MDD065A-N-060-N2M-095GL1 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat MDD065A-N-060-N2M-095GL1 is part of the MDD Synchronous Motors series and is designed for digital drive controllers. This motor features a continuous torque at standstill of 0.8 Nm, a nominal speed of 6000 rpm, and includes an integrated multiturn absolute encoder with digital servo feedback. It comes with a plain shaft, a left-side connector, and a holding brake torque of 3.0 Nm.

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Product Description:

The MDD065A-N-060-N2M-095GL1 is a synchronous servo motor from Bosch Rexroth Indramat for the MDD Synchronous Motors series. It is designed for use with digital drive controllers and converts regulated current into repeatable rotary motion. This model suits packaging equipment, material handlers, and light transfer axes where compact dimensions and dependable positioning are important.

The motor reaches a nominal speed of 6000 min⁻¹, which supports fast indexing and short cycle times. At standstill, it provides 0.8 Nm of continuous torque so an axis can hold position without exceeding rated thermal limits. A 95 mm centering diameter helps align the flange with the machine plate and reduces the chance of runout. Power and feedback conductors exit on the left side, which can simplify cable routing when adjacent axes are mounted closely together.

Position data comes from an integrated multiturn absolute encoder, so the drive can retain location information after power is cycled. A blocking brake rated at 3.0 Nm secures the shaft during idle periods or emergency stops. A fitted shaft seal helps limit contamination at the front end, while digital servo feedback supports real-time communication with compatible Indramat controls. The output uses a plain shaft, allowing straightforward coupling to pulleys, pinions, or other driven components.

Wake Industrial offers same-day shipping options for urgent replacements. Every purchase includes a 1-year warranty. Customers with questions about fault codes or type codes can use the chat tool available on the website, and quotations remain valid for 30 days to support maintenance planning during routine repair and approval cycles.

Balancing
Standard
Blocking Brake
With 3.0 Nm Blocking Brake
Centering Diameter
95 mm
Connection Direction
Left
Connection Type
Connector
Continuous Torque at Standstill
0.8 Nm
Encoder
Integrated multiturn absolute encoder
Holding Brake
With blocking brake
Holding Brake Torque
3.0 Nm
Housing
Standard
Motor feedback
Digital servo feedback (DSF)
Motor For Digital Drive Controllers
MDD
Motor Length Code
A
Motor Size
065
Nominal Speed
6000 min⁻¹
Output Shaft
Plain Shaft
Product Type
Motor for digital drive controllers
Shaft End
Standard (without side B shaft end)
Shaft Seal
With shaft seal
Shaft Type
Plain shaft
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Frequently Asked Questions about MDD065A-N-060-N2M-095GL1:

Q: What type of encoder is included in the MDD065A-N-060-N2M-095GL1 motor?

A: The MDD065A-N-060-N2M-095GL1 motor features an integrated multiturn absolute encoder for precise position feedback.

Q: What is the continuous torque at standstill for the MDD065A-N-060-N2M-095GL1?

A: This model provides a continuous torque of 0.8 Nm at standstill.

Q: What is the holding brake torque on the MDD065A-N-060-N2M-095GL1?

A: A blocking brake with a holding torque of 3.0 Nm is included on this motor.

Q: Which direction is the connection for the MDD065A-N-060-N2M-095GL1, and what type does it use?

A: The electrical connection is accessible from the left side of the motor and requires a connector.

Q: What is the nominal speed of the MDD065A-N-060-N2M-095GL1 motor?

A: This model operates with a nominal speed of 6000 min⁻¹.


Internal Product Review

  • ‘‘The MDD065A-N-060-N2M-095GL1 is a synchronous motor from Bosch Rexroth Indramat designed for digital drive controllers, featuring a nominal speed of 6000 min⁻¹ and standard housing. It is equipped with an integrated multiturn absolute encoder and digital servo feedback for precise positioning. With a holding brake torque of 3.0 Nm and a plain shaft, this motor is ideal for demanding automation tasks requiring dependable torque and accurate motion control.’’

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