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MHD093C-058-PP1-AA Bosch Rexroth Indramat

MPN: R911287784

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The Bosch Rexroth Indramat MHD093C-058-PP1-AA is a servo motor from the MHD Synchronous Motors series featuring a keyed shaft and natural convection housing cooling. It is equipped with digital servo feedback with an integrated encoder and supports absolute position detection exceeding 4096 revolutions. This motor includes a holding brake with 22 Nm of torque and has a flange size of 140/150 mm.

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Product Description:

Bosch Rexroth Indramat manufactures the MHD093C-058-PP1-AA servo motor as a member of the MHD Synchronous Motors series. By integrating permanent-magnet excitation with an absolute multiturn feedback system, this motor provides closed-loop position and velocity control for industrial automation axes such as gantries, packaging machines, and transfer units. As part of a modular drive system, it connects to compatible Indramat drives to convert electrical energy into controlled mechanical rotation for precise indexing and synchronized motion. The feedback arrangement helps the drive maintain stable motion during acceleration, deceleration, and low-speed positioning.

Its continuous operating capability includes a standstill torque of 23.0 Nm, enabling the axis to hold or accelerate rated loads without overheating. The motor uses a flange pattern of 140 / 150 mm, while a 130 mm centering diameter aligns the housing to the machine frame with low runout. Heat generated by copper losses leaves the housing through natural convection, eliminating the need for external blowers or liquid circuits. Electrical power reaches the stator windings through an output connector on side A, which helps keep cable routing orderly in compact control cabinets.

The holding system includes an integrated brake that applies 22.0 Nm of static torque to keep vertical loads stationary during power loss. Torsional transmission to the driven equipment is through a keyed shaft, a form used in machinery that must withstand reversing torque peaks. Position feedback is provided by absolute multiturn feedback for more than 4096 revolutions via an encoder, allowing the controller to recover axis coordinates after shutdown without homing. The internal sensor uses digital servo feedback signaling to deliver high-resolution rotor data that supports tight velocity loops and smooth interpolation at low speeds.

Centering diameter
130 mm
Continuous Torque at Standstill
23.0 Nm
Encoder Type
Digital servo feedback w/ integrated encoder
Flange size
140 / 150 mm
Holding Brake
With holding brake
Holding Brake Torque
22.0 Nm
Housing Cooling Type
Natural convection
Motor Length
C
Motor Size
093
Power Connection Direction
to side A
Power Connection Type
Output Connector
Product Type
Servo Motor
Shaft Design
Keyed Shaft
Shaft Seal
Yes
Type of Position Detection
Absolute (>4096 revolutions)
Winding Code
058
  • MHD093C 058 PP1 AA
  • MHD093C058PP1AA
  • mhd093c-058-pp1-aa
  • MHD93C-058-PP1-AA

Frequently Asked Questions about MHD093C-058-PP1-AA:

Q: What type of shaft does the MHD093C-058-PP1-AA motor use?

A: The MHD093C-058-PP1-AA features a keyed shaft design for secure mechanical coupling.

Q: Does the MHD093C-058-PP1-AA have an integrated holding brake?

A: This motor includes a holding brake that provides 22.0 Nm of torque.

Q: What type of feedback does the MHD093C-058-PP1-AA motor provide?

A: A digital servo feedback system with an integrated encoder is used on this model.

Q: What is the continuous standstill torque rating of the MHD093C-058-PP1-AA?

A: The continuous torque at standstill is specified at 23.0 Nm for this motor.

Q: How is the MHD093C-058-PP1-AA motor cooled?

A: Motor cooling for the MHD093C-058-PP1-AA is achieved through natural convection.


Internal Product Review

  • ‘‘The MHD093C-058-PP1-AA is a servo motor that stands out for natural convection cooling and digital servo feedback with an integrated encoder. Absolute position detection beyond 4096 revolutions and a 22.0 Nm holding brake support precise axis control and secure stopping in automated machinery. A strong choice for motion applications requiring accurate feedback and dependable braking performance.’’

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