Foxboro RH916RB

Product Introduction
The RH916RB (P0916RB) is a high-precision analog input module for the Foxboro I/A Series. It acquires continuous process variables from field transmitters and converts them into digital values for the control algorithm, forming the eyes and ears of the automation system.

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Description

Foxboro RH916RB

Technical Specifications

  • Channels: 8 isolated analog input channels.
  • Signal Types: 4-20mA, 0-10V, RTD, Thermocouple.
  • Resolution: 16-bit A/D conversion.
  • Update Rate: Configurable scan rates.

Functional Features

  • High Accuracy: Precision signal conditioning and factory calibration.
  • Channel Isolation: Galvanic isolation between channels to prevent cross-talk.
  • Diagnostics: Open wire detection, over-range, and under-range alarms.
  • Linearization: Built-in tables for common sensor types.

Application Scenarios
Core measurement loops in any continuous process industry, providing essential feedback for PID control and operator monitoring.

Performance Parameters

  • Accuracy: ±0.1% of span or better.
  • Input Impedance: >1 MΩ for voltage inputs.
  • CMRR: High common-mode rejection ratio for noisy environments.

Material Composition
Precision resistors and low-drift operational amplifiers. Conformal-coated PCB for environmental protection.

Structural Characteristics
Standard I/A Series module size. Front panel features channel status LEDs and screw terminals for field wiring.

Working Principle
The module conditions the incoming analog signal, converts it to a digital value via a high-resolution ADC, applies linearization and scaling, and transmits the engineering unit value to the controller via the backplane.

Installation Requirements
Use shielded twisted-pair wiring for analog signals. Ground the shield at the module end only. Keep analog wiring separate from digital and power wiring.

Usage Precautions

  • Verify signal type and range match the field transmitter.
  • Perform periodic calibration using a precision signal source.
  • Check for proper grounding to minimize noise pickup.