Description
VMIVME-7455 VMEbus Analog Input/Output Product Series
высотой 3U, расположенный в раме управления под DSPX.
волоконно – оптический разъем на передней панели и передаются в модуль обнаружения заземления.
ABB: Запасные части для промышленных роботов серии DSQC, Bailey INFI 90, IGCT, например: 5SHY6545L0001 AC1027001R0101 5SXE10 – 0181, 5SHY3545 L0009, 5SHI3545L0010 3BHB013088 R0001 3BHE009681R0101 GVC750BE101, PM866, PM861K01, PM864, PM510V16, PPD512, PPPD113, PP836A, P865A, 877, PPP881, PPPP885, PPSL500000 4 3BHL00390P0104 5SGY35L4510 и т.д.
General Electric: запасные части, такие как модули, карты и приводы. Например: VMVME – 7807, VMVME – 7750, WES532 – 111, UR6UH, SR469 – P5 – HI – A20, IS230SRTDH2A, IS220PPDAH1B, IS215UCVEH2A, IC698CPE010, IS200SRTDH2ACB и т.д.
Система Bently Nevada: 350 / 3300 / 1900, предохранительные зонды и т.д., например: 3500 / 22M, 3500 / 32, 3500 / 15, 3500 / 23500 / 42M, 1900 / 27 и т.д.
Системы Invis Foxboro: Серия I / A, управление последовательностью FBM, трапециевидное логическое управление, обработка отзыва событий, DAC,
обработка входных / выходных сигналов, передача и обработка данных, такие как FCP270 и FCP280, P0904HA, E69F – TI2 – S, FBM230 / P0926GU, FEM100 / P0973CA и т.д.
Invis Triconex: Модуль питания, модуль CPU, модуль связи, модуль ввода – вывода, например 300830937214351B, 3805E, 831235114355X и т.д.
Вудворд: контроллер местоположения SPC, цифровой контроллер PEAK150, например 8521 – 0312 UG – 10D, 9907 – 149, 9907 – 162, 9907 – 164, 9907 – 167, TG – 13 (8516 – 038), 8440 – 1713 / D, 9907 – 018 2301A, 5466 – 258, 8200 – 226 и т.д.
Hima: модули безопасности, такие как F8650E, F8652X, F8627X, F8678X, F3236, F6217, F6214, Z7138, F8651X, F8650X и т.д.
Honeywell: Все платы DCS, модули, процессоры, такие как: CC – MCAR01, CC – PAIH01, CC – PAIH02, CC – PAIH51, CC – PAIX02, CC – PAON01, CC – PCF901, TC – CR014, TC – PD011, CC – PCNT02 и т.д.
Motorola: серии MVME162, MVME167, MVME172, MVME177, такие как MVME5100, MVME5500 – 0163, VME172PA – 652SE, VME162PA – 344SE – 2G и другие.
Xycom: I / O, платы VME и процессоры, такие как XVME – 530, XVME – 674, XVME – 957, XVME – 976 и т.д.
Коул Морган: Сервоприводы и двигатели, такие как S72402 – NANA, S6201 – 550, S20330 – SRS, CB06551 / PRD – B040SSIB – 63 и т. Д.
Bosch / Luxer / Indramat: модуль ввода / вывода, контроллер PLC, приводной модуль, MSK060C – 0600 – NN – S1 – UP1 – NNN, VT2000 – 52 / R900033828, MHD041B – 144 – PG1 – UN и т.д.
Caijing: Can we say that ABB is part of Made in China 2025?
Spiesshofer: Of course, we are a very important part. We were involved in coming up with this idea and we will be deeply involved in making it happen. Now we have
about 18,000 employees in China, with many manufacturing plants and large R&D centers. We also have a software center in China to develop artificial intelligence technology
used on robots. At present, China not only has a market for ABB, but also has an excellent team that I am very proud of.
Caijing: The current problem is that Made in China 2025 has posed a challenge to Europe and the United States. They believe that they need to pay close attention to
it. The current trade policy of the United States is also very targeted at Made in China 2025. How do you view this criticism?
Spiesshofer: I don’t want to comment too much on policy. China”s competitiveness has grown significantly over the past few decades, but the rest of the world has
not stood still. Take Europe”s technological development, for example. Europe is playing a leading role in the fourth industrial revolution.
I want to have a level playing field and give everyone a chance. It is true that China is an economic power, and there are other economic powers in the world.
The world is big enough to accommodate the friendly coexistence of all these forces.
The Industrial Internet is inseparable from industrial control
Caijing: Regarding digitization, there are two questions. Why digitization? How to digitize?
Spiesshofer: People have been benefiting from technologies that improve productivity. Through digitalization, we can improve productivity very well. We introduce a closed
loop of “perception, analysis, and action” to sense through digital technologies such as sensors , communication devices, and connected devices. We learn the operation status
of assets through sensor technology, upload it to the cloud, and summarize the information. After we have the information, we need to analyze the information. AI technology plays
an important role in this process, that is, intelligent algorithms for analyzing data. Then comes the action part, where you need to get into the control loop of an
industrial process or maintenance plan to make it work. Like AI, we should not be afraid of digitalization, but rather see it as an opportunity to create prosperity and wealth.
Caijing: Regarding the Industrial Internet, GE, which proposed this concept, has changed its CEO and its performance is poor. Does this mean that its development is
not going smoothly? How do you see the future of the Industrial Internet?
Spiesshofer: If used well, the industrial Internet can be very effective. To review what I said: perception, analysis and action are required. Our strategy is different from
GE”s strategy. They stop after sensing and analyzing, while we still have an action phase. Through our control system, the Industrial Internet is connected to the control loop
through intelligent algorithms, which can create a lot of value for customers.
ABB is one of the two major industrial control technology companies in the world. Siemens is the leader in the discrete industry. We are second only to Siemens.
In the process industry, ABB ranks first and Siemens second. This is the biggest difference between ABB and GE: GE does not control the circulation or has no control
ability. It is like you are a doctor. You only diagnose high fever and give the patient your suggestions, but ABB not only gives suggestions, but also helps patients implement the suggestions. .
Caijing: You also mentioned the concept of global energy internet. Is this a future concept or something that is already happening? What is its value?
Spiesshofer: The energy challenge facing people today is how to provide predictable, high-quality, low-carbon baseload energy.
There are different ways to achieve this, bringing together different renewable and conventional energy sources, plus nuclear power. All of the previously
mentioned energy sources can also be connected together through a globally interconnected power grid. We must also incorporate active demand-side
management and intelligent demand-side optimization to achieve peak-cutting effects through demand-side model optimization.
Overall, there will be a globally interconnected power system in the future that will operate completely differently with demand-side
dynamics ranging from long distances all the way to local. The roof of your house is equipped with solar energy. It may be a power station in the
morning, a power user in the afternoon, and it may be an energy storage power station in the evening because you are charging your electric car. Optimizing
all of this is what I call the Internet of Power, and that”s what we”re working on.
3511 Pulse Input Module| Triconex | 3515
3504E Digital input module | Triconex | 3503E
3009 Main processor | Triconex | 3009
3008 Main Processor | Triconex | 3008
VE4001S5T2B4 16 Channels Input Card | DeltaV
VE4001S3T2B2 8 Channels Input Card | DeltaV
VE4001S3T2B1 8 Channels Input Card | DeltaV
VE4001S3T1B2 8 Channels Input Card | DeltaV
VE4001S3T1B1 8 Channels Input Card | DeltaV
VE4001S2T2B5 32 Channels Input Card | DeltaV
VE4001S2T2B4 Discrete Input Card | DeltaV
VE4001S2T2B3 Discrete Input Card | DeltaV
VE4001S2T2B2 Fused I/O Termination Block | DeltaV
VE4001S2T2B1 Standard I/O Termination Block | DeltaV
VE4001S2T2 Discrete Input Card | DeltaV
VE4001S2T1B3 Discrete Input Card | DeltaV
VE4001S2T1B2 Discrete Input Card | DeltaV
VE4001S2T1B1 Discrete Input module | DeltaV
VE3051C0 Power controller carrier | DeltaV
VE3008 MQ Controller | DeltaV
VE3006 MD-PLUS controller | DeltaV
VE3007 MX Controller | DeltaV
VE3005 Controller MD | DeltaV
VE3004 MD Controller | DeltaV
VE3002 Controller Module | DeltaV
SE4005S2B2 8 channels AO Card | DeltaV
SE4005S2B1 8 channels AO Card | DeltaV
SE4003S2B1 8 channels AI Card | DeltaV
SE4002S1T2B1 8 channels DO Card | DeltaV
SE4002S1T1B2 8 channels Discrete Output Card | DeltaV
SE4002S1T1B1 8 channels DO Card | DeltaV
SE4001S2T2B1 Traditional I/O | DeltaV
SE3008 SQ controller | DeltaV
SE3007 SX controller || DeltaV
SE3006 controller | DeltaV
KJ3002X1-BB1 AO, 8-Channel, 4-20 mA Card | DeltaV
KJ3002X1-BA1 8-Channel HART Card || DeltaV
KJ3001X1-BK1 Input module | DeltaV
KJ3001X1-BH1 8 channel output module || DeltaV
KJ3001X1-BG1 DO, 8-Channel, 24 VDC, Isolated Card | DeltaV
KJ3001X1-BD1 Dry contact module || DeltaV
KJ3001X1-BB1 Input module | DeltaV
KJ3001X1-BA1 DI, 8-Channel, 24 VDC, Isolated Card | DeltaV
KJ2201X1-BA1 Logic Solver – SLS 1508 || DeltaV
KJ2101X1-BA1 I/O interface card | DeltaV
KJ2004X1-BA1 Remote interface unit || DeltaV
KJ2002X1-BA1 Controller M3 module | DeltaV
KJ2001X1-BA1 controller | DeltaV
KJ1501X1-BC1 SYSTEM POWER SUPPLY | DeltaV
KJ1502X1-BB2 System power supply || DeltaV
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