MDD071A-N-030-N2T-095PL2 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat MDD071A-N-030-N2T-095PL2 is a motor for digital drive controllers and is part of the MDD Synchronous Motors series. It features a 2.2 Nm continuous torque at standstill and a nominal speed of 3000 min-1. The motor includes a keyway shaft type, an integrated multiturn absolute encoder, and a holding brake with 6.5 Nm torque.

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Product Description:

The MDD071A-N-030-N2T-095PL2 is a synchronous AC servo motor manufactured by Bosch Rexroth Indramat for the MDD Synchronous Motors series. Designed to interface with digital drive controllers, this motor converts electrical energy into controlled torque and speed for precise positioning tasks in automated assembly lines, packaging machines, and material-handling axes. Its compact frame and integrated feedback allow it to serve distributed drive systems where rapid response and consistent motion accuracy are required.

At stall, the motor can produce a continuous torque of 2.2 Nm, giving it sufficient holding force for light indexing duties without overheating. During normal operation, it reaches a nominal mechanical speed of 3000 rpm, matching typical servo applications that require fast response. A built-in brake supplies 6.5 Nm of holding torque when the drive is disabled, so vertical loads can remain fixed without external clamps. Electrical power and feedback are routed through a single connector mounted on the left side of the housing, which helps simplify cable runs inside tight cabinets. For mechanical alignment, the flange includes a centering pilot of 95 mm diameter that seats the motor accurately against the machine frame and helps limit radial runout.

A shaft seal limits dust and fluid ingress at the output end, which helps protect the internal bearing area. Position data is captured by an integrated multi-turn absolute encoder, and the digital servo feedback interface sends that information to the controller for accurate speed and position regulation. Power is transferred through a keyed shaft, enabling secure coupling to pulleys or gear sets without slippage. Standard balancing and the housing geometry for motor length code A and size 071 help keep vibration and thermal rise within normal operating limits.

Balancing
Standard
Centering Diameter
95 mm
Connection Direction
Left
Connection Type
Connector
Continuous Torque at Standstill
2.2 Nm
Encoder
Integrated multiturn absolute encoder
Holding Brake
With blocking brake
Holding Brake Torque
6.5 Nm
Housing
Standard
Motor feedback
Digital servo feedback (DSF)
Motor For Digital Drive Controllers
MDD
Motor Length Code
A
Motor Size
071
Nominal Speed
3000 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 MDD071A-N-030-N2T-095PL2:

Q: What is the continuous standstill torque of the MDD071A-N-030-N2T-095PL2 motor?

A: The MDD071A-N-030-N2T-095PL2 provides a continuous torque of 2.2 Nm at standstill.

Q: Does the MDD071A-N-030-N2T-095PL2 motor feature a holding brake, and what is its torque rating?

A: This model includes a holding brake with a torque of 6.5 Nm.

Q: What is the nominal operating speed of the MDD071A-N-030-N2T-095PL2?

A: The nominal speed for this motor is 3000 min⁻¹.

Q: What type of encoder is integrated in the MDD071A-N-030-N2T-095PL2?

A: An integrated multiturn absolute encoder is used in this motor.

Q: What type of shaft and sealing does the MDD071A-N-030-N2T-095PL2 motor use?

A: The shaft on this model is keyway type with an included shaft seal.


Internal Product Review

  • ‘‘The MDD071A-N-030-N2T-095PL2 is a synchronous motor designed for digital drive controllers, featuring an integrated multiturn absolute encoder and digital servo feedback for precise positioning. With a holding brake torque of 6.5 Nm and continuous standstill torque of 2.2 Nm, this model is well-suited for demanding motion control tasks. The standard housing and shaft seal ensure reliable performance in industrial environments.’’

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