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MDD041A-N-100-N2K-050PA1 Bosch Rexroth Indramat

MPN: R911258550

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The Bosch Rexroth Indramat MDD041A-N-100-N2K-050PA1 is a motor designed for digital drive controllers and is part of the MDD Synchronous Motors series. It features a continuous torque at standstill of 0.64 Nm, a nominal speed of 10000 rpm, and has resolver feedback with an integrated absolute encoder. The motor includes a blocking brake with 1.2 Nm holding brake torque and a keyway shaft type.

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Product Description:

Bosch Rexroth Indramat builds the MDD041A-N-100-N2K-050PA1 in the MDD Synchronous Motors series. Designed as a motor for digital drive controllers, it supplies tightly regulated rotary motion for automated pick-and-place arms, testing fixtures, and light conveyors. Integrated feedback lets the drive monitor shaft position during operation, supporting quick, repeatable positioning. The compact frame also suits machines with limited mounting depth, and it fits layouts where a short motor body helps preserve space around adjacent components.

Under continuous stall conditions the rotor produces 0.64 Nm of torque, enough to hold a small load without overheating. When energized by a matched inverter, the shaft can turn at a nominal rate of 10000 rpm, enabling rapid cycle times on light-duty axes. Accurate mechanical coupling is obtained through a 50 mm centering diameter that aligns the flange with the machine base. For static holding, the integrated brake delivers 1.2 Nm of torque, clamping the axis whenever control power is lost. Rotor position and velocity data are supplied through resolver feedback, and the analog signals support stable feedback in electrically noisy environments. A keyway on the single shaft end simplifies coupling, while the short A-length housing and front shaft seal support compact installation and help protect the front bearings from coolant splash.

Wiring is routed on Side A, where a molded industrial connector carries both power and feedback conductors through one connection point. This arrangement helps keep cable routing orderly when space is limited near the motor. Vibration is minimized by standard balancing, while frame code 041 keeps mass and inertia low for quick acceleration. The standard housing dissipates heat without auxiliary fans, and the lack of a rear shaft extension leaves more clearance for nearby brackets, couplings, or guarding.

Balancing
Standard
Centering Diameter
50 mm
Connection Direction
Side A
Connection Type
Connector
Continuous Torque at Standstill
0.64 Nm
Encoder
Integrated absolute encoder
Holding Brake
With blocking brake
Holding Brake Torque
1.2 Nm
Housing
Standard
Motor Feedback
Resolver feedback
Motor Length Code
A
Motor Size
041
Nominal Speed
10000 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 MDD041A-N-100-N2K-050PA1:

Q: Does the MDD041A-N-100-N2K-050PA1 motor have a holding brake?

A: This model includes a blocking brake with a holding torque of 1.2 Nm.

Q: What is the nominal speed of the MDD041A-N-100-N2K-050PA1 motor?

A: The nominal speed for this motor is rated at 10,000 min⁻¹.

Q: What type of encoder is provided with the MDD041A-N-100-N2K-050PA1 motor?

A: The MDD041A-N-100-N2K-050PA1 features an integrated absolute encoder for position feedback.

Q: What feedback method does the MDD041A-N-100-N2K-050PA1 use for position detection?

A: This motor is equipped with resolver feedback for motor feedback functionality.

Q: What type of electrical connection does the MDD041A-N-100-N2K-050PA1 motor have?

A: A connector is used as the electrical connection type for this model.


Internal Product Review

  • ‘‘The MDD041A-N-100-N2K-050PA1 is a compact synchronous motor from the Bosch Rexroth Indramat MDD series, engineered for digital drive controllers. It features a nominal speed of 10,000 rpm and delivers 0.64 Nm continuous torque at standstill, making it ideal for dynamic positioning tasks. The integrated absolute encoder and blocking brake enhance precision and safety in automated systems.’’

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