Plastic skin lights up on contact, may lead to touchscreens everywhere (video)

Plastic OLED skin lights up on contact

Flexible circuitry is frequently a one-way affair -- we've seen bendy displays and touch layers, but rarely both in one surface. UC Berkeley is at last merging those two technologies through a plastic skin whose display reacts to touch. By curing a polymer on top of a silicon wafer, the school's researchers found that they could unite a grid of pressure sensors with an OLED screen; they just had to remove the polymer to create a flexible skin. As the film-like material can be laminated on just about anything, it maylead to touch displays in places where they were previously impractical, or even very thin blood pressure sensors. It could also be easy to produce -- since the skins use off-the-shelf chip manufacturing techniques, commercial products are well within reach.

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Via: Phys.org

Source: UC Berkeley

CCNY, UC Berkeley develop lasers that could rewrite quantum chips, spin those atoms right round

CCNY, UC Berkeley develop lasers that could rewrite quantum chips, spin those atoms right roundComputers are normally limited by the fixed nature of their chipsets: once the silicon is out of the factory, its capabilities are forever locked in. The City College of New York and University of California Berkeley have jointly developed a technique that could break chips free of these prisons and speed along quantum computing. They found that hitting gallium arsenide with a laser light pattern aligns the spins of the atoms under the rays, creating a spintronic circuit that can re-map at a moment's notice. The laser could be vital to quantum computers, which can depend heavily or exclusively on spintronics to work: a simple shine could get electrons storing a much wider range of numbers and consequently handling many more calculations at once. Research is only just now becoming public, however; even though gallium arsenide is common in modern technology, we'll need to be patient before we find quantum PCs at the local big-box retail chain. Despite this, we could still be looking at an early step in a shift from computers with many single-purpose components to the abstracted, all-powerful quantum machines we've held in our science fiction dreams.

CCNY, UC Berkeley develop lasers that could rewrite quantum chips, spin those atoms right round originally appeared on Engadget on Wed, 27 Jun 2012 04:26:00 EDT. Please see our terms for use of feeds.

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UC Berkeley freshman shows us his ridiculously automated dorm (video)

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Besides beer pong, the whole point of going away to college is to blossom into an independent, motivated, self-sufficient adult. That is, of course, unless your dorm's name is BRAD (Berkeley Ridiculously Automated Dorm), where freshman Derek Low controls devices all around his room without even getting out of bed. An app on his phone can adjust ambient lighting and curtain position depending on the situation. His laptop uses Dragon Dictate to turn shouts into tasks his pile of servos and motors can accomplish. Just saying "Romantic mode" makes a disco ball pop out of the ceiling and plays the epically passionate Elton John song, "Can You Feel The Love Tonight." As if that wasn't enough, the emergency "party mode" button located next to the bed activates a bunch of lasers and strobes, as well as fog and blacklights while a bumpin' stereo system cranks out dance music. This dorm is clearly every college freshman's dream. I mean, who wouldn't want to wake up with Justin Bieber every morning? Check out the video after the break.

Continue reading UC Berkeley freshman shows us his ridiculously automated dorm (video)

UC Berkeley freshman shows us his ridiculously automated dorm (video) originally appeared on Engadget on Fri, 04 May 2012 16:52:00 EDT. Please see our terms for use of feeds.

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