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.
HIEE320639R1 Analog output board ABB
HIEE320639R0001 Analog output board ABB
LT8978bV1 Analog output board ABB
LT8978bV1 HIEE320639R1 ABB
LT8978bV1 HIEE320639R0001 ABB
LT8978bV1 HIEE320639R0001 HIEE320639R1
LDSYN-101 3BHE005555R0101 ABB
3BHE005555R0101 Analog output board
LDSYN-101 Analog output board ABB
3BSE013177R1 Analog output board ABB
LDGRB-01 Analog output board ABB
LDGRB-01 3BSE013177R1 ABB
LD800HSE 3BDH000320R02 ABB
3BDH000320R02 Analog output board ABB
LD800HSE Analog output board ABB
HIEE320606R1 Analog output board ABB
KX8974cV24 Analog output board ABB
KX8974cV24 HIEE320606R1 ABB
HESG216678/B Analog output board ABB
IW93-2 HESG440356R1Analog output board
IW93-2 HESG440356R1 HESG216678/B
IT94-3 HESG440310R2 HESG112699/B ABB
HESG112699/B Redundant module ABB
IT94-3 HESG440310R2 Redundant module
IOR810 Redundant module ABB
INSEM01 Redundant module ABB
INNPM12 Redundant module ABB
INNIS01 Redundant module ABB
INIT03 Redundant module ABB
INIIT13 Redundant module ABB
INIIT03 Redundant module ABB
IMSET01 Redundant module ABB
IMMPI01 Redundant module ABB
IMMFP12 Redundant module ABB
IMDSI14 Redundant module ABB
IMDSM04 Redundant module ABB
IMDS014 Redundant module ABB
IMDS003 Redundant module ABB
IMBLK01 Redundant module ABB
IMASI23 Redundant module ABB
IEPAS02 Redundant module ABB
IEPAS01 Redundant module ABB
IEMMU21 Redundant module ABB
IDPG 940128102 Redundant module ABB
ICSI16E1 Redundant module ABB
ICSE08B5 FPR3346501R1012 ABB
FPR3346501R1012 Redundant module ABB
ICSE08B5 Redundant module ABB
Reviews
There are no reviews yet.