MDD065D-N-040-N2M-095PR0 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat MDD065D-N-040-N2M-095PR0 is a motor for digital drive controllers in the MDD Synchronous Motors series. It features a nominal speed of 4000 min⁻¹ and delivers a continuous torque at standstill of 2.7 Nm. The motor includes an integrated multiturn absolute encoder and digital servo feedback, and uses a keyway shaft with a 95 mm centering diameter.

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Product Description:

The MDD065D-N-040-N2M-095PR0 is a synchronous servo unit from the MDD Synchronous Motors series produced by Bosch Rexroth Indramat. It is intended for use with digital drive controllers to provide closed-loop position and velocity control in automated machinery. By combining a permanent-magnet rotor with electronic commutation, the motor delivers repeatable motion suited to assembly lines, packaging stations, and material-handling axes. Its operating concept supports accurate response to changing command signals during indexing, transfer, and positioning tasks.

The motor uses a centering diameter of 95 mm for accurate alignment on compatible mounting faces. Power and feedback conductors exit on the right side through a circular connector, which helps keep cable routing orderly in multi-axis layouts. When energized, the unit can deliver 2.7 Nm of continuous standstill torque without thermal overload, and the rotor reaches a nominal speed of 4000 rpm for fast cycle operation. Position data are provided by an integrated multi-turn absolute encoder, so the drive can recover shaft angle after a power interruption without a homing cycle.

Dynamic balance is maintained to a standard grade, minimizing residual vibration at the keyway shaft interface during rotation. A fitted shaft seal blocks coolant splash and fine particulates from entering the front bearing area. The motor is supplied without a blocking brake, so any holding function must be provided by the drive or by external mechanical means when the axis is stopped. Digital servo feedback wiring matches Indramat controller inputs, and the housing uses the standard cooling surface for convection. The D-length stator package and 065 frame size keep the motor compact, and the single-ended shaft without a side-B extension helps reduce the overall installation length.

Balancing
Standard
Blocking Brake
Without Blocking Brake
Centering Diameter
95 mm
Connection Direction
Right
Connection Type
Connector
Continuous Torque at Standstill
2.7 Nm
Encoder
Integrated multiturn absolute encoder
Holding Brake
Without blocking brake
Housing
Standard
Motor feedback
Digital servo feedback (DSF)
Motor For Digital Drive Controllers
MDD
Motor Length Code
D
Motor Size
065
Nominal Speed
4000 min⁻¹
Output Shaft
Shaft With Keyway Per DIN 6885 sh. 1, 8-68 Edition
Product Type
Motor for digital drive controllers
Shaft End
Standard (without side B shaft end)
Shaft Seal
With shaft seal
Shaft Type
keyway
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Frequently Asked Questions about MDD065D-N-040-N2M-095PR0:

Q: What type of encoder is integrated into the MDD065D-N-040-N2M-095PR0 motor?

A: The MDD065D-N-040-N2M-095PR0 motor uses an integrated multiturn absolute encoder for feedback.

Q: What shaft type does the MDD065D-N-040-N2M-095PR0 motor feature?

A: This model is equipped with a keyway shaft type for mechanical connection.

Q: What is the continuous torque at standstill of the MDD065D-N-040-N2M-095PR0?

A: The continuous torque at standstill for this motor is rated at 2.7 Nm.

Q: Which way is the connection direction for the MDD065D-N-040-N2M-095PR0 motor?

A: The connection direction for this motor is oriented to the right.

Q: Does the MDD065D-N-040-N2M-095PR0 motor have a holding brake?

A: This motor does not include a blocking brake.


Internal Product Review

  • ‘‘The MDD065D-N-040-N2M-095PR0 is a synchronous motor from Bosch Rexroth Indramat's MDD series, featuring a nominal speed of 4000 rpm and continuous torque at standstill of 2.7 Nm. Its integrated multiturn absolute encoder and digital servo feedback ensure precise positioning and reliable operation. This motor stands out for applications requiring consistent speed and accurate feedback control.’’

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