Description
hardware flow control. It is an ideal choice in the field of industrial automation.
Shandong”s policies are more specific. In addition to financial incentives, land supply, tax incentives,
etc., it also mentions improving the first (set) of major technical equipment research and development
and market promotion support policies, and accelerating independent innovation and industrialization of
high-end products. Encourage provincial equity investment guidance
funds to tilt towards the high-end equipment field, give full play to the leverage and amplification effect
of fiscal funds, and attract
and leverage social capital to increase investment.
How can local governments effectively support high-end manufacturing?
Analysts believe that when formulating development plans for high-end manufacturing, local governments
must first conduct thorough research and research on the industry,
find a development path that suits them, and formulate policies that suit the laws of industrial development
. For example, Chongqing has a developed automobile industry, Shanghai has a strong industrial foundation
in large aircraft, chips and robot manufacturing, and Shandong has a
certain technical foundation in marine engineering equipment and rail transit equipment. We should leverage
our strengths and avoid weaknesses and formulate policies based on local conditions.
Second, local policies should not pursue automation and intelligence one-sidedly and support a number
of face-saving projects that are blooming everywhere. For example, in the past two years, my country”s robot industrial
parks have blossomed all over the country, and local governments have used subsidies and tax incentives to
support a number of low-end, small and weak “intelligent manufacturing” robot industries.
Third, local governments’ understanding of high-end manufacturing needs to be further deepened, and
automation cannot simply be equated with high-end manufacturing. Local governments use subsidies to
guide companies to purchase high-end automation equipment, but companies must also use good technology instead of expensive technology
based on actual conditions. The case of Tesla’s over-reliance on automation causing a production capacity
crisis should be taken seriously.
Fourth, neither local governments nor enterprises can rely solely on buying and selling to promote high-end
manufacturing. The government should guide and encourage technological innovation and seek long-term development.
Generally speaking, enterprises should be closer to the market in terms of their own development and industry
needs, and the government should create a policy environment more conducive to enterprise innovation, such
as tax cuts, streamlining administration and delegating powers, etc., to help enterprises reduce costs as much
as possible and give them the greatest benefits.
Expansion capacity.
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IC695ETM001 GE Single slot module
IC695EDS001 GE External station module
IC695CRU320 GE Redundant processor
IC695CPU320 GE The central processing unit
IC695CPU315 GE Central processing unit
IC695CPU310 GE Programmable automation controller
IC695CPK400 GE Programmable automation controller
IC695CPE400 GE Central processing unit (CPU) module
IC695CPE330 GE Automation controller
IC695CPE310 GE Central processor module
IC695CPE305 GE Central processing unit
IC695CPE302 GE controller
IC693DSM302 GE Motion controller
IC693DNS201 GE Communication module
IC693DNM200 GE Main control module
IC693CPU374 GE Programmable Logic Controller (PLC) module
IC693CPU372 GE Ethernet communication module
IC693CPU370 GE Programmable logic controller
IC693CPU367 GE Central processing unit
IC693CPU366 GE Network CPU main module
IC693CPU364 GE Single slot central processing unit
IC693CPU363 GE Programmable logic controller
IC693CPU360 GE The CPU module is embedded in the backplane
IC693CPU352 GE Single slot CPU module manufactured by PLC system
IC693CPU351 GE CPU module
IC693CPU350 GE controller
IC693CPU341 GE Single-slot CPU
IC693CPU340 GE Expansion base plate
IC693CPU331 GE The CPU module is embedded in the backplane
IC693CPU323 GE Base Turbo CPU in slot 10
IC693CPU321 GE 10-slot I/O backboard with embedded CPU
IC693CPU313 GE Embedded CPU
IC693CPU311 GE 5 Slot Embedded CPU base rack
DSSR-122 ABB Power supply unit
DSQC664 ABB Ac servo driver
DSQC661 ABB controller
DSQC604 ABB Digital I/O board
DSQC545 ABB Optical fiber point sensor
DSQC539 ABB DCS control system
DSMB-01C ABB Power strip
DSDX452 Remote input ABB
DSDI-110AV1-3BSE018295R1 ABB Digital input pad
DSDI110A-57160001-AAA ABB Digital input sets up the robot
DSCS140-57520001-EV ABB Processor
DSCL110A-57310001-KY module
DS3820PSCB GE Turbine control module
DS3820A Gas turbine clamp
DS3810MM GE Gas turbine clamp
DPW03 ABB Power Supply Module
DDC779BE02 ABB Main board module
DAI04 ABB Independent channel isolation
CP650 ABB Control Panel 10.4 “TFT touch screen
CP450 ABB Touch screen
CI930F ABB Communication interface
CI858k01 ABB Communication interface module
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