Extremely Accuracy characteristic boosts path accuracy in ABB GoFa cobots

0
22
Extremely Accuracy characteristic boosts path accuracy in ABB GoFa cobots


Hearken to this text

Voiced by Amazon Polly
Extremely Accuracy characteristic boosts path accuracy in ABB GoFa cobots

Extremely Accuracy allows GoFa robots to handle new industrial functions, claims ABB. Supply: ABB Robotics

ABB Robotics right now launched Extremely Accuracy, a brand new characteristic for its GoFa collaborative robotic line. The corporate mentioned it allows greater than 10 instances larger path accuracy in contrast with different cobots available on the market.

“As industries look to automation to reinforce product high quality and obtain tighter tolerances — repeatedly reducing the utmost allowable deviation from the usual in high quality management — there’s a rising want for robots that may carry out duties with distinctive precision,” acknowledged Andrea Cassoni, world head of collaborative robots at ABB Robotics.

“By combining ultra-accurate path efficiency with GoFa’s inherent simplicity, security, and suppleness, ABB’s new Extremely Accuracy characteristic opens a variety of potentialities for the usage of cobots in companies together with electronics, automotive, aerospace, and steel fabrication,” he added.

Extremely Accuracy provides GoFa skills for extra functions

ABB mentioned Extremely Accuracy meets the calls for of functions the place precise positioning is essential for sustaining product high quality and operational effectivity. They embody gluing and sealing in client electronics manufacturing, laser welding of automotive elements, composite materials layers in aerospace manufacturing, and precision laser chopping in metals fabrication processes.

The brand new characteristic will also be used for correct positioning of additive layers in constructing prototypes in 3D printing, in addition to for performing precision high quality checking in metrology functions.

As well as, ABB touted the mixture of precision with pace and a full vary of movement. Not like standard 2D gantry techniques historically utilized in electronics manufacturing, GoFa cobots provide full 6D movement throughout their whole workspace upon supply, it mentioned.

The robots don’t require further calibration work, offering the flexibleness and mobility to deal with a broader vary of duties, based on ABB.

GoFa’s compact and transportable design ensures that it may be simply built-in into current manufacturing strains with out the necessity for costly customization, providing a definite benefit over gantry-based techniques, asserted the corporate.

It additionally mentioned GoFa with the Extremely Accuracy characteristic will be launched into manufacturing with minimal set up and deployment time, because the calibration is completed within the manufacturing unit previous to supply.

ABB says characteristic is suitable with RobotStudio

The mix of Extremely Accuracy and RobotStudio allows the programming of functions offline, mentioned ABB. This gives “a 99% match between the simulation and actuality, eliminating the necessity for touch-ups and guaranteeing exact and environment friendly implementation,” it mentioned.

The Extremely Accuracy characteristic is accessible for brand new GoFa collaborative robots and as a retrofit choice for current GoFa cobots.

ABB Robotics claimed that it’s the solely automation supplier whose built-in portfolio contains industrial robots, autonomous cell robots (AMRs), and machine automation. The unit of Zurich-based ABB Group employs roughly 11,000 individuals in about 53 international locations and has U.S. workplaces in Auburn, Mich.

Editor’s observe: John Bubnikovich, president of ABB Robotics U.S., will take part in a keynote panel on “Driving the Way forward for Robotics Innovation” at RoboBusiness 2024, which might be on Oct. 16 and 17 in Santa Clara, Calif. Register now to attend.


SITE AD for the 2024 RoboBusiness registration now open.
Register now.


LEAVE A REPLY

Please enter your comment!
Please enter your name here