MS2N06-D1BNN-AMUL0-NNNNN-NN

MPN: R914501252

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The MS2N06-D1BNN-AMUL0-NNNNN-NN is a synchronous servo motor made by Bosch Rexroth Indramat. Part of the MS2N Synchronous Servo Motors series, it features a frame size of 06 and a rated power of 1.4 kW. The motor has an IP65 protection rating and operates with natural convection cooling.

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Product Description:

The MS2N06-D1BNN-AMUL0-NNNNN-NN Servo Motor of Bosch company is designed with a focus on energy efficiency and durability that supports long operational life in continuous industrial automation operations as it comes as in efficiently winding design and with a rated speed of 3000 revolutions per minute.

The MS2N06-D1BNN-AMUL0-NNNNN-NN servo motor features a winding resistance of 2.75 Ohm at 20 degrees C that ensures stable electrical performance and it runs at a winding speed of 3000 rpm that provides continuous rotational force. This module encoder performance is based on a basic design with 16 signal periods that uses Hiperface interface and it comes with a self cooling mode which does not require a fan or other devices. It offers smoother acceleration and deceleration with its lower moment of inertia of 0.0014 kgxm^2 and it fits typical mounting demands as it has a standard flange exactness. It has a standstill torque of 9 newton meters at 60 kelvin temperature and has a voltage constant of 117.3 V/1000 min at 20 centigrade that provides consistent back electromotive force properties. This module's maximum current support capability is 25.5 A that allows short duration peak loads and for controlled stop functions it has a size 2 electrically released holding brake.

This MS2N06-D1BNN-AMUL0-NNNNN-NN Servo Motor encoder design features multiturn capability that allows 4096 revolutions of absolute position feedback and it is able to reach maximum torque up to 41.8 newton meters at 20 centigrade temperature. It optimizes current control through its winding inductance of 18 mH and its shaft is manufactured with keyway and half-key balancing without a shaft sealing ring that simplifies the connection process.

Connection Type
Connector (rotatable)
Cooling Method
Natural Convection
Encoder Type
Absolute Multiturn IndraDyn Absolute
Frame Size
Size 06
Ip Rating
IP65
Motor Type
Synchronous Servo Motor
Peak Torque
12.5 Nm
Rated Current
3.6 A
Rated Power
1.4 kW
Rated Speed
3000 rpm
Rated Torque
4.2 Nm
Voltage (dc Link)
750 V
  • MS2N06D1BNNAMUL0NNNNNNN
  • MS2N06 D1BNN AMUL0 NNNNN NN
  • ms2n06-d1bnn-amul0-nnnnn-nn

Frequently Asked Questions about MS2N06-D1BNN-AMUL0-NNNNN-NN:

Q: How does the 18 mH winding inductance benefit motor control in the MS2N06-D1BNN-AMUL0-NNNNN-NN?

A: The 18 mH winding inductance allows smoother current regulation for improved torque control. It helps reduce current ripple during dynamic load changes.

Q: Why is the Hiperface interface used in the MS2N06-D1BNN-AMUL0-NNNNN-NN servo motor?

A: The Hiperface interface enables reliable digital position feedback with reduced wiring complexity. It provides accurate communication between the drive and encoder.

Q: What advantage does the 4096 multiturn encoder offer in the MS2N06-D1BNN-AMUL0-NNNNN-NN?

A: The 4096 multiturn encoder allows absolute position detection over multiple revolutions. This helps in eliminating homing cycles during startup.

Q: How does the keyway shaft design improve coupling in the MS2N06 series servo motor?

A: The keyway shaft provides a secure mechanical connection with the load coupling device. It helps prevent slippage during high torque transmission.

Q: Why is a self-cooling mode important in the MS2N06-D1BNN-AMUL0-NNNNN-NN servo motor?

A: Self-cooling mode reduces the need for external cooling equipment. This design lowers installation complexity and maintenance needs.


Internal Product Review

  • ‘‘The MS2N06-D1BNN-AMUL0-NNNNN-NN servo motor from Bosch delivers excellent performance with a maximum torque of 41.8 Nm and 25.5 A peak current. Its voltage constant of 117.3 V/1000 per minute, ensures stable output. The product also offers a self-cooling mode and standard flange exactness.’’

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