MAC112D-0FD-3C/130-A-2/S018, Bosch Rexroth Indramat, MAC AC Servo Motors represents a high-performance industrial servo solution engineered for precision and longevity. The package delivers a nominal speed of 1500 rpm coupled with a continuous torque at standstill of 38 Nm, meeting rigorous motion-control demands. Internally cooled via Natural Convection and fitted with a robust housing, the motor integrates tacho-feedback and an incremental encoder for exact speed and position monitoring. A compact footprint with accessible Side A power connections simplifies installation in crowded control cabinets.
Designed for demanding applications, this servo motor operates on 230 V input voltage across a 3-Phase system and supports a rated load of 2 HP. At standstill, it draws 38 Nm continuous torque and sustains a peak current of 195 A for high-torque bursts, facilitated by a Thermal Time Constant of 120 mins to manage heat under variable loads. The Winding Inductance of 3.2 mH ensures smooth current transitions, while the core structure (Motor Size 112, Motor Length D) is optimized for dynamic response. As a Frequency Inverter Drive-compatible motor, it interfaces seamlessly with standard drive controllers.
Engineers benefit from the motor’s fully enclosed, dust- and water-resistant casing, delivering reliable operation in harsh industrial environments. Its integrated braking and feedback subsystems reduce component count and streamline system architecture, cutting wiring complexity and commissioning time. The MAC112D-0FD-3C/130-A-2/S018’s combination of precise control, robust thermal management, and ease of integration makes it ideal for robotics, CNC machinery, and continuous-process automation where uptime and accuracy are critical.
Continuous torque at standstill
38 Nm
Input Voltage
230 V
Nominal Speed
1500 rpm
Number Of Phases
3-Phase
Peak Current
195 A
Phases
3
Rated Load
2 HP
Thermal Time Constant
120 mins
Type
Frequency Inverter Drive
Winding Inductance
3.2 mH
AC Servo Motor
MAC
Motor Size
112
Motor Length
D
Cooling Type
Natural Convection