MS2N06-E0BRN-CMSG2-NNNNN-NN
MPN: R911382903
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The Bosch Rexroth Indramat MS2N06-E0BRN-CMSG2-NNNNN-NN motor belongs to the MS2N Synchronous Servo Motors series and features natural convection cooling. It operates at a nominal voltage of 400 V with a rated speed of 3000 rpm. The motor delivers 2.5 Nm continuous stall torque and is rated at 0.8 kW of power.
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Product Description:
The MS2N06-E0BRN-CMSG2-NNNNN-NN by Bosch is a Servo motor manufactured for industrial automation demands. The motor has a torque constant of 1.29 Nm/A. It has a back EMF constant of 78.4 V/krpm. The rated current required by the servo motor at 100K is 7.2 A RMS. The parasitic capacitance of the servo motor is measured at 3.87 nF.
The MS2N06-E0BRN-CMSG2-NNNNN-NN servo motor provides a constant power of 2.63 kW. It gives a nominal torque of 8.05 Nm under normal conditions. The highest value of torque achieved by the motor is 53.4 Nm at 20 °C. It decreases to 49.0 Nm at 100K. The stall torque is 13.0 Nm and 16.3 Nm at 60K and 100K, respectively. The phase resistance of the motor at 20 °C is 0.638 ohms, and the phase inductance is 6.895 mH. The MS2N06-E0BRN-CMSG2-NNNNN-NN servo motor has five pole pairs with a maximum speed of 6,000 rpm. The rotor mass moment of inertia is 0.00089 kgm2. The thermal lag of the winding is 48.6 seconds. Thermal stabilization of the motor occurs in 20 minutes. This motor has a weight of 11.5 kg and is manufactured to work in an ambient temperature of between 0 °C and 40 °C. It can be derated up to 60°C.
The diameter of the MS2N06-E0BRN-CMSG2-NNNNN-NN servo motor flange is 116 mm. The shaft diameter is 24 mm, and the shaft length is 50 mm. The centering collar measures 95 mm. Its vibration level adheres to EN 60034-14 standards for minimal vibration. The motor draws a stall current of 13.7 A at 100K. The motor has a maximum current consumption of 50.8 A RMS. It can be installed at altitudes of 0 to 1000 m without derating.
Frequently Asked Questions about MS2N06-E0BRN-CMSG2-NNNNN-NN:
Q: How does 6.895mH inductance benefit MS2N06 E0BRN CMSG2 NNNNN NN?
A: The 6.895mH phase inductance in the MS2N06 E0BRN CMSG2 NNNNN NN reduces current ripple and aids stability during rapid speed changes.
Q: What role does 0.00089kg·m² inertia play in MS2N06 E0BRN?
A: The low 0.00089kg·m² rotor inertia of MS2N06 E0BRN CMSG2 NNNNN NN enables fast acceleration and deceleration crucial for high-speed automation.
Q: Why is thermal lag of 48.6s relevant?
A: The MS2N06 E0BRN CMSG2 NNNNN NN’s 48.6 second thermal lag helps buffer transient heating allowing short bursts of high current before temperature rise.
Q: How does 0.638Ω phase resistance help this servo?
A: The 0.638Ω resistance in MS2N06 E0BRN CMSG2 NNNNN NN limits current spikes and helps control thermal buildup during continuous operation.
Q: Why is derating to 60°C supported by MS2N06 E0BRN?
A: Derating up to 60°C for MS2N06 E0BRN CMSG2 NNNNN NN protects internal insulation and maintains performance in high-ambient environments.