Detailed content
Number of Digital Inputs:24
Number of Digital Outputs:16
Number of Analog Inputs:0
Number of Analog Outputs:0
Data Transfer Rate:10/100 Mbps
Operating Temperature Range:-25°C to +60°C
Power Supply Voltage:24 V DC
Protocol Compatibility:Profinet, Modbus TCP, EtherCAT
Dimensions (WxHxD):96mm x 96mm x 35mm
Mounting Type:Panel
Connector Type:M12
The Phoenix Contact ILB ETH 24 DI16 DIO16-2TX is engineered for high reliability and robust performance, making it an ideal choice for industrial automation projects requiring extensive connectivity and control capabilities. With its comprehensive set of features, this module simplifies the integration process, ensuring seamless communication between various devices and systems.
Each channel supports open collector outputs, providing flexibility for interfacing with a variety of external devices. The module’s wide input signal range (-30V to +30V DC) ensures compatibility with diverse sensor and actuator requirements, while its high operating voltage tolerance (DC 12V – 24V) accommodates different power supply scenarios.
Equipped with an Ethernet interface, the Phoenix Contact ILB ETH 24 DI16 DIO16-2TX enables easy connection to networks and remote access, facilitating real-time monitoring and control operations. Its support for TCP/IP, UDP, and Modbus protocols enhances interoperability with existing systems, streamlining data exchange and process control.
Designed for operation within a broad temperature range (-20°C to +85°C), the module is suitable for deployment in harsh industrial environments. The IP20 enclosure protection rating safeguards the internal components against dust and minor water splashes, ensuring reliable performance under various conditions.
The compact size (94 x 94 x 35mm) and M12 connector facilitate straightforward installation and maintenance. The Phoenix Contact ILB ETH 24 DI16 DIO16-2TX comes with comprehensive documentation and support, enabling quick setup and efficient troubleshooting, thus maximizing operational uptime and productivity.