Seed-sized A*STAR antenna could open the door to 20Gbps wireless

Seedsized ASTAR antenna could open the door to 20Gbps wireless

Antennas have often capped the potential speed of a wireless link — the 450Mbps in modern 802.11n WiFi routers is directly linked to the use of a MIMO antenna array to catch signals more effectively, for example. That ceiling is about to get much higher, if A*STAR has anything to say about it. The use of a polymer filling for the gaps instead of air lets the Singapore agency create a 3D, cavity-backed silicon antenna that measures just 0.06 by 0.04 inches, roughly the size of a seed on your hamburger bun, even as it increases the breakneck pace. The new antenna generates a signal 30 times stronger than on-chip rivals at an ultrawideband-grade 135GHz, and musters a theoretical peak speed of 20Gbps — enough that 802.11ac WiFi’s 1.3Gbps drags its heels by comparison. Before we get ahead of ourselves on expecting instant file transfers at short distances, there’s the small matter of getting a chip that can use all that bandwidth. Even the 7Gbps of WiGig wouldn’t saturate the antenna, after all. Still, knowing that A*STAR sees “immense commercial potential” in its tiny device hints that wireless data might eventually blow past faster wired standards like Thunderbolt.

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Seed-sized A*STAR antenna could open the door to 20Gbps wireless originally appeared on Engadget on Wed, 29 Aug 2012 00:32:00 EDT. Please see our terms for use of feeds.

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Researchers create ‘rubber-band electronics’ material, capable of stretching up to 200 percent (video)

Researchers create 'rubberband electronics' capable of stretching

One of the major issues with embedded medical devices is the lack of flexibility in existing electronics. Fortunately, researchers at the McCormick School of Engineering at Northwestern University have developed a new material that can create electronic components capable of stretching to 200 percent of their original size. One of the major obstacles was how stretchable electronics with solid metal parts suffered substantial drops in conductivity but this solution involves a pliable three-dimensional structure made from polymers with ‘pores’. These are then filled with liquid metal which can adjust to substantial size and shape changes, all while maintaining strong conductivity. We’ve embedded a very brief video of the new stretchable material going up against existing solutions — it’s right after the break.

Continue reading Researchers create ‘rubber-band electronics’ material, capable of stretching up to 200 percent (video)

Researchers create ‘rubber-band electronics’ material, capable of stretching up to 200 percent (video) originally appeared on Engadget on Tue, 03 Jul 2012 05:17:00 EDT. Please see our terms for use of feeds.

Permalink Phys Org  |  sourceMcCormick Northwestern Engineering  | Email this | Comments