FOXBORO FBM217 P0926ZY/RH926ZY Discrete Input Interface Module
The FOXBORO FBM217 P0926ZY/RH926ZY Discrete Input Interface Module is a high-performance, robust solution designed for seamless integration into industrial control systems. It provides reliable data acquisition capabilities, ensuring precise monitoring and control of discrete inputs in various manufacturing processes.
Detailed content
Operating Voltage:220 V
Frequency Response:Up to 1 kHz
Input Capacity:16 channels
Signal Handling:Optimized for both dry and wet contacts
Communication Protocol:Supports MODBUS RTU
Temperature Range:-20°C to +85°C
Enclosure Type:IP65-rated, dust and waterproof
Power Consumption:Less than 1 W
Introducing the FOXBORO FBM217 P0926ZY/RH926ZY Discrete Input Interface Module, the pinnacle of industrial automation solutions. This module is engineered to deliver unparalleled performance in demanding industrial environments.
Featuring advanced signal processing technologies, this module ensures ultra-fast response times, crucial for maintaining operational efficiency and minimizing downtime. Its robust design withstands harsh environmental conditions, ensuring reliable operation under extreme temperatures (-20°C to +60°C).
With its high-speed 10kHz frequency response and 16 discrete input channels, the FBM217 P0926ZY/RH926ZY seamlessly integrates with existing control systems, enhancing their functionality without requiring significant hardware upgrades.
Equipped with MODBUS RTU communication protocol, this module facilitates easy integration with a wide range of industrial automation software, enabling seamless data exchange and enhanced system interoperability. Its terminal block connector type offers a secure and convenient connection option.
Certified to Class 1, Div 2 reliability standards, the FOXBORO FBM217 P0926ZY/RH926ZY is suitable for use in potentially explosive atmospheres, ensuring safety and compliance with industry regulations. This makes it an ideal choice for applications in oil & gas, petrochemical, and other hazardous environments.