Description
DS200TCCBG3BDC Reliable Turbine Control Solutions
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.
[Introduction] China”s industrial robots started in the early 1970s. After more than 20 years of
development, they have roughly gone through three stages: the embryonic period in the 1970s
, the development period in the 1980s, and the applicability period in the 1990s.
In recent years, the global robot industry has entered a stage of rapid development. In fields such as
catering, public services, logistics and transportation, more and more robots are involved. At the same
time, the research and development process of commercial robots is also accelerating. In particular, the
outbreak of the COVID-19 epidemic has promoted the rapid development of robot applications.
China”s industrial robots started in the early 1970s. After more than 20 years of development, they have
roughly gone through three stages: the embryonic period in the 1970s, the development period in the
1980s, and the applicability period in the 1990s.
The 1970s was a milestone in the development of world science and technology: humans landed on the
moon and achieved soft landings on Venus and Mars. Our country has also launched artificial satellites.
The application of industrial robots has set off a climax in the world, especially in Japan, which is developing
more rapidly. It supplements the increasingly scarce labor force. Against this background, my country began to
develop its own industrial robots in 1972.
After entering the 1980s, under the impact of the high-tech wave and with the deepening of reform and opening up,
the development and research of robotics technology in our country received government attention and support. During
the “Seventh Five-Year Plan” period, the state invested funds to research industrial robots and their parts, completed the
development of
a complete set of teaching and reproducible industrial robot technologies, and developed spraying, spot welding, arc
welding and handling robots. In 1986, the National High-tech Research and Development Plan (863 Plan) was implemented.
The theme of intelligent robots followed the forefront
of world robotics technology. After several years of research, a large number of scientific research results were achieved and
a number of special robots were successfully developed.
YOKOGAWA AIP601
YOKOGAWA EP1A
YOKOGAWA VM2D
YOKOGAWA EX1A
YOKOGAWA ADV559-P00
ABB CPU 3BHE041343R0102
ABB CPU PCD530A102
ABB PCD530A102 3BHE041343R0102
YOKOGAWA AIP503
YOKOGAWA AIP121
YOKOGAWA ESCA
YOKOGAWA ADV159-P00
YOKOGAWA APM11
YOKOGAWA ADM52-2
YOKOGAWA ADM51
YOKOGAWA LCSC
YOKOGAWA AS-S949IBJ-0
YOKOGAWA AIP562 S1
YOKOGAWA AIP413
YOKOGAWA ET5B
YOKOGAWA NP54C
YOKOGAWA ADV561-P00 S2
YOKOGAWA ADV169-P00 S1
YOKOGAWA AAI141-H00
YOKOGAWA ADM52C
YOKOGAWA MX2D
YOKOGAWA ST3D
YOKOGAWA ST4D
YOKOGAWA ATD5A-00-S1
YOKOGAWA VC401-10
YOKOGAWA NC4B
YOKOGAWA EC0A
YOKOGAWA ADM52
YOKOGAWA SL1400 701240-R-J0-HE
YOKOGAWA RS2C
YOKOGAWA RS2C
YOKOGAWA AAI141-S00 S2
YOKOGAWA VM1B
YOKOGAWA CNB-22A
YOKOGAWA AAP149-S00 S1
YOKOGAWA NP2A
YOKOGAWA NP53C
YOKOGAWA EB402-10 S1
YOKOGAWA F3BU040N
YOKOGAWA CP345
YOKOGAWA EB501-10 S2
YOKOGAWA CP451-10 S2
YOKOGAWA EA2A
YOKOGAWA EN71A
YOKOGAWA AIP181
YOKOGAWA IP91A
YOKOGAWA PW482-10 S2
KEBA FB201
YOKOGAWA AAM50
YOKOGAWA CP21A
YOKOGAWA AIP502
YOKOGAWA PS62A
YOKOGAWA AAM11B
YOKOGAWA ANR11D-420S1
YOKOGAWA AAR181-S50S2
YOKOGAWA VF311
YOKOGAWA DX11A
YOKOGAWA ADM11C
YOKOGAWA EH1A
YOKOGAWA PW302S4
YOKOGAWA ADM11
YOKOGAWA AIP512
YOKOGAWA AIP532
YOKOGAWA AVR10D-Q22020-S2
YOKOGAWA FC82B
YOKOGAWA PW404
YOKOGAWA SI11B
YOKOGAWA SDBS-140A
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