MS2N04-D0BQN-CSSG0-NNNNN-NN
The MS2N04-D0BQN-CSSG0-NNNNN-NN from Bosch Rexroth Indramat is a high-performance member of the MS2N Synchronous Servo Motors series engineered for demanding industrial tasks. This servo motor delivers a rated power of 13.3 to 19.6 kW and operates at a rated speed of 2000 RPM with the capability to achieve a maximum speed of 6000 RPM. With a rated torque of 95 to 110 Nm, it provides the robust torque output required for heavy-duty applications. The design features a winding speed of 4000 min and an integrated single-turn encoder, ensuring precise position feedback from startup to shutdown.
Technical capabilities of this motor are anchored by its advanced Encoder featuring enhanced signal processing and a single-turn design that supports precise speed and position control. Its Inertia is optimized to a low moment value for rapid acceleration and deceleration, making it ideal for dynamic cycles. The motor incorporates a Self-Cooling System that maintains optimal thermal conditions under continuous load, aided by a Thermal Time Constant of 45 minutes to damp temperature spikes. An Optional Holding Brake is available to secure the shaft when powered down, enhancing safety and positional stability.
Operational features include a rugged housing rated IP65 Protection, safeguarding the internal components against dust ingress and water jets. The smooth shaft is equipped with a Shaft Seal to prevent contamination and extend bearing life in harsh environments. Thanks to its low inertia rotor design, the motor responds quickly to control inputs, reducing cycle times and improving throughput. The efficient self-cooling architecture ensures sustained performance during long run-times, minimizing thermal derating and maintenance intervals.
Integration of the MS2N04-D0BQN-CSSG0-NNNNN-NN is simplified by its Cable Connection via an M23 single-cable, turnable electrical interface that streamlines installation and cabling efforts. This servo motor integrates seamlessly with Bosch Rexroth Indramat drive controllers and networked automation systems for advanced diagnostics and parameterization. Its versatility makes it suitable for machine tools, packaging equipment, robotics, and conveyor systems where precision control and reliability are paramount. Engineers can leverage its high torque density and precise feedback to optimize system performance and maximize productivity.