MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN
MPN: R911399166
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The MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN is a compact synchronous servo motor with a rated speed of 3000 rpm and a flange size of 60 mm. Manufactured by Bosch Rexroth Indramat in their MS2N Synchronous Servo Motors series, it features natural convection cooling, IP65 protection, and a multi-turn absolute encoder.
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Product Description:
The MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN Servo Motor is built by
The top speed of MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN servo motor can reach up to 6000 rpm when needed for fast tasks. This motor delivers a continuous torque of 2.71 Nm during regular operation. In a cold start, the maximum torque output is rated at 10.2 Nm. The peak torque slightly drops to 9.45 Nm for protection when warmed up. The motor uses 1.93 A of current under steady load conditions. It can draw up to 7.8 A of current at full performance. The coil inductance is rated at 52.4 mH to support smooth function. The MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN servo motor has the winding electrical resistance of 12.2 ohms across both terminals. It produces 3.60 Nm of torque at a standstill and 100K coil temperature. A back EMF constant of 98.2 V/1000 rpm provides precise speed control. The torque sensitivity is 1.62 Nm/A at a 20°C surrounding temperature. The rotating mass resistance of the motor is 0.00048 kg·m². The complete unit weighs 5.1 kg without any extra fittings attached. The heat rise delay (winding) is 15.7 seconds for internal thermal stability.
The MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN servo motor has built-in heat sensors that offer extra safety for motor coil protection. It belongs to the insulation heat class F, which is safe up to 155 °C internal temperature. The heat rise duration of the casing is around 12.2 minutes during normal use. It works properly in ambient temperatures between 0 and 40 °C. It can be installed at up to 1000 meters above sea level.
Frequently Asked Questions about MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN:
Q: How does the high inductance value of 52.4 mH enhance the performance of the MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN servo motor?
A: The high inductance helps smooth current flow and minimizes ripple during operation. This improves precision in motion control and enhances motor lifespan.
Q: Why is thermal time constant of 15.7 seconds important in MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN motor windings?
A: It allows the windings to withstand temporary overloads without rapid temperature rise. This feature supports durability in fluctuating load conditions.
Q: How does a torque constant of 1.62 Nm/A at 20°C benefit motion accuracy?
A: This ensures consistent torque output per ampere, critical for fine-tuned position control. It results in smoother acceleration and deceleration profiles.
Q: Why is a rotor inertia of 0.00048 kgm2 beneficial for the MS2N06-B1BNN-CMSH0-NNNNN-GE120N1005BN-NN servo motor?
A: Low rotor inertia enables quicker dynamic response. This is crucial in high-speed applications requiring fast starts and stops.
Q: How does a winding resistance of 12.2 ohms affect energy efficiency?
A: Higher resistance minimizes current draw under low load. This contributes to reduced power losses during standard operations.