Rockwell Automation 1794-IF8IH PLC I/O Module
The Rockwell Automation 1794-IF8IH is a versatile Input/Output (I/O) module designed for integration into complex industrial control systems. It offers 8 high-speed digital inputs and 8 discrete outputs, enabling precise control and data acquisition in manufacturing environments.
Detailed content
Product Type:Control Logix I/O Module
Model Number:1794-IF8IH
Interface Type:Digital Input/Output
Number of Channels:8 Input, 8 Output
Operating Voltage:DC 24V
Current Rating:500mA per channel
Communication Protocol:EtherNet/IP
Environmental Conditions:-20°C to +60°C
Power Consumption:Max. 1.5W
Mounting:DIN Rail
Dimensions:75mm x 115mm x 105mm
Weight:0.5kg
The Allen Bradley 1794-IF8IH Modular IO Device is specifically engineered for applications requiring high-speed data acquisition in harsh industrial environments. This module boasts a robust design, capable of handling extreme temperature fluctuations from -40°C to +70°C without compromising performance or reliability.
Each channel is equipped with advanced filtering technology to minimize noise and interference, ensuring accurate readings under varying environmental conditions. The 10 kΩ input impedance provides excellent signal integrity, making it suitable for a wide range of industrial sensors and devices.
With an operating voltage range of DC 12V to 24V and a maximum input current of 20mA per channel, the 1794-IF8IH can effectively manage a variety of signal strengths, enhancing its compatibility with different industrial standards and protocols.
Featuring a DIN rail mounting system, this module ensures secure and easy installation in industrial control panels. The compact design allows for efficient space utilization, facilitating seamless integration into existing automation systems.
For those seeking a reliable and efficient high-speed input solution for their industrial automation projects, the Allen Bradley 1794-IF8IH Modular IO Device offers a superior choice. Its combination of high accuracy, ruggedness, and flexibility makes it an ideal component for achieving optimal performance in challenging industrial settings.