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Ultrasounds (US) are a proven medical tool to assess a myriad of biological processes, including breast cancer screening, fetal development and blood flow. However, US also have the potential to deliver power and telemetry capability to deeply implanted devices, surpassing some challenges faced by coils or antennas operating inside the human body. In this study we present an implantable device powered...
Ultrasounds are a proven medical tool to assess some biological processes, including breast cancer screening, fetal development and blood perfusion. However, ultrasounds also have the potential to deliver power and telemetry capabilities to deeply implant devices, surpassing some of the challenges faced by coils or antennas operating inside the human body. In this paper, we present a small-form implantable...
Wearable technology has become ubiquitous in recent years due to the miniaturization of circuit electronics and advances in smart materials that can conform to the requirements posed by the human body, behaviour and experience. Sensors of this type are found attached almost to every body segment, capable of delivering signals even in harsh activity scenarios. The reliability and relevance of the physiological...
The paper reports a novel inertial microswitch with multi-directional compact constraint structures for improving the shock-resistibility. Its shock-resistibility in the reverse sensitive directional ultra-high g acceleraiton (∼hunderds of thounsands) is simulated and analyzed. The dynamic response process indicates that in the designed inertial microswitch the proof mass weight G, the whole system...
Novel design concepts and cutting edge results are presented for high-power AlGaN/GaN Heterostructure Field-Effect Transistor switches for power converters, control and radio-frequency applications. For power switching, the HFET design has to be different from that of power amplifiers in order to minimize the contact resistance and avoid current crowding in the metal electrodes of large-periphery...
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