INDRAMAT MAC112C-0-ED-2-C/130-B-0/S003 High-Performance Industrial Motion Control Module
The Indramat MAC112C-0-ED-2-C/130-B-0/S003 is a high-performance servo drive module designed for industrial automation applications. It offers precise motion control and reliable operation in demanding environments.
Detailed content
Module Type:Servo Motor Control Module
Output Current:Up to 20 A
Rated Voltage:24 VDC
Peak Torque:30 Nm
Control Interface:Digital Communication
Communication Protocols:EtherCAT, Profibus, Profinet
Operating Temperature Range:-20°C to +60°C
Protection Rating:IP65
Weight:Approximately 5 kg
Dimensions:Height: 200 mm, Width: 150 mm, Depth: 100 mm
The Indramat MAC112C-0-ED-2-C/130-B-0/S003 servo drive module is engineered for precision and reliability. It offers exceptional performance in demanding industrial settings, delivering accurate and responsive control over motors and actuators. This module is designed with advanced technology to ensure smooth operation even under challenging conditions.
The Indramat MAC112C-0-ED-2-C/130-B-0/S003 boasts an innovative design that minimizes installation space while maximizing functionality. Its compact form factor makes it suitable for a wide range of applications, from automated assembly lines to sophisticated robotic systems.
The robust construction of this servo drive module ensures durability and long service life. It is built to withstand harsh environments, including those with high temperatures, dust, and moisture. The IP65 protection rating guarantees reliable operation in dusty and wet conditions.
With its versatile communication interfaces and protocols, the Indramat MAC112C-0-ED-2-C/130-B-0/S003 can easily integrate into existing industrial networks. Users can seamlessly connect it to their preferred control systems, enhancing system interoperability and efficiency.
Installation of the Indramat MAC112C-0-ED-2-C/130-B-0/S003 is straightforward, thanks to its intuitive design and clear documentation. Follow the step-by-step instructions provided to ensure optimal performance and safety.