DCS; Industrial control system
NameDescriptionContent
Argument
Current Location:
PRODUCT SHOW
FOXBORO FBM208/b, Redundant with Readback, 0 to 20 mA I/O Module
❤ Add to collection

FOXBORO FBM208/b, Redundant with Readback, 0 to 20 mA I/O Module

FOXBORO FBM208/b, Redundant with Readback, 0 to 20 mA I/O Module

26444.00
¥61456.00
¥61456.00
¥61456.00
Weight:14.290KG
Description

FOXBORO FBM208/b, Redundant with Readback, 0 to 20 mA I/O Module


FOXBORO FBM208/b, Redundant with Readback, 0 to 20 mA I/O Module

Overview

Single input/single output control schemes with high availability requirements can take

advantage of the FBM208 arranged as a redundant pair. A readback feature is

provided that detects failures of the output channel. In a repair situation, when a single

module is replaced, the inputs and outputs are maintained by the redundant module.

HART

signals are electrically compatible with the 4-20 mA signals, permitting the

plant to upgrade field devices without the need to change the control system. The

FBM208b provides the same functionality and is used to upgrade from the older

FBM05.

Aredundant pair of the modules combine to provide redundancy at the Fieldbus

Module (FBM) level, with field I/O wired to one common termination assembly (TA)

(see Figure 1. page 4). Each module independently attempts to hold the output(s) at

its specified output value(s), and each independently reports its observed value of the

inputs.

Aredundant analog input and redundant analog output block in the Foxboro

DCS

Control Software validates each input and output in conjunction with information to/

from the module.

The FBM208is electrically compatible with standard HARTsignals.

• Four0to20mADCanaloginputchannels

• Four0to20mADCanalogoutputchannels with readback

• ComparesFBM’soutput value with the current readback value. If the readback

value differs from the desired output by more than ± 2%, the FBM marks its

output channel BAD.

• Monitors FBM’s internal channel current loop power and marks the channel BAD

if power is less than 16 VDC

• Marking achannel Bad causes the corresponding channel in the redundant

module to continue to drive the outputs

• Redundantmodules increase reliability

• Termination Assemblies (TAs) for locally or remotely connecting field wiring to the

FBM208

The FBMcomparesits output value with the current readback value. If the readback

value differs from the desired output by more than ±2%, the FBM marks its output

channel BAD. In addition, if the output value is greater than the desired output by

more than +2%, the power to that channel is shut off to help prevent the bad channel

from interfering with the control of that channel by the redundant partner FBM. The

power to a detected failed channel remains off until the FBM is replaced or rebooted

by the user.

Whenthe FBM’soutput channel is marked BAD, the CP presents that information to

the Foxboro DCS for display as a System Management alarm message and as a

control block alarm.

Redundant Analog Inputs

Each input channel accepts an analog sensor input such as a 4 to 20 mA transmitter

or a self-powered 4 to 20 mA source.

Transmitter power from each module is diode OR’d together in the redundant adapter

to help assure redundant power.

Aredundant analog input function block, AINR, is used for each redundant pair of

inputs. The AINR block handles input reads and initialization logic for the redundant

channels. On each execution cycle of the AINR block, identical reads are sent to both

modules, fully exercising the fieldbus and the logic circuitry of each module.

Input channel options include a configurable choice of integration time on a per

module basis. Input channel availability is enhanced by redundantly powering the

input current loop from per channel power supplies in each module of the pair.

Redundant Analog Outputs

Each output channel drives an external load and produces a 0 to 20 mA output.

Aredundant analog output block, AOUTR, is used for each redundant pair of outputs.

The AOUTRblock handles output writes and initialization logic for the redundant

channels. On each execution cycle of the AOUTR block, identical output writes are

sent to both modules, fully exercising the fieldbus and the logic circuitry of each

module. When a failure is detected in one of the modules, its output is driven to 0 mA

and the corresponding channel in the good module automatically continues supplying

the proper current to the output current loop.

Configurable options in the modules for output failsafe and fallback options are always

set to their default values (0 mA). This removes one of the pair of redundant output

channels from service for detectable problems such as a module not properly

receiving output writes or not passing diagnostic tests on FBM microprocessor writes

to output registers. Using the default failsafe/fallback options of 0 mA output also

minimizes the possibility of a “fail high” result.

High Accuracy

High Reliability

For high accuracy, the module incorporates sigma-delta converters for each channel.

This provides new analog input readings every 25 ms and a configurable integration

period to remove any process noise and power line frequencies. Each time period, the

FBMconverts each analog input to a digital value, averages these values over the

time period and provides the averaged value to the controller.

The redundancy of the module pair, coupled with the high coverage of detected faults,

provides a very high subsystem availability time.

The microprocessor of each module executes the analog I/O application program,

plus diagnostic routines that validate the health of the FBM.

Either module may be replaced without upsetting field input or output signals to the

good module. The module can be removed/replaced without removing field device

termination cabling, power, or communications cabling.

Light-emitting diodes (LEDs) incorporated into the front of the module provide visual

indications of the module’s operational status.

Standard Design

FBM208/208b has a rugged extruded aluminum exterior for physical protection of the

circuits. Enclosures specially designed for mounting the FBMs provide various levels

of environmental protection, up to harsh environments.


  • FOXBORO Compact FBM240. Redundant with Readback, Discrete
  • FOXBORO FBM208/b, Redundant with Readback, 0 to 20 mA I/O Module
  • FOXBORO FBM201e Analog Input (0 to 20 mA) Interface Modules
  • Foxboro DCS FBM206 Pulse Input Module
  • FOXBORO FBM216 HART® Communication Redundant Input Interface Module
  • FOXBORO Z-Module Control Processor 270 (ZCP270)
  • FOXBORO Fieldbus Communications Module, FCM10Ef
  • FOXBORO Fieldbus Communications Module, FCM10E
  • Foxboro DCS Compact FBM241/c/d, Redundant, Discrete I/O Modules
  • Foxboro FBM223 PROFIBUS-DP™ Communication Interface Module
  • Foxboro DCS FBM204. 0 to 20 mAI/OModule
  • Foxboro FBM239, Discrete 16DI/16DO Module
  • Foxboro FBM202 Thermocouple/mV Input Module
  • Foxboro E69F Current-to-Pneumatic Signal Converter
  • EMERSON M-series Intrinsically Safe I/O
  • MVME6100 Series VMEbus Single-Board Computer
  • Configuration for AMS 6500 Protection Monitors
  • Ovation™ Controller Model OCR1100 (5X00481G04/5X00226G04)
  • ABB UCU-22, UCU-23 andUCU-24control units
  • ABB force measurement
  • AEROTECH Ndrive MP Hardware Manual
  • AEROTECH Ndrive HPe 10/20/30
  • AEROTECH Ndrive CP Hardware Manual
  • AEROTECH Ndrive Linear Series Digital Servo Amplifiers – Linear
  • AEROTECH Ndrive HP 10/20/30 P/N: EDU170
  • AEROTECH EDU176_Ndrive_HL
  • ADVANCEDMOTION CONTROLS Analog Servo Drive 120A10
  • GE JPAX-H
  • GE JPAX family
  • GE Industry Leading Experience
  • GE Ether-1000 Unit
  • GE Cyber Secured Service Unit
  • GE Lentronics E1MXe Multiplexer
  • GE TTMX Teleprotection Terminal
  • GE Lentronics T1 Multiplexer
  • GE Lentronics JungleMUX SONET Multiplexer
  • GE Lentronics E1MX Multiplexer
  • GE Lentronics TN1Ue SDH Multiplexer
  • GE Lentronics TN1U SDH Multiplexer
  • GE Gridcom DXC Family Access and Transmission Multiplexer
  • GE Advanced Network Management Simplifying Optical Networks
  • GE Lentronics VistaNET Network Management System (NMS)
  • ABB System Controller Connect
  • Ethernet Module EI 803F ABB
  • Ethernet Modules EI 802F ABB
  • ABB Ethernet Modules EI 801F
  • ABB Power Supply SD 802F / SD 812F
  • ABB Power Supply SA 801F / SA 811F
  • ABB Basic Unit PM 802F /PM 803F
  • ABB AC 800F Controller Redundancy
  • ABB Freelance800F AC800F Data Sheet
  • ABB Compact control system replaces PLCs using AC 700F
  • ABB Triguard SC300E MSR04XI
  • ABB Control product - Soft starter PST/PSTB (Intelligent Type)
  • ABB Automation System ABB Procontic T200
  • ABB PCS6000 medium voltage wind turbine converter
  • SYSTEM DRIVES PCS6000 ABB
  • ABB PP886 Compact Product Suite hardware selector
  • ABB CP450 Installation and Operation Manual
  • ABB ompact 800 5.1 Product Catalog
  • ABB Panel 800 version 6
  • ABB Panel 800 Version 6- Panel Builder Version 6.0-1
  • ABB Panel 800 Version 6- PP885
  • ABB IndustrialIT Panel 800 - PP846 Version 5.1
  • ABB IndustrialIT Panel 800 - PP836 Version 5.1
  • ABB Control Panels CP405 Control Panels CP408
  • ABB PowerUP for medium voltage drives
  • ABB Advant® Master S100 I/O system
  • GE MiCOM P40U Connect MiCOM P40 IEDs to PCs with USB ports
  • GE Reason RT431 GPS Precision-Time Clock
  • GE Reason RT430 GNSS Precision-Time Clocks
  • GE Reason H49 PRP/HSR Redbox Switch
  • GE Reason S20 Managed Ethernet Switches
  • GE Gridcom DIP.net
  • Central Control Station at Jaenschwalde mineLausitzer Braunkohle AG, Germany (2000
  • ABB Ability™ System 800xA Advant® Master S400 I/O to S800 I/O Evolution
  • Advant™Automation with MOD 300™ Software
  • ABB MEASUREMENT & ANALYTICS EasyLine EL3000 / EL3060
  • ABB MEASUREMENT & ANALYTICS PGC5000 Process gas chromatograph
  • ABB AC servo motors BSM Series
  • ABB New BSD Series A complete range
  • ABB Advant Controller 110
  • ABB ASTAT® Crane motion controller Version AST10_054
  • ABB-Crane Control System - ASTAT
  • ABB Open Control System Advant Controller 210
  • ABB Open Control System Advant Controller 250
  • ABB Advant Controller 160
  • ABB DSCA33 High Performance Signal Conditioners
  • ABB Advant Controller 70 – Kompakter und leistungsfähiger
  • ABB Advant Controller 31 Hardware 90 Series
  • ABB Advant Controller 31 Series 40 and 50
  • ABB Procontic CS 31 Intelligent decentralized automation system
  • ABB Digital output module ICSO 08 R1, 8 relay outputs 2 A
  • ABB Analog Input/Output Module 07 AC 91
  • ABB Basic Units 07 KT 97, 07 KT 96, 07 KT 95 Advant Controller 31
  • DCV 700 thyristor panels ABB DC Drives
  • ABB ACV 700 Frequency Converters
  • ACS800-04 and ACS800-04M Drive Modules (45 to 560 kW) ABB
  • ABB ACS850-04-387A-5 Low-pressure AC drive mechanical transmission
  • ABB ACS850-04 drive modules (160 to 560 kW, 200 to 700 hp)
  • ABB ACS800 multi-drive,1.1-5600kw
  • ABB 64691929 DSMB-01C; POWER SUPPLY BOARD
  • ABB T320 System 800xA for Advant Master Configuration
  • ABB A331 Advant Controller 400 Configuration and Operation
  • ABB with Advant Controller 400 series
  • ABB Electro-Pneumatic Positioner TZIDC
  • ABB MNS iS motor control center System guide
  • ABB MNS iS The integrated solution for the WAGP project
  • MNS iS Motor Control Center System Release V6.0
  • MNSiS Motor Control Center Interface Manual MLink HW 1TGE120021
  • ABB for electrical systems - CMES MService Condition Monitoring V7.7
  • ABB Ability™ Condition Monitoring for electrical systems – CMES
  • ABB 2600T Series Pressure Transmitters
  • ABB InstrumentationIT 2600T Pressure Transmitter family
  • ABB MEASUREMENT & ANALYTICS 266DSH Differential pressure transmitters
  • Abaco XVR19 Intel® Xeon® Based VME Single Board
  • VMIVME-4150 Isolated 12-Channel 12-bit Analog Output Board with
  • Abaco XVB603 Intel® Xeon® Based VME Single Board
  • Abaco VR12 VP12 6U VME Single Board
  • Mitsubishi MELSERVO-J2-Super series general-purpose AC servo
  • Mitsubishi MELSERVO-J3 servo system
  • Mitsubishi MELSERVO-JE servo system
  • Mitsubishi MELSERVO-J4 AC servo
  • Mitsubishi MELSERVO-JET servo system
  • Mitsubishi MELSERVO-J5 AC servo
  • Mitsubishi Melsec-related network products
  • Mitsubishi MELSEC-QS/WS series
  • Mitsubishi MELSEC-F series