Foreword.- Contributing Authors.- Contents.- Symbols and Abbreviations.- 1. Introduction.- 2. Modeling and analysis of telecom frontends: basic concepts.- 3. A framework for frequency-domain analysis of linear periodically timevarying Systems.- 4. Applications of LPTV system analysis using harmonic transfer matrices.- 5. Modeling oscillator dynamic behavior.- 6. Conclusions.- A. HTM norms and the comparison of HTMs.- B. The Sherman-Morisson-Woodbury formula.- C. HTM elements of the linear downconversion mixer.- D. Oscillator dynamics: analysis of the deviation from the attracting manifold.- E. Analysis of a harmonic oscillator.- Bibliography.
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Taschenbuch. Zustand: Neu. Systematic Modeling and Analysis of Telecom Frontends and their Building Blocks | Piet Vanassche (u. a.) | Taschenbuch | xx | Englisch | 2011 | Springer | EAN 9781441952653 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu. Artikel-Nr. 107251769
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Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - nalog circuits are fascinating artifacts. They manipulate signals whose informa- Ationcontentisrichcomparedtodigitalsignalsthatcarryminimalamountofinf- mation;theyaredelicateinthatanyperturbationduetoparasiticelements,todelays,to interactionswithotherelementsandwiththeenvironmentmaycauseasigni cantloss ofinformation. Thedif cultyindealingwiththeseartifactsistoprotectthemfromall possibleattacks, evenminorones, fromthephysicalworld. Theironyisthattheyare oftenusedtofunnelinformationfromandtothephysicalworldtoandfromtheabstr- tionofthedigitalworldandforthisfunction, theyareirreplaceable. Nowonderthen that analog designers form a club of extraordinary gentlemen where art (or magic ) ratherthanscienceisthesharedtrade. Theyaredif culttotrainsinceexperienceand intuitionarethetraitsthat characterize them. Andthey have dif cultiesinexplaining what is the process they use to reach satisfactory results. Tools used for design (s- ulation) are mainly replacing the test benches of an experimental lab. However, the growing complexity of the integrated systems being designed today together with the increasing fragility of analog components brought about by shrinking geometries and reducedpowerconsumptionisposingseverechallengestotraditionalanalogdesigners to produce satisfactory results in a short time. At the same time, the need for expe- enced analog designers has increased constantly since almost all designs, because of integration,docontainanalogcomponents. Thissituationhascreatedastronginterest in developing design methodologies and supporting tools that are based on rigorous, mathematically literate, approaches. Doing so will make it possible to leverage the expertiseofseasonedanalogdesignersandtotrainnewgenerationsfasterandbet ter. Inthepast, severalattemptshavebeenmadeinacademia andindustrytocreatethese methodologies and to extend the set of tools available. They have had questionable acceptance in the analog design community. However, recently, a urry of start-ups andincreasedinvestmentbyEDAcompaniesinnoveltoolssignalasigni cantchange inmarketattentiontotheanalogdomain. Ipersonallybelievethattosubstantially- prove quality and design time, tools are simply insuf cient. A design methodology based on a hierarchy of abstraction layers, successive re nement between two ad- cent layers, and extensive veri cation at every layer is necessary. To do so, we need to build theories and models that have strong mathematical foundations. The analog design technology community is as strong as it has ever been. Artikel-Nr. 9781441952653
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