Description
hardware flow control. It is an ideal choice in the field of industrial automation.
In terms of high-end vocational education to train operators and other
professional and technical talents, our country is very inadequate, and this is
also the biggest shortcoming.
On the one hand, the cultivation of such high-end technical talents requires high-level hardware
and software facilities . Currently, only a few 985 universities and some
corresponding top departments of 211 universities can provide such facilities. Other schools
simply do not have the ability. Naturally, we cannot provide enough talents.
On the other hand, our country has not yet established a complete vocational education system
and cannot train enough skilled workers to operate automated equipment such as robots. As for the
so-called vocational high schools and technical schools, it goes without saying what they are like
, and you cannot count on them at all.
The reason why such a vocational education system has not been established is mainly because
there was not enough money before. Take the well-done German vocational education system as an
example. It allows students to directly learn to use the most cutting-edge production technology and e
quipment. Things are piled up with real money, and they need to be updated frequently, which costs
more. At present, some domestic dual-book stores probably have these facilities, but it is a drop in the bucket.
Taken together, my country”s talent shortage in smart manufacturing, including the robotics industry, is
difficult to alleviate in a short period of time. Enterprises need talents. In addition to poaching talents with
high salaries, they can only train them themselves. However, this not only increases costs, but also risks
personnel turnover. , the talents you have worked so hard to cultivate may be immediately poached by other
companies, and it is really too late to cry. This is also the main reason why companies are unwilling to train talents.
Probably only state-owned enterprises that do not settle accounts will train some technical talents. , but that’s all.
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810-046015-010 Foxboro VPN device
810-017034-005 Power strip
810-001489-016 Semiconductor PCB
567LH-DP24 Digital driver module
531X102CCHAFM2 Auxiliary plate
531X102CCHAEM1 Auxiliary plate
531X100CCHBCG1 Control panel
531X100CCHARM1 Control panel
531X100CCHAPM1 Control panel
531X305NTBAPG1 End plate
531X304IBDARG1 Base driver card
531X303MCPBBG1 Power circuit board
531X303MCPARG1 Ac power supply board
503-26606-21 Motion controller
490NRP95400 Fiber optic repeater
469-P1-HI-A20-E Analog output
440R-W23222 Safety relay switch
416NHM30030A High performance processor
269PLUS-DO-315-100P-HI
269PLUS-DO-311-100P-HI GE Multilin
269PLUS-DO-271-100P-120 Relay system
269PLUS-DO-225-100P-HI-125VDC Relay system
269PLUS-DO-212-10C-120 GE Multilin
269PLUS-DO-211-120N-120VAC Relay
269PLUS-DO-211-100P-120VAC Motor relay system
269PLUS-DO-211-100N-120VAC Motor protection system
269PLUS-DO-120N-125VDC Relay
269PLUS-DO-120N-120 relay
269PLUS-DO-100P-120 relays
269PLUS-DO-100N-120 GE Multilin relay model
269PLUS-120N-HI GE Multilin relay
269PLUS-120N-125VDC Relay model
269PLUS-120N-120 Relay
269PLUS-10C-HI High voltage relay
269PLUS-10C-48VDC relay
269PLUS-10C-120VAC relay
269PLUS-10C-120 relay
269PLUS-100P-120VAC relay
269PLUS-100P-120AC relay
269PLUS-100P-120 GE motor management relay
269-PLUS-DO-100P-125V GE Multilin
269PLUS-100P-HI GE Multilin
269 PLUS-DO-100P-125V relay
216NG62A Frequency changer
216DB61-HESG324063R100J Ethernet connected controller
193-ESM-IG-60A-E3T relay
193-ECM-DNT relay
0190-24007 Semiconductor test board
0190-09379 Driving module
150-C85NBD Motor controller
140XCP51000 Discrete I/O module
140XBP01600 Frame bottom plate
140XBP01000 Frame bottom plate
140NRP95400 Fiber repeater
140NRP31200C Ethernet fiber converter
85UVF1-1QD burner
81EU01E-E Protocol communication
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