Brand:Fisher Controls
Model:DPR910X1-A2
Series:DPR910
Controller Type:PID Control Module
Process Compatibility:Compatibility with various industrial processes
Operating Temperature:-20°C to 60°C
Power Consumption:15W max
Communication Protocol:Modbus RTU
Input Output Channels:8 AI, 8 AO, 16 DI, 8 DO
Dimensions:170mm x 100mm x 100mm
Weight:0.8kg
Introducing the Fisher DPR910X1-A2 DPR910 Controller Module, a cutting-edge solution designed for seamless integration into complex industrial control systems. This module boasts an unparalleled level of precision and reliability, making it an indispensable tool in environments characterized by high demand for accuracy and robustness.
Engineered with state-of-the-art technology, the DPR910X1-A2 module ensures optimal performance across a wide range of industrial applications, from chemical processing to manufacturing. Its PID control algorithms are finely tuned to deliver precise control over critical parameters, enhancing operational efficiency and reducing waste.
Featuring a comprehensive suite of input/output channels, the DPR910X1-A2 controller offers unparalleled flexibility. It supports analog and digital inputs and outputs, enabling versatile connection to various sensors and actuators. This versatility makes it suitable for a multitude of applications, from temperature control to flow rate management.
The DPR910X1-A2 is built to withstand harsh industrial conditions. With its operating temperature range of -20°C to 60°C and compact design, it can be deployed in virtually any industrial setting without compromising performance or functionality. Additionally, its low power consumption ensures efficient operation, minimizing energy costs and environmental impact.
Equipped with Modbus RTU communication protocol, the Fisher DPR910X1-A2 Controller Module facilitates seamless data exchange with other systems, enhancing system integration and ease of use. Whether you’re managing production lines or optimizing process control, this module provides the advanced capabilities needed to drive operational excellence.
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