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MDD093D-N-060-N2M-110PL2 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat MDD093D-N-060-N2M-110PL2 is a motor for digital drive controllers and is part of the MDD Synchronous Motors series. It delivers a continuous torque at standstill of 24.0 Nm and comes with a holding brake providing 22 Nm of torque. The motor features an integrated multiturn absolute encoder, digital servo feedback, and has a centering diameter of 110 mm.

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Product Description:

The MDD093D-N-060-N2M-110PL2 is a synchronous servo motor produced by Bosch Rexroth Indramat within the MDD Synchronous Motors series. Classified as a motor for digital drive controllers, it converts drive output into precise rotary motion for automated axes in machining centers and material-handling equipment. An integrated multi-turn absolute encoder returns exact shaft position, allowing the controller to maintain coordinated moves over long production cycles. This arrangement supports closed-loop operation where accurate positioning and stable speed control are required.

At standstill, the motor supplies a continuous torque of 24.0 Nm, enabling static load support without thermal overload. During operation, it reaches a nominal speed of 6000 rpm, matching high-throughput machines that require rapid indexing. Mechanical centering is simplified by the 110 mm pilot diameter, while frame size 093 and length code D identify the motor frame and installed length. Feedback is delivered through Digital servo feedback (DSF), giving the drive high-resolution motion data for closed-loop control. The rotor is balanced to the standard grade to limit residual vibration, and power plus signal conductors terminate on a sealed connector interface.

The shaft follows the standard pattern without a side-B extension and is protected by a shaft seal, helping keep contamination out of the bearing area. A blocking brake rated for 22 Nm locks the rotor whenever the amplifier removes current, securing vertical or suspended axes. All connectors face the left side, simplifying cable routing when the machine layout places the cabinet or cable run on that side. The shaft has a keyway for positive torque transfer to gears or pulleys. The housing uses the standard outline for this frame, which keeps the mounting envelope consistent.

Balancing
Standard
Centering Diameter
110 mm
Connection Direction
Left
Connection Type
Connector
Continuous Torque at Standstill
24.0 Nm
Encoder
Integrated multiturn absolute encoder
Holding Brake
With blocking brake
Holding Brake Torque
22 Nm
Housing
Standard
Motor feedback
Digital servo feedback (DSF)
Motor Length Code
D
Motor Size
093
Nominal Speed
6000 min⁻¹
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 MDD093D-N-060-N2M-110PL2:

Q: What type of encoder is integrated in the MDD093D-N-060-N2M-110PL2 motor?

A: The MDD093D-N-060-N2M-110PL2 features an integrated multiturn absolute encoder.

Q: What is the continuous torque at standstill for the MDD093D-N-060-N2M-110PL2?

A: This motor provides a continuous torque of 24.0 Nm at standstill.

Q: Does the MDD093D-N-060-N2M-110PL2 motor have a holding brake, and what is its torque?

A: This model comes equipped with a blocking brake that delivers a holding brake torque of 22 Nm.

Q: What is the nominal speed of the MDD093D-N-060-N2M-110PL2 motor?

A: The MDD093D-N-060-N2M-110PL2 operates at a nominal speed of 6000 min⁻¹.

Q: What shaft configuration does the MDD093D-N-060-N2M-110PL2 motor use?

A: It uses a keyway shaft type and includes a shaft seal for added protection.


Internal Product Review

  • ‘‘The MDD093D-N-060-N2M-110PL2 is a synchronous motor from Bosch Rexroth Indramat designed for digital drive controllers, offering a nominal speed of 6000 min⁻¹ and continuous torque at standstill of 24.0 Nm. This model includes an integrated multiturn absolute encoder with digital servo feedback, ensuring precise position control. The standard housing and shaft seal provide reliable operation for demanding automation environments.’’

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