FOXBORO FBM214
FOXBORO FBM214 is a high-performance, dual-channel, isolated input module designed for use in the Foxboro I/A Series system. It is used to measure and convert analog signals from various field devices, such as temperature sensors, pressure transmitters, and flow meters, into digital signals that can be processed by the system. The module provides high accuracy and reliability, with a wide range of input options and configurable settings. It also features hot-swappable design, which allows for easy replacement without interrupting the system operation. Overall, the FBM214 is a versatile and essential component of the Foxboro I/A Series system, providing accurate and reliable data acquisition for process control and monitoring applications.
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The FOXBORO FBM214 is a programmable controller module designed for use in industrial automation applications. It is part of the Foxboro I/A Series system, which is a distributed control system (DCS) used to monitor and control various processes in industries such as oil and gas, power generation, and petrochemicals.
Key features and parameters of the FBM214 include:
- Communication: The FBM214 supports two types of communication protocols – an RS232 serial interface and the FoxCom protocol. This allows it to communicate with other modules and devices within the DCS system.
- Inputs and Outputs: The module offers a total of eight analog input channels and eight analog output channels. These channels are used for connecting sensors, actuators, and other devices to the module for monitoring and control purposes.
- Resolution and Accuracy: The FBM214 has a resolution of 12 bits, providing a high level of accuracy in measuring and controlling analog signals.
- Configuration: The module can be configured and programmed using a software tool called FoxDraw. It allows users to set up various parameters such as input range, output range, and scaling factors for the different channels.
- Redundancy: The FBM214 supports module redundancy, which means that multiple modules can be used in parallel to ensure continuous operation and fault tolerance in critical applications.
- Diagnostic Capabilities: The module includes built-in self-diagnostic features that allow for monitoring its health and detecting any potential issues or faults.
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