Description
369-HI-R-0-0-E-H-E Motor protection system
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.
In the Internet of Things era, look at the IOT strategic deployment of the “four major families” of industrial robots
When we talk about Industry 4.0 or smart manufacturing, we cannot help but mention the “four major families” of robots – KUKA, ABB, FANUC, and Yaskawa,
because as the industrial robot companies with the highest level of intelligence at present, they are in the industry They have important influence. In the era of the
Internet of Things, what are these four major families doing?
As a relatively mature product, industrial robots are difficult to judge from the perspective of ordinary users. Especially in today”s era, it is impossible to create a
generational gap through technology.
Just like when someone asks about the advantages and disadvantages of the car-making technologies of Mercedes-Benz and BMW, all I can say is, “It doesn”t matter
if you ride in a Mercedes-Benz or drive a BMW.” Comparing industrial robots to car-making, most of the key technologies used in car-making must be shared by Mercedes-Benz
and BMW. The differences in other “marketing technologies” will not affect the technological competition pattern.
So what will industrial robot manufacturers mainly rely on to widen the gap in the future? There is only one answer, the Internet of Things strategy. Without realizing it,
KUKA, ABB, FANUC, and Yaskawa, the four major industrial robot giants, have already been stationed in the field of Internet of Things and are ready to go.
KUKA(Midea)
On December 30, 2016, Midea Group’s tender offer for the shares of Germany’s KUKA Group (KUKA), the world’s leading provider of intelligent automation solutions,
through MECCA InternaTIonal (BVI) Limited, has received approval from all relevant regulatory authorities.
At the annual meeting of Midea Group on January 12, 2017, Fang Hongbo, Chairman of Midea Group, emphasized the industrial significance of Midea’s acquisition
of KUKA: In the future, Midea will build a second industrial segment besides the home appliance industry, namely the robotics and industrial automation industry segment. This is The new growth point of beauty.
The annual meeting invited KUKA CEO TIll Reuter, who has just entered the Midea system, to give a speech. When explaining the core strategic goals for the future,
Reuter mentioned the two concepts of “intelligent machines” and “digital areas”, which are the two concepts that run through the Internet of Things technology in the company”s business:
Intelligent machines: Among the industrial robots manufactured by KUKA, they are equivalent to advanced robots with both autonomy and mobility. Soon a large number
of industrial robots will “step out of the work cage that is isolated from humans” and begin to work closely with humans, further improving their flexibility. Reuter said that as
industrial robots continue to develop, smart machines with better autonomy and mobility will emerge.
Digital area: It is a solution that combines the knowledge related to production processes of various industries that KUKA has cultivated in the past with the
most cutting-edge IT. Reuter said: “We are familiar with the production processes of products such as cars and aircraft. We want to connect our technical experience with IT to provide
customers with intelligent systems.” Reuter said that by optimizing intelligent systems, that is, complex systems based on big data analysis, reducing downtime
and predictive maintenance of various production systems, new business models can be created and a highly integrated value chain can be built.
According to IFR data, in the field of automobile manufacturing, KUKA robots have the largest market share in the world. We might as well start with the automotive industry
and show you how KUKA uses the “Internet of Things box” to construct the Jeep Wrangler”s body-in-white workshop into an IIoT (Industrial Internet of Things) factory.
KOLLMORGEN AKM41E-BKC2C-00
KOLLMORGEN AKM41E-ACGNC-01
KOLLMORGEN AKM42GCNNA-50T-108-AR-BSE-C0
KOLLMORGEN AKM44E-EKCNR-01
KOLLMORGEN AKM44E-BKCNR-01
KOLLMORGEN AKM44E-BK9NCA01
KOLLMORGEN AKM44E-ANGN1-00
KOLLMORGEN AKM43H-ACC2C-00
KOLLMORGEN AKM42G-ACCNC-00
KOLLMORGEN AKM42E-EKCNR-00
KOLLMORGEN AKM42E-ACCNC-00
KOLLMORGEN AKM41E-ACCNC-00
KOLLMORGEN AKM44E-BKCNC-01
KOLLMORGEN AKM43K-BKCNR-00
KOLLMORGEN AKM44G-ANCNR-00
KOLLMORGEN AKM24D-ANCNDB-00
KOLLMORGEN AKM21C-ANBN2-00
BENTLY 3500/40M
KOLLMORGEN AKM21C-ANBN2-00
“ABB 5SGX1060H0003 IGCT module”
“ABB 5SGX10H6004 IGCT module”
“ABB 5SGY3545L0003 IGCT module”
“ABB 5SGY3545L0017 IGCT module”
“ABB 5SGY3545L0020 IGCT module”
“ABB 5SGY35L4510 IGCT module”
“ABB 3BHL000986P3004 IGCT module”
“ABB 5SGY3545L0009 IGCT module”
“ABB 5SGY3545L0009 3BHL000986P3004”
KOLLMORGEN AKM44G-ANCNR-00
KOLLMORGEN AKM24D-ANCNDB-00
KOLLMORGEN AKM21C-ANBN2-00
KOLLMORGEN AKM21C-ANBN2-00
KOLLMORGEN AKM21C-ANSNAB-02
KOLLMORGEN AKM42J-EKC22-00
KOLLMORGEN AKM32D-ACCN2-01
KOLLMORGEN AKM24D-BNCNC-01
KOLLMORGEN AKM43G-ACCNR-00
KOLLMORGEN AKM64P-ANC2AB-01
KOLLMORGEN AKM22E-EFCNR-00
KOLLMORGEN AKM22E-ENBNR-01
KOLLMORGEN AKM54N-ACCNAB-00
KOLLMORGEN AKM24C-ACB2DB-00
KOLLMORGEN AKM22C-ACFNR-00
KOLLMORGEN AKM24C-ACF2R-00
KOLLMORGEN AKM32D-GCCMOB-00
KOLLMORGEN AKM41H-ACCNR-00
KOLLMORGEN AKM22E-ACBNR-01
KOLLMORGEN AKM44G-ANCNDB-01
KOLLMORGEN AKM33H-ANCN1-00
KOLLMORGEN AKM24C-EFBNR-01
KOLLMORGEN AKM42G-BKCN2-01
KOLLMORGEN AKM22G-ACBNEF-00
KOLLMORGEN AKM21E-ANMN2-00
KOLLMORGEN AKM23C-BNGNAA-HG
KOLLMORGEN AKM24D-ACBNR-00
KOLLMORGEN AKM22E-ANBNR-00
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