MDD093A-N-020-N2L-130PR2 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat MDD093A-N-020-N2L-130PR2 is part of the MDD Synchronous Motors series and is designed for use with digital drive controllers. This motor features a continuous torque at standstill of 9.2 Nm, a nominal speed of 2000 rpm, and comes with a 22 Nm blocking brake. It has digital servo feedback, a centering diameter of 130 mm, and a shaft with a keyway and seal.

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Product Description:

The MDD093A-N-020-N2L-130PR2 is a synchronous servo motor from Bosch Rexroth Indramat's MDD Synchronous Motors series. It is designed for the manufacturer's digital drive controllers, providing closed-loop torque and speed control for positioning tables, packaging axes, and industrial tasks. This supports accurate motion where stable response and repeatable cycling are required.

At standstill, the motor can sustain a shaft load of 9.2 Nm without overheating, giving machine builders a stable baseline for continuous duty. During motion cycles, it reaches a rated velocity of 2000 min⁻¹, a speed that suits common gearbox ratios and ball-screw leads. Emergency stops and vertical loads are secured by an integrated holding brake that develops 22 Nm of retaining torque. A centering flange of 130 mm helps keep the motor concentric with the mounting surface.

The housing uses frame size 093, which helps maintain dimensional consistency with related motors in the series. Its short A length reduces overall motor depth and can help limit inertia in quick start-stop applications. Power and feedback leads exit on the right side of the stator housing, which can simplify cable routing on multi-axis equipment. A shaft with a keyway provides positive torque transmission without requiring shrink-fit connections.

Rotor position is reported through digital servo feedback (DSF), supplying absolute position information to the drive after power-up. Wake Industrial can arrange same-day shipping, and international shipping is available outside North America. Quotations remain valid for 30 days, and the chat tool on the website can answer questions about type codes or fault codes.

Balancing
Standard
Blocking Brake
With 22.0 Nm Blocking Brake
Centering Diameter
130 mm
Connection Direction
Right
Connection Type
Connector
Continuous Torque at Standstill
9.2 Nm
Holding Brake
With blocking brake
Holding Brake Torque
22 Nm
Housing
Standard
Motor Feedback
Digital servo feedback (DSF)
Motor For Digital Drive Controllers
MDD
Motor Length Code
A
Motor Size
093
Nominal Speed
2000 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 MDD093A-N-020-N2L-130PR2:

Q: What is the continuous torque at standstill for the MDD093A-N-020-N2L-130PR2 motor?

A: The MDD093A-N-020-N2L-130PR2 offers a continuous torque at standstill of 9.2 Nm for reliable holding power.

Q: Does the MDD093A-N-020-N2L-130PR2 include a holding brake and what is its brake torque?

A: This model features a holding brake with a brake torque of 22 Nm to maintain shaft position when powered down.

Q: What is the nominal speed of the MDD093A-N-020-N2L-130PR2 motor?

A: It has a nominal speed of 2000 min⁻¹, suitable for controlled motion applications.

Q: What type of motor feedback is used in the MDD093A-N-020-N2L-130PR2?

A: The MDD093A-N-020-N2L-130PR2 uses digital servo feedback (DSF) for precise position monitoring.

Q: What is the centering diameter of the MDD093A-N-020-N2L-130PR2?

A: This motor is built with a 130 mm centering diameter for accurate alignment during installation.


Internal Product Review

  • ‘‘The MDD093A-N-020-N2L-130PR2 is a synchronous motor from Bosch Rexroth Indramat, engineered for use with digital drive controllers. It delivers 9.2 Nm continuous torque at standstill and integrates a 22 Nm blocking brake for reliable holding capability. Digital servo feedback ensures precise positioning, making this motor a solid choice for automation systems requiring dependable performance.’’

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