Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
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Showing 1 to 5 of 5 for “"Electronic Skin"”.
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Development of Flexible Pressure and Strain Sensors for Electronic Skin Applications
… from human-robot-interaction to wearable electronics. Similar to the five human senses, sensors interface with their surroundings to stimulate a suitable response or action. The sense of touch which arises in human skin is among the most challenging senses to emulate due to its ultra-high …
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Integrated Wearable Devices for Prosthetic Applications
… systems increasingly relies on wearable electronic interfaces capable of providing accurate sensing and reliable decoding of human intentions. Although technological advances continue, prosthetic abandonment remains a major problem, as current technologies and control strategies for …
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Development and Characterization of highly flexible and conformable electronic devices for wearable applications
… when the computer age was established, wearable electronic devices were developed and started to spread out and get into the market. Wearable electronics are a category of technological devices that can be transferred into clothes or directly in touch with the body, typically as accessories or …
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Printed stretchable strain sensors for plant growth monitoring
… detection, health monitoring, soft robotics, and electronic skin, but have rarely been applied to plant biology research. The few reported wearable strain sensors for measuring plant growth have limited stretchability due to their selected material systems (<200%), which limits their application …
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Large area electro-optical tactile sensor:Characterization and design of a polymer, nanoparticle based tunneling device
Touch (or tactile) sensors are gaining renewed interest as the level of sophistication in the application of minimally invasive surgery and humanoid robots increases. The spatial resolution of current large-area tactile sensors (greater than 1 cm2) lag human fingers by over an order of magnitude. …