Description
hardware flow control. It is an ideal choice in the field of industrial automation.
According to reports, ABB”s technical expertise and experience in many industries will be combined with Microsoft”s Azure intelligent cloud system and B2B
engineering capabilities to create greater value for customers. Combined with ABB”s more than 70 million connected devices installed globally and more than
70,000 running control systems, ABB and Microsoft will join forces to create one of the world”s largest IIoT industrial cloud platforms.
It is worth noting that IoT expert Guido Jouret (formerly general manager of Cisco’s IoT department) became the group’s chief digital officer on October 1, 2016.
This marks that ABB is accelerating digital transformation and comprehensively building a new “Internet of Things+” ecosystem. ABB also hopes to obtain higher
profits from this, and has proposed a financial target for 2015-2020 of pre-tax profit growth of 11%-16%.
FANUC
FANUC recently established the IoT platform Fanuc Intelligent Edge Link and Drive (FIELD), which uses NVIDIA artificial intelligence system. FIELD can realize the
connection of machine tools, robots, peripheral equipment and sensors in the automation system and provide advanced data analysis to improve the production quality,
efficiency, flexibility and equipment reliability in the production process – thereby improving the overall efficiency of the equipment ( OEE) and promote the improvement of production profits.
The system can also improve robot productivity through artificial intelligence and bring autonomous learning capabilities to automated factory robots around the
world. FANUC will use a series of GPUs and deep learning software designed and produced by NVIDIA to enable AI artificial intelligence to be used in clouds, data centers
and embedded devices.
When talking about the cooperation with FANUC, NVIDIA co-founder and CEO Jensen Huang said that the era of AI artificial intelligence has officially arrived.
Through the deep learning function of GPU, it will stimulate a
new wave of software learning and machine inference calculations. The most exciting of these is the ability of robots to understand their surroundings and
interact with humans. NVIDIA is very happy to work with FANUC, the global leader in automated factories and robots, to build intelligent machines to benefit the future of mankind.
It is reported that FIELD continues the success of the existing Fanuc ZDT (zero downtime function), which effectively combines Cisco cloud technology,
IoT data collection software and point-to-point security. After connecting the robot through the use of an industrial Ethernet switch, it is then connected to Cisco”s UCS server – the system runs
based on FANUC and Cisco”s ZDT data collection software. Automotive industry users can immediately realize reductions in downtime and cost savings after using the system.
FIELD provides users and application developers with advanced machine learning and artificial intelligence capabilities and brings manufacturing to
new heights of productivity and efficiency. Currently, FANUC has applied these new technologies to robotic bulk picking, production anomaly detection and fault
prediction. Because FIELD combines artificial intelligence and cutting-edge computer technology, distributed learning is possible. The operating data of robots and
equipment are processed in real time on the network,
which also enables more intelligent coordination of production between various equipment, making complex production coordination that was previously difficult to
achieve easily completed.
In fact, many years ago, FANUC began to cooperate with Cisco to carry out the “non-stop” zero downTIme plan. In the plan, FANUC and Cisco will join forces to
build an Internet of Things system that will allow FANUC to supervise
every robot in the factory, predict abnormal conditions of the robots, and send more technicians to repair the robots before problems occur. So far, the program has
tested 2,500 robots, including FANUC”s major customer GM General Motors. According to FANUC, the test program saved customers $38 million.
YASKAWA
After talking so much about the Internet of Things strategy of the industrial robot giant, let’s take a break here at Yaskawa and talk about the past.
Midea and KUKA have officially received their marriage certificates, but you must know that as early as August 2015, Midea announced its
robot strategy and established two joint venture subsidiaries with Japan”s Yaskawa Electric.
The two subsidiaries are respectively for industrial robots and service robots, including Guangdong Yaskawa Midea Industrial Robot Co.
, Ltd. (Midea”s equity accounted for 49%) and Guangdong Midea Yaskawa Service Robot Co., Ltd. (Midea”s equity accounted for 60%).
This shows that as early as 2015, Midea was actually “in love” with Yaskawa, but by 2016, she married Kuka.
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ABB CP660 HMI
ABB CP450T 1SBP260188R1001 Touch screen 64K Colors
ABB CP650 Control panels
ABB CP635 1SAP535100R0001 touch screen
CM10/200S0E0/STD ABB CM10 universal process controller
ABB CP620 1SAP520100R0001 TFT touch scree
ABB AINT-02C Inverter main circuit interface board
05704-A-0145 honeywell Four channel control card
05704-A-0144 honeywell 4 Channel Control Card
05701-A-0502 honeywell Rack assembly 8 way
05701-A-0361Engineering Card honeywell
810-225420-002 LAM Semiconductor circuit board
88UB01A GJR2322600R0100 ABB Security Key Board
70BK03B-ES HESG447271R2 Interface Module ABB
70BA01C-S HESG447260R2 ABB Bus End Module
70AA02B-E HESG447388R1 ABB PCB Circuit Board
8LSA35.E2060D000-0 B&R servo motor
07KT98 H4 GJR5253100R3262 Basic Module
3IF661.9 B&R Interface module
CI930F Communication Interface ABB
DS200TCRAG1ACC Relay output board
DS200TCPDG1BEC distribution board GE
IC695ETM001-EK Ethernet interface module
VMIVME-2532A High Voltage Digital Input and Output Modules
CC-TDIL61 digital input module honeywell
IC754VGF12CTD display panel computer
IC695CPE330-AAAA Industrial CPU
MPS022 13100203 SCHROFF AC power module
2500-RBC 901E-2500-RBC remote base controller
X-FAN1003 993201013 system fan
X-DI1601 985210222 system module
COM0011 2RAA005844A0007J Ethernet board
X-BLK01 632590802 system module
X-SB01 985210207 system module
X-DO1201 985210204 system module HIMA
FBM201 Analog Input Interface Module foxboro
MKD090B-047-KP1-KN MKD series synchronous motor
DCP2-2420 switching power supply
RET615 Transformer protection measurement and control device
PR6426/010-100+CON021/916-160 sensor
5SHY3545L0014 3BHE023784R0001 SCR control unit
R900704216 Industrial hydraulic valve
1326AB-B720F-M2L AC servo motor Allen-Bradley
51304337-150/MC-TAIH12 Analog input/STI
R900972650 Reversing valve
PR6423/003-131+CON041 Eddy current sensor
1756-OF8HK HART analog output module
PR6423/00R-11+CON041 Eddy current sensor
1791DS-1B8XOB8 I/O module A-B
PPU/2/GS Turn the operating handle
BSH0702P31A2A servo motor
51403422-150 HPM communication/controller HONEYWELL
51403519-160 TDC3000 memory processor
873EC-JIPFGZ-5 Electrodeless conductivity analyzer
8440-1934 Motor Unit Controller WOODWARD
SCYC55830 58063282A trigger pulse board
330103-00-05-05-02-00 3300 XL 8mm Proximity Probe
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330103-00-04-10-01-00 3300 XL 8mm Proximity Probe
330103-00-04-10-01-00 3300 XL 8mm Proximity Probe
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