MS2N05-B0BTN-CSSH0-NNANN-NN
MPN: R911378939
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The MS2N05-B0BTN-CSSH0-NNANN-NN synchronous servo motor delivers a rated power of 1.8 kW, a rated torque of 6.9 Nm, and a rated speed of 3000 rpm. Part of the MS2N Synchronous Servo Motors series by Bosch Rexroth Indramat, it includes IP65 protection and a Singleturn Hiperface feedback system for precise performance.
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Product Description:
TheMS2N05-B0BTN-CSSH0-NNANN-NN motor has a maximum allowable current of 16.8 amps and can readily deliver strong electrical capacity for demanding industrial applications. It belongs to the MS2N Synchronous Servo Motors series which is renowned in the automation solutions industry for its accuracy and dependability by Bosch Indramat.
With a maximum rotational velocity of 6000 revolutions per minute the MS2N05-B0BTN-CSSH0-NNANN-NN motor can achieve the rated winding speed. The permanent magnet rotor includes five sets of magnetic poles and provides a peak torque of 11.5 Newton meters at 20 °C. Electrical efficiency is provided by the coil resistance of 2.7 Ohms at 20 °C and the back EMF constant of 54.2 volts per 1000 RPM. Its component stray capacitance is 1.21 nano farads. The heat dissipation behavior of the motor thermal time lag is 12.7 minutes. The encoder uses a digital 20 bit resolution and connects through the ACURO® link protocol with SIL2 certification. Its design includes one full revolution single turn absolute encoder that allows for accurate position tracking. The MS2N05-B0BTN-CSSH0-NNANN-NN motor electrical connection employs M23 single cable connector with a rotatable joint which makes it very easy to install and flexible within tight spaces. Its shaft is smooth and does not include a seal. There is no holding brake on the motor. It has a standard protective coating on the surface. The combination of low rotor inertia and thermal time constant suits dynamic systems needing controlled acceleration.
The MS2N05-B0BTN-CSSH0-NNANN-NN and the MS2N Synchronous Servo Motors perform reliably in applications requiring steady torque and precise position feedback. The low inertia of its rotor angular inertia is identified. Passive cooling is used for the motor cooling mechanism. It is a self cooling design that eliminates the requirement of an external cooling unit.
Frequently Asked Questions about MS2N05-B0BTN-CSSH0-NNANN-NN:
Q: How does the 12.7-minute thermal time lag help?
A: It prevents overheating by allowing steady heat dissipation, increasing motor lifespan.
Q: Why is the 54.2 V/1000 RPM back EMF constant important?
A: It helps optimize voltage control for efficient motor operation.
Q: What’s the benefit of 1.21 nF stray capacitance?
A: It reduces electrical noise, improving signal accuracy.
Q: How does passive cooling benefit this motor?
A: It removes the need for extra cooling, lowering maintenance.
Q: Why does the motor have a smooth shaft without a seal?
A: It reduces friction but needs a clean environment.