MS2N10-D0BNN-BMVG0-NNANN-NN
MPN: R911382722
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The MS2N10-D0BNN-BMVG0-NNANN-NN is a high-performance motor developed by Bosch Rexroth Indramat. As part of the MS2N Synchronous Servo Motors, it features a rated power of 6.6 kW and a voltage rating of 400 V. The motor has a maximum torque of 140 Nm and utilizes natural cooling. Its protection class is IP65.
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Product Description:
The MS2N10-D0BNN-BMVG0-NNANN-NN Servo Motor from Bosch Rexroth Indramat features standard flange precision and natural self cooling. It is designed with a winding inductance of 5.05 mH and offers reliable performance, straightforward installation and stable operation across varied industrial automation applications.
The MS2N10-D0BNN-BMVG0-NNANN-NN motor draws 34.1 amperes, measured at 100 °C winding temperature. Its feedback unit can keep track of shaft angle over more than one full rotation and with 4096 turns of memory, the position is retained without needing a reset after power loss. Its coil setup is designed to deliver its rated speed of 3000 revs/minute. This module is engineered to deliver continuous usable output equal to 8.45 kW. In this motor, the bearing supports inside are of standard grade that are suitable for typical duty cycles without requiring special reinforcement. The module has a polished cylindrical form type shaft with a seal to stop dust, oil or moisture from entering. Its rotating mass is designed to be small which means it supports quicker start and stop response. Its windings can safely handle peak electric draw of 102.5 amperes for short bursts. Two connectors of M40 and M17 sizes are fitted for power and feedback which can swivel that makes installation and cable routing easier.
This MS2N10-D0BNN-BMVG0-NNANN-NN motor has a turning force of 60.5 nm that is available at zero speed, while energized at 100°C winding temperature. Its overall weight is 34 kilograms and mounting style is flanged based (B5/IM3001). It also includes PT1000 thermal sensor for precise winding temperature monitoring. It includes a standard encoder which generates 128 cycles per revolution and follows the Hiperface protocol and allows reliable speed and positioning reporting.
Frequently Asked Questions about MS2N10-D0BNN-BMVG0-NNANN-NN:
Q: How does the multiturn encoder in the MS2N10-D0BNN-BMVG0-NNANN-NN improve positioning reliability?
A: It maintains shaft angle tracking across multiple revolutions, even after power loss. This ensures repeatable accuracy without requiring manual homing cycles.
Q: What impact does low rotor inertia have on system dynamics?
A: It allows the motor to accelerate and decelerate rapidly. This results in shorter cycle times and improved responsiveness in motion control systems.
Q: What is the benefit of having both M40 and M17 rotatable connectors?
A: They simplify cabling in tight installations by allowing flexible routing. This reduces strain on connections and minimizes downtime during maintenance.
Q: How does standstill torque influence machine stability?
A: High torque at zero speed prevents drift under heavy loads. This is critical in holding applications like lifts, clamps, or press positioning.
Q: What does a winding inductance of 5.05 mH mean for drive tuning?
A: It influences how quickly current can change in the coils. Correct drive parameters must account for it to ensure smooth and stable operation.