University Of Tokyo Plastic Sheet Powering
Computers could be powered.
University of tokyo plastic sheet powering. The method involves a cuttable flexible power transfer. The wireless power transmission sheet comprises the printed plastic micro electrical mechanical system mems switch sheet and sender coil array sheet as shown in fig. The prototype which consists of plastic and flexible electronics can wirelessly. A sheet of plastic invented by researchers in japan could one day make for tables and walls that power devices placed on them without any need for wires or plugs.
He is currently a project lecture in vlsi design and education research center the university of tokyo. Researchers at the university of tokyo have demonstrated a prototype that could offer a new way to power gadgets. A mems switch matrix. We propose a cuttable wireless power transfer sheet which allows users to modify its size and shape.
From 2007 to 2012 he was an assistant professor in research center for advanced science and technology the university of tokyo. Researchers at the university of tokyo have demonstrated a prototype which consists of plastic and flexible electronics that can wirelessly provide power to any device that touches its surface. Doi university of tokyo and dr. The authors acknowledge prof.
December 12 2007 university of tokyo researchers have developed a plastic pad that allows electronic devices placed on it to communicate with each other. University of tokyo plastic sheet powering. A cuttable wireless power transfer sheet assistant professor yoshiaki narusue department of electrical engineering and information systems and other researchers. This work is partially supported by jst it program mext and nedo.
Takao someya associate professor at the university of tokyo and head of the lab that developed the wireless communications and wireless power sheet. This intuitive manipulation allows users to easily add wireless power. Asaka aist for the sheet type soft actuator made of perfluorinated polymer electrolyte. Because all the components are formed from organic materials they can be applied in solution form using inkjet printing onto flexible substrates.