The MAD100D-0250-SA-M2-AH0-35-N1 spindle motor by Bosch Rexroth Indramat belongs to the MAD IndraDyn A Motors series. Designed for precision industrial applications, it integrates a permanently connected axial fan with a blowing cooling mode and a singleturn absolute encoder offering 2048 increments per rotation. Emphasizing robust performance, the motor features a rated torque of 50 Nm and a rated power output of 13.10 kW, ensuring precise control in demanding settings such as machine tools, printing machines, and packaging systems. Its design meets modern operational needs with efficiency and reliability.
In detailed technical terms, the motor achieves a rated speed of 2500 RPM, supported by a key speed of 2000 RPM that underlines its capability for high precision motion control. It delivers a maximum torque of 118.7 Nm together with a maximum power of 26.86 kW, indicative of its strong dynamic performance in peak conditions. The electrical characteristics include a rated current of 32.4 A while withstanding a maximum current of 64 A, ensuring steady operation even under high load. With its critical specifications clearly defined, this motor stands out as a formidable component in automated systems.
Additional attributes enhance its application in demanding industrial environments. Weighing 72 kg, the motor exhibits a durable structure that supports prolonged usage. The thermal time constant of 20 min confirms its capacity to sustain performance over extended duty cycles with effective heat management. This combination of cooling, precision, and robust electrical parameters not only guarantees consistent functionality under varying operational stresses but also contributes to reduced maintenance intervals. Overall, the MAD100D-0250-SA-M2-AH0-35-N1 motor offers enhanced operational efficiency and reliability, making it a trusted solution for modern industrial motion control applications.
Key Speed
2000 RPM
Mass
72 kg
Maximum Torque
118.7 Nm
Rated Current
32.4 A
Rated Speed
2500 RPM
Rated Torque
50 Nm
Thermal Time Constant
20 min