The Bosch Rexroth Indramat MAC115D-0-ES-2-C/130-A-0 from the MAC AC Servo Motors series is a high-performance AC Servo Motor designed for versatile industrial applications. Rated as Motor Size 115 and Motor Length D, this motor delivers robust dynamics with a Continuous Standstill Current of 54 A and a Continuous Standstill Torque of 57 Nm. Its Winding Code ES integrates low-resistance windings, specified at 0.084 Ohm at 20 °C, paired with a Windings Inductance of 2.4 mH to ensure precise current control. The rotor’s Moment of Inertia of 271 x 10^-4 kgm^2 underpins rapid acceleration, while the Torque Constant at 20 degrees C of 1.08 Nm/A affords predictable torque output.
Engineered for reliability, the motor dispenses with a blocking brake (Blocking Brake: No) and relies on Natural Convection cooling to maintain steady operation under varied ambient conditions. The peak capability of Maximum Pulse Current 270 A supports transient loads and short-term overloads over a broad speed range. Housed in a fully enclosed casing, the unit tolerates harsh environments and incorporates built-in thermal monitoring to guard against overheating. With a compact design weighing Mass 60 kg, the motor’s natural convection cooling and low inertia rotor minimize downtime and simplify preventive maintenance.
Installation is facilitated by the motor’s standardized shaft geometry and DS M8-19 centering hole, allowing direct mounting of pulleys or pinions. Its high power-to-weight ratio and overload capacity make the MAC115D-0-ES-2-C/130-A-0 an optimal choice for printing presses, packaging machinery, and high-speed indexing tables where precision and dynamic response are critical.
Blocking Brake
No
Continuous Standstill Current
54 A
Continuous Standstill Torque
57 Nm
Mass
60 kg
Maximum Pulse Current
270 A
Moment of Inertia of Rotor
271 x 10^-4 kgm^2
Torque Constant at 20 degrees C
1.08 Nm/A
Winding Code
ES
Windings Inductance
2.4 mH
Windings Resistance at 20 degrees C
0.084 Ohm
AC Servo Motor
MAC
Motor Size
115
Motor Length
D
Cooling Type
Natural Convection