Advanced 3D LTCC passive components using cavity structures for 60 GHz gigabit wireless systems

Yokohama(2006)

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摘要
In this paper, a new class of compact cavity-based three dimensional (3D) filters and enhanced-performance antennas is proposed for 60 GHz miniaturized front-ends for multilayer low-temperature co-fired ceramic (LTCC) V-band modules. The low-loss cavity resonator consisting of via fences as sidewalls has been designed to be used as a filter. The probe excitation is employed for the feeding structure and is demonstrated as an attractive option for wideband applications due to its relatively wide bandwidth performance (1.8%) compared to the slot excitation with a lambdag/4 [1]. Its low loss performance is verified through an insertion loss lower than 0.95 dB over the 3-dB pass band. Plus, an aperture-coupled patch antenna integrated with a soft surface and an underlying stacked cavity below the antenna substrate has been demonstrated on a novel LTCC composite multilayer technology with variable layer dielectric constant as a potential enhanced-performance antenna topology with a higher gain (~7.6 dBi) and a significantly lower backside radiation (at least 5.1 dB) as compared to the use of soft surface only. The proposed compact antenna topology is easily extendable to array configuration for point-to-point applications in short-range indoor wireless personal area networks (WPAN).
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cavity structures,short-range indoor wireless personal area networks,feeding structure,aperture antennas,point-to-point applications,three dimensional (3d) integration,probe excitation,backside radiation,mm-wave,aperture-coupled patch antenna,array configuration,via fences,compact cavity-based three dimensional filters,v-band,advanced 3d ltcc passive components,radio networks,low-temperature cofired ceramic ltcc,miniaturized front-ends,slot excitation,microstrip antennas,multilayer low-temperature co-fired ceramic v-band modules,low-temperature cofired ceramic (ltcc),cavity resonators,composite substrate,index terms — cavity resonators,antenna radiation patterns,three dimensional 3d integration,wpan,soft surface,frequency 60 ghz,wpan.,gigabit wireless systems,low-loss cavity resonator,millimetre wave antennas,enhanced-performance antennas,patch antenna,millimetre wave filters,insertion loss,front end,mm wave,three dimensional,point to point,dielectric constant
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