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Showing 1 to 20 of 38 for “"wearable electronics"”.

  1. Wireless integrated wearable electronics for biomedical and virtual/augmented reality applications

    Submission published under a 24 month embargo labeled 'U of I Access', the embargo will last until 2024-05-01

    uiuc Repository record for Wireless integrated wearable electronics for biomedical and virtual/augmented reality applications (opens in a new tab)

  2. 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)

  3. Soft Electronics and Sensors for Wearable Healthcare Applications

    <p>Wearable electronics are becoming increasingly essential to personalized medicine by collecting and analyzing massive amounts of biological signals from internal organs, muscles, and blood vessels. Conventional rigid electronics may lead to motion artifacts and errors in collected data due to …

    wustl Repository record for Soft Electronics and Sensors for Wearable Healthcare Applications (opens in a new tab)

  4. The Effect of Buckling on the Interface Conductance in Flexible Lithium-Ion Batteries

    … applications including medical implants, wearable electronics, consumer electronics or roll-up displays are often subjected to bending and buckling during their operation life. It is imperative to investigate the impact of buckling on the performance of the flexible lithium ion battery …

    houston Repository record for The Effect of Buckling on the Interface Conductance in Flexible Lithium-Ion Batteries (opens in a new tab)

  5. Multifunctional Polymer Fibers for Wearable Biosensors and Neural Medical Treatments

    … applications can be seen with sensing in wearable electronics or in neural probes due to their ability to easily integrate microfluidic systems, electrical, and optical means of sensing and stimulating. This thesis will demonstrate several ways fiber devices can be used in biomedicine and …

    vt Repository record for Multifunctional Polymer Fibers for Wearable Biosensors and Neural Medical Treatments (opens in a new tab)

  6. Hybrid Devices Based On Graphene And Related Materials For Wearable (Opto)Electronics

    … and its implication in textile industry, wearable electronics seems to be the next promising trend in this giant market (25.19 billion US dollars by 2020). Part of this revolution includes the integration of electronics and textiles, which has dramatically cross fertilized the technology …

    cambridge Repository record for Hybrid Devices Based On Graphene And Related Materials For Wearable (Opto)Electronics (opens in a new tab)

  7. Design of an improved electronics platform for the EyeRing wearable device

    … navigation, and other tasks. EyeRing is a wearable electronics device with an emphasis on natural gestural input and minimal interference. Previous prototypes used assemblies of commercial-off-the-shelf (COTS) control and sensing solutions. A more custom platform, consisting of two printed …

    mit Repository record for Design of an improved electronics platform for the EyeRing wearable device (opens in a new tab)

  8. Multi-component Elastomer Composites for Next Generation Electronics and Machines

    … years, these materials have become enabling for wearable electronics and soft machines which has led to the development of new material architectures that provide advanced functionalities while maintaining a low mechanical modulus and high extensibility. In this work, we develop methods for the …

    vt Repository record for Multi-component Elastomer Composites for Next Generation Electronics and Machines (opens in a new tab)

  9. Ultra-low Voltage Digital Circuits and Extreme Temperature Electronics Design

    <p>Certain applications require digital electronics to operate under extreme conditions e.g., large swings in ambient temperature, very low supply voltage, high radiation. Such applications include sensor networks, wearable electronics, unmanned aerial vehicles, spacecraft, and energyharvesting …

    arkansas Repository record for Ultra-low Voltage Digital Circuits and Extreme Temperature Electronics Design (opens in a new tab)

  10. Discovering the patterns of human-environment interactions using scalable functional textiles

    … This work opens up new possibilities in wearable electronics, healthcare, manufacturing, and robotics.

    mit Repository record for Discovering the patterns of human-environment interactions using scalable functional textiles (opens in a new tab)

  11. Development of Flexible Pressure and Strain Sensors for Electronic Skin Applications

    … 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 …

    toronto-retro Repository record for Development of Flexible Pressure and Strain Sensors for Electronic Skin Applications (opens in a new tab)

  12. Smart E-Textiles Integrated into Human Health Monitoring Systems

    … are becoming the future of portable, wearable electronics for human performance and health monitoring. There are many applications of e-textiles in the health monitoring industry, where early detection and prevention of adverse health conditions is at the forefront of concern. To …

    umn Repository record for Smart E-Textiles Integrated into Human Health Monitoring Systems (opens in a new tab)

  13. Designing a Wearable, Centimeter-Scale Generator Powered by Human Movement

    Wearable devices used in both research and industry require frequent recharg-ing. Typically, a device must be removed and charged separately, which reduces the device’s overall utility, especially if its primary function is for applications requiring continuous monitoring or actuation. To address …

    cornell Repository record for Designing a Wearable, Centimeter-Scale Generator Powered by Human Movement (opens in a new tab)

  14. Thin film technology for optoelectronics and their thermal management

    Thin-film semiconductor optoelectronics are important for applications from optical communication, solid-state lighting, and wearable electronics to biomedical sensors. It is now possible to separate the micrometer-thick device layers from their native substrates and transfer them onto new …

    cork Repository record for Thin film technology for optoelectronics and their thermal management (opens in a new tab)

  15. Low power circuits with integrated magnetics for sensors and energy harvesting systems

    … of Industry 4.0, to consumer products, like body wearable sensors. The rise to billions of sensors relies on two key trends in sensor systems: miniaturization and energy-efficiency. This work explores the use of integrated magnetics in microelectronics to enable low power, energy-efficient …

    mit Repository record for Low power circuits with integrated magnetics for sensors and energy harvesting systems (opens in a new tab)

  16. Mechanically flexible vapor-deposited polymeric thin films for electrochemical devices

    The concept of self-powered wearable electronic system has been emerging. Such a system consists of three units: an intelligent end-user electronic device for exporting functions, an energy generation/conversion device responsible for harvesting/scavenging renewable energy, and additionally an …

    mit Repository record for Mechanically flexible vapor-deposited polymeric thin films for electrochemical devices (opens in a new tab)

  17. One-Dimensional Nanostructured Materials And Manufacturing of Deformable Electronics For Healthcare and Soft Robotics

    … deformations are the drivers for emerging wearable health monitors, implantable electronics, AI-augmented bionic prosthetics and intelligent soft robotics. One dimensional (1D) nanostructures of electronic materials are promising material system for fabricating soft electronics due to their …

    houston Repository record for One-Dimensional Nanostructured Materials And Manufacturing of Deformable Electronics For Healthcare and Soft Robotics (opens in a new tab)

  18. All-Inkjet-Printed Low-Voltage Organic Thin-Film Transistors

    … a wide range of emerging applications such as wearable electronics. Printed OTFTs provide great benefits in fabrication cost reduction, but they need a very high operating voltage and exhibit severe instability during storage and operation in ambient environment. In this study, …

    cambridge Repository record for All-Inkjet-Printed Low-Voltage Organic Thin-Film Transistors (opens in a new tab)

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