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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Bently Nevada 78432-02 Power Input Module
Bently Nevada 78462-01 3300 Relay Module -Conformal Coated
Bently Nevada 3300/80-01-01-01 Six channel stick drop monitor
Bently Nevada 81192-03 Thermocouple Input Module
Bently Nevada 81546-01 Dual Hermetic Relays Module
Bently Nevada 84142-01 XDUCR I/O and Record Terminals Module
Bently Nevada 86416-01 Multi-Channel Diagnositc Instrument
Bently Nevada 82925-01 XDCR I/O and Record Terminals Module
Bently Nevada 84157-01 LVDT (POT) and Record Terminals Module
Bently Nevada 88501-01 3300 External KO Inputs and Buffered Outputs Module
Bently Nevada 76683-02 35mm 3300 Series Proximitor
Bently Nevada PWA88219-01U 3300 Power Supply
Bently Nevada 78462-02N 3300 Relay Module
Bently Nevada 78462-01 3300 Relay Module
Bently Nevada 3300/03-01-01 System Monitor
Bently Nevada 3300/03-03-03 System Monitor
Bently Nevada 3300/50-01-02-01-00 Tachometer
Bently Nevada 3300/20-02-01-00-00-00 Dual Thrust Position Monitor
Bently Nevada 3300/16-11-01-02-00-00-01 XY/Gap Dual Vibration Monitor
Bently Nevada 3300/55-01-04-02-02-01-00-06-00 Dual Velocity Monitor
Bently Nevada 3300/50-02-02-00-00 Tachometer
Bently Nevada 3300/12 Power Supply -Conformal Coated
Bently Nevada 3300/16-02-01-00-03-00-00 XY/Gap Dual Vibration Monitor
Bently Nevada 3300/35-13-02-02-03-00 Six-Channel Temperature Monitor
Bently Nevada 3300/20-03-01-00-01-00 Dual Thrust Position Monitor
Bently Nevada 3300/20-12-01-02-00-00 Dual Thrust Position Monitor
Bently Nevada 3300/16-02-01-02-01-00-00 XY/Gap Dual Vibration Monitor
Bently Nevada 3300/16-02-01-00-03-00-00 XY/Gap Dual Vibration Monitor
Bently Nevada 3300/25-05-03-05-01-00-02-00 Dual Accelerometer Monitor
Bently Nevada 3300/16-02-01-00-01-00-00 XY/Gap Dual Vibration Monitor
Bently Nevada 3300 6-Position System Chassis
Bently Nevada 1900/27-01-00 Vibration Monitor
Bently Nevada 330180-51-00 5/8 mm Proximitor Sensor
Bently Nevada 330180-91-00 5/8 mm Proximitor Sensor
Bently Nevada 330101-00-08-10-02-05 3300 XL 8mm Proximity Probe
Bently Nevada 330180-90-05 5/8 mm Proximitor Sensor
Bently Nevada 330180-51-05 5/8 mm Proximitor Sensor
Bently Nevada 330180-90-05 5/8 mm Proximitor Sensor
Bently Nevada 330104-00-03-10-01-05 3300 XL 8 mm Probe
Bently Nevada 330105-02-12-05-02-05 3300 XL 8 mm Reverse Mount Probe
Bently Nevada 330130-045-02-05 3300 XL Standard Extension Cable
Bently Nevada 330180-91-05 5/8 mm Proximitor Sensor
Bently Nevada143729-01 Cylinder Pressure I/O Module with Internal Terminations
Bently Nevada TK15 Keyphasor Conditioner and Power Supply
Bently Nevada 330101-00-20-05-11-05 3300 XL 8 mm Proximity Probe
Bently Nevada 330105-02-12-10-12-05 3300 XL 8 mm Reverse Mount Probe, 3/8-24 UNF Threads
GE / Bently Nevada RK4 Rotor Kit Controller Assembly
Bently Nevada 170180-01-05 FieldMonitor External Transducer I/O Module
Bently Nevada 1701/15 FieldMonitor Proximitor Input Monitor for Radial Vibration and Thrust Position
Bently Nevada 170180-02-05 FieldMonitor External Transducer I/O Module
Bently Nevada 170190 Dual Galvanic Isolator
Bently Nevada 330100-90-00 Proximitor Sensor
Bently Nevada 3500/25-02-01-05 Phase marking module
Bently Nevada 3500/33-01-05 16-Channel Control Module
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