MS2N05-C0BTN-AMDL1-NNNNN-NN
MPN: R911395960
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The MS2N05-C0BTN-AMDL1-NNNNN-NN synchronous servo motor provides a rated output power of 750 watts, a rated torque of 2.4 Nm, and features natural convection cooling. Part of the MS2N Synchronous Servo Motors series by Bosch Rexroth Indramat, it incorporates an integrated multi-turn encoder and IP65 protection (excluding shaft & connector).
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Product Description:
Bosch Rexroth Indramat's Servo motor MS2N05-C0BTN-AMDL1-NNNNN-NN functions autonomously with a winding speed of 6,000 rpm. The voltage constant at 20°C is 56.3 V/1000 rpm. The design under consideration is a multiturn absolute encoder with 4,096 revolutions and a frame length equivalent to size 05.
At 20 degrees Celsius, the winding resistance of the M2SN05 servo motor is 1.26 ohms. Along with the conventional type of bearing, the rotor inertia is 0.00040 kg·m². The thermal time constant for servo motors is 16.0 minutes, and their inductance is 7.6 mH. The servo motor MS2N05-C0BTN-AMDL1-NNNNN-NN meets B5 / IM3001 standards and includes a PT1000 temperature sensor as an accessory. The Hiperface interface has 16 signal periods, which is typical for flange precision. However, the encoder's performance is severely lacking. Two movable M17 connectors are used for the electrical connection, which is made up of two cables. The motor coating is normal varnish in black RAL 9005. The maximum connection time of the brake is 30 milliseconds, and the maximum disconnection time is 80 milliseconds.
The electrical and mechanical maximum speed is 6000 rpm. A keyway with half key balancing and no shaft sealing ring makes up the shaft's design. The maximum torque at a 100K thermal rating is 20.8 Nm. The mass of the MS2N05-C0BTN-AMDL1-NNNNN-NN servo motor is 7 kg and comes equipped with a size 1 electrically-released holding brake with a 10.00 Nm holding torque. The brake rated voltage is 24 V with a rated current of 0.73 A. The maximum current (rms) is 30.2 A. Pole pairs are 5, and the leakage capacitance is 1.5 nF. The torque constant at 20°C is 0.93 Nm/A. No special or other design features are provided.
Frequently Asked Questions about MS2N05-C0BTN-AMDL1-NNNNN-NN:
Q: Why does MS2N05-C0BTN-AMDL1 use a multiturn encoder?
A: It enables absolute position tracking over 4,096 revolutions. This improves accuracy during power cycles without battery backup.
Q: How does MS2N05-C0BTN-AMDL1 maintain a 6000 rpm speed?
A: The motor uses a 5-pole pair design and a voltage constant of 56.3 V/1000 rpm. This supports stable high-speed rotation.
Q: Does MS2N05-C0BTN-AMDL1’s self-cooling affect performance?
A: Self-cooling eliminates external cooling systems. It maintains thermal stability with a 16-minute motor thermal time constant.
Q: Why is low rotor inertia important in MS2N05-C0BTN-AMDL1?
A: Low inertia (0.00040 kg·m²) allows fast acceleration and deceleration. This improves dynamic response in motion control.
Q: Do standard bearings in MS2N05-C0BTN-AMDL1 require maintenance?
A: Standard bearings are sealed and lubricated for long life. They reduce maintenance needs under normal operating conditions.