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MDD093C-N-040-N2L-130PL2 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat MDD093C-N-040-N2L-130PL2 is part of the MDD Synchronous Motors series and is designed for use with digital drive controllers. This motor features a centering diameter of 130 mm, a standard shaft with keyway, and a nominal speed of 4000 min⁻¹. It is equipped with a blocking brake providing 22 Nm torque and uses digital servo feedback.

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Product Description:

The MDD093C-N-040-N2L-130PL2 is a synchronous servo motor supplied by Bosch Rexroth Indramat and belongs to the MDD Synchronous Motors series. It is used with digital drive controllers, where it converts electrical commands from the drive into controlled rotary motion for positioning, speed control, and torque regulation in automated machinery. This type of motor is commonly used on machine axes that require smooth acceleration, precise stopping, and repeatable motion. Its synchronous design supports stable response during frequent start, stop, and speed-change cycles.

The motor uses the series' standard balancing class, so extra vibration isolators are not required. A centering diameter of 130 mm aligns the flange precisely on machine frames and helps maintain concentricity between the rotor and the driven load. The motor uses unit size 093 with length code C, indicating the frame geometry and stack length used for this model. The rotor is designed for a nominal speed of 4000 rpm, allowing rapid cycle operation with compatible inverters. Power and feedback plugs exit on the left side, which can simplify cable routing where service access is kept to the right. A sealed housing in the standard series configuration protects the windings from airborne oil and dust during continuous duty.

The motor has a blocking brake rated at 22 Nm. It keeps the shaft locked when the inverter is disabled and helps prevent load drift on vertical axes. Feedback is provided through digital servo feedback, allowing the drive controller to close high-resolution position loops without a separate external encoder. Electrical power and sensor leads share a single connector interface instead of hard-wired terminals. The motor also has a shaft seal that helps prevent lubricant migration toward the bearings, and the shaft has a keyway for use with standard hub-style couplings. The shaft end is provided only on side A, so auxiliary devices cannot be mounted on the rear of the rotor.

Balancing
Standard
Centering Diameter
130 mm
Connection Direction
Left
Connection Type
Connector
Holding Brake
With blocking brake
Holding Brake Torque
22 Nm
Housing
Standard
Motor Feedback
Digital servo feedback (DSF)
Motor Length Code
C
Motor Size
093
Nominal Speed
4000 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 MDD093C-N-040-N2L-130PL2:

Q: What is the holding brake torque for the MDD093C-N-040-N2L-130PL2 motor?

A: The MDD093C-N-040-N2L-130PL2 motor features a holding brake with a torque of 22 Nm.

Q: What type of motor feedback does the MDD093C-N-040-N2L-130PL2 provide?

A: This model is equipped with digital servo feedback (DSF) for position and speed monitoring.

Q: What is the connection direction of the MDD093C-N-040-N2L-130PL2 motor?

A: The MDD093C-N-040-N2L-130PL2 has its electrical connection oriented to the left.

Q: What kind of shaft and seal does the MDD093C-N-040-N2L-130PL2 feature?

A: This motor is supplied with a keyway shaft type and includes a shaft seal for added protection.

Q: What is the nominal speed of the MDD093C-N-040-N2L-130PL2 motor?

A: The nominal speed of this motor is rated at 4000 min⁻¹.


Internal Product Review

  • ‘‘The MDD093C-N-040-N2L-130PL2 is a synchronous motor from Bosch Rexroth Indramat, designed for digital drive controllers with a nominal speed of 4000 rpm and standard housing. Featuring digital servo feedback and a keyway shaft type, this unit ensures precise control and reliable operation. The integrated blocking brake with 22 Nm holding torque further enhances stability during machine stops, making it a solid choice for demanding automation environments.’’

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