MS2N10-D1BNN-DMVK2-NNNNN-NN
MPN: R914502712
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The MS2N10-D1BNN-DMVK2-NNNNN-NN servo motor comes in size 10, features natural convection cooling, an IP65 protection class, and a multiturn absolute encoder. Part of the MS2N Synchronous Servo Motors series by Bosch Rexroth Indramat, it includes a standard mounting flange and operates at a voltage class of 400 V.
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Product Description:
The MS2N10-D1BNN-DMVK2-NNNNN-NN Servo Motor from Bosch Rexroth Indramat incorporates a multiturn encoder capable of capturing up to 4096 full rotations with absolute accuracy. It combines a shaft featuring a keyed slot, partial balance and protective sealing.
The MS2N10-D1BNN-DMVK2-NNNNN-NN motor is able to provide 6.45 kilowatts of usable mechanical energy during steady operation. It is equipped with a very fine precision sensor that can split rotation over 16 million tiny steps and it also complies with safety integrity standards. It needs about 34.3 A of electrical input at elevated winding temperature conditions when the shaft is not moving but still delivering torque. Its wiring entry uses two separate connector interfaces of specific sizes (M17, M40) which can swivel for easier installation and maintenance. Its mechanical brake is of size 2 which engages when power is cut and is released with electrical input. Its rotating parts are supported by conventional rolling elements that are designed for general purpose usage. It does not rely on external fans or liquid cooling and instead it sheds heat naturally into the surrounding air through its surface. Its mounting face precision is at a normal level which is good enough for most general applications.
This MS2N10-D1BNN-DMVK2-NNNNN-NN motor generates a rotating force of up to 47.2 newton meters without overheating below 60 kelvin temperature. Its housing and shape follow the B5 / IM3001 construction format and it also has a PT1000 sensor for temperature monitoring. Its internal rotating mass resists acceleration and deceleration at a mid level which gives a balance between responsiveness and smoothness. It can safely reach a turning velocity of 6000 1/min before exceeding limits in industrial automation tasks.
Frequently Asked Questions about MS2N10-D1BNN-DMVK2-NNNNN-NN:
Q: How does the multiturn encoder improve positioning in the MS2N10-D1BNN-DMVK2-NNNNN-NN motor?
A: It enables absolute tracking over multiple revolutions, avoiding the need for homing after power loss. This ensures high repeatability in automated processes.
Q: What is the practical benefit of the keyed and half-balanced shaft design?
A: The keyway ensures secure torque transfer to the load. Partial balancing minimizes vibration, extending bearing life and reducing noise.
Q: How does standstill current affect the MS2N10-D1BNN-DMVK2-NNNNN-NN’s energy use?
A: At zero speed, it still requires significant current to hold torque. This impacts thermal management and power supply sizing in applications.
Q: What installation advantage comes from the double cable connection design?
A: Rotatable connectors allow easier cable routing in tight spaces. It also reduces strain on connections during maintenance or motor replacement.
Q: Why is rotor inertia a critical factor for servo performance?
A: Medium inertia balances responsiveness with stability. It prevents overshooting in fast moves while maintaining smooth motion under varying loads.