MS2N04-D0BQN-AMDL1-NNNNN-NN
MPN: R911385666
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The MS2N04-D0BQN-AMDL1-NNNNN-NN Servo Motor is manufactured by Bosch Rexroth Indramat. This motor has a winding of 4,000 min with a Multiturn encoder design. This motor is Equipped with a holding brake, it has a Keyway, no shaft seal shaft, and a M17 Double Plug, turnable electrical connection.
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Product Description:
The MS2N04-D0BQN-AMDL1-NNNNN-NN has a size 04 assembly along with D-housing that allows this unit to deliver powerful performance, making it effective for a broad range of automation and motion control systems. This model is made for high-precision industrial settings where high-speed mechanical operations require immediate response. It can accelerate and then slow down quickly, making it suitable for industrial systems where excellent performance is required.
The standards for building this model are set by IM B5/IM 3001, making system integration of this servo motor quite convenient. This motor is long lasting and records temperature ratings correctly with its PT1000 sensor. Its industrial compatibility comes from the presence of a standard flange. The MS2N model is wound to be a stable motor with the 4,000 min-1 windings (BQ) ensuring peak performance across a wide range of industrial tasks. By self-cooling (N), this model reduces operational complexity and maintenance, ensuring efficient performance without external cooling. With its Hiperface technology that emits periods of 16 continuous signals, the MS2N04-D0BQN-AMDL1-NNNNN-NN provides exact movement control, and positional accuracy is provided by a multi-turn absolute encoder.
This motor also comes with a holding brake that eliminates unnecessary mechanical motion. This servo motor can perform complex industrial tasks that require automation with its encoder's 4,0960-revolution capacity. The dual-plug power connection of this motor, labeled M17, allows for quick installation and seamless integration into various setups. The lack of a seal in the keyway shaft leads to high torque output that provides efficient rotational efficiency. This makes it reliable for tasks where operators have to stop the motor to fulfill various design requirements. Its <