MS2N07-C1BRN-DMSG0-NNNNE-NN
MPN: R914500520
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The MS2N07-C1BRN-DMSG0-NNNNE-NN is a synchronous servo motor with a rated torque of 7.1 Nm and a rated power of 2.2 kW. Manufactured by Bosch Rexroth Indramat, it is part of the MS2N Synchronous Servo Motors series. This motor features IP65 protection, natural convection cooling, and a multi-turn absolute encoder.
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Product Description:
The MS2N07-C1BRN-DMSG0-NNNNE-NN Synchronous Servomotor has a design with 5 pole pairs for accurate generation of torque. Its rotor has an average inertia for ensuring stable performance and its cooling type is self mode. It has a rated torque capability of 7.05 newton meters that is supported by a winding inductance of 7.28 mill henries.
This MS2N07-C1BRN-DMSG0-NNNNE-NN synchronous servo motor follows B5/IM3001 design, PT1000 standards and has a smooth shaft with a sealing ring. It enables strong holding capacity because of its standstill torque of 11.5 Nm. Its rated current value of 6.3 amperes ensures optimal electrical efficiency. It comes with an effective encoder with 24 bit ACURO link PLe features. It supports demanding acceleration phases with a peak current consumption of 42.7 amperes, and it is able to reach its maximum speed to 6000 rpm. It maintain precise torque to current conversion defined by its torque constant of 1.3 newton meters per ampere. This module rotor moment of inertia is 0.00305-kilogram meter squared for a controlled acceleration operation. It performs nominal operation with a rated speed of 3610 rpm. It comes with a standard flange exactness that guarantees precise mounting. It employs a single cable connection M23 that is rotatable for an electrical connectivity feature.
This MS2N07-C1BRN-DMSG0-NNNNE-NN synchronous servo motor supports short term overload conditions through its maximum torque value of 46 Nm. Its exterior body coating is standard varnish RAL 9005 black and it has an additional grounding connection that promotes safer operation. Its frame length C defines a compact body and its 0.895 Ω winding resistance ensures proper electrical performance.
Frequently Asked Questions about MS2N07-C1BRN-DMSG0-NNNNE-NN:
Q: How does the 5-pole pair design affect the MS2N07-C1BRN-DMSG0-NNNNE-NN motor’s performance?
A: It provides smoother torque output and finer electrical angle resolution. This improves control accuracy, especially in high-precision automation systems.
Q: What is the practical benefit of an average rotor inertia?
A: It balances responsiveness with stability during acceleration and deceleration. This reduces vibration risks while still enabling fast motion cycles.
Q: How does self-cooling influence long operating cycles?
A: Self-cooling reduces dependency on external fans or liquid cooling. However, continuous high-load use may require monitoring to prevent thermal limits from being reached.
Q: Why is standstill torque important for servo applications?
A: It ensures the motor can hold position under load without motion. This is critical in vertical axis or clamping applications.
Q: How does the torque constant of the MS2N07-C1BRN-DMSG0-NNNNE-NN impact drive control?
A: It defines how current translates into torque, simplifying control loop tuning. A stable constant enables predictable performance with matched drives.