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@Article{MagriAgLeMoCaSo:2014:SiLoPh,
               author = "Magri, Vanessa P. R. and Aguiar, Odylio Denys de and Leme, Claudia 
                         B. M. P. and Mosso, Marbey M. and Carvalho, Juliana B. and Souza, 
                         Jorge A. M.",
          affiliation = "Univ Fed Fluminense, Escola Engn TET, Niteroi, RJ, Brazil. and 
                         {Instituto Nacional de Pesquisas Espaciais (INPE)} and Pontificia 
                         Univ Catolica Rio de Janeiro, CETUC, Ctr Estudos Telecomunicacoes, 
                         BR-22453900 Rio de Janeiro, Brazil. and Pontificia Univ Catolica 
                         Rio de Janeiro, CETUC, Ctr Estudos Telecomunicacoes, BR-22453900 
                         Rio de Janeiro, Brazil. and Pontificia Univ Catolica Rio de 
                         Janeiro, CETUC, Ctr Estudos Telecomunicacoes, BR-22453900 Rio de 
                         Janeiro, Brazil. and Pontificia Univ Catolica Rio de Janeiro, 
                         CETUC, Ctr Estudos Telecomunicacoes, BR-22453900 Rio de Janeiro, 
                         Brazil.",
                title = "Single loop phase noise measurement of microwave oscillators",
              journal = "Microwave and Optical Technology Letters",
                 year = "2014",
               volume = "56",
               number = "10",
                pages = "2304--2310",
                month = "Oct.",
             keywords = "feedback oscillators, ultralow phase noise, phase noise 
                         characterization, phase detectors techniques, injection locking.",
             abstract = "This work describes a simplified procedure to measure ultralow 
                         phase-noise in microwave oscillators using the delay properties of 
                         high quality factor cavities. Measurement procedures are achieved 
                         using only one microwave source and two signals extracted from 
                         this feedback loop. Phase noise performance better than -130 
                         dBc/Hz can be achieved through the proposed procedure.",
                  doi = "10.1002/mop.28577",
                  url = "http://dx.doi.org/10.1002/mop.28577",
                 issn = "0895-2477",
                label = "isi 2014-11 MagriAgLeMoFuCaSo:2014:SILOPH",
             language = "en",
           targetfile = "ArtigoMOTL_18Fev2014.pdf",
        urlaccessdate = "19 abr. 2024"
}


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