K-WANG

+086-15305925923
Service expert in industrial control field!
NameDescriptionContent
Adequate Inventory, Timely Service
pursuit of excellence 
Ship control system
Equipment control system
Power monitoring system
Current position:
   
Brand
GE FANUC A-S1300B ControlProduct
❤ Add to collection

GE FANUC A-S1300B ControlProduct

+86-15305925923
Mr.Wang
wang@kongjiangauto.com

The Mark* VIe control system is a flexible platform used in multiple applications. It

features high-speed, networked input/output (I/O) for simplex, dual, and triple redundant

systems. Industry-standard Ethernet communications are used for I/O, controllers, and

supervisory interface to operator and maintenance stations, as well as third-party systems.

6666.00
¥8888.00
Weight:3.500KG
Quantity:
(Inventory: 33)
Consultation
Product parameters
  • Telephone:+86-15305925923
  • contacts:Mr.Wang
  • Email:wang@kongjiangauto.com
Description

The Mark* VIe control system is a flexible platform used in multiple applications. It

features high-speed, networked input/output (I/O) for simplex, dual, and triple redundant

systems. Industry-standard Ethernet communications are used for I/O, controllers, and

supervisory interface to operator and maintenance stations, as well as third-party systems.


GE FANUC A-S1300B ControlProduct
The ControlST* software suite, which contains the ToolboxST* toolset, is used with Mark

VIe controls and related systems for programming, configuration, trending, and analyzing
diagnostics. It provides quality, time-coherent data in the controllers and at the plant level
for effectively managing control system equipment.
The Mark VIeS Safety control is a stand-alone safety control system for safety-critical
applications that conform to IEC®-61508. It also uses the ControlST software suite to
simplify maintenance, but retains a unique set of certified hardware and software blocks.
The ToolboxST application provides a means to lock or unlock the Mark VIeS for

configuration and safety instrumented function (SIF) programming.

System Overview
A single-board controller is the heart of the system. The controller includes the main
processor and redundant Ethernet drivers to communicate with networked I/O, and
additional Ethernet drivers for the control network. A real-time, multi-tasking operating
system is used for the main processor and I/O modules. Control software is provided in a
configurable control block language and stored in non-volatile memory. It is similar to
IEEE® 854 32-bit floating-point format, and Sequential Function Charts (SFC) are also
available for complex sequencing.
100 MB Ethernet is used for
communication to local and
distributed I/O modules.
The I/O network (IONet) is a dedicated, full-duplex, point-to-point protocol. It provides a
deterministic, high-speed 100 MB communications network that is suitable for local or
distributed I/O devices, and provides communication between the main controllers(s) and
networked I/O modules. Online controllers continuously read input data directly from the
IONet, which is available in single, dual, and triple redundant configurations. Both copper
and fiber interfaces are supported.
The Mark VIe I/O modules consist of three basic parts: the terminal board, the terminal
block, and an I/O pack. Barrier or box-type terminal blocks are mounted on a terminal
board, which mounts on a DIN rail or base in the control cabinet. The I/O pack contains
two Ethernet ports, a power supply, a local processor, and a data acquisition board. I/O
capability grows as I/O packs are added to the control system, enabling use in a simplex,
dual, or triple redundant configuration. Some process sub-systems require even more
throughput; therefore, the local processors in each I/O pack run algorithms at higher rates
as required for the application.
Redundancy
Every application has different requirements for redundancy depending on the criticality
of the process. The Mark VIe control system provides a wide range of redundancy options
for local and remote distribution.
Redundancy Options
Control Components Redundancy Level
Power sources Single Dual Triple
Power supplies Single Dual Triple
I/O packs per I/O module Single N/A Triple
Ethernet ports per I/O pack Single Dual N/A
IONet Single Dual Triple
Control Network Single Dual N/A
Dual redundant systems transmit inputs from single or redundant input packs on dual
IONets to dual Mark VIe controllers. Controllers then run application software and
transmit outputs to output packs. Three output I/O packs may be provided to vote output
signals for mission-critical field devices. Dual redundant systems may be configured for
single, dual, and triple redundant sensors.
Triple redundant systems protect against soft or partial device failures. A failed
component is outvoted with a 2-out-of-3 logical selection (vote) or a median value
selection. Control software in all three Mark VIe controllers runs on the voted value of
the signal while diagnostics identify the failed device. These sophisticated diagnostics
reduce the mean-time-to-repair (MTTR) while the online repair capability increases the
mean-time-between-forced-outages (MTBFO). Field sensors for these systems may be
single, dual, or triple.
I/O Interface
Every I/O pack communicates
directly over the IONet, which
enables each I/O pack to be
replaced individually without
affecting other I/O packs in the
system. Additionally, the I/O
pack may be replaced without
disconnecting any field wiring.
One or multiple I/O packs are mounted on each module to digitize the sensor signal, run
algorithms, and communicate with a separate controller containing the main processor.
I/O packs have a local processor board that runs a real-time operating system and a data
acquisition board that is unique to the specific I/O application. Local processors run
algorithms at faster speeds than the overall control system, such as the regulation of servo
valves performed within a servo module.
Each I/O processor has a local temperature sensor accurate to ±2°C (±3.6 °F). Detection
of an excessive temperature generates a diagnostic alarm and the logic is available in the
database (signal space) to facilitate control action or unique process alarm messages. The
temperature is continuously available in the database. I/O module features include:


Dual 100 MB Ethernet ports
• 100 MB full-duplex ports
• Online repair per I/O pack
• Automatic reconfiguration
• Accuracy is specified over full operating
temperature
• Internal temperature sensor
• LEDs:
− Power status and attention
− Ethernet link-connected and
communication-active
− Application-specific
• 28 V dc power
• Internal solid-state circuit breaker and soft start
A power supply provides a regulated 28 V dc power feed to each I/O pack. The negative
side of the 28 V dc is grounded through the I/O pack metal enclosure and its mounting
base. The positive side has solid-state circuit protection built into the I/O pack with a
nominal 2 A trip point. Online repair is possible by removing the 28 V dc connector,
replacing the I/O pack, and re-inserting the power connector. I/O packs are automatically
reconfigured if the Auto-Reconfiguration feature is enabled.
  • OMRON C-series/CVM1/CV series analog I/O units
  • Siemens SINUMERIK 840C+SIMODRIVE 611-D Installation Guide
  • ABB ACS550 frequency converter
  • OMRON SYSMAC NX series NX1P2 CPU unit
  • Fuji FRENIC Mini Inverter
  • Braided Flexible Connections
  • Mecc Alte MC200 Controller
  • Schneider Square D 9036/9037/9038 Electromechanical Liquid Level Controller
  • Pilz PSS 4000 Automation System
  • Schneider TeSys Giga GV5/GV6 motor protection circuit breaker
  • Eaton Freedom NEMA Contactor and Starter Specification
  • OMRON D4SL-N Safety Door Switch (Including Locking) Specification
  • NI CompactRIO Embedded System
  • I/O module of Emerson Ovation distributed control system
  • MITSUBISHI MELSEC A series PLC(MELSEC-A)
  • Specification for Automation Direct DL06 Series Micro PLC (D0-06DD1)
  • IFM CR2530 SmartController Installation Manual
  • OMRON FH/FHV series visual sensor controller
  • PILZ PDP67 F 4 code operation instructions
  • Panasonic FP-X series PLC
  • OMRON CK3W-AX Axis Interface Unit Specification
  • EPSON RC90/RC90-B Robot Controller
  • Nthytronic Group iRTUe Modular I/O Expansion Unit
  • Schneider Altivar Machine ATV320 frequency converter
  • Eaton Cutler Hammer Pull SPB Automatic Transfer Switch (ATS) Operation and Maintenance
  • GFS Corp EVO-SP 2600 Diesel Generator Set Natural Gas Conversion System Specification
  • OMRON SYSMAC CJ Series CJ2 CPU Unit Hardware
  • Lenze ECS servo frequency converter
  • GE EX2100e excitation control system 35A/120A regulator
  • OMRON G3PW Power Controllers
  • MITSUBISHI FX3GE MELSEC Compact PLC
  • BECKHOFF EP23xx series IP67 protection level EtherCAT Box digital input/output module
  • MITSUBISHI MDS-A/B Series CNC AC Servo/Spindle System
  • TOYO's full range of valve products
  • SIEMENS SIMODRIVE 611 Universal/Universal E Full Series Digital Drive Control Board
  • SIEMENS SINUMERIK 840C SIMODRIVE 611-D Installation Guide
  • FANUC 0i Model F Universal CNC Control System
  • Schneider Modicon TM3 Expansion I/O modules for Modicon M221, M241, M251 and M262 controllers
  • R&S®EPL1000 EMI TEST RECEIVER
  • Baum ü llerb maXX series modular servo drive and automation platform
  • Huichuan AM600 motion controller
  • Allen Bradley Ultra3000 Servo System Design Guide
  • NEC NL8060BC26-17 LCD Module
  • ABB Jokab Pluto Safety PLC
  • OMRON NE1A Series Secure Network Controller Operation Manual
  • Allen Bradley 2711P series PanelView Plus human-machine interface terminal
  • NI cFP-2200/2210/2220 Compact FieldPoint Intelligent Real time Controller
  • Installation Instructions for KEYENCE XG-8000 Series Line Scan Camera Version Vision System
  • Omron G9SX series flexible safety unit
  • OMRON SYSMAC CPM1A series programmable controller
  • ABB ACH550 frequency converter installation, operation and maintenance instructions
  • IDEC MicroSmart FC6A PLC CPU Module
  • Gefran GILOGIK II Distributed I/O and Control System
  • GE VersaMax Nano/Micro PLC
  • Nastyaer GIV50-11 Position Limit Switch
  • Rockwell Trusted T8111 TMR Processor
  • TIANMA NL8060BC21-11KG 8.4-inch TFT LCD module
  • CapXon UJ series aluminum electrolytic capacitors
  • FLVOTEK MV10H series DC/DC power module
  • SIEMENS QBE3000-D/QBE3100-D Differential Pressure Sensor
  • Huichuan H3U series PLC
  • Phoenix ILC 1X1 Series Inline Controller
  • Allen‑Bradley Lifeline ™ 4 Pull rope emergency stop switch
  • Gardner Denver DELCOS 3100 Controller
  • Mitsubishi GOT2000 series graphic operation terminal
  • EBW Series current detection resistor
  • Mitsubishi MELSEC AnS (H) series CPUs
  • Honeywell TN3801 Electric Pneumatic Liquid Level Measurement Cabinet
  • ABB PSR/PSRC/PSE/PSTX series soft starter
  • GE HYDRAN ® 201i Transformer Online Monitoring System
  • ABB NextMove ESB-2 motion controller
  • CAREL PGD graphic display handheld device
  • Hiossen EK implant system
  • Eaton 9PX Series UPS Installation and User Instructions
  • Airlec RYP series precision pressure reducing valve
  • Schneider Modicon M258 Logic Controller
  • KEYENCE XG-7000/8000 Series Visual System New Function Manual
  • Alfa Laval EPC 70 upgrade for separators with EPC 50
  • Nidec Unidrive M700/M701/M702 frequency converter
  • Mitsubishi A171SCPU Motion Controller
  • YASKAWA DX200 Robot Function Pack Manual
  • CKD AxTools servo debugging software (EboDEX)
  • IUSA Cambridge Lee Copper Tube
  • TAIYO LX series brushless AC generator
  • Automate Direct DL06 Micro PLC
  • Kepco BOP Bipolar Power Supply Operating Instructions
  • Pilz PNOZmulti Classic/Mini Safety Mini Controller
  • HMS Airbus X-gateway Industrial Protocol Gateway
  • Nidec Control Techniques Unidrive SP AC Variable Frequency Governor
  • GE SPEEDTRONIC ™ Mark VI Gas/Steam Turbine Control System
  • Instructions for using LK-TECH MGv2 servo motor
  • Zebra EPL2 Programming Language Programming Guide
  • How to install Elmo Gold Whistle digital servo drive?
  • MITSUBISHI ELECTRIC FR-D700 frequency converter
  • Edwards EST3 Emergency Communication and Life Safety Platform
  • ABB ACS380 mechanical frequency converter
  • MITSUBISHI ELECTRIC MELSEC iQ-R/System Q/L series PLC family
  • Rockwell Automation Bulletin 5069 Series Controllers
  • CODESYS Control Win SL
  • ABB AC 800M controller and communication interface
  • Honeywell 7800 Series EC/RM7830A/7850A Combustion Relay Module
  • Rockwell AutoMax Distributed Power Drive System Manual
  • SNO 4062 K/KM safety relay
  • World Encoders iPHD/iHDW series handheld electronic handwheel
  • Copes Vulcan turbine bypass system (CV-1163)
  • ZF Marine MM9000 ClearCommand Marine Propulsion Control System
  • Pro face GP-2400/2500/2600 Series Operating Manual
  • TI C2000 CLA Software Development Guide
  • Honeywell ControlEdge HC900 Controller
  • Metso DNA Device Status Monitoring System
  • ABB Millmate Rolling Mill Force Measurement System
  • Reliance Electric GV3000/SE AC Inverter
  • EUCHNER handheld operating unit and electronic handwheel
  • GE Fanuc Automation VersaMax ® I/O and Control
  • Microchip dsPIC30F series 16 bit high-performance digital signal controller
  • Milacron ELEKTRON 400/500/600 series fully electric injection molding machine
  • PRECILEC RE.0444N series DC tachometer generator
  • Mitsubishi GOT2000/GOT1000 series serial communication unit
  • Keyence GS series safety interlock switch
  • GE AT868 AquaTrans ™ Single/dual channel ultrasonic water flow transmitter
  • MITSUBISHI ELECTRIC GOT1000 Series Connection Manual
  • Allen Bradley Guardmaster GSR Safety Relay
  • Delta AH500 PLC Operating Instructions
  • Pilz PNOZmulti series safety control system
  • Operation Instructions for Pilz PNOZ XV3P Safety Relay
  • Pilz PZE 9 Safety Relay Expansion Module
  • SCHNEIDER TSX Premium P57 Processor and Discrete I/O Modules
  • KONGSBERG High Precision Acoustic Positioning – HiPAP®