Description
DS3800NGDC1B1A 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.
There will be many changes in employment patterns. The days when one generation learned one job and the next generation learned another are over. I have two sons, ages 16 and 19, and I tell them to be prepared to forget their job skills two or three times in their careers and take on new challenges. Artificial intelligence will reshape manufacturing Caijing: What technology has the greatest impact on manufacturing? Spiesshofer: Artificial intelligence. If applied properly, AI technology can unleash human potential and bring significant changes to production, wealth, and prosperity. It will make automation more autonomous. There will be self-optimizing factories in the future. Repetitive and difficult work will be completed through automation, and humans can focus on more creative work. Caijing: How does ABB integrate artificial intelligence technology and automation technology? What are the differences between robots equipped with artificial intelligence technology and previous robots? Spiesshofer: Let me tell you a story first and then explain it systematically. Last September, at the Coliseum in Pisa, we asked our two-arm robot YuMi to conduct a symphony orchestra, and the world-famous singer Andrea Bocelli sang under its command. Through this, we demonstrated what AI and robots can do. If we put this learning process in an actual industrial environment, assuming you are a small company that produces toys in Wuhan, China, and you want to use robots, what can we provide you? Through an AI technology-supported software package called Robot Studio, we can introduce experiences similar to your work scenarios and provide support for professionals in robot application planning. All of this is supported by AI technology. Therefore, AI is involved in the planning process. When you start using these robots in operation, you may worry that I am just a small company and I cannot afford to pay for a maintenance engineer. But ABB can monitor the status of all robots, store the data in the cloud, and compare it with the data of thousands of other robots. It can intelligently predict its possible downtime and accurately calculate the maintenance costs and time you need, even as a robot. A small company can also afford it. So I think if AI can be applied well, it will enhance the value of technology to humans and enable it to serve more people at a lower cost. At present, the application of technology is still expensive. Hardware is only part of it, and the engineering application of technology is still a large expense, whether it is setup, installation or operation. If we can make it cheaper, more companies will Affordable, more companies can produce quality products at attractive costs, which means more people can afford them, so more people can have jobs, and more people can be created. need. ABB is part of Made in China 2025 Caijing: People have been talking about trade wars this year, anti-globalization sentiment is rising, and various trade protection policies are being introduced. What impact do these changes have on you? Spiesshofer: Market sentiment is generally positive, but there are also many uncertainties, including regulatory, trade, and political. As CEO, I have to guide ABB forward in this challenging environment. For me, long-term certainty helps me lead the company better. I hope that the future world will be more certain. Caijing: What do you understand by Made in China 2025? Spiesshofer: ABB can play a fundamental role in this, because Made in China 2025 can only succeed when Chinese companies can produce enough internationally competitive products. To this end, Chinese companies need automation and robots, and we can provide these technologies. Now we have a complete integrated value chain in China. More than 2,000 Chinese employees are engaged in research and development, accounting for 12% of the total number of employees. The products we need in China can be developed, manufactured and shipped in China, and more than 85% of them are sold in China. of products can be developed and manufactured locally. The future of manufacturing is coming, and it will integrate artificial intelligence technology with traditional automation and robotics technologies. China is writing a new history of integrating artificial intelligence technology with traditional manufacturing. China”s role is changing, its technological capabilities are changing, and China has the opportunity to make greater contributions and become a world leader.
IS210AEBIH3BED Processor/Controller Mark VI System
IS220UCSAH1A From General Electric in the United States
DS200TCDAH1BHD GE power control board
DS200PLIBG2ACA Gas turbine system Mark VI
IS200EBKPG1CAA High performance processor module GE
IS200STCIH6A Processor/Controller Mark VI System
IS200DSVOH2BDB From General Electric in the United States
IS200DAMAG1BBB I/O excitation redundant module GE
IS200ISBDG1A Processor/Controller Mark VI System
IS420UCSCH2A Processor/Controller Mark VI System
IS415UCVHH1A Gas turbine system Mark VI
IS2020JPDFG01 GE power control board
IS220PPRAS1A GE power control board
IS200EBPG1ACD Gas turbine system Mark VI
IS200SRTDH2ACB I/O excitation redundant module GE
IS200PSCDG1A Gas turbine system Mark VI
IS200EDEXG1A High performance processor module GE
IS420UCSBH4A Processor/Controller Mark VI System
IS220UCSAH1A I/O excitation redundant module GE
DS200QTBAG1ADC High performance processor module GE
IS420ESWBH1A Gas turbine system Mark VI
IS215VCMIH2C From General Electric in the United States
DS200TBQCG1ABB GE power control board
IS200PSCDG1ADB From General Electric in the United States
IS200SRLYH2A I/O excitation redundant module GE
IS420UCSCH1A Gas turbine system Mark VI
IS420UCSCH1A High performance processor module GE
IS220PHRAH1A High performance processor module GE
IS420UCSCH1A Processor/Controller Mark VI System
IS220UCSCH1A Gas turbine system Mark VI
IS420PPNGH1A Gas turbine system Mark VI
IS200SRTDH2A I/O excitation redundant module GE
IS220PTURH1A From General Electric in the United States
IS420PUAAH1A From General Electric in the United States
DS200SLCCG3A From General Electric in the United States
IS220PDIAH1A High performance processor module GE
IS200WETAH1AEC From General Electric in the United States
DS200NATOG2A Gas turbine system Mark VI
IS200STTCH2A High performance processor module GE
IS215PMVDH1A From General Electric in the United States
IS220PPDAH1A From General Electric in the United States
IS410TRLYS1F GE power control board
IS2020ISUCG GE power control board
IS215UCVEH2AE Gas turbine system Mark VI
DS200CTBAG1ACC I/O excitation redundant module GE
IS200TBCIH2CAA I/O excitation redundant module GE
IS2020LNPSG3A GE power control board
IS420ESWAH2A Processor/Controller Mark VI System
DS200TCEBG1ACD From General Electric in the United States
IS210AEACH1A Gas turbine system Mark VI
DS200DMCBG1AKG Processor/Controller Mark VI System
IS215UCVFH2BB From General Electric in the United States
IS420ESWBH2A Gas turbine system Mark VI
IS220PTURH1A Gas turbine system Mark VI
DS200TCPDG2B High performance processor module GE
IS400WROFH1A GE power control board
DS200DSPCH1ADA High performance processor module GE
DS3800HMPJ1B1D From General Electric in the United States
IS200TVBAH2ACC From General Electric in the United States
IS420YUAAS1A Gas turbine system Mark VI
IS215PMVPH1A GE power control board
IS200DSVOH2B High performance processor module GE
IS200RCSAG1 Gas turbine system Mark VI
IS200HFPAG1ADC GE power control board
IS200WROBH1A GE power control board
IS200VATFG1A From General Electric in the United States
DS200TCTGG1AFF I/O excitation redundant module GE
IS230SRTDH2A Processor/Controller Mark VI System
IS210AEBIH3BEC From General Electric in the United States
IS210SAMBH2AA GE power control board
IS210AEBIH3BEC Gas turbine system Mark VI
DS200EXPSG1ACB I/O excitation redundant module GE
DS200GLAAG1ACC From General Electric in the United States
DS215KLDBG1AZZ03A From General Electric in the United States
IS220PDIAH1BE GE power control board
IS200TPROH1C I/O excitation redundant module GE
IS220PTURH1B I/O excitation redundant module GE
DS215SDCCG1AZZ01A Processor/Controller Mark VI System
IS200IVFBG1AAA High performance processor module GE
IS200EROCH1A I/O excitation redundant module GE
DS200TCDAG1BDB From General Electric in the United States
IS215VPROH1A I/O excitation redundant module GE
IS200ICBDH1ACB From General Electric in the United States
IS200BPIBG1A Gas turbine system Mark VI
IS215UCVFH2AB From General Electric in the United States
DS200FCSAG1A I/O excitation redundant module GE
IS200DAMEG1ABA From General Electric in the United States
IS200VSVOH1BDC GE power control board
IS200TVBAH2A I/O excitation redundant module GE
DS200SHCBG1A High performance processor module GE
IS420ESWAH3 GE power control board
IS215WEPAH2BB GE power control board
IS200DSPXH1DBD GE power control board
IS215UCVEM09B From General Electric in the United States
DS200TCTGG1AFF Processor/Controller Mark VI System