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MDD093D-N-020-N2L-110PR1 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat MDD093D-N-020-N2L-110PR1 is a motor for digital drive controllers from the MDD Synchronous Motors series. It features a nominal speed of 2000 rpm, a continuous standstill torque of 24.0 Nm, and a digital servo feedback system. The motor has a centering diameter of 110 mm, a keyway shaft type with shaft seal, and includes an 11 Nm blocking brake.

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Product Description:

The MDD093D-N-020-N2L-110PR1 is a synchronous servo motor manufactured by Bosch Rexroth Indramat for the MDD Synchronous Motors series. Designed for use with digital drive controllers, it supplies controlled rotary motion for positioning tables, gantry axes, and other automation tasks that require accurate speed and position control. The motor uses size 093 with length code D, standard rotor balancing, and a standard housing suited for cabinet or machine-frame mounting. It is built with a single shaft end, so there is no side B shaft projection and less axial space is required at the rear of the motor. This layout is useful where surrounding machine structure limits clearance around the drive end.

At standstill, the motor can deliver 24.0 Nm of continuous torque, which supports low-speed operation and sustained holding duty without excess heat buildup. It reaches a nominal speed of 2000 rpm, making it suitable for systems that run on moderate bus voltage. The integrated blocking brake provides 11 Nm of holding torque to secure the shaft when power is removed. A centering pilot of 110 mm helps keep flange alignment accurate. All power and feedback leads exit on the right side, and a factory-installed connector allows the motor to be connected without terminating individual conductors.

Rotor position is transmitted through digital servo feedback, allowing the drive to maintain closed-loop control with accurate rotor angle information. The output shaft has a keyway, which provides positive engagement for pulleys, gears, or couplings that see reversing loads. A fitted shaft seal helps keep coolant splash and airborne particles away from the front bearing area. This supports lubricant retention and helps protect the bearing during continuous industrial duty. The feedback system also supports stable motion during repeated acceleration and deceleration cycles.

Balancing
Standard
Centering Diameter
110 mm
Connection Direction
Right
Connection Type
Connector
Continuous Torque at Standstill
24.0 Nm
Holding Brake
With blocking brake
Holding Brake Torque
11 Nm
Housing
Standard
Motor Feedback
Digital servo feedback (DSF)
Motor Length Code
D
Motor Size
093
Nominal Speed
2000 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-020-N2L-110PR1:

Q: What is the continuous standstill torque of the MDD093D-N-020-N2L-110PR1 motor?

A: The MDD093D-N-020-N2L-110PR1 provides a continuous torque of 24.0 Nm at standstill.

Q: What type of feedback is provided by the MDD093D-N-020-N2L-110PR1?

A: This motor uses digital servo feedback (DSF) for position and speed tracking.

Q: Does the MDD093D-N-020-N2L-110PR1 come equipped with a holding brake?

A: A holding brake with 11 Nm of torque is included on this model.

Q: What is the centering diameter of the MDD093D-N-020-N2L-110PR1 motor?

A: The centering diameter for this motor is specified as 110 mm.

Q: What shaft design does the MDD093D-N-020-N2L-110PR1 provide?

A: This motor features a keyed shaft end without a shaft extension on side B and includes a shaft seal.


Internal Product Review

  • ‘‘The MDD093D-N-020-N2L-110PR1 is a synchronous motor from Bosch Rexroth Indramat designed for digital drive controllers, offering 24.0 Nm continuous torque at standstill and 2000 min⁻¹ nominal speed. Equipped with a blocking brake delivering 11 Nm holding torque and digital servo feedback, it provides reliable performance and precise control. Standard housing and right-angled connector simplify integration in demanding motion applications.’’

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