Phoenix Contact RFC 430 ETH-IB 2730190 Industrial Ethernet Module
The Phoenix Contact RFC 430 ETH-IB 2730190 is an advanced industrial Ethernet module designed for seamless integration in complex automation systems. It facilitates high-speed data transmission and ensures reliable communication between devices in harsh industrial environments.
Detailed content
Brand:Phoenix Contact
Model:RFC 430 ETH-IB
Submodel:2730190
Module Category:Industrial Ethernet
Operating Temperature:-20°C to +60°C
Data Transfer Rate:Up to 1 Gbps
Ethernet Protocol Compatibility:IEEE 802.3
Power Supply Voltage:12V DC to 24V DC
Current Consumption:Max. 100mA @ 24V DC
Dimensions (WxHxD):56.8mm x 35mm x 77mm
Connection Type:M12 connector
Environmental Rating:IP20
Mechanical Mounting:Panel mounting
Compliance Standards:IEC 61131-2, EN 50178-1
The Phoenix Contact RFC 430 ETH-IB 2730190 is engineered for industrial environments requiring robust and reliable Ethernet connectivity. This module supports multiple protocols including PROFINET, EtherCAT, and EtherNet/IP, ensuring compatibility across various control systems.
Featuring an M12 connector, it ensures secure and durable connections even in harsh industrial settings. Its compact size of 50x50x32 mm makes it ideal for space-constrained applications, without compromising on functionality.
With a power consumption of up to 12W, this module is energy-efficient, reducing operational costs while maintaining high performance. The module’s operating temperature range from -20°C to +60°C ensures it can operate reliably in diverse environmental conditions.
The Phoenix Contact RFC 430 ETH-IB 2730190 is designed for seamless integration into existing automation systems, facilitating quick setup and easy maintenance. Its IP20 protection class safeguards against dust and splashes of water, enhancing durability and reliability in industrial settings.
This Ethernet interface module from Phoenix Contact is a key component for optimizing communication in industrial control systems, enabling efficient data exchange and improving overall system performance.