MS2N06-D0BNN-BMUH2-NNNNN-NN
MPN: R911386227
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The MS2N06-D0BNN-BMUH2-NNNNN-NN synchronous servo motor features a rated power of 1.92 kW, a rated torque of 6.0 Nm, a peak torque of 18.0 Nm, and IP65 class protection. Part of the MS2N Synchronous Servo Motors series by Bosch Rexroth Indramat, it operates with natural convection cooling and a maximum speed of 6000 rpm.
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Product Description:
The MS2N06-D0BNN-BMUH2-NNNNN-NN is a precision model from the MS2N Synchronous Servo Motors that is manufactured by Bosch Rexroth, a global provider of automation technologies. This motor is equipped with a size 2 holding brake that operates through an electrical release. The holding brake provides a stable holding torque of 15 Nm during standstill operation. It uses a rated voltage of 24 V for consistent brake control.
The MS2N06-D0BNN-BMUH2-NNNNN-NN Synchronous Servo Motor has a holding brake that draws a current of 0.75 amperes during operation. The brake features a fast-connecting time of 50 ms. It also provides a disconnecting time of 135 ms for efficient system response. The motor features a 2000 revolutions per minute winding which enables controlled and balanced motion cycles. The encoder performance is rated at a standard level with 128 signal periods. The encoder is a multiturn absolute type with a 4,096-revolution range. This encoder design offers precise position tracking during continuous rotation. The shaft is designed to be smooth and is manufactured without a shaft sealing ring. The motor performs reliably within an ambient temperature range of 0 to 40 degrees Celsius. It also supports storage in environments ranging from -20 to 45 degrees Celsius. The mechanical layout follows the B5 / IM3001 design and includes a PT1000 temperature sensor. The external coating uses standard varnish with RAL 9005 black finish for surface protection.
The MS2N06-D0BNN-BMUH2-NNNNN-NN Synchronous Servo Motor is constructed with a frame length D for compact system integration. The rotor is designed with low inertia to improve acceleration and deceleration rates. A self-cooling mode is implemented to maintain safe operating temperatures. The flange exactness is manufactured to standard precision and the bearing design is also standard for long-term operational support.
Frequently Asked Questions about MS2N06-D0BNN-BMUH2-NNNNN-NN:
Q: What advantage does the self-cooling mode offer in the MS2N06-D0BNN-BMUH2-NNNNN-NN servo motor?
A: The self-cooling mode enhances thermal efficiency, reducing heat buildup during continuous operation. This helps extend motor service life and ensures optimal performance under load.
Q: Why is low rotor inertia used in this model?
A: The low rotor inertia allows for quicker acceleration and deceleration cycles. This improves system responsiveness and is ideal for applications requiring rapid motion changes.
Q: How does the B5 / IM3001 mounting benefit the MS2N06-D0BNN-BMUH2-NNNNN-NN servo motor?
A: The B5 / IM3001 design provides stable flange mounting for secure and precise mechanical alignment. It supports integration into standard industrial assemblies with minimal adaptation.
Q: What is the importance of the PT1000 temperature sensor in this motor?
A: The PT1000 sensor offers high-resolution temperature monitoring. This ensures accurate thermal protection and improves the safety margin during extended operation.
Q: Why is the multiturn encoder important in the MS2N06-D0BNN-BMUH2-NNNNN-NN?
A: The multiturn encoder allows position tracking over multiple shaft rotations without losing count. This is critical for positioning systems that require absolute accuracy over extended ranges.