LEADER 00930nam0 22002291i 450 001 UON00220845 005 20231205103413.993 100 $a20030730d1948 |0itac50 ba 101 $acze 102 $aCZ 105 $a|||| ||||| 200 1 $aKapitoly z Ceské poetiky$fJan Mukarovsky 210 $aPraha$cNakladatelství Svoboda$d1948. 3 v. ; 20 cm. 1: Obecné veci básnictví. 2: K vyvoji ceske poesie a prozy. 3: Máchovske studie. 606 $aPOESIA CECA$3UONC047013$2FI 676 $a891.86$cLetteratura ceca$v21 700 1$aMUKAROVSKY$bJan$3UONV129163$0123054 801 $aIT$bSOL$c20240220$gRICA 899 $aSIBA - SISTEMA BIBLIOTECARIO DI ATENEO$2UONSI 912 $aUON00220845 950 $aSIBA - SISTEMA BIBLIOTECARIO DI ATENEO$dSI CECO C 0006 $eSI SL 3870 5 0006 996 $aKapitoly z Ceské poetiky$91267506 997 $aUNIOR LEADER 05372nam 2200673 450 001 9910814171003321 005 20230125184701.0 010 $a1-60807-200-2 035 $a(CKB)2670000000341457 035 $a(EBL)1142890 035 $a(OCoLC)830162047 035 $a(SSID)ssj0000833838 035 $a(PQKBManifestationID)12409444 035 $a(PQKBTitleCode)TC0000833838 035 $a(PQKBWorkID)10936164 035 $a(PQKB)11703624 035 $a(Au-PeEL)EBL1142890 035 $a(CaPaEBR)ebr11069369 035 $a(CaBNVSL)mat09100614 035 $a(IEEE)9100614 035 $a(MiAaPQ)EBC1142890 035 $a(EXLCZ)992670000000341457 100 $a20200730d2011 uy 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aPassive RF Component Technology $eMaterials, Techniques, and Applications 210 1$aNorwood :$cArtech House,$d2012. 210 2$a[Piscataqay, New Jersey] :$cIEEE Xplore,$d[2011] 215 $a1 online resource (305 p.) 225 1 $aArtech House microwave library 300 $aDescription based upon print version of record. 311 $a1-60807-199-5 320 $aIncludes bibliographical references and index. 327 $aPassive RF Component Technology Materials, Techniques, and Applications; List of Contributors; Contents; Chapter 1 Introduction; Chapter 2 Overview of RF Passives and Enabling Materials; 2.1 Passive Filters; 2.2 Combiners, Dividers, Hybrids, and Couplers; 2.3 Inductors, Transformers, and Baluns; 2.4 Antennas; 2.5 Summary; References; Chapter 3 Novel Flexible Material Liquid Crystal Polymer (LCP) Based Flexible Passives; 3.1 Introduction; 3.2 LCP Properties; 3.3 Multilayer LCP Process Development; 3.4 Design and Fabrication of LCP-based Tunable RF Passives; 3.4.1 Filters. 327 $a3.4.2 Monolithically Integrated RF MEMS3.4.3 Phase Shifters; 3.4.4 Antennas; 3.4.5 Antenna Arrays; 3.5 LCP for 3D Integration and Packaging; 3.6 Summary; References; Chapter 4 Ferroelectric-based Tunable RF Capacitor; 4.1 Introduction; 4.2 BST Materials for RF Capacitors; 4.2.1 Structure and Properties; 4.2.2 Thin-film Tunable Capacitors; 4.3 Ferroelectric Capacitor with Low Tuning Voltage and High Linearity; 4.3.1 Architecture for Reduced Intermodulation Distortion in Ferroelectric RF Tunable Capacitors; 4.3.2 Analysis of the Capacitor with Low Tuning Voltage and High Linearity. 327 $a4.3.3 Device Implementation4.3.4 Characterization; 4.4 Low Conductor Loss Capacitor; 4.4.1 Low-loss Microelectrodes Fabricated Using Reverse-side Exposure; 4.4.2 Characterization of Low Conductor Loss Capacitors; 4.5 Embedded Ferroelectric Capacitor; 4.5.1 Multi-interdigitated BST Gap Capacitor; 4.6 Summary; 4.7 Future Prospects; References; Chapter 5 High Aspect Ratio RF Passives Enabled by Smart RF Materials and Polymer-core Conductor Micromachining Technologies; 5.1 Introduction; 5.1.1 Importance of the High-performance Passives with High-quality Factors. 327 $a5.1.2 Existing Approaches to Improve Performances of Millimeter Passives5.2 Properties of SU-8 Polymer; 5.3 The Introduction of Polymer-core Conductor Micromachining Technology; 5.3.1 Fabrication Flow; 5.3.2 Advantages of the Polymer-core Conductor Technology; 5.4 High-Q RF Inductors by This Approach; 5.5 High-performance Millimeter-wave Antennas Using the Polymer-core Conductor Approach; 5.5.1 A Millimeter-wave Monopole Antenna; 5.5.2 An Elevated Patch Antenna; 5.5.3 A Surface Micromachined Horn Antenna Using a Polymer-core Conductor. 327 $a5.6 High-aspect-ratio Micromachined Filters, Duplexer, and Coupler5.6.1 Micromachined Cavity Resonator; 5.6.2 SU-8-based Cavity Filters for 60-GHz Applications; 5.6.3 SU-8-based Surface Micromachined Cavity Duplexer; 5.6.4 SU-8-based Surface Micromachined Microstrip Edge Coupler; 5.7 Summary; References; Chapter 6 CNT-based Passive Circuits and Detectable Components; 6.1 Introduction; 6.2 CNT-based Transmission Line and Interconnect; 6.2.1 CNT-based Transmission Line; 6.2.2 CNT-based Interconnects; 6.3 CNT-based Flexible and Pattern-agile Antennas; 6.3.1 CNT-based Flexible Antenna. 330 $aFocusing on novel materials and techniques, this pioneering volume provides you with a solid understanding of the design and fabrication of smart RF passive components. You find comprehensive details on LCP, metal materials, ferrite materials, nano materials, high aspect ratio enabled materials, green materials for RFID, and silicon micromachining techniques. Moreover, this practical book offers expert guidance on how to apply these materials and techniques to design a wide range of cutting-edge RF passive components, from MEMS switch based tunable passives and 3D passives, to metamaterial-bas. 410 0$aArtech House microwave library. 606 $aPassive components 606 $aRadio circuits 606 $aWireless communication systems 615 0$aPassive components. 615 0$aRadio circuits. 615 0$aWireless communication systems. 676 $a621.3815 700 $aWang$b Guoan$0636278 701 $aPan$b Bo$01681080 801 0$bCaBNVSL 801 1$bCaBNVSL 801 2$bCaBNVSL 906 $aBOOK 912 $a9910814171003321 996 $aPassive RF Component Technology$94050278 997 $aUNINA