Product Description
This servo motor MAC112C-0-ED-1-B/130-A-1/-I00625/S022 is a specialized mechanism designed for commercial and industrial operations. It is a product of Indramat's whose engineering excellence stands out at the forefront of motion control technology by offering unparalleled precision with innovation in automation systems.
This servo motor MAC112C-0-ED-1-B/130-A-1/-I00625/S022 features a naturally air-cooled system by eliminating the need for additional cooling apparatus. It operates at a rotational velocity of 3000 revolutions per minute by ensuring high-speed functionality for precise control operations. The thermal stability is achieved after a period of 100 minutes by indicating thermal endurance. Weighing in at 48 kilograms, it strikes a balance between mass and portability by making it manageable for integration into various systems. The MAC112C series motor's windings possess an inductance of 1 millihenry which contributes to its efficient electromagnetic performance. With a torque constant rated at 0.470 newton meters per ampere at 20 degrees C, the motor demonstrates reliable force output relative to its current input. Its continuous torque at a standstill is impressive providing a nominal 24 newton meters, with an additional 45 newton meters supplied by its standard locking brake. This guarantees consistent performance even under high-load conditions. The electrical interface is located on side A by streamlining power connection and installation. It also includes a tachometer feedback system, which enhances closed-loop control precision by providing real-time speed data.
This servo motor MAC112C-0-ED-1-B/130-A-1/-I00625/S022 is rated at IP65 for protection this motor is safeguarded against dust ingress and low-pressure water. It is built with F-class insulation capable of withstanding higher thermal limits without compromising performance. Its compact design further facilitates ease of use and versatility. Its operational temperature range, spanning from 0 to 45 degrees Celsius helps to ensure optimal behavior by embodying efficiency, durability, and adaptability for a range of industrial tasks.