GE IC695NIU001-ACAC: Industrial Ethernet Network Interface Universal Module
The GE IC695NIU001-ACAC Ethernet Network Interface Module is designed to enhance communication capabilities in industrial control systems, offering seamless connectivity and improved data transmission efficiency.
Detailed content
Protocol Compatibility:Supports multiple industrial protocols including Modbus, DeviceNet, and CANopen
Network Speed:10/100 Mbps Ethernet interface
Power Consumption:Less than 10 Watts
Operating Temperature:-20°C to +60°C
Dimensions:54mm x 117mm x 104mm
Connection Type:M12 connector for easy installation
Engineered for industrial environments, the GE IC695NIU001-ACAC is a universal Ethernet network interface module designed to integrate seamlessly with a wide range of control systems. Its compatibility with various industrial protocols ensures compatibility with diverse automation networks, streamlining communication across different devices.
Featuring a high-speed 10/100 Mbps Ethernet interface, this module supports rapid data transfer rates, critical for real-time applications in manufacturing and process industries. It’s designed with efficiency in mind, consuming less than 10 Watts, making it an energy-effective solution for long-term industrial operations.
With an operating temperature range from -20°C to +60°C, the GE IC695NIU001-ACAC is built to withstand harsh environmental conditions commonly encountered in industrial settings. This ensures reliable performance under varying climate conditions, guaranteeing continuous operation even in extreme temperatures.
The module utilizes an M12 connector for secure and straightforward installation, minimizing downtime during maintenance or upgrades. This connector type is widely used in industrial settings due to its durability and resistance to dust and water ingress, enhancing the overall reliability of the network infrastructure.
Incorporating advanced features and superior build quality, the GE IC695NIU001-ACAC is a valuable addition to any industrial network. Its ability to handle multiple protocols and its robust design make it a versatile choice for enhancing connectivity and efficiency in complex automation systems.