MAD100B-0100-SA-S2-BH0-05-N1
The MAD100B-0100-SA-S2-BH0-05-N1 spindle motor, manufactured by Bosch Rexroth Indramat, is part of the MAD IndraDyn A Motors series specifically designed for precision spindle applications in industrial settings. This motor incorporates key features including a Standard bearing and a Flange mounting style, ensuring robust assembly and reliable mechanical stability. Furthermore, it is equipped with a specialized encoder, the Singleturn Absolute, 2048 increments, which provides accurate position feedback and enhances control accuracy. The motor’s design supports efficient performance in applications where precise motion and secure mounting are paramount.
Engineered for technical proficiency, the motor utilizes an effective cooling mode identified as Axail Fan, Blowing, ensuring optimal temperature management even under extended duty cycles. The encoder’s resolution of 2048 increments further reinforces its suitability for precise operation in demanding industries. Alongside these features, the spindle motor is structured with a standard bearing system, supporting consistent load transmission and reducing maintenance requirements. Each of these technical specifications has been integrated to deliver enhanced performance and reliability in a compact package.
In addition to its core functionalities, the motor’s integrated design underscores its compatibility with a variety of industrial setups where durability and operational efficiency are critical. The Flange mounting method simplifies installation and ensures secure attachment under high-stress conditions, while the cooling system minimizes the risk of overheating during intensive operations. Overall, this spindle motor exemplifies a blend of robust design, precise control, and effective thermal management, making it a dependable choice for modern machinery in various industrial applications. Its meticulously designed components and adherence to standard specifications set the stage for reliable, efficient performance in demanding production environments.