RF circuit design [[electronic resource] /] / Chris Bowick |
Autore | Bowick Chris |
Edizione | [2nd ed.] |
Pubbl/distr/stampa | Amsterdam ; ; London, : Newnes, 2008 |
Descrizione fisica | 1 online resource (256 p.) |
Disciplina | 621.38412 |
Soggetto topico |
Radio circuits - Design and construction
Radio frequency |
Soggetto genere / forma | Electronic books. |
ISBN |
1-281-06011-9
9786611060114 0-08-055342-7 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
FRONT COVER; RF CIRCUIT DESIGN; COPYRIGHT PAGE; CONTENTS; PREFACE; ACKNOWLEDGMENTS; CHAPTER 1 Components and Systems; Wire; Resistors; Capacitors; Inductors; Toroids; Toroidal Inductor Design; Practical Winding Hints; CHAPTER 2 Resonant Circuits; Some Definitions; Resonance (Lossless Components); Loaded Q; Insertion Loss; Impedance Transformation; Coupling of Resonant Circuits; Summary; CHAPTER 3 Filter Design; Background; Modern Filter Design; Normalization and the Low-Pass Prototype; Filter Types; Frequency and Impedance Scaling; High-Pass Filter Design; The Dual Network
Bandpass Filter DesignSummary of the Bandpass Filter Design Procedure; Band-Rejection Filter Design; The Effects of Finite Q; CHAPTER 4 Impedance Matching; Background; The L Network; Dealing With Complex Loads; Three-Element Matching; Low-Q or Wideband Matching Networks; The Smith Chart; Impedance Matching on the Smith Chart; Software Design Tools; Summary; CHAPTER 5 The Transistor at Radio Frequencies; RF Transistor Materials; The Transistor Equivalent Circuit; Y Parameters; S Parameters; Understanding RF Transistor Data Sheets; Summary; CHAPTER 6 Small-Signal RF Amplifier Design Some DefinitionsTransistor Biasing; Design Using Y Parameters; Design Using S Parameters; CHAPTER 7 RF (Large Signal) Power Amplifiers; RF Power Transistor Characteristics; Transistor Biasing; RF Semiconductor Devices; Power Amplifier Design; Matching to Coaxial Feedlines; Automatic Shutdown Circuitry; Broadband Transformers; Practical Winding Hints; Summary; CHAPTER 8 RF Front-End Design; Higher Levels of Integration; Basic Receiver Architectures; ADC'S Effect on Front-End Design; Software Defined Radios; Case Study-Modern Communication Receiver; CHAPTER 9 RF Design Tools; Design Tool Basics Design LanguagesRFIC Design Flow; RFIC Design Flow Example; Simulation Example 1; Simulation Example 2; Modeling; PCB Design; Packaging; Case Study; Summary; APPENDIX A; APPENDIX B; BIBLIOGRAPHY; INDEX; A; B; C; D; E; F; G; H; I; K; L; M; N; O; P; Q; R; S; T; U; V; W; Y |
Record Nr. | UNINA-9910458633503321 |
Bowick Chris | ||
Amsterdam ; ; London, : Newnes, 2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
RF circuit design [[electronic resource] /] / Chris Bowick |
Autore | Bowick Chris |
Edizione | [2nd ed.] |
Pubbl/distr/stampa | Amsterdam ; ; London, : Newnes, 2008 |
Descrizione fisica | 1 online resource (256 p.) |
Disciplina | 621.38412 |
Altri autori (Persone) |
BlylerJohn
AjluniCheryl J |
Soggetto topico |
Radio circuits - Design and construction
Radio frequency |
ISBN |
1-281-06011-9
9786611060114 0-08-055342-7 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
FRONT COVER; RF CIRCUIT DESIGN; COPYRIGHT PAGE; CONTENTS; PREFACE; ACKNOWLEDGMENTS; CHAPTER 1 Components and Systems; Wire; Resistors; Capacitors; Inductors; Toroids; Toroidal Inductor Design; Practical Winding Hints; CHAPTER 2 Resonant Circuits; Some Definitions; Resonance (Lossless Components); Loaded Q; Insertion Loss; Impedance Transformation; Coupling of Resonant Circuits; Summary; CHAPTER 3 Filter Design; Background; Modern Filter Design; Normalization and the Low-Pass Prototype; Filter Types; Frequency and Impedance Scaling; High-Pass Filter Design; The Dual Network
Bandpass Filter DesignSummary of the Bandpass Filter Design Procedure; Band-Rejection Filter Design; The Effects of Finite Q; CHAPTER 4 Impedance Matching; Background; The L Network; Dealing With Complex Loads; Three-Element Matching; Low-Q or Wideband Matching Networks; The Smith Chart; Impedance Matching on the Smith Chart; Software Design Tools; Summary; CHAPTER 5 The Transistor at Radio Frequencies; RF Transistor Materials; The Transistor Equivalent Circuit; Y Parameters; S Parameters; Understanding RF Transistor Data Sheets; Summary; CHAPTER 6 Small-Signal RF Amplifier Design Some DefinitionsTransistor Biasing; Design Using Y Parameters; Design Using S Parameters; CHAPTER 7 RF (Large Signal) Power Amplifiers; RF Power Transistor Characteristics; Transistor Biasing; RF Semiconductor Devices; Power Amplifier Design; Matching to Coaxial Feedlines; Automatic Shutdown Circuitry; Broadband Transformers; Practical Winding Hints; Summary; CHAPTER 8 RF Front-End Design; Higher Levels of Integration; Basic Receiver Architectures; ADC'S Effect on Front-End Design; Software Defined Radios; Case Study-Modern Communication Receiver; CHAPTER 9 RF Design Tools; Design Tool Basics Design LanguagesRFIC Design Flow; RFIC Design Flow Example; Simulation Example 1; Simulation Example 2; Modeling; PCB Design; Packaging; Case Study; Summary; APPENDIX A; APPENDIX B; BIBLIOGRAPHY; INDEX; A; B; C; D; E; F; G; H; I; K; L; M; N; O; P; Q; R; S; T; U; V; W; Y |
Record Nr. | UNINA-9910784741703321 |
Bowick Chris | ||
Amsterdam ; ; London, : Newnes, 2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
RF circuit design / / Chris Bowick |
Autore | Bowick Chris |
Edizione | [2nd ed.] |
Pubbl/distr/stampa | Amsterdam ; ; London, : Newnes, 2008 |
Descrizione fisica | 1 online resource (256 p.) |
Disciplina | 621.38412 |
Soggetto topico |
Radio circuits - Design and construction
Radio frequency |
ISBN |
9786611060114
9781281060112 1281060119 9780080553429 0080553427 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
FRONT COVER; RF CIRCUIT DESIGN; COPYRIGHT PAGE; CONTENTS; PREFACE; ACKNOWLEDGMENTS; CHAPTER 1 Components and Systems; Wire; Resistors; Capacitors; Inductors; Toroids; Toroidal Inductor Design; Practical Winding Hints; CHAPTER 2 Resonant Circuits; Some Definitions; Resonance (Lossless Components); Loaded Q; Insertion Loss; Impedance Transformation; Coupling of Resonant Circuits; Summary; CHAPTER 3 Filter Design; Background; Modern Filter Design; Normalization and the Low-Pass Prototype; Filter Types; Frequency and Impedance Scaling; High-Pass Filter Design; The Dual Network
Bandpass Filter DesignSummary of the Bandpass Filter Design Procedure; Band-Rejection Filter Design; The Effects of Finite Q; CHAPTER 4 Impedance Matching; Background; The L Network; Dealing With Complex Loads; Three-Element Matching; Low-Q or Wideband Matching Networks; The Smith Chart; Impedance Matching on the Smith Chart; Software Design Tools; Summary; CHAPTER 5 The Transistor at Radio Frequencies; RF Transistor Materials; The Transistor Equivalent Circuit; Y Parameters; S Parameters; Understanding RF Transistor Data Sheets; Summary; CHAPTER 6 Small-Signal RF Amplifier Design Some DefinitionsTransistor Biasing; Design Using Y Parameters; Design Using S Parameters; CHAPTER 7 RF (Large Signal) Power Amplifiers; RF Power Transistor Characteristics; Transistor Biasing; RF Semiconductor Devices; Power Amplifier Design; Matching to Coaxial Feedlines; Automatic Shutdown Circuitry; Broadband Transformers; Practical Winding Hints; Summary; CHAPTER 8 RF Front-End Design; Higher Levels of Integration; Basic Receiver Architectures; ADC'S Effect on Front-End Design; Software Defined Radios; Case Study-Modern Communication Receiver; CHAPTER 9 RF Design Tools; Design Tool Basics Design LanguagesRFIC Design Flow; RFIC Design Flow Example; Simulation Example 1; Simulation Example 2; Modeling; PCB Design; Packaging; Case Study; Summary; APPENDIX A; APPENDIX B; BIBLIOGRAPHY; INDEX; A; B; C; D; E; F; G; H; I; K; L; M; N; O; P; Q; R; S; T; U; V; W; Y |
Altri titoli varianti | Radio frequency circuit design |
Record Nr. | UNINA-9910808704003321 |
Bowick Chris | ||
Amsterdam ; ; London, : Newnes, 2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|