58 research outputs found

    Integration of mm-Wave Antenna Systems in 5G Mobile Terminals

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    Single-Layer, Unidirectional, Broadside-Radiating Planar Quadrupole Antenna for 5G IoT Applications

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    Dielectric Characterization of Materials at 5G mm-Wave Frequencies

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    The development of the next-generation 5G wireless networks depends critically on the engineering of optimized high-frequency devices, employing dielectric materials. This work presents a comprehensive broadband dielectric characterization of polymers, ceramics and glasses from 5 GHz until 115 GHz.Various measurement techniques including split-post, split cavity, open resonator and free-space transmission are utilized to obtain wideband spectra. The frequency-dependent permittivity and losstangent are analyzed to identify suitable candidate materials exhibiting minimal dispersion and loss in the 5G millimeter-wave bands. The characterization reveals almost constant permittivity and a loss tangent that increases linearly with the frequency

    Transparent mm-Wave Array on a Glass Substrate with Surface Wave Reduction

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    Beam-Steerable Multi-Band Mm-Wave Bow-Tie Antenna Array for Mobile Terminals

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    Radiation Pattern Reconfigurable Mm-Wave Bow-Tie Array Integrated with PIFA Antenna

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    Reduction of Main Beam-Blockage in an Integrated 5G Array with a Metal-Frame Antenna

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    Dual-Band Metal Frame Blockage Reduction for 5G mm-Wave Arrays in Mobile Phones

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    User Body Interaction of 5G Switchable Antenna System for Mobile Terminals at 28 GHz

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    Mm-Wave Beam-Steerable Endfire Array Embedded in a Slotted Metal-Frame LTE Antenna

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