MDD025C-N-100-N2K-040GC1 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat MDD025C-N-100-N2K-040GC1 is part of the MDD Synchronous Motors series and is designed for digital drive controllers. This motor features a centering diameter of 40 mm, a nominal speed of 10000 rpm, and comes with an integrated absolute encoder. It is equipped with a plain shaft with a shaft seal, a holding brake offering 1.0 Nm torque, and features resolver feedback.

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Product Description:

The MDD025C-N-100-N2K-040GC1 synchronous servo motor is manufactured by Bosch Rexroth Indramat within the MDD Synchronous Motors series. As a motor for digital drive controllers, it converts drive commands into controlled mechanical rotation for positioning and velocity tasks on compact pick-and-place axes, small spindles, and other light-duty automation stations. The unit belongs to motor size 025 and uses a housing listed as standard, giving a footprint suited to tight machine layouts.

At its rated operating point the rotor reaches a nominal speed of 10000 min⁻¹, allowing rapid cycle times when paired with a properly tuned drive. Continuous torque at standstill is 0.90 Nm; this describes the steady shaft torque that can be produced without breaching thermal limits when the motor is motionless. Mechanical centering during mounting is handled by a 40 mm centering diameter, and the factory balancing classification is standard to keep residual vibration within permissible limits. Power and feedback conductors exit on Side A, with a connecting cable with coupling unit interface that allows quick plug-in replacement on the machine floor.

The integrated absolute encoder supplies position data for homing-free start-up, while drive commutation relies on resolver feedback embedded in the stator. Motion is transmitted through a plain shaft built without a secondary side-B extension; a shaft seal is fitted, noted as with shaft seal, to limit dust or coolant ingress at the bearing seat. A blocking brake rated at 1.0 Nm keeps the axis secure during power-off or emergency stops. Additional build details include motor length code C, a standard shaft end style, and a product classification that lists the device as a motor for digital drive controllers.

Balancing
Standard
Blocking Brake
With 1.0 Nm Blocking Brake
Centering Diameter
40 mm
Connection Direction
Side A
Connection Type
Connecting cable with coupling unit
Continuous Torque at Standstill
0.90 Nm
Encoder
Integrated absolute encoder
Holding Brake
With blocking brake
Holding Brake Torque
1.0 Nm
Housing
Standard
Motor Feedback
Resolver feedback
Motor For Digital Drive Controllers
MDD
Motor Length Code
C
Motor Size
025
Nominal Speed
10000 min⁻¹
Output Shaft
Plain Shaft
Product Type
Motor for digital drive controllers
Shaft End
Standard (without side B shaft end)
Shaft Seal
With shaft seal
Shaft Type
Plain shaft
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Frequently Asked Questions about MDD025C-N-100-N2K-040GC1:

Q: What type of encoder is used in the MDD025C-N-100-N2K-040GC1 motor?

A: This motor is equipped with an integrated absolute encoder for precise position feedback.

Q: What is the holding brake torque on the MDD025C-N-100-N2K-040GC1 motor?

A: The MDD025C-N-100-N2K-040GC1 features a blocking brake with a holding torque of 1.0 Nm.

Q: What is the continuous torque at standstill for the MDD025C-N-100-N2K-040GC1?

A: The continuous torque at standstill for this model is rated at 0.90 Nm.

Q: What type of shaft configuration does the MDD025C-N-100-N2K-040GC1 motor have?

A: A plain shaft with a shaft seal is provided for this model, helping to prevent ingress of contaminants.

Q: What nominal speed does the MDD025C-N-100-N2K-040GC1 support?

A: The nominal speed for this motor is specified at 10,000 min⁻¹.


Internal Product Review

  • ‘‘The MDD025C-N-100-N2K-040GC1 is a synchronous motor from Bosch Rexroth Indramat, designed for digital drive controllers and featuring a nominal speed of 10,000 min⁻¹. Integrated absolute encoder and resolver feedback ensure precise positioning and reliable performance. The inclusion of a blocking brake with 1.0 Nm holding torque adds excellent stability for demanding automation tasks.’’

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