2012
DOI: 10.1016/j.sse.2011.08.002
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Silicon based on-chip antenna using an LC resonator for near-field RF systems

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Cited by 6 publications
(4 citation statements)
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“…The OCA and antennain-package (AiP) are smart technologies that provide the single-chip radio solution. These technologies allow the codesign of the antenna and the radio chip (in micro/nano CMOS technology) into the same high-sensitivity silicon substrate package, which compresses the die area of the radio system [87][88][89][90][91][92]. There is a tradeoff between antenna size and performance in terms of operating frequency, that is, the higher (lower) the frequency, the smaller (larger) the size can be.…”
Section: Discussionmentioning
confidence: 99%
“…The OCA and antennain-package (AiP) are smart technologies that provide the single-chip radio solution. These technologies allow the codesign of the antenna and the radio chip (in micro/nano CMOS technology) into the same high-sensitivity silicon substrate package, which compresses the die area of the radio system [87][88][89][90][91][92]. There is a tradeoff between antenna size and performance in terms of operating frequency, that is, the higher (lower) the frequency, the smaller (larger) the size can be.…”
Section: Discussionmentioning
confidence: 99%
“…Amiri et al presents a highly sensitive temperature sensor based on Si-oxynitride waveguide micro-ring resonator using broad-band input spectrum with a diameters of 1.27 mm and investigated the increase of Q factor in range of 15000-to-22000 w.r.t temperature, so as to function at different and longer wavelength-band [164]. Okabe et al has proposed a Si-based antenna by using a LC resonator, measures the resonant frequency of fabricated antenna to be 465 MHz with a gain of -35.75 dBi due to its smaller size [165]. Zhao et al presented a MEMS sensing chip with a micro-cantilever to monitor different gas pressures, under resonance frequency shift conditions.…”
Section: Recent Progress On Si-mems Resonant Sensorsmentioning
confidence: 99%
“…A millimeter-wave antenna on silicon is designed, which enables complex, low cost systems for high rate communications and sensing applications, and multiple components, such as impulse generator circuit, transmitter circuit and loop antenna, are also designed on silicon [22,23]. An on-chip antenna on silicon using LC resonator is designed [24][25][26] which contains a stacked capacitor and a spiral inductor. A triple-notch UWB antenna with multiple wireless applications is fabricated [27] which covers measured bandwidth from 2.49 GHz-19.41 GHz.…”
Section: Introductionmentioning
confidence: 99%