Description
hardware flow control. It is an ideal choice in the field of industrial automation.
Core Algorithm 12 “The algorithm is not refined, domestic industrial robots are a bit “stupid”” (Science and Technology Daily, May 22)
China has been the world”s largest robot application market for five consecutive years, but high-end robots still rely on imports. Due to the failure to
master the core algorithm, key indicators such as stability, failure rate, and ease of use
of domestic industrial robots are far inferior to those of the “four major families” of industrial robots: Fanuc (Japan), ABB (Switzerland), Yaskawa (Japan),
and KUKA ( Germany) products. The core algorithm gap is too large, resulting in poor stability of domestic robots and high failure rates. The algorithm gap
is not only reflected in the core controller, but also slows down the response speed of the servo system.
Every time the robot completes an action, it requires the core controller, servo driver and servo motor to work together. For a single servo system,
domestic robots have high dynamic and static accuracy. However, high-end robots generally have more than 6 servo systems at the same time, and it is
difficult to achieve good control effects using traditional control methods.
High-end bearing steel 13 “High-end bearing steel, a shortcoming in China”s manufacturing industry that is difficult to make up for” (Science and Technology Daily, May 25)
As an indispensable core component in mechanical equipment, bearings support the mechanical rotating body, reduce its friction coefficient, and ensure its
rotation accuracy. Whether it is aircraft, automobiles, high-speed rail, or high-precision machine tools, instruments and meters, bearings are needed. This places
high demands on its accuracy, performance, lifespan and reliability. Our country”s shaft-making technology is close to the world”s top level, but the material – that is
, the steel for high-end bearings – is almost entirely dependent on imports.
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SC560 3BSE008105R1 ABB
SC540 3BSE006096R1 ABB
3BSE006096R1 processing module ABB
SC540 processing module ABB
3BSE016237R1 processing module ABB
SC520M processing module ABB
SC520M 3BSE016237R1 ABB
ABB PM860K01 3BSE018100R1
3BSE018100R1 processing module
PM860K01 processing module
3BSE066490R1 processing module
PM856AK01 processing module
ABB PM856AK01 3BSE066490R1
HIEE300888R000 Programmable Control Module
UAC389AE02 Programmable Control Module
SC513 Communication module ABB
ABB 3BSE027070R10 Pillow type sensor
ABB PFCL201C 10KN Pillow type sensor
ABB 3BSE050090R20 Tension controller
ABB PFEA111-20 Tension controller
ABB PFEA111-20 3BSE050090R20
ABB PFEA111-65 3BSE028140R0065
3BSE028140R0065 Tension controller ABB
PFEA111-65 Tension controller ABB
ABB PFCL201C 10KN 3BSE027070R10
ABB 3BSE027070R10 Pillow type sensor
ABB PFCL201C 10KN Pillow type sensor
ABB 3BSE027070R20 Pillow type sensor
ABB PFCL201C 20KN Pillow type sensor
ABB PFCL201C 20KN 3BSE027070R20
WOODWARD easYgen-3000
WOODWARD easYgen-1500
WOODWARD easYgen-3500XT
WOODWARD easYgen-3500
WOODWARD easYgen-100
WOODWARD 8237-1368
WOODWARD 8237-1245
Woodward’s ProTech-GII 8237-1246
WOODWARD 8237-1367
WOODWARD 8237-1601
Woodward’s ProTech-GII 8237-1246
WOODWARD 8237-1597
3BHB000652R0101 Drive module ABB
3BHB003431R0101 Drive module ABB
KUC720AE101 Drive module ABB
KUC720AE101 3BHB000652R0101 ABB
KUC720AE101 3BHB003431R0101 ABB
KUC720AE101 3BHB003431R0101 3BHB000652R0101
GE IS215VCMIH2BB – vme communication interface card
FCP280 FOXBORO
WOODWARD 8237-1242
WOODWARD 8237-2596
WOODWARD 8237-2597
WOODWARD 8237-2607
WOODWARD 8237-1369
WOODWARD 8237-2601
WOODWARD 8440-1800
WOODWARD 8440-1925
WOODWARD 8440-1934
WOODWARD 8440-1546
WOODWARD 8440-1894
WOODWARD 8440-2096
WOODWARD 8440-2077
WOODWARD 8440-1809
8440-2050 Woodward easYgen-3000 Series
WOODWARD 8440-1878
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