MS2N10-E0BNN-DMAG3-NNNNN-NN

MPN: R911399414

No Tariffs On US Orders
  • Straightforward Pricing: No Rush Fees, No Credit Card Fees
Ask for Availability

Preparing your secure checkout page...

The MS2N10-E0BNN-DMAG3-NNNNN-NN Servo Motor is manufactured by Bosch Rexroth Indramat. This motor has a winding of 3,000 min with a Multiturn encoder design. This motor is Not Equipped with a holding brake, it has a Smooth, with shaft seal shaft, and a M58 Angle Plug, Side A electrical connection.

Quote Request Form:

Warranty
Wake Industrial Warranty
To contact sales for pricing and lead time:

Payment Methods

Visa
Mastercard
AmEx
Wire Transfer

Shipping Methods

DHL
UPS
FedEx
Freight

Our Credentials

Cary Chamber
DUNS Registered
SAM Registered
BBB Accredited

Product Description:

Electrical Connection
M58 Angle Plug, Side A
Max. Speed (Electrical)
6000 rpm
Maximum Speed (Mechanical)
6000 rpm
Number of Pole Pairs
5
Rated Current (100K)
22.2 A
Rated Power (100K)
9.15 Kw
Rated Speed (100K)
2120 rpm
Rated Torque (100K)
41.2 Nm
Torque Constant at 20 °C
2.1 Nm/A
Winding Resistance at 20 °C
0.133 ohms
  • MS2N10E0BNNDMAG3NNNNNNN
  • MS2N10 E0BNN DMAG3 NNNNN NN
  • ms2n10-e0bnn-dmag3-nnnnn-nn

Frequently Asked Questions about MS2N10-E0BNN-DMAG3-NNNNN-NN:

Q: What is the standstill torque of the MS2N10-E0BNN-DMAG3-NNNNN-NN at 60K and 100K?

A: At 60K, the standstill torque is 67.7 Nm, providing ample force for most applications. At 100K, it reaches a commendable 82.5 Nm, making it suitable for high-demand scenarios.

Q: How much is the standstill current of the motor at 60K and 100K?

A: The standstill current at 60K is 34.5 A, indicative of its power efficiency. Meanwhile, at 100K, it draws 42.8 A, ensuring that the motor remains within safe operating limits.

Q: What is the moment of inertia of the rotor of the MS2N10-E0BNN-DMAG3-NNNNN-NN without the brake?

A: The moment of inertia of the rotor without a brake is 0.0114 kg*m2. This ensures swift and precise acceleration or deceleration, enhancing the system's response time.

Q: What is the winding inductivity of the component of the MS2N10-E0BNN-DMAG3-NNNNN-NN?

A: The winding inductivity of the component is 4 mH. This is crucial for the proper functioning of the motor and determines its electromagnetic characteristics.

Q: How long is the thermal time constant of the winding of the MS2N10-E0BNN-DMAG3-NNNNN-NN?

A: The thermal time constant of the winding is 122.5 seconds, ensuring that the winding takes adequate time to heat, thus safeguarding against premature wear and damage.


Internal Product Review

  • ‘‘The MS2N10-E0BNN-DMAG3-NNNNN-NN showcases impressive torque values at both 60K and 100K. Its low thermal time constant and low winding inductivity underline its technical and design efficiency.’’

Motion Industries logo
3M logo
IBM logo
Gexpro Logo
Caterpillar logo
NASA logo
Ford logo
Vallen logo