Model Number:1769-L24ER-QBFC1B
Controller Type:CompactLogix 750KB
Input/Output Capacity:24DI/24DO
Operating Temperature:-40°F to 140°F (-40°C to 60°C)
Communication Protocols:[“Modbus TCP/IP”,”Modbus RTU/ASCII”]
Memory:512 KB user memory
Module Compatibility:Up to Three (3) 1769 I/O modules
Communication Ports:1 Ethernet I/P, 1 RS232
Mounting Options:[“DIN Rail”,”Panel Mounting”]
Operating Voltage:120 VAC/DC
Power Consumption:25 W max.
The Allen-Bradley 1769-L24ER-QBFC1B is engineered for high reliability and efficiency, featuring a robust design that ensures smooth operation in harsh industrial environments. Its modular architecture allows for easy integration and expansion, making it adaptable to various industrial needs.
With support for Modbus TCP/IP and Ethernet communication, this controller facilitates seamless data transfer and network connectivity, enabling real-time monitoring and control across large-scale operations. The 750KB user memory provides ample space for custom logic and control algorithms, enhancing system flexibility.
Equipped with a comprehensive set of digital input/output channels, this controller can handle diverse industrial tasks, from simple automation processes to complex control systems. Its compatibility with RSLogix 5000 or Studio 5000 Logix Designer software simplifies programming and configuration, allowing for quick setup and customization according to specific application requirements.
Featuring a wide operational temperature range and durable construction, the 1769-L24ER-QBFC1B is built to withstand the rigors of continuous industrial use. The inclusion of a power supply option ensures compatibility with various power sources, making it suitable for a broad spectrum of industrial settings.
This controller is designed with ease of use in mind, offering clear and concise documentation alongside its intuitive programming interface. Its compatibility with Allen-Bradley’s extensive ecosystem of products further enhances its value, providing a cohesive solution for integrating with existing industrial infrastructure.
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