The Bosch Rexroth Indramat MAD160B-0100-SA-S2-AH0-05-N1 spindle motor from the MAD IndraDyn A Motors series presents a robust solution designed for precision control in demanding industrial applications. It is an AC Servo Motor that exploits advanced cooling provided by an Axial fan. With specialized features such as a Singleturn Absolute Encoder (EnDat2.1) delivering 2048 increments, this motor achieves unparalleled feedback accuracy, ensuring flawless positional control. Its design focuses on high performance with inherent stability to suit both continuous and dynamic loading conditions.
The technical specifications highlight a balanced integration of power and control. Operating at a rated speed of 1,000 min degrees C (despite ambiguous degree symbols in the input), the motor steadily maintains its performance under standard conditions. The design supports a maximum current of 110.0 A, while the Maximum Speed with Bearing N reaches up to 6,000 min degrees C, facilitating efficient operations during peak loads. Additionally, the motor incorporates a Thermal Time Constant of 35.0 minutes and a notable Discharge Capacity of 35.0 nF, features that contribute to its enduring reliability and performance stability.
Engineered for heavy-duty industrial use, this spindle motor is built with a substantial mass of 201.0 kg, ensuring superior mechanical robustness. Its straightforward integration is streamlined by the Electrical Connection on the A-side, which simplifies system assembly and maintenance. The combination of precise encoder feedback, efficient cooling, and durable construction supports consistent operation under cyclical and continuous use. Overall, this motor offers significant benefits such as enhanced reliability, improved operational accuracy, and sustained performance, making it an ideal choice for advanced automation and industrial applications.
Cooling System
Axial fan
Discharge Capacity
35.0 nF
Electrical Connection
A-side
Mass
201.0 kg
Maximum Current
110.0 A
Maximum Speed with Bearing N
6,000 min degrees C
Thermal Time Constant
35.0 minutes