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03-01-2017, 09:37 AM
New Method for Integrating Flexible Electronics Into Skin *****es
http://www.medgadget.com/wp-content/uploads/2017/02/electronic-tatoo.jpgAt the Waseda University in Japan, researchers have come up with a new, cheaper way of producing electronic devices that are flexible, elastic, and adhere to the skin. This development may help body monitoring electronic skin *****es that interface with smartphone apps to become commonly used in medicine and by consumers.
The tech**logy relies onآ*elastomeric films only 1آ*خ¼m thick that can safely contain electronic components sandwiched between them. An inkjet printer is used to put down lines of silver for wiring the components together. Importantly, there’s ** soldering or gluing involved, which allows for a thinner final product that is highly flexible without fear of damage to the electrical connections.
The team demonstrated the tech**logy by integrating an electronic chip and an LED into a ***** that is easily conforms to the skin and continues working for extended time periods.
Study in Journal of Materials Chemistry C: Sandwich fixation of electronic elements using free-standing elastomeric na**sheets for low-temperature device processes… (http://pubs.rsc.org/en/content/articlelanding/2017/tc/c6tc04469g#!divAbstract)
Via:آ*Waseda University… (https://www.waseda.jp/top/en-news/48920)
This post New Method for Integrating Flexible Electronics Into Skin *****es (http://www.medgadget.com/2017/02/new-method-integration-flexible-electronics-skin-*****es.html) appeared first on Medgadget (http://www.medgadget.com).
http://feeds.feedburner.com/~ff/Medgadget?d=yIl2AUoC8zA (http://feeds.feedburner.com/~ff/Medgadget?a=VJNAAoGvtIA:ydY4-fwzEto:yIl2AUoC8zA) http://feeds.feedburner.com/~ff/Medgadget?d=qj6IDK7rITs (http://feeds.feedburner.com/~ff/Medgadget?a=VJNAAoGvtIA:ydY4-fwzEto:qj6IDK7rITs) http://feeds.feedburner.com/~ff/Medgadget?i=VJNAAoGvtIA:ydY4-fwzEto:gIN9vFwOqvQ (http://feeds.feedburner.com/~ff/Medgadget?a=VJNAAoGvtIA:ydY4-fwzEto:gIN9vFwOqvQ)
http://feeds.feedburner.com/~r/Medgadget/~4/VJNAAoGvtIA
http://www.medgadget.com/wp-content/uploads/2017/02/electronic-tatoo.jpgAt the Waseda University in Japan, researchers have come up with a new, cheaper way of producing electronic devices that are flexible, elastic, and adhere to the skin. This development may help body monitoring electronic skin *****es that interface with smartphone apps to become commonly used in medicine and by consumers.
The tech**logy relies onآ*elastomeric films only 1آ*خ¼m thick that can safely contain electronic components sandwiched between them. An inkjet printer is used to put down lines of silver for wiring the components together. Importantly, there’s ** soldering or gluing involved, which allows for a thinner final product that is highly flexible without fear of damage to the electrical connections.
The team demonstrated the tech**logy by integrating an electronic chip and an LED into a ***** that is easily conforms to the skin and continues working for extended time periods.
Study in Journal of Materials Chemistry C: Sandwich fixation of electronic elements using free-standing elastomeric na**sheets for low-temperature device processes… (http://pubs.rsc.org/en/content/articlelanding/2017/tc/c6tc04469g#!divAbstract)
Via:آ*Waseda University… (https://www.waseda.jp/top/en-news/48920)
This post New Method for Integrating Flexible Electronics Into Skin *****es (http://www.medgadget.com/2017/02/new-method-integration-flexible-electronics-skin-*****es.html) appeared first on Medgadget (http://www.medgadget.com).
http://feeds.feedburner.com/~ff/Medgadget?d=yIl2AUoC8zA (http://feeds.feedburner.com/~ff/Medgadget?a=VJNAAoGvtIA:ydY4-fwzEto:yIl2AUoC8zA) http://feeds.feedburner.com/~ff/Medgadget?d=qj6IDK7rITs (http://feeds.feedburner.com/~ff/Medgadget?a=VJNAAoGvtIA:ydY4-fwzEto:qj6IDK7rITs) http://feeds.feedburner.com/~ff/Medgadget?i=VJNAAoGvtIA:ydY4-fwzEto:gIN9vFwOqvQ (http://feeds.feedburner.com/~ff/Medgadget?a=VJNAAoGvtIA:ydY4-fwzEto:gIN9vFwOqvQ)
http://feeds.feedburner.com/~r/Medgadget/~4/VJNAAoGvtIA