Hardware Compatibility:Compatible with ESB Bus Node Units (ANB10S, ANB10D), Optical ESB Bus Node Units (ANB11S, ANB11D), and Field Control Units (AFV30S, AFV30D, AFV40S, AFV40D)
Signal Handling:Capable of receiving contact or voltage status signals from the field and outputting status signals back to the field
Compatibility with CENTUM-ST:Centrally compatible with the CENTUM-ST system for seamless integration
Power Supply Requirements:Operates on standard power supply voltages for industrial environments
Environmental Rating:IP67 rated for protection against dust and water ingress
Dimensions:Compact size (LxWxH) for efficient use in space-constrained environments
Introducing the Yokogawa ADV169-P00 Digital Input Module, engineered to elevate the performance of industrial automation systems. This module boasts an impressive array of features tailored for demanding applications, ensuring unparalleled accuracy and reliability.
Each of the 16 digital input channels is meticulously designed to interpret contact or voltage status signals from field devices, facilitating precise data acquisition. This capability is crucial for real-time monitoring and control, enabling operators to make informed decisions based on accurate information.
Featuring an operating temperature range of -20°C to +85°C, this module is built to withstand the harshest industrial environments. Its robust construction and reliable performance make it an ideal choice for plants and facilities where downtime cannot be tolerated.
The Yokogawa ADV169-P00 integrates seamlessly with the CENTUM-ST system, offering a comprehensive solution for advanced process control. With its efficient power consumption of less than 3W, it ensures energy-saving operations without compromising on performance.
Compliance with international standards such as IEC 61131-2, IEC 61131-3, and EN 50178 underscores the commitment to quality and safety. The module’s adherence to these regulations ensures compatibility across various automation systems, enhancing interoperability and reducing integration complexities.
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