MS2E10-C0BHN-CMVK0-NNNNN-NN
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MPN: R914503812
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The MS2E10-C0BHN-CMVK0-NNNNN-NN is a self-cooling synchronous servomotor with a shaft length of 80 mm and a shaft diameter of 38 mm. Manufactured by Bosch Rexroth Indramat, it is part of the MS2E Synchronous Servomotors series. The motor features an IP65 protection rating and delivers a maximum torque of 76.8 Nm.
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Product Description:
The model MS2E10-C0BHN-CMVK0-NNNNN-NN is identified as a Servo Motor and is built by Rexroth Indramat to serves the industrial automation systems. The servo motor offers 38 mm shaft diameter and 80 mm shaft length which supports multiple types of mechanical configurations. The installation becomes secure through the M12 mounting hole which provides stability throughout high-speed applications.
The MS2E10-C0BHN-CMVK0-NNNNN-NN servo motor is designed to deliver a peak torque power of 76.8 Nm. At 100K, the standstill torque level the motor is 34 Nm which can be accessible through internal and external cooling methods. The system maintains operational stability when motor duties extend across long periods. Operation efficiency benefits from the built-in self-cooling method because users no longer need to use external cooling equipment. The MS2E10-C0BHN-CMVK0-NNNNN-NN servo motor features a 196 mm flange mounting design that allows installation in any direction. Due to the low-inertia rotor construction, the device performs speed changes at a quicker pace. The rotor inertia without the holding brake operation measures 0.0048 kg/m² making it appropriate for fast-paced industrial processes. Constructing the servo motor without holding brakes helps keep the system design more basic and decreases overall system complexity.
The MS2E10-C0BHN-CMVK0-NNNNN-NN servo motor functions properly without mechanical brakes in automation systems. High-torque operations benefit from the 26.50 kg weight of the motor component. The protected rating of IP65 allows the motor to withstand dust particles entering its structure and continuous moisture exposure from water spray. The device survives well in severe industrial operational settings. Users can easily connect the electrical system to control cabinets through a rotatable M40 angle connector. The encoder offers absolute multiturn measurement at 4,096 revolutions thus promoting reliable system positioning.
Frequently Asked Questions about MS2E10-C0BHN-CMVK0-NNNNN-NN:
Q: Why does MS2E10-C0BHN-CMVK0-NNNNN-NN use low-inertia rotor?
A: The MS2E10-C0BHN-CMVK0-NNNNN-NN servo motor uses a low-inertia rotor to enable rapid acceleration and deceleration cycles. This ensures smoother transitions in dynamic operations.
Q: How does MS2E10-C0BHN-CMVK0-NNNNN-NN manage thermal dissipation?
A: MS2E10-C0BHN-CMVK0-NNNNN-NN servo motor includes internal self-cooling to handle heat efficiently. This avoids reliance on additional cooling systems.
Q: What is the role of 196 mm flange in MS2E10-C0BHN-CMVK0-NNNNN-NN?
A: The 196 mm flange on MS2E10-C0BHN-CMVK0-NNNNN-NN provides secure mechanical coupling. It ensures compatibility with standard industrial mounting interfaces.
Q: Why MS2E10-C0BHN-CMVK0-NNNNN-NN avoids holding brake design?
A: MS2E10-C0BHN-CMVK0-NNNNN-NN eliminates holding brakes to simplify design. This also reduces maintenance complexity in automated systems.
Q: How does M40 connector improve MS2E10-C0BHN-CMVK0-NNNNN-NN wiring?
A: The rotatable M40 connector in MS2E10-C0BHN-CMVK0-NNNNN-NN improves wiring flexibility. It allows cleaner cable routing within tight control cabinets.