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This groundbreaking book provides you with a comprehensive understanding of FBAR (thin-film bulk acoustic wave resonator), MEMS (microelectomechanical system), and NEMS (nanoelectromechanical system) resonators. For the first time anywhere, you find extensive coverage of these devices at both the technology and application levels. This practical reference offers you guidance in design, fabrication, and characterization of FBARs, MEMS and NEBS. It discusses the integration of these devices with standard CMOS (complementary-metal-oxide-semiconductor) technologies, and their application to sensin.
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This new book primarily addresses the needs of practicing RF and microwave engineers engaged with the design of distributed filters for telecommunication and sensing applications, with particular emphasis on the space sector. This is a contemporary and comprehensive approach to the design of microwave filters with helical resonators. The very detailed step-by-step approach used throughout the book allows you to quickly familiarize with the basic concepts of microwave filter design and confidently engage with the design of helical resonator filters. In particular, several examples that present the design of filters for a wide frequency and applications range would provide a very useful tool at hand for the filter designer. Presenting you with cutting-edge design guidance, this is a complete reference for helical filter design.
Microwave filters --- Electric filters --- Electric resonators --- Artificial satellites in telecommunication --- Communication satellites --- Communications-relay satellites --- Communications satellites --- Global satellite communications systems --- Satellite communication systems --- Telecommunication satellites --- Telecommunications satellites --- Telstar satellites --- Telecommunication --- Resonators, Electric --- Electric machinery --- Microwave devices --- Wave guides --- Design and construction. --- Equipment and supplies.
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This book discusses the analysis, circuit modeling, and applications of transmission lines loaded with electrically small resonators (mostly resonators inspired by metamaterials), focusing on the study of the symmetry-related electromagnetic properties of these loaded lines. It shows that the stopband functionality (resonance) that these lines exhibit can be controlled by the relative orientation between the line and the resonator, which determines their mutual coupling. Such resonance controllability, closely related to symmetry, is essential for the design of several microwave components, such as common-mode suppressed differential lines, novel microwave sensors based on symmetry disruption, and spectral signature radio-frequency barcodes. Other interesting aspects, such as stopband bandwidth enhancement (due to inter-resonator coupling, and related to complex modes) and magnetoelectric coupling between the transmission lines and split-ring resonators, are also included in the book. .
Engineering. --- Microwaves. --- Optical engineering. --- Electrical engineering. --- Optical materials. --- Electronic materials. --- Microwaves, RF and Optical Engineering. --- Optical and Electronic Materials. --- Communications Engineering, Networks. --- Microwave transmission lines. --- Electric resonators. --- Resonators, Electric --- Transmission lines, Microwave --- Electric machinery --- Electric lines --- Telecommunication lines --- Telecommunication. --- Electric communication --- Mass communication --- Telecom --- Telecommunication industry --- Telecommunications --- Communication --- Information theory --- Telecommuting --- Optics --- Materials --- Hertzian waves --- Electric waves --- Electromagnetic waves --- Geomagnetic micropulsations --- Radio waves --- Shortwave radio --- Electric engineering --- Engineering --- Electronic materials --- Mechanical engineering
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Multilayer Integrated Film Bulk Acoustic Resonators mainly introduces the theory, design, fabrication technology and application of a recently developed new type of device, multilayer integrated film bulk acoustic resonators, at the micro and nano scale involving microelectronic devices, integrated circuits, optical devices, sensors and actuators, acoustic resonators, micro-nano manufacturing, multilayer integration, device theory and design principles, etc. These devices can work at very high frequencies by using the newly developed theory, design, and fabrication technology of nano and micro devices. Readers in fields of IC, electronic devices, sensors, materials, and films etc. will benefit from this book by learning the detailed fundamentals and potential applications of these advanced devices. Prof. Yafei Zhang is the director of the Ministry of Education’s Key Laboratory for Thin Films and Microfabrication Technology, PRC; Dr. Da Chen was a PhD student in Prof. Yafei Zhang’s research group.
Microelectromechanical systems -- Materials -- Congresses. --- Nanostructured materials -- Congresses. --- Radio resonators --- Engineering & Applied Sciences --- Electrical & Computer Engineering --- Technology - General --- Electrical Engineering --- Radio frequency integrated circuits --- Thin films, Multilayered. --- Design and construction. --- Langmuir-Blodgett films --- Multilayered thin films --- RFICs (Integrated circuits) --- Radio --- Resonators, Radio --- Resonators --- Engineering. --- Solid state physics. --- Nanotechnology. --- Materials --- Thin films. --- Nanotechnology and Microengineering. --- Surfaces and Interfaces, Thin Films. --- Solid State Physics. --- Surfaces. --- Integrated circuits --- Radio circuits --- Electric resonators --- Surfaces (Physics). --- Physics --- Surface chemistry --- Surfaces (Technology) --- Construction --- Industrial arts --- Technology --- Materials—Surfaces. --- Solids --- Films, Thin --- Solid film --- Solid state electronics --- Coatings --- Thick films --- Molecular technology --- Nanoscale technology --- High technology
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Chemically and biologically functionalized piezoelectric sensors are attractive alternatives to surface-sensitive transducers due to their surpassing versatility. The fourth volume of the Springer Series on Chemical Sensors and Biosensors includes a comprehensive theoretical treatment and current state-of-the art applications of the quartz crystal microbalance (QCM). Interface circuits and the study of viscoelasticity and micromechanics as well as surface roughness with the QCM are discussed. The broad field of analytical applications of piezoelectric sensors is covered, which ranges from nucleic acid detection, immunosensors, protein-membrane interactions and monitoring cells by imprinted polymers to the viscoelastic response of living mammalian cells on QCM-resonators. Sophisticated derivatives of the classical QCM, such as rupture event scanning, the use of extraordinary high frequency crystals, and electrochemical QCM, clearly reveal the advantages of combining multiple techniques to realize new detection schemes on the basis of piezoelectric resonators.
Piezoelectric devices. --- Quartz crystal microbalances. --- Electrochemical sensors. --- Piezoelectric quartz crystal microbalances --- Microbalances --- Piezoelectric devices --- Quartz crystals --- Dielectric devices --- Ferroelectric devices --- Electrochemical detectors --- Chemical detectors --- Analytical biochemistry. --- Medical laboratories. --- Chemical engineering. --- Biochemistry. --- Biomedical engineering. --- Analytical Chemistry. --- Laboratory Medicine. --- Industrial Chemistry/Chemical Engineering. --- Medical Biochemistry. --- Optics, Lasers, Photonics, Optical Devices. --- Biomedical Engineering and Bioengineering. --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Chemistry --- Medical sciences --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Chemistry, Technical --- Metallurgy --- Diagnosis, Laboratory --- Health facilities --- Laboratories --- Analytic biochemistry --- Biochemistry --- Chemistry, Analytic --- Composition --- Bioanalytic chemistry --- Bioanalytical chemistry --- Analytical chemistry --- Analytical chemistry. --- Laboratory medicine. --- Medical biochemistry. --- Lasers. --- Photonics. --- New optics --- Optics --- Light amplification by stimulated emission of radiation --- Masers, Optical --- Optical masers --- Light amplifiers --- Light sources --- Optoelectronic devices --- Nonlinear optics --- Optical parametric oscillators --- Medical biochemistry --- Pathobiochemistry --- Pathological biochemistry --- Pathology --- Clinical medicine --- Clinical pathology --- Diagnostic laboratory tests --- Laboratory diagnosis --- Laboratory medicine --- Medical laboratory diagnosis --- Diagnosis --- Analysis, Chemical --- Analytic chemistry --- Chemical analysis --- Quartz crystal microbalances --- Piezoelectric polymer biosensors --- Electric resonators --- Chemistry, Technical. --- Clinical biochemistry. --- Biomedical Research. --- Industrial Chemistry. --- Laser. --- Research. --- Health Workforce --- Chemical technology --- Technical chemistry --- Technology --- Chemical engineering --- Biological research --- Biomedical research
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