winding operates at 1500 rpm which offers high speed while maintaining smooth and accurate control. It features an advanced 20-bit ACURO Link encoder for precise feedback and positioning. The encoder design offers multiturn absolute resolution of 4096 revolutions. The shaft includes a keyway, half-key balancing and a shaft sealing ring to ensure reliable operation. It does not include a holding brake making it lighter and suitable for dynamic movements. The motor flange and bearing are standard, designed to offer stable performance in typical industrial conditions. Its RAL 9005 black varnish coating provides durability against environmental wear and tear.

The MS2N10-D1BFN-CMVK0-NNNNN-NN servo motor excellent starting torque for demanding applications with a standstill torque of 56 Nm and a standstill current of 17 A. The moment of inertia of the rotor is 0.0171 kgm² which ensure smooth operation in systems requiring rapid acceleration and deceleration.

Connection
Rotatable connector
Continuous Torque
Varies by exact winding, typically around 60 Nm for this size
Cooling Method
Natural convection (self-cooling)
Feedback System
Multiturn absolute encoder
Leakage capacitance of the component
3.3 nF
Mass
36 kg
Motor Type
Synchronous servo motor
Mounting Type
Flange mounting
Protection Class
IP65
Rated Voltage
400 V
Size
10
Thermal time constant of motor
38.8 min
Winding Code
1B
Winding resistance at 20 °C
0.70 ohm
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Frequently Asked Questions about MS2N10-D1BFN-CMVK0-NNNNN-NN:

Q: Why is winding inductance of 12.2 mH important in the MS2N10-D1BFN-CMVK0-NNNNN-NN?

A: The inductance stabilizes current flow, ensuring smooth motor response and consistent performance under variable operational conditions.

Q: How does the rotatable M40/M17 double cable connection benefit integration?

A: The design allows flexible positioning during installation, reducing wiring complexity and improving adaptability in compact machine layouts.

Q: Why is a thermal time constant of 38.8 minutes advantageous?

A: The extended constant enables effective heat dissipation, maintaining continuous performance under sustained loads without rapid overheating risks.

Q: What role does the multiturn 4096 revolution encoder design play?

A: The multiturn design tracks shaft rotations over multiple cycles, ensuring accurate absolute positioning in complex automation tasks.

Q: Why is a shaft sealing ring used in the MS2N10-D1BFN-CMVK0-NNNNN-NN?

A: The sealing ring protects internal components from dust and contaminants, ensuring long operational life in harsh environments.


Internal Product Review

  • ‘‘The MS2N10-D1BFN-CMVK0-NNNNN-NN servo motor is engineered for precision with a thermal constant of 38.8 minutes, winding resistance of 0.70 ohm, and 12.2 mH inductance. Its efficient encoder technology and robust shaft design make it essential for industries requiring reliable torque stability and accurate positioning.’’

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