Description
8206-TI-IS Product Introduction
The specific application scope of the product
will depend on the needs of system integration and industrial application, but generally speaking, this type of embedded controller module can be applied to the following categories:
manufacturing processes, etc.
monitoring and control system.
of the controller module, as well as the specific needs of the customer.
designed to manage gas or steam turbines.
It has a CIMPLICITY graphical interface and an HMI with software suitable for running heavy-duty turbines.
be installed at the bottom of the cabinet. For a small setup that is easy to serve a triple redundant system, up to three components can be installed side by side.
he board can operate within a temperature range of 0 to 65 degrees Celsius without the need for a fan for cooling. NFPA Class 1. This board can be used for two applications.
Double-decker train uses ABB traction transformer for the first timeRapid urbanization has brought about problems such as traffic congestion, air pollution and population expansion, forcing railway operators and infrastructure providers to transport more passengers on already busy rail transit systems. One solution to this outstanding contradiction is to increase the passenger capacity of existing transportation lines.On July 22, 2011, ABB , the world”s leading power and automation technology group, recently announced that Bombardier designed and manufactured the world”s first traction transformer that can be installed on the top of the locomotive for its new generation double-deck EMU train . This train can be used in commuter, regional and intercity rail transit. The use of double-decker trains is a good way to increase passenger capacity. This type of train has the best car seat ratio planning, and the improved acceleration performance of the train also effectively shortens the travel time between stations and expands the coverage of train services.The latest Bombardier double-decker trains have an ABB traction transformer installed on the top. They adopt an extra-wide body and better seat planning. The number of seats per meter of the body ranges from 5 to 5.8, providing more space for passengers. Compared with similar models currently on the market, Bombardier”s new trains can carry 35% more passengers.ABB and Bombardier have a long-standing relationship in the field of traction equipment for regional commuter trains, high-speed trains and railway locomotives. The traction transformer converts the grid voltage from the power grid above the train into the lower voltage required by the train”s traction system, and delivers it to the train”s driving equipment, as well as lighting, heating, ventilation systems, on-board LCD displays, information systems and other electrical system .In order to ensure the continuity of railway transportation and the effectiveness and reliability of the highest level of instant power supply, ABB specially designed traction transformers for OMNEO trains. Compared with the traction transformer on the single-layer SP AC IUM* EMU train provided by Bombardier for the Francilien line in the Paris region of France , the power supply capacity of the new transformer is increased by 25%. To save space, the roof-mounted traction system combines the separate cooling systems for the converter and transformer. This design reduces the number of fans while reducing cost and equipment weight. In addition, in order to save space and facilitate equipment maintenance and control, the transformer will be installed directly on the top channel of the vehicle.Bombardier worked with ABB to complete the design work, and the cabin baffles were installed on the inverter , cooling system and transformer to ensure that these components fit perfectly into the arc-shaped roof and are difficult to see from the outside after installation. In order to solve the problem of the high center of gravity of the double-decker train carriage, the transformer has also been designed accordingly to evenly distribute the weight of the equipment.Swiss ABB will build the largest solar power plant in Northern EuropeSwiss power and automation technology group ABB announced on August 11 that it has built the largest solar power station in Northern Europe at its low-voltage AC drive plant in Finland . The total investment in the entire solar power station project is approximately 500,000 euros, part of which comes from the Finnish government. renewable energy investment fund.ABB Finland”s low-voltage AC transmission plant is located in Helsinki. This solar power station is located on the roof of the factory and has a power of 181 kilowatts. The solar power generated is mainly used to charge the factory”s forklift truck batteries and reduce the peak load of the factory”s electricity consumption.Antti Suontausta, Senior Vice President of ABB”s low-voltage AC drives business, said: “This solar power generation system fully demonstrates the benefits of distributed power generation near power consumption areas. Solar power generation can bring high added value to users, especially for commercial and industrial applications . For buildings, solar power generation can reduce the building’s peak power load.”Finland”s sunshine is not very abundant, but this solar power station can take full advantage of the region”s long sunshine hours in summer. It is expected to generate 160,000 kilowatt hours of electricity per year, which is equivalent to the annual use of 30 local households that do not use electric heating equipment. power. This solar power will be directly integrated into the factory power grid to charge the forklift trucks in the factory, and the excess power can also be used by other equipment.The solar power station uses ABB”s latest string inverters and central inverters, which are designed and produced by ABB”s transmission plant in Helsinki. This is their first application in Finland. ABB solar inverters are mainly used to convert DC power produced by solar panels into high-quality AC power and integrate it into the power grid.
IS215UCVFH2AB Processor/Controller Mark VI System
DS200FCSAG1ACB Processor/Controller Mark VI System
IS200EXCSG1A GE power control board
IS200TDBSH2A I/O excitation redundant module GE
IS420YVIBS1B Processor/Controller Mark VI System
IS200HSLAH2A Processor/Controller Mark VI System
IS215UCVFH2AB Gas turbine system Mark VI
IS210AEPSG1B GE power control board
DS200SPCBG1ADC High performance processor module GE
IS210DRTDH1AA Gas turbine system Mark VI
IS420ESWBH3AX GE power control board
IS230SNAIH4A I/O excitation redundant module GE
IS200VTURH1BAC From General Electric in the United States
IS420ESWBH3A From General Electric in the United States
DS2020FEXAG4 I/O excitation redundant module GE
IS200ACLEH1ABA GE power control board
IS200BICIH1ADB Gas turbine system Mark VI
IS200PMCIH1AAA6BA00 GE power control board
IS200IGPAG2A I/O excitation redundant module GE
DS200RTBAG1AHC Processor/Controller Mark VI System
DS200PCCAG9ACB From General Electric in the United States
DS200RCIAG1AAA GE power control board
IS200TBCIH2C GE power control board
DS3800XPEX1B1A I/O excitation redundant module GE
IS215UCCAM03A GE power control board
DS200PCCAG6A Gas turbine system Mark VI
IS410JPDDG2A From General Electric in the United States
IS220PDIOH1A Gas turbine system Mark VI
DS200ADMAH1AAC Gas turbine system Mark VI
IS200EHPAG1B From General Electric in the United States
IS200AEBMG1AFB GE power control board
DS200VPBLG1AEE From General Electric in the United States
IS200JPDDG1AAA I/O excitation redundant module GE
IS200EXHSG4A Gas turbine system Mark VI
DS200DMCAG1AJD I/O excitation redundant module GE
DS200PCCAG6A Processor/Controller Mark VI System
IS420PSCAH1B Gas turbine system Mark VI
IS200DTAOH1ABA Gas turbine system Mark VI
IS200BPVCG1B Gas turbine system Mark VI
IS200EDCFG1A I/O excitation redundant module GE
DS200DTBAG1AAA Gas turbine system Mark VI
DS215TCQAG1BZZ01A Gas turbine system Mark VI
DS200SHCAG1B From General Electric in the United States
IS420ESWAH5A From General Electric in the United States
IS200TREGH1BDB I/O excitation redundant module GE
IS200ERRRH1A Processor/Controller Mark VI System
IS200VSCAH2A From General Electric in the United States
IS200TBAIH1B Processor/Controller Mark VI System
IS200IHG1A Gas turbine system Mark VI
IS200ADIIH1AAA Gas turbine system Mark VI
DS200TCQCG1BLG I/O excitation redundant module GE
IS215VCMIH2CA Gas turbine system Mark VI
IS200IGDMH1B Gas turbine system Mark VI
DS200DTBDG1ABB I/O excitation redundant module GE
IS200TTPWH1A Gas turbine system Mark VI
IS200TBAIH1C From General Electric in the United States
IS200VPROH2B I/O excitation redundant module GE
IS220PAISAH1A Processor/Controller Mark VI System
IS220PDIIH1B From General Electric in the United States
IS220PPDAH1A Gas turbine system Mark VI
IS200JGNDG1A High performance processor module GE
IS200VAICH1DAB I/O excitation redundant module GE
DS200GGXCG1A I/O excitation redundant module GE
IS200TBTCH1CBB I/O excitation redundant module GE
IS220PTURH1A I/O excitation redundant module GE
IS230STTCH2A I/O excitation redundant module GE
DS200DTBDG1 Gas turbine system Mark VI
IS200PTURH1B Gas turbine system Mark VI
IS215VCMIH2B High performance processor module GE
DS3820LT4AICIA Gas turbine system Mark VI
IS215PMVPH1A Processor/Controller Mark VI System
IS200DSPXH2DBD From General Electric in the United States
DS200SLCCG3ACC From General Electric in the United States
IS200PTURH1B High performance processor module GE
GE DS200EXPSG1A Processor/Controller Mark VI System
IS200ERDDH1 High performance processor module GE
IS200TVIBH2BBB GE power control board
DS200TCQAG1A GE power control board
IS210BPPBH2BMD Gas turbine system Mark VI
IS200TDBTH6A Processor/Controller Mark VI System
IS200EPBPG1ACD Processor/Controller Mark VI System
DS200DSFBG1A From General Electric in the United States
DS200PCCAG10A Gas turbine system Mark VI
DS200FSAAG2ABA I/O excitation redundant module GE
IS210AEBIH1ADC Gas turbine system Mark VI
IS220PSVOH1A From General Electric in the United States
DS200ADPBG1A From General Electric in the United States
DS200TCPDG1BEC I/O excitation redundant module GE
DS200TCDAH1B Gas turbine system Mark VI
IS200WNPSH1ABA Gas turbine system Mark VI
IS420UCSBS1A Gas turbine system Mark VI
IS420ESWBH2A From General Electric in the United States
IS200ERSCG1A I/O excitation redundant module GE
IS200ESELH1A GE power control board
DS200TCRAG1A GE power control board