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Showing 1 to 8 of 8 for “"Epidermal Electronics"”.

  1. Biosignal acquisition for epidermal electronics

    … introduced. The introduction of such a class of electronics brings along technical challenges from the manufacturing and applications perspective. A technique that increases the gain of NMOS-only amplifiers is presented, analyzed, and tested. A 20-dB gain represents a 6.5x increase over the …

    uiuc Repository record for Biosignal acquisition for epidermal electronics (opens in a new tab)

  2. Printed microscale mono-crystalline silicon on flexible substrates for photovoltaic, strain sensors, and neural interface applications

    … and flexible display, flexible photovoltaic, epidermal electronics, and other systems) that can be integrated outside of conventional wafer-based electronics. With suitable choice of materials and design strategies, inorganic semiconductors (e.g., Si and GaAs) can be used on unconventional …

    uiuc Repository record for Printed microscale mono-crystalline silicon on flexible substrates for photovoltaic, strain sensors, and neural interface applications (opens in a new tab)

  3. Ultrathin mono-crystalline silicon photovoltaic cells with mechanically flexible and stretchable designs, and light-trapping structures

    … and flexible display, flexible photovoltaic, epidermal electronics, and other systems) that can be integrated outside of conventional wafer-based electronics. With suitable choice of materials and design strategies, inorganic semiconductors (e.g., Si and GaAs) can be used on unconventional …

    uiuc Repository record for Ultrathin mono-crystalline silicon photovoltaic cells with mechanically flexible and stretchable designs, and light-trapping structures (opens in a new tab)

  4. In-sensor information processing for resource-limited platforms on flexible epidermal substrates

    … work focuses on embedding intelligence on the epidermal flexible substrates to extract and analyze critical biomedical information for in-situ diagnosis. The primary objective of this work is illustrating the advantages of epidermal electronics combined with robust information processing …

    uiuc Repository record for In-sensor information processing for resource-limited platforms on flexible epidermal substrates (opens in a new tab)

  5. Development and Characterization of highly flexible and conformable electronic devices for wearable applications

    … 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 clothing, and these devices can be designed to provide different functionalities, such as …

    cagliari Repository record for Development and Characterization of highly flexible and conformable electronic devices for wearable applications (opens in a new tab)

  6. Advances in materials strategies, circuit designs, and informatics for wearable, flexible and stretchable electronics with medical and robotic applications

    The future of medical electronics should be flexible, stretchable and skin-integrated. While modern electronics become increasing smaller, faster and energy efficient, the designs remain bulky and rigid due to materials and processing limitations. The miniaturization of health monitoring devices in …

    uiuc Repository record for Advances in materials strategies, circuit designs, and informatics for wearable, flexible and stretchable electronics with medical and robotic applications (opens in a new tab)

  7. Initial implementation of epidermal electronic systems into a clinical setting to monitor cutaneous wound healing

    Epidermal electronic devices offer enormous potential as sensors and actuators for biomedical research and clinical application. One such area, cutaneous wound healing management, currently utilizes subjective analyses of health and instrumentation that does not conform sufficiently to the …

    uiuc Repository record for Initial implementation of epidermal electronic systems into a clinical setting to monitor cutaneous wound healing (opens in a new tab)

  8. Mechanisms for enabling closed-loop upper limb sensorimotor prosthetic control

    … mechanism for proprioception (Chapter 2), an epidermal electronic device that can provide electrotactile stimulation (Chapter 3), and a custom-built prosthetic hand that relays contact and pressure information from the fingertips (Chapter 4). In each of these chapters, motor control is …

    uiuc Repository record for Mechanisms for enabling closed-loop upper limb sensorimotor prosthetic control (opens in a new tab)