Rockwell Automation 1734-IV8 Redundant I/O System – Modular Control
The Rockwell Automation 1734-IV8 Redundant I/O System is a highly reliable and versatile industrial-grade input/output module designed for fault-tolerant applications in manufacturing environments. It ensures continuous operation even in case of hardware failure, providing peace of mind to engineers and maintenance teams.
Detailed content
Number of Inputs/Outputs:8 Inputs & 8 Outputs
Communication Protocol:RS-485, DeviceNet
Operating Temperature:-20°C to +60°C
Power Consumption:Max. 25W
Connector Type:M12 Ethernet connector
Dimensions (WxHxD):120mm x 110mm x 110mm
The Allen-Bradley 1734-IV8 Redundant Input/Output System is engineered to provide robust and dependable performance in critical industrial settings. Its redundant architecture ensures continuous operation even in the event of a module failure, safeguarding against production downtime.
Equipped with 8 inputs and 8 outputs, this system supports a wide range of applications, from process control to machine automation, making it versatile for various industries. Its compatibility with Modbus RTU and DeviceNet communication protocols facilitates seamless integration with existing control systems.
Operating within an impressive temperature range of -25°C to +60°C, the 1734-IV8 is designed for reliability in harsh industrial environments. The system’s efficient power consumption of 24V DC at 50mA ensures minimal energy usage while maintaining high performance.
With a memory capacity of 1K Words, the Allen-Bradley 1734-IV8 offers ample storage for user-defined data, enabling sophisticated control strategies and data processing capabilities. This feature is particularly advantageous in complex systems where extensive data handling is required.
Manufactured by Rockwell Automation, a leading provider of industrial automation solutions, the 1734-IV8 is backed by comprehensive support and a reputation for quality and innovation. It represents a smart investment for manufacturers looking to enhance their operational efficiency and safety.