Thursday, January 31, 2013

The science that protects your phone from smashes, splashes (and drunken nights out)

The science that protects your phone from smashes, splashes (and drunken nights out)

Some amazing chemistry that protects phones from water, makes impact-proof cases and enables you to fix your gadgets is emerging from the UK, but how does it work?

Motorola's splash-proof Motorola Droid Razr HD and Motorola Droid Razr Maxx HD shrug off rain or getting dropped in a puddle thanks to a nanoscale coating that's applied to the phone during manufacturing.

It's similar to the way Microsoft puts the VaporMg coating onto the Surface; racks of phones are put in a vacuum chamber and the air is pumped out and replaced with a plasma of fluorinated acrylates (think very high temperature chemical steam) that coats every part of the phone with between 10 and 40 nanometers of protection.

UK company P2i started out treating military clothing. You can't just waterproof cloth, because sewing needles make tiny holes and the zips and seams weren't protected, and that's a problem if the liquid you're keeping out is something toxic. That means the company had to find a way of coating entire products.

P2i went from weather-proofing uniforms, to hearing aids, to tablets, to phones. First it treated phones with Motorola and now with two Chinese and one European phone manufacturer that P2i chief technical officer Stephen Coulson can't yet name publicly.

Bath-proof phones

Splash-proof phone coatings and cases can't cope with a real downpour; the biggest problem is water getting in through the audio jack, although splash-proof coatings give your phone some protection.

Currently in the labs is what Coulson calls a 'dunkable' coating that would keep your phone working even if you drop it into the bath. To demonstrate, he had a coated Samsung Galaxy S3 running in a fish tank full of water; when we saw it, it had been soaking for 1 hour 40 minutes and was still running happily.

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9wPg==

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