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RF front-end of a receiver for a 3 Tesla Magnetic Resonance Imager

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dc.contributor Graduate Program in Electrical and Electronic Engineering.
dc.contributor.advisor Yalçınkaya, Arda Deniz.
dc.contributor.author Kalafat Kızılkaya, Işıl.
dc.date.accessioned 2023-03-16T10:17:45Z
dc.date.available 2023-03-16T10:17:45Z
dc.date.issued 2011.
dc.identifier.other EE 2011 K35
dc.identifier.uri http://digitalarchive.boun.edu.tr/handle/123456789/12797
dc.description.abstract In this study, a front-end circuitry is designed for a 3 Tesla Magnetic Resonance Imager Receiver with UMC 0.18 m technology. Folded cascode topology is seemed to be the optimum design for our design speci cations which are 1.2 V supply voltage, <2 mW power consumption and <1 dB NF. For the designed fully di erential folded cascode low-noise ampli ers (FDFC LNAs), layouts are drawn and the layout of the FDFC LNA with NMOS input pair is sent to fabrication. For FDFC LNA with NMOS input pair; 54 dB voltage gain, 34 dB power gain is obtained. A noise gure of 0.4 dB in schematic simulations, 0.7 dB in post-layout simulations is measured. For FDFC LNA with PMOS input pair; 57.5 dB voltage gain, 36.5 dB power gain is obtained. A noise gure of 0.5 dB in schematic simulations, 0.8 dB in post-layout simulations is measured. Both LNAs have power consumption of 1.7 mW. During this study, LNA topologies are observed and compared. Detailed analysis of circuits is done and simulated results are observed to be matching with the mathematical expressions around 93%. Consequently; design of an LNA with low-voltage and low-power requirements heavily depends on the overall system, which means there is not an optimum design way satisfying all of the speci cations. Designer should chose one of the best circuit topology which meets most of the application demands, that is folded cascode topology for our case.
dc.format.extent 30cm.
dc.publisher Thesis (M.S.) - Bogazici University. Institute for Graduate Studies in Science and Engineering, 2011.
dc.relation Includes appendices.
dc.relation Includes appendices.
dc.subject.lcsh Magnetic resonance imaging.
dc.subject.lcsh Magnetic resonance imaging -- Safety measures.
dc.title RF front-end of a receiver for a 3 Tesla Magnetic Resonance Imager
dc.format.pages xvii, 85 leaves ;


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