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.
BDD110-HNLP205879R1 Analog input channel ABB
BCU-02Package INU, XT ABB
BC810K01 ABB Bus interconnect unit suite
ABB BC810 NMD90 Zinc connector
B161S-E176 driver SECO
ABB B5EEd-HENF105082R4 Control card module
ABB B5EC-HENF105077R1 Electric power automation
B3EA-HENF315147R1 Terminating unit ABB
AZ05-0-0-1 AMK driver
ASSY-11994R13 Circuit board module
AS-P892-000 Schneider Single cable RIO interface
AS-B875-002 800 series I/O module Schneider
APBU-44C ABB Branching unit kit APBU
AO2040 Central unit ABB
AO845A Analog output S/R HART 8 channel ABB
AO820 Separate electrical isolation channel ABB
AO810V2-3BSE038415R1 analog output 8 channels ABB
AO810V2 Analog output 8 channels ABB Terminal unit
AO810-3BSE008522R1 Analog output 1×8 channel ABB
AO801 ABB Analog output 8 channels
AO610 ABB Analog output 16Ch
AO202SI Analog output module
ANR5131 Micro laser sensor
AMM42 Control unit YOKOGAWA
AL8XGTE-3 PCI bracket on the circuit board
AIP830-101 Operating keyboard
AIP571-BUS1 YOKOGAWA Automation controller
AIP171 Optical fiber communication system
AIP121-S00 YOKOGAWA output modules
AI830A The input module has 8 channels
AI820 ABB Analog input module
AI810 Analog input 8 channels ABB
AI625 ABB Analog input 16 channels
AGPS-21C ABB POWER SUPPLY
AEM402 Incremental encoder
ACN-CS High performance and multi-function
ACC-5595-208-350-805595-208N Reflective memory hub
5SHY35L45039 Asymmetric Thyristor IGCT ABB
ABB 5SHY35L4503 Asymmetric Thyristor IGCT
AAP3798102-00037 Operation panel
A413654 METSO Control valve
A413240 Controller Quartz Series METSO
A77146-220-51 Control Board
A6824R-9199-00098-13 Vibration sensor EPRO
A6824 Vibration velocity sensor EPRO
A4722-9215KM Sensors and actuators
A5E36717788 ABB Controls and drives IGBT modules
A4H254-8F8T Network module Enterasys
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