Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

YOKOGAWA FFCS COMPACT CONTROL STATION IN CENTUM CS3000 R3

来源: | 作者:FAN | 发布时间 :2025-12-19 | 352 次浏览: | 🔊 Click to read aloud ❚❚ | Share:

YOKOGAWA FFCS COMPACT CONTROL STATION IN CENTUM CS3000 R3

In the course of developing CENTUM CS3000 R3 Revision 3.04, we also developed a new FFCS field control station which has achieved compact size and high reliability. The processor cards, being compact yet high performance, utilize field-proven “Pair & Spare” technology deployed in large-scale control systems, resulting in the implementation of sophisticated control functions and high reliability equivalent to the existing controllers designed for large-scale control systems. The FFCS is designed to be the same overall size as the existing “uXL” control unit, which enables easy replacement of the control unit without any changes. Moreover, CPU nodes, processor modules, ESB coupler modules, and Vnet coupler modules have been newly developed for the FFCS. Especially, SEN bus (Serial Exchange Nest bus), which is a high-speed serial bus designed to suit the program copy and data equalization between dual redundant processor modules, has been developed as a new technology for data communication.


INTRODUCTION

YOKOGAWA Electric has been using Pair & Spare method as a reliability-enhancing technology for its line of distributed reliability-enhancing technology for its line of distributed control systems (DCS) since the release of the CENTUM CS in 1993. As a result, the system has achieved an availability factor of seven 9’s (99.99999%) for the record of operation to date. Under the basic concept “continually adopt new functions with assured function continuity”, the CENTUM CS3000 R3 is being constantly improved through ongoing development and by introducing the latest technologies. Also strictly adhering to this basic stance for CENTUM CS R3 Revision 3.04, we have developed the FFCS compact field control station (Figure 1), which provides both the advanced control functions and high reliability levels required for DCSs, for use with small- to medium-scale systems. This article introduces the FFCS.


SYSTEM CONFIGURATION

Figure 2 shows the configuration of the CENTUM CS R3 system. As for field control stations (FCS) to be connected to field devices to control the plant, we have added the small-size FCS (compact type, hereinafter called FFCS) featuring both high mountability and high distributability to the existing line of FCSs — standard, expandable and renewable FCSs that realize high mountability, and the highly distributable FCS that is suited for distributed topologies, according to the application capacity and the purpose of use.

image.png

FEATURES OF FFCS

Figure 3 illustrates the external views of the conventional field control unit (FCU) and the field control unit (CPU node) of the FFCS and the features of the FFCS are described below.

(1) Compact and Expandable

Positive adoption of the latest technologies has made the FFCS as compact as only one-fifth the volume of the conventional control unit. The number of I/O nodes can be increased up to three. Thus the system can be expanded without increasing the number of CPU nodes.

(2) Advanced Functionality and High Reliability

The processor module employs Pair & Spare method, which is field-proven for controllers for large-scale systems, to switch the control right in case of system failure without any momentary shutdowns, thus minimizing the influence inflicted upon the process. While being compact, the module has the same advanced control functions and highly reliable architecture as those of controllers for large-scale systems. In addition, the processor module can be made completely dualredundant.

(3) Migration from Existing uXL Systems

The external dimensions of the FFCS are the same as those of the control unit section of an existing uXL control system for small- to medium-scale plants. It is therefore possible to migrate to the FFCS by simply replacing the control unit section with the station. This feature enables the user to reuse its existing assets to the maximum possible degree and update the existing system with the minimum investment in the plant and equipment.


HARDWARE CONFIGURATION OF FFCS

As shown in the dual-redundant configuration diagram of Figure 4, the processor module, power unit, communication bus, and I/O module of the FFCS can all be duplexed. The I/O module (IOM) and the field network I/O module (FIO) of CENTUM CS R3 have been made common to each other. This section focuses on the hardware of the newly developed CPU node.

CPU Node

A maximum of eight IOMs can be installed in the CPU node, allowing the CPU node to operate alone as the minimum system of the FFCS.

A maximum of three extension nodes (direct-coupling and remote nodes) can be connected to the CPU node. When connecting the CPU node and direct-coupling node, an ESB bus coupler module (EC401) is installed in the IOM section of the CPU node and an ESB bus slave interface module (SB401) is installed in the extension node. When using the remote node in place of the extension node, an ER bus master interface module (EB401) is installed in the IOM section of the CPU node or directcoupling node.


Processor Module (CP401)

Figure 5 shows the dual-redundant configuration of the processor modules. The dual-redundant processor modules employ the field-proven Pair & Spare method. Each processor module comprises two MPUs, where the MPUs perform the same control computations and the computation results are crosschecked by the collators to detect transient errors. With the dual redundancy of processor modules, the transfer of the control right in case of system failure and the continuation of control are accomplished without any momentary shutdown, achieving high degrees of system availability.

  • GE AT868 AquaTrans Ultrasonic Flow Transmitter
  • ABB PFSA107-Z42 DTU Stressometer Digital Transmission Unit
  • ABB PFSA240 3BSE073476R1 Roll DC Supply Unit
  • Fanuc A16B-2201-0320 CPU MAIN Board
  • Pilz 475650 PNOZ 1 Safety Gate Relay
  • Omron NSH5-AL001 HMI Interface Unit
  • Allen-Bradley 1756-OF8 Analog Output Module
  • Siemens 6SL3210-1SE31-0AA0 Power Module 45kW
  • PMA TB45-110-00000-000 Temperature Limiter
  • PSR-SCP-24DC-ESD-5x1-1x2-300 Safety Relay
  • Pilz 774140 PZE 9 Safety Relay
  • Telemecanique TSXRKN82F PLC Rack Chassis
  • Mitsubishi R16CPU PLC CPU Module
  • OMRON C500-PS223-E Power Supply Module
  • Siemens 3VL4731-1DC36-0AA0 Circuit Breaker
  • Siemens 7ML5201-0EA0 Ultrasonic Level Transmitter
  • OMRON NQ3 NQ5 Touch Panel HMI
  • OMRON CJ1W-AD081-V1 Analog Input Module
  • OMRON NJ301-1100 Machine Automation Controller
  • B&R X20BC00G3 EtherCAT Bus Controller
  • Schneider ATV212HD22N4S Variable Speed Drive
  • B&R 8B0C0320HW00.002-1 Power Supply Module
  • Mitsubishi OSA105S2A Incremental Rotary Encoder
  • Pilz 777514 PNOZ XV3P Safety Relay
  • Gould AS-884A-111 Modicon 884 Controller
  • Siemens 6SC6130-0FE00 SIMODRIVE Control Card
  • Omron CV500-PS221 PLC Power Supply Module
  • ABB CM577-ETH AC500 PLC Ethernet Module
  • Omron NX-SIH400 Safety Input Unit NX Series
  • Omron NJ501-1300 Machine Automation Controller
  • Siemens 3VT8563-2AA03-2KA2 Molded Case Breaker
  • Pilz PNOZ m1p ETH 773103 Safety Controller
  • Omron CJ1H-CPU66H-R CJ1 Series CPU Module
  • ASI ASI533-S00 PLC Module S1
  • Mitsubishi AJ71C21-S1 Serial Module
  • Keyence IX-1000 Laser Sensor Amplifier
  • Siemens 6SN1145-1AA01-0AA1 Power Module
  • Siemens 3VA2340-5HL32-0AA0 MCCB 400A
  • Mitsubishi OSA104S Absolute Encoder
  • Siemens 6ES7350-1AH03-0AE0 FM 350-1 Counter
  • Siemens 6SE7038-6EK84-1JC2 IGD8 Gate Driver
  • Eaton EASY819-AC-RC Programmable Relay
  • Omron CPM1A-40CDT-D PLC 24V DC
  • Omron NA5-12W101B-V1 12-inch Programmable Terminal
  • Siemens 6ES7331-7KF02-0AB0 Analog Input SM 331
  • Moxa PTC-101-S-SC-HV Photoelectric Converter
  • Fanuc A20B-3300-0031 CNC Control Circuit Board
  • OMRON NA5-7W001B-V1 Programmable Terminal HMI
  • Parker AH385851U002 590C DC Drive Power Board
  • ABB 3BSE040662R1 AI830A Analog Input Module
  • DOLD BF9250.01/001 Solid State Relay
  • Siemens 6ES7331-7KF02-0AB0 SIMATIC S7-300 SM 331
  • ABB 07AC91 I6 GJR5252300R3101 Advant Controller 31
  • Schneider HMIST6500 Touch Screen HMI
  • Phoenix IL PN BK DI8 DO4 2TX-PAC Bus Coupler
  • NLTECH NL8060AC21-21D 8.4 inch LCD Display
  • Mitsubishi A2NCPU-P21 CPU Module A2NCPUP21
  • 1841-PL1-B-LH-ES Pressure Controller
  • Mitsubishi GT2512-STBA GT2512-STBD HMI
  • Cosel PJA600F-24 24V 600W Power Supply
  • B&R X67DM1321 Digital Mixed Module
  • Fanuc A16B-1310-0010 Power Supply Unit
  • Festo VABF-S4-1-V2B1-C-VH-20 Vacuum Generator
  • Mitsubishi A3ACPUP21 A3ACPU-P21 CPU
  • Mitsubishi Mazak PD14B-1 Power Supply
  • Siemens 6SY7000-0AC80 Module
  • PILZ 774400 PDZ Safety Relay
  • Mitsubishi A1SX81 Digital Input Module
  • Asyst Gasonics R94-1163 Controller 112671
  • Cincinnati Milacron 3 545 1000A Card
  • Siemens 6DD1607-0AA2 UPS Module
  • Square D 8536SCG3V02S Motor Starter
  • Siemens 6SL3100-1DE22-0AA1 Control Supply
  • Beckhoff EL9400 EtherCAT Power Terminal
  • Fanuc A16B-2202-0421 Power Supply Board
  • Turck TBEN-LG-8DIP-8DOP I/O Block
  • Euchner MGB-L1B-PNA-L-121861 Safety Switch
  • Pilz 772170 PNOZ M EF 1MM Safety Expansion
  • Mitsubishi AY51 MELSEC-A Output Module
  • Advantech AMAX-5056-A 8-Channel Digital Output
  • NXP MC912D60ACPV8 16-Bit MCU 60KB Flash
  • Omron C500-PS223-E SYSMAC PLC Power Supply Unit
  • Balluff BNI0047 BNI PBS-302-101-Z001 Profibus Module
  • Siemens 6SN1118-0DM31-0AA0 Regulation Card
  • Bently Nevada 9200-02-01-10-00 Sensor
  • Omron C500-PS223-E Power Supply Unit
  • Cognex COG-VC5-120-000 Vision Controller
  • ABB P-HC-BRC-40000000 Bridge Controller
  • Mitsubishi AJ71E71N-B5T PLC Module
  • Phoenix PSI-REP-PROFIBUS/12MB 2708863
  • Siemens 6SL3210-5BE31-8UV0 Converter
  • ABB CI868K01-eA 3BSE048845R2 Module
  • Honeywell S7999D1006 Touch Screen
  • Keyence CA-CHX10U Repeater Unit
  • Keyence VT5-W07 Touch Screen HMI
  • Keyence KV-8000 PLC CPU
  • Siemens 7MH4900-3AA01 Weighing Module
  • Omron C200HS-CPU01-E Programmable Controller
  • CD22-35AM12 Inductive Sensor
  • Mitsubishi A2NCPUR21-S1 PLC CPU
  • Siemens 6ES7331-7FK02-0AB0 Analog Input
  • Schneider HMIST6500 Touch Screen HMI
  • 0970 PSL109 Module Industrial Control
  • Schneider LC1F500P7 Contactor 500A
  • Mitsubishi GT2512-STBA GT2512-STBD HMI
  • Omron NJ1019000 Machine Automation Controller
  • Siemens 6SN1112-1AC01-0AA1 Power Module
  • Eaton AE16KNS0AB Bimetallic Overload Relay
  • ABB 3bse036456r1 Ai825 Analog Input 4 Ch
  • Fuji Electric 7MBR50SB120-50 IGBT Module
  • Schneider XPSMC32ZP Safety Relay
  • Siemens 3VL4740-2AA36-0AA0 Circuit Breaker
  • ABB PharpSFan03000 Mpsiii Fan System Monitor
  • Honeywell DPCB21010002 IRTP131 PCB
  • Siemens 6ES7214-1HG40-0XB0 CPU 1214C
  • Siemens 6ES7350-1AH03-0AE0 FM 350-1
  • PILZ PNOZ mm0.1p 772001 Safety Relay
  • E2V EVX12DS130AGC 12DS130 Module
  • Siemens 3RT5066-6AB36 Contactor
  • HIRSCHMANN RS20-0800T1T1SDAEHC09.1.00 Switch
  • Q4XTILAF500-Q8 Laser Range Sensor
  • OMRON CVM1-BC103 Base Unit 145752
  • CAREL RITC400001 Card
  • Eaton LZMN3-AE400 Molded Case Circuit Breaker
  • Fanuc A20B-3300-0031 Control Circuit Board
  • Siemens 6ES7450-1AP01-0AE0 S7-400 FM 450-1
  • Fanuc A90L-0001-0317/F Spindle Fan Motor
  • Schneider TM262L10MESE8T Logic Controller