Description
hardware flow control. It is an ideal choice in the field of industrial automation.[Introduction] China”s industrial robots started in the early 1970s. After more than 20 years of
development, they have roughly gone through three stages: the embryonic period in the 1970s
, the development period in the 1980s, and the applicability period in the 1990s.
In recent years, the global robot industry has entered a stage of rapid development. In fields such as
catering, public services, logistics and transportation, more and more robots are involved. At the same
time, the research and development process of commercial robots is also accelerating. In particular, the
outbreak of the COVID-19 epidemic has promoted the rapid development of robot applications.
China”s industrial robots started in the early 1970s. After more than 20 years of development, they have
roughly gone through three stages: the embryonic period in the 1970s, the development period in the
1980s, and the applicability period in the 1990s.
The 1970s was a milestone in the development of world science and technology: humans landed on the
moon and achieved soft landings on Venus and Mars. Our country has also launched artificial satellites.
The application of industrial robots has set off a climax in the world, especially in Japan, which is developing
more rapidly. It supplements the increasingly scarce labor force. Against this background, my country began to
develop its own industrial robots in 1972.
After entering the 1980s, under the impact of the high-tech wave and with the deepening of reform and opening up,
the development and research of robotics technology in our country received government attention and support. During
the “Seventh Five-Year Plan” period, the state invested funds to research industrial robots and their parts, completed the
development of
a complete set of teaching and reproducible industrial robot technologies, and developed spraying, spot welding, arc
welding and handling robots. In 1986, the National High-tech Research and Development Plan (863 Plan) was implemented.
The theme of intelligent robots followed the forefront
of world robotics technology. After several years of research, a large number of scientific research results were achieved and
a number of special robots were successfully developed.
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MMS6253/TS | EPRO | MMS 6253/TS DAPS mother board
MMS 6250/D | EPRO | MMS6250/D Displacement plate
MMS6250 | EPRO | MMS 6250 Displacement plate
MMS6220 | EPRO | MMS6220 eccentric monitoring plate
MMS 6210 | EPRO | MMS6210 displacement monitoring plate
MMS 6140 | EPRO | MMS6140 vibration monitoring board
MMS 6110 | EPRO | Axial vibration monitoring board MMS6110
MMS 6250 | EPRO | MMS6250 Shaft position monitor
MMS6310 | EPRO | MMS 6310 Dual channel key pulse monitor
MMS 6210 | EPRO | MMS6210 Vibration monitoring card
TVOC-2-240 1SFA664001R1001 | ABB | Arc light monitor
TAP-210DG/3 | DEIF | Transducers in watts
SNAP-IDC5D | OPTO 22 | Digital input module
SNAP-AITM-2 | OPTO 22 | Analog input module
DKL002 | SIGMATEK | CPU base
OS9-GNI-U24 | Alcatel-Lucent | SFP module
MRU2 | KONGSBERG | Rate gyroscope
LLS570-05 | LAETUS| Laser scanner
JGSM-06 | Yaskawa | Position controller
IOM2-20G | Alcatel-Lucent | 3HE00020AB IOM2-20G baseplate
E1460A | Agilent | 64 channel relay multiplexer
9907-028 | woodward | Standard non-voltage matching (EMC) components
2102-1201 | WAGO | Straight-through terminal
1X00797H01L | EMERSON | Power module
1X00416H01 | EMERSON | Power module
1X00024H01 | EMERSON | Two-channel power supply
PU514A | ABB | 3BSE032400R1 PU514A Real Time Accelerator DCN
SM812K01 | ABB | 3BSE072270R1 SM812K01 Secure CPU module
BC810K02 | ABB | 3BSE031155R1 BC810K02 CEX bus interconnection unit
BC810K01 | ABB | 3BSE031154R1 BC810K01 CEX bus interconnection unit
PM810V2 | ABB | 3BSE013220R1 PM810V2 S800 processor
PM150V08 | ABB | 3BSE009598R1 PM150V08 processor module
PM511V16 | ABB | 3BSE011181R1 PM511V16 Processor module
PM634 | ABB | 3BSE008063R1 PM634 processor module
PM633 | ABB | 3BSE008062R1 PM633 processor module
PM665 | ABB | 3BDS005799R1 PM665 processor module
CI930F | ABB |3BDH001010R0002 CI 930F master station module
CI910F | ABB | 3BDH001005R0001 CI 910F CAN module
PM904F | ABB |3BDH001002R0001 PM 904F CPU module
PM901F | ABB | 3BDH001001R0001 PM 901F CPU module
PM902F | ABB | 3BDH001000R0001 PM 902F CPU module
CI773F | ABB | 3BDH000395R0001 CI 773F master station module
CM772F | ABB | 3BDH000368R0001 CM 772F Master station module
HPC800K02A | ABB | HPC800 Controller Kit [Redundant]
HPC800K02 | ABB | HPC800 Controller Kit [Redundancy]
HPC800K01A | ABB | HPC800 controller suite, non-redundant
HPC800K01 | ABB | HPC800 controller suite Non-redundancy
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