MAD160C-0150-SA-M2-AH3-05-N1
MPN: R911320100
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MAD160C-0150-SA-M2-AH3-05-N1 Spindle Motor manufactured by Bosch Rexroth Indramat. This motor has a cooling mode with an Axail Fan, Blowing and a Singleturn Absolute, 2048 increments encoder. It also has a mounting style of Flange and a Standard bearing.
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Product Description:
The MAD160C-0150-SA-M2-AH3-05-N1 from Bosch Rexroth is manufactured to meet demanding operational requirements with precision and reliability. Its 160 size frame and length configuration of C make it a robust and efficient design suitable for a wide range of industrial applications. Its 0150 windings contribute to effective power distribution and energy efficiency, providing stable operation under varying load conditions. A key feature of this unit is the axial fan feature (SA), which dispels heat to maintain consistent performance during extended operation. The inclusion of a multiturn absolute encoder with EnDat2.1 compatibility and 2048 increments (M2) provides highly accurate positional feedback for control precision for dynamic tasks. For electrical connectivity, the MAD160C-0150-SA-M2-AH3-05-N1 has an A-side connector (A) installed that provides a secure and efficient connection within industrial setups.
The plain shaft configuration, designed without a sealing ring (H), provides seamless integration into systems requiring high-precision rotational movement. Apart from the cooling system, another distinguishing feature of this model is its electrically released holding brake that is rated at 240 Nm (3). This ensures secure holding torque when needed, making it particularly suitable for applications requiring controlled stopping and holding functions. Moreover, the flange mounting style (05) facilitates stable and straightforward installation, offering a reliable foundation for various configurations. Moreover, it comes with standard bearings (N) that guarantee durability and make it a long-lasting component. It provides compliance with DIN EN 60034-14 'Vibration Severity Standards' to strengthen its credibility in harsh working environments.