MS2N05-C0BTN-CMSL1-NNNNN-NN
MPN: R911387624
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The MS2N05-C0BTN-CMSL1-NNNNN-NN synchronous servo motor delivers a rated power of 0.5 kW, a rated torque of 1.6 Nm, and a rated speed of 3000 rpm. Part of the MS2N Synchronous Servo Motors series from Bosch Rexroth Indramat, this motor offers IP65 protection and utilizes natural convection cooling.
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Product Description:
Bosch Rexroth produced the MS2N05-C0BTN-CMSL1-NNNNN-NN as a 3-phase 400 VAC servo motor for industrial automation. It comes with a holding brake that releases when powered with a 24 V DC. The brake has an angular inertia of 0.001070 kg·cm² while offers 30 ms engage time and 80 ms release time. The MS2N05 synchronous motor gives 0.0563 V/round as a voltage constant.
The MS2N05-C0BTN-CMSL1-NNNNN-NN synchronous motor generates a rated torque of 352Ncm and an average current in continuous operation is measured as 4430 mA. It achieves its maximum torque at 20°C of 22.6 Nm and operates at its peak with a current of utilization of 30.2 A. At normal operation it rotates at a speed of 4090 rounds/min and consume 1510 W. Inside the motor are 5 pairs of poles and the rotor has a moment of inertia 0.04 kg·cm². The MS2N05 synchronous motor’s shaft is 19 mm thick and 40 mm long and the holes for fastening the motor in flange position are 6.6 mm wide. With the brake, the total motor mass is 7.0 kg and has a winding resistance of 1260 mΩ at 68°F along with 0.0076 H for magnetic stability. The MS2N05 synchronous motor features an advanced multiturn encoder that provides a 20-bit resolution and handle 4096 turns with ±36 arcsec accuracy. It operates on 7 to 12 V supply and need a current of 60 kµA.
The MS2N05-C0BTN-CMSL1-NNNNN-NN synchronous motor has functional safety certification for SIL 2 and PL d while the integrated encoder possesses backup memory for parameters storage. Its braking system supports a total energy 400 J. The MS2N05 synchronous motor has 36.3 sec of winding time constant while the motor as a whole takes about 960 sec to reach its stable thermal state.
Frequently Asked Questions about MS2N05-C0BTN-CMSL1-NNNNN-NN:
Q: How does the multiturn encoder improve operational accuracy?
A: The 20-bit multiturn encoder with ±36 arcsec precision ensures extremely fine positioning feedback. It enhances closed-loop control in automation systems.
Q: Why does the MS2N05-C0BTN-CMSL1-NNNNN-NN motor use a 5 pole-pair rotor?
A: The 5 pole pairs increase torque smoothness and enable higher resolution in rotational sensing. This supports applications requiring precise speed and torque control.
Q: What advantage does the 0.0076 H inductance bring?
A: This low inductance allows for faster current rise times. It enhances motor response under dynamic load conditions.
Q: How does the brake's 400 J energy support industrial safety?
A: The brake system can absorb up to 400 joules, providing emergency stopping capability. This is crucial during power loss.
Q: Why is the 1260 mΩ resistance at 68°F important?
A: It helps maintain stable thermal characteristics under electrical loading. This allows the MS2N05-C0BTN-CMSL1-NNNNN-NN to operate efficiently over long periods.