MS2N04-C0BTN-HMSG1-NNNNN-NN
MPN: R911390019
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The MS2N04-C0BTN-HMSG1-NNNNN-NN Servo Motor is manufactured by Bosch Rexroth Indramat. This motor has a winding of 6,000 min with a Multiturn encoder design. This motor is Equipped with a holding brake, it has a Smooth, with shaft seal shaft, and a M23 Single-Cable connection, turnable electrical connection.
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Product Description:
With MS2N04-C0BTN-HMSG1-NNNNN-NN servo motor attached to a system, the process control system can be enhanced with its high speed and low inertia output allowing it to quickly adjust its speed based on the application. This motor comes with a base speed of 3900 rotations per minute and a maximum speed rating of 6000 rotations per minute which allows this motor to be used in various types of applications including drilling.
This motor comes with a multi-turn encoder attached to its rear end that uses the 2nd shaft end at the back to count the position and number of rotations performed by this motor while the maximum rotations allowed by this servo motor is around 4096 revolutions. For rotations in the clockwise direction, the servo motor is able to generate positive square wave pulses while in the opposite direction, the motor encoder will generate inverted square wave pulses to help the control module differentiate between the directions of the rotation. This encoder needs 5 volts DC to power up and draws around 30 mA of current to operate.
Since this motor comes with 5 pole pairs or 10 poles that are energized with the help of an input voltage of 190 volts AC nominal, the poles on this motor with the help of electromagnetic induction allow the rotor of the motor to rotate at very high speeds. Based on how strong the electromagnetic force is, the servo will rotate fast based on the strength of the field. The resistance of the winding coil is around 2.7 ohms allowing plenty of currents to flow into the coils of the motor while the inductance is set at 17.7 mH which helps smooth out high-frequency signals in the supply line by suppressing unwanted spikes in the signal.