Phoenix Contact PSI-MOS-RS485W2/FO Modbus RTU RS485 Interface Module
The Phoenix Contact PSI-MOS-RS485W2/FO is an industrial-grade interface module designed for seamless data transmission in harsh industrial environments. It offers reliable communication over RS485 protocol, ensuring robust connectivity and efficient data exchange in various automation systems.
Detailed content
Protocol Support:Modbus RTU
Interface Type:RS485
Data Rate:9600 bps
Number of Channels:2
Operating Voltage:DC 12V – 28V
Current Consumption:Max. 5mA
Operating Temperature Range:-40°C to +85°C
Environmental Resistance:IP20
Connectors:M12 connectors
Dimensions (mm):67 x 32 x 25
Weight (g):45
Introducing the Phoenix Contact PSI-MOS-RS485W2/FO, a cutting-edge industrial Ethernet module engineered for seamless integration into complex industrial automation systems. This robust device is designed to withstand extreme environmental conditions, ensuring reliable data transmission even in the most challenging settings.
With a wide operating temperature range from -25°C to +70°C, the module ensures continuous performance across various climates. It supports up to 10 Mbps data transfer rates, making it ideal for high-speed communication needs in industrial applications.
Efficiency and economy are at the heart of the Phoenix Contact PSI-MOS-RS485W2/FO. Its low power consumption of less than 1.5 W reduces operational costs without compromising on performance. The M12 connector offers a secure and durable connection, enhancing reliability and ease of installation.
Featuring RS-485 compatibility, this module seamlessly integrates with existing systems, facilitating smooth communication in diverse industrial setups. The IP67-rated enclosure provides protection against dust and water ingress, ensuring durability and longevity in harsh environments.
Compact yet powerful, the Phoenix Contact PSI-MOS-RS485W2/FO measures 65 mm x 40 mm x 22 mm, offering a streamlined design that fits perfectly into space-constrained environments. It’s an essential component for optimizing industrial networks and enhancing overall system efficiency.