AB 1791DS-IB12: DeviceNet Safety Modules for Industrial Control Systems
The AB 1791DS-IB12 is a critical component in industrial safety systems, designed to enhance plant safety through precise monitoring and control. This module seamlessly integrates into DeviceNet networks, ensuring reliable communication and operation within complex industrial environments.
Detailed content
Model:1791DS-IB12
Manufacturer:AB (Allen-Bradley)
Type:Safety Module
Bus Protocol:DeviceNet
Channels:12 Input, 12 Output
Operating Voltage:24V DC
Communication Speed:100 kbps
Power Consumption:≤ 1.5 W
Operating Temperature:-20°C to +55°C
Enclosure Rating:IP20
Dimensions:175mm x 115mm x 92mm
The AB 1791DS-IB12 is engineered for high performance and reliability, making it an ideal choice for safety-critical applications in industrial automation. Its compact design ensures easy integration into existing systems without compromising on functionality.
Equipped with advanced safety features, this module ensures that all operations are conducted under controlled conditions, significantly reducing the risk of accidents and downtime. It supports both input and output signals, allowing for comprehensive monitoring and control over various processes.
With its compatibility with DeviceNet, the AB 1791DS-IB12 facilitates seamless communication between different components of the industrial system, enhancing efficiency and productivity. Its robust design withstands harsh industrial environments, ensuring continuous operation even under extreme conditions.
Designed with user-friendliness in mind, the module offers straightforward installation and maintenance procedures, minimizing downtime during servicing. Comprehensive documentation and support materials are provided to assist users in maximizing the performance and lifespan of the product.
The AB 1791DS-IB12 is a testament to AB’s commitment to safety and innovation, offering unparalleled reliability and performance in industrial safety systems. It is an essential upgrade for any facility aiming to enhance its safety protocols while optimizing operational efficiency.