Description
hardware flow control. It is an ideal choice in the field of industrial automation.
Comment: With product trends such as smartphones and smart hardware, demand in the semiconductor electronics industry has grown rapidly and has become one
of the main markets for robots. It is expected to soon exceed the demand in the automotive industry and become the dominant market for industrial robots. Xinsong”s
acquisition of FA Company, a subsidiary of Xinsheng, provides a bridge for the company to enter the semiconductor field and take a share of the largest application market for robots in the future.
Honda halts ASIMO humanoid robot development project
The research and development process of robots requires a lot of investment in money and manpower, especially in products with special functions. In July this year, Japanese
car manufacturer Honda stated that it would stop developing the humanoid robot ASIMO. As the world”s first humanoid robot, the product has completed its seventh iteration
and is already capable of running, jumping, climbing stairs, opening drinks, and kicking. It has many abilities including football and even dancing, being able to hear and
understand three people speaking at the same time, and interpret gestures and respond to various commands.
Although the research and development of the ASIMO project has stopped, the project retains a number of technologies that can be used in mobile robots and self-driving cars,
because many technologies in ASIMO are still world-leading. ASIMO has gone through a long period of research and development upgrades, but it is still far from commercial
application, and the price is difficult for users to accept. Honda finally chose to give up.
Comments: Technology innovation and research and development to real commercial applications need to cross many gaps. Currently, humanoid robots are still a difficult
problem to break through in commercial applications. In addition to pleasing the audience, humanoid robots are difficult to form real commercial value. At this stage, the market
needs products that meet the application needs of various industries, such as four- and six-axis industrial robots, collaborative robots, etc., so the robot R&D
department needs to make appropriate choices.
FANUC Robotics” new factory starts construction in Guangzhou
On March 28, Fanuc, a leading company in the global robotics industry, held a groundbreaking and opening ceremony for its new factory in Guangzhou Science City.
In order to meet the needs of the market, Shanghai Fanuc Co., Ltd. cooperated with the Guangzhou Development Zone to build a new factory in the Science City and
established a subsidiary, Guangzhou Fanuc Robot Co., Ltd. The new company has a registered capital of 150 million yuan and the company occupies an area of The area is
close to 40,000 square meters.
The construction of the new factory means that Fanuc will form two major formations in China: Shanghai Fanuc and Guangzhou Fanuc. Guangzhou will integrate
Fanuc”s resources in the south to form a South China base that integrates robot sales, display and training. . As a core area for intelligent equipment, Guangzhou is
committed to promoting the development of the intelligent manufacturing industry. This cooperation will further promote the intelligent transformation and upgrading of the
Pearl River Delta manufacturing industry.
Comment: China has become the world”s largest industrial robot market for five consecutive years. As a major manufacturing country in the world, it is
promoting the transformation of China”s manufacturing into China”s intelligent manufacturing, and at the same time, it has given birth to a huge robot market. Against this
background, domestic and foreign robot manufacturers are making plans one after another, and Fanuc”s investment in building new factories is also fully optimistic about the
Chinese robot market. In addition, the new factory in Guangzhou will make up for Shanghai Fanuc”s shortcomings in the south and further reduce the transportation costs of products.
China Southern Power Grid”s first self-developed substation inspection robot comes on duty
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200350-02-00-CN 200350 Accelerometer
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MVME162P-344S dual-height VME module
DS3815PAHB1A1A Printed circuit board
CC-PDIH01 Digital input module
330130-045-01-00 3300 XL Extension cable
MVME162-510A Embedded controller
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Vibro-meter VM600 RLC16 Trunk card
Vibro-meter VM600 XIO16T input/output module for the XMx16 module
Vibro-meter VM600 CPUR rack controller and communication interface card
Vibro-meter VM600 Mk2 / VM600 ABE056 Ultra-thin rack
Vibro-meter CPUR card VM600 IOCR input/output card
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Vibro-meter VM600 XMV16 Vibration status monitoring module
3BDH000384R0005 AO723F analog output module
3BDH000396R0005 CI741F PROFIBUS Interface module
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3BDH000371R0005 DA701F Digital/Analog module
3BE066485R1 PM851AK01 Processor unit
3BE069449R1 CI854BK01 PROFIBUS-DP/V1 port
3BSE020512R1 AI801 Analog Input 8 channels
3BSE020514R1 AO801 Analog output 8 channels
3BSE020508R1 DI801 Digital input 24V 16 channels
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3BSE013208R1 TB820V2 Modulebus Cluster modem
3BSE008508R1 DI810 Digital input module
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3BSC690073R1 DI890 The digital input module is intrinsically secure
3BSE008510R1 DO810 Digital output module Transistor type
3BSE020838R1 DO840 Redundant digital output module transistor type
3BDH000530R1 PM803F Base Unit 16 MB
3BDH008381R0001 TU732F Input/output terminal device
3BSE076940R1 PM 862K01 Processor Unit -67MHz and 32MB.
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