752 research outputs found

    Ultra-Thin Chip Package (UTCP) and stretchable circuit technologies for wearable ECG system

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    A comfortable, wearable wireless ECG monitoring system is proposed. The device is realized using the combination of two proprietary advanced technologies for electronic packaging and interconnection : the UTCP (Ultra-Thin Chip Package) technology and the SMI (Stretchable Mould Interconnect) technology for elastic and stretchable circuits. Introduction of these technologies results in small fully functional devices, exhibiting a significant increase in user comfort compared to devices fabricated with more conventional packaging and interconnection technologies

    Environmental electromagnetic characterization framework for wearable antenna materials

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    In wearable antenna design, the prevailing atmospheric conditions can have a significant effect on the electromagnetic properties of the fabric substrate and hence the resulting antenna performances. Therefore, an accurate characterization of this effect is an important issue in textile antenna design. This paper presents a dedicated constitutive parameter extraction method as a function of relative humidity of all materials used. The method relies on a comparison between measured and simulated antenna figure's of merit in order to extract complex permittivity of the substrate and effective bulk conductivity of the e-textile. A two-step approach is used for separating conductor losses from substrate losses. The problem of finding the best fit between simulated and measured data is solved by relying on a surrogate based optimization technique. Here, two fabric materials are characterized for relative humidity levels ranging from 10% to 90%

    The Ursinus Weekly, November 10, 1958

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    ACES banquet for seniors features outstanding men • Y seminar Nov. 19; SWC to sponsor forum on religion • Local concert schedule for area announced • Group plays presented Tues. in Bomberger • Freshmen hold election amid sophomore interference Wednesday • Dr. Donald Helfferich inaugurated President • Anderson\u27s play to be staged November 21-22 • Editorial: Facts • I do not agree • College rules • Bear\u27s eleven drop sixth straight to Haverford 38-6 • Basketball team begins practice for \u2758-\u2759 season • U.C. belles tied by West Chester; J.V. team wins • Soccer squad whips Hens; Drexel wins 8-2 • APO holds square dance; Pledge class inducted • Letters to the editorhttps://digitalcommons.ursinus.edu/weekly/1371/thumbnail.jp

    High efficiency InGaAs solar cells on Si by InP layer transfer

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    InP/Si substrates were fabricated through wafer bonding and helium-induced exfoliation of InP, and InGaAs solar cells lattice matched to bulk InP were grown on these substrates using metal-organic chemical-vapor deposition. The photovoltaic characteristics of the InGaAs cells fabricated on the wafer-bonded InP/Si substrates were comparable to those synthesized on commercially available epiready InP substrates, thus providing a demonstration of wafer-bonded InP/Si substrates as an alternative to bulk InP substrates for solar cell applications

    Environmental high frequency characterization of fabrics based on a novel surrogate modelling antenna technique

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    Wearable antennas are mostly constructed from fabric or foam, whereas e-textiles are often used as conductive parts. A design obstacle is the lack of knowledge about the electromagnetic properties of these materials. Moreover, most of these fabrics exhibit electromagnetic properties that depend on prevailing atmospheric conditions. In this work, we present a dedicated characterization method to determine the complex permittivity of fabrics or foams, as well as the effective conductivity of e-textiles, and this as a function of relative humidity. The method extracts the constitutive parameters by comparing measured and simulated antenna figures of merit such as input impedance and antenna efficiency. This inverse problem is solved using a surrogate-based optimization technique as implemented in the Surrogate Modeling Toolbox, yielding a fast and accurate characterization. The method is evaluated by characterizing six materials which are exposed to relative humidity levels ranging from 10% to 90%. From the extracted complex permittivities of the six materials, two-phase dielectric mixing models based on the volumetric fractions of the absorbed moisture in the substrates are developed and evaluated in terms of accuracy. For the materials exhibiting a high sensitivity to moisture, the model is observed to be less accurate. However, the worst model accuracy is shown to be comparable with the estimated accuracy of the characterization procedure. For materials with low sensitivity to moisture, the model fits the measured values very well

    Analysis of Causes of Icing Conditions Which Contributed to the Crash of Continental Flight 3407

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    On February 12, 2009, at 10:20 p.m. EST, Continental Connection Flight 3407 from Newark to Buffalo crashed 5 miles short of the runway at Buffalo, killing all 49 people on board and one person on the ground. The National Transportation Safety Board (NTSB) is still investigating the crash, but preliminary reports show the airplane was experiencing icing conditions before the crash. Preliminary reports indicate that the pilot did not respond properly to the icing conditions, which contributed to the crash. However, the presence of the icing conditions which were significant enough to cause aircraft problems needs further investigation to determine if pilots can be forewarned about these type of aircraft icing problems

    Justification for a Nuclear Global Health Workforce: multidisciplinary analysis of risk, survivability & preparedness, with emphasis on the triage management of thermal burns

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    An assessment of the risks of nuclear conflict and the global preparedness to deal with such a catastrophe. Includes a proposal for triage and management of burn injuries based on a model of what would happen if there was a nuclear attack on Washington DC. Summarises the need for a global nuclear workforce to establish guidelines and strategies to address a nuclear event, the risk of which would appear to be increasingly likely given current world geopolitics

    LOCAL CONTROL ROBOTIC SURGICAL DEVICES AND RELATED METHODS

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    The various robotic medical devices include robotic devices that are disposed within a body cavity and positioned using a support component disposed through an orifice or opening in the body cavity. Additional embodiments relate to devices having arms coupled to a device body wherein the device has a minimal profile such that the device can be easily inserted through smaller incisions in comparison to other devices without such a small profile. Further embodiments relate to methods of operating the above devices
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