Amplificatori operazionali e circuiti integrati analogici : tecniche di progetto, applicazioni / Sergio Franco |
Autore | FRANCO, Sergio |
Pubbl/distr/stampa | Milano : U. Hoepli, copyr. 1992 |
Descrizione fisica | 716 p. ; 24 cm |
Disciplina | 621.381535 |
Collana | Biblioteca scientifica Hoepli |
Soggetto topico |
Amplificatori operazionali
Circuiti integrati |
ISBN | 88-203-1843-1 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | ita |
Record Nr. | UNISA-990000343900203316 |
FRANCO, Sergio
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Milano : U. Hoepli, copyr. 1992 | ||
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Lo trovi qui: Univ. di Salerno | ||
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Amplifiers and oscillators : optimization by simulation / / François de Dieuleveult |
Autore | Dieuleveult François de |
Pubbl/distr/stampa | London, UK : , : ISTE Press |
Descrizione fisica | 1 online resource (420 pages) |
Disciplina | 621.381535 |
Soggetto topico |
Transistor amplifiers
Oscillators, Transistor |
ISBN | 0-08-102341-3 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910583364603321 |
Dieuleveult François de
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London, UK : , : ISTE Press | ||
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Lo trovi qui: Univ. Federico II | ||
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Amplifiers in radio receivers : characteristics, operating principles, and efficiency / / Sergey Viktorovich Dvornikov [and three others] |
Autore | Dvornikov Sergey Viktorovich |
Pubbl/distr/stampa | Singapore : , : Springer, , [2022] |
Descrizione fisica | 1 online resource (259 pages) |
Disciplina | 621.381535 |
Collana | Springer aerospace technology |
Soggetto topico | Amplifiers, Radio frequency |
ISBN | 981-19-6215-4 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Intro -- Introduction -- Contents -- Abbreviations -- 1 Technical Characteristics and Structural Diagrams of Radio Receiving Devices -- 1.1 General Information About Radio Receiving Devices -- 1.2 Interference with Radio Reception -- 1.3 Main Characteristics of Radio Receivers -- 1.3.1 Receiver Specifications -- 1.3.2 Operational and Technical Characteristics of Receivers -- 1.4 Block Diagrams of Radio Receivers -- References -- 2 Noise Ratio in Receivers -- 2.1 General Information on Fluctuation Noise in Receivers -- 2.2 Sources of Noise in the Radio -- 2.2.1 Resistor Noise -- 2.2.2 Noise of Oscillatory Circuits -- 2.2.3 Receiving Antenna Noise -- 2.2.4 Noise of Active Elements of the Receiver -- 2.3 Noise Figure and Noise Temperature of a Linear Quadrupole -- 2.4 Noise Figure and Noise Temperature of a Multistage Circuit -- 2.5 Radio Sensitivity -- References -- 3 Schemical Basics of Input Circuits and Selective Amplifiers -- 3.1 Purpose and Basic Characteristics of Input Circuits and Selective Amplifiers -- 3.2 Classification and Diagrams of Input Circuits and Selective Amplifiers -- 3.2.1 Classification and Diagrams of Input Circuits of Various Ranges -- 3.2.2 Classification and Circuits of Selective Amplifiers -- 3.2.3 Lumped Selector Filters -- 3.3 Generalized Equivalent Circuit of the Selective Amplifier and the Input Circuit -- References -- 4 Selective Amplifiers. Principles of Optimizing Their Parameters -- 4.1 Gain and Amplifier Selectivity Characteristic -- 4.2 Optimization of the Amplifier Gain -- 4.2.1 Conditions for Obtaining the Maximum Gain of the Amplifier -- 4.2.2 Features of Obtaining the Maximum Gain for a Given Bandwidth -- 4.3 Noise Figure of a Resonant Amplifier With an Input Circuit -- 4.4 Influence of Internal Feedback on the Properties of the Resonant Amplifier.
4.4.1 Brief Information About the Feedback in the Amplifier Stage -- 4.4.2 Influence of the Internal Feedback of the Amplifier on Its Input Conductance -- 4.4.3 Stability Factor and Stable Amplifier Gain -- 4.4.4 Methods for Increasing the Stability of Selective Amplifiers -- References -- 5 Multistage Single-Circuit Selective Amplifiers -- 5.1 Multistage Resonant Amplifier -- 5.2 Broadband Selective Amplifiers -- 5.2.1 Amplifiers with Twos of Detuned Stages -- 5.2.2 Amplifiers with Triplets of Detuned Stages -- 5.2.3 Comparative Assessment of Various Single-Loop Amplifier Circuits -- 5.3 Characteristics of Transients in Linear Electoral Paths -- 5.4 Transients in Single-Loop Multistage Amplifiers -- 5.4.1 Resonant Amplifier -- 5.4.2 Amplifier with Pairs of Detuned Stages -- 5.4.3 Amplifier with Triplets of Detuned Stages -- References -- 6 Frequency Converters -- 6.1 General Information About Frequency Converters -- 6.2 Equivalent Circuit Parameters of the Frequency Converter -- 6.3 Transistor Frequency Converters -- 6.4 Diode Frequency Converters -- References -- 7 Low-Noise Amplifiers -- 7.1 Regenerative Amplifiers -- 7.1.1 General Information About Regenerative Amplifiers -- 7.1.2 Regenerative Amplifier Gain -- 7.1.3 Noise Characteristics of Regenerative Amplifiers -- 7.2 Paramagnetic Amplifiers and Tunnel Diode Amplifiers -- 7.3 Parametric Amplifiers -- 7.3.1 General Information About Parametric Amplifiers -- 7.3.2 Circuits and Design Features of Parametric Amplifiers -- 7.3.3 Gain of a Dual-Circuit Reflective Parametric Amplifier -- 7.3.4 Noise Temperature of a Two-Terminal Reflective Parametric Amplifier -- 7.4 Transistor Amplifiers -- 7.5 Comparative Evaluation of Low-Noise Amplifiers -- References -- 8 Radio Detectors -- 8.1 Principle of Operation and Main Characteristics of Amplitude Detectors. 8.2 Diode Detectors. Detecting Strong Signals -- 8.3 Transistor Detectors of Amplitude-Modulated Signals -- 8.4 Pulse Signal Detectors -- 8.4.1 Radio Pulse Diode Detectors -- 8.4.2 Peak Pulse Detectors -- 8.5 Amplitude Limiters -- 8.6 Operating Principle and Basic Characteristics of Frequency Detectors -- 8.7 Differential Frequency Detectors -- 8.8 Operating Principle and Basic Characteristics of Phase Detectors -- 8.9 Balance Phase Detector -- References -- 9 Radio Adjustments -- 9.1 Purpose and Types of Regulations -- 9.2 Main Structural Diagrams and Characteristics of Separate Elements of AFC Systems -- 9.3 Analysis of the Linear Operation of the Chap System -- 9.4 Operation of the Chap System at Large Distributions -- 9.5 Linear PLL Operation -- 9.6 PLL Operation at Large Distributions -- 9.7 General Information About AGC Systems -- 9.8 Structural Diagram of the AGC with Feedback and Characteristics of Its Separate Elements -- 9.9 Analysis of the AGC System with Feedback -- References -- 10 Digital Radio Devices -- 10.1 General Information on Digital Radio Receivers -- 10.2 Analog-Digital Signal Conversion -- 10.3 Digital Filters -- 10.4 Digital Frequency Synthesizers -- 10.5 Digital Demodulators -- 10.6 Digital Systems of Automatic Regulations in the DRRD -- References. |
Record Nr. | UNINA-9910624314003321 |
Dvornikov Sergey Viktorovich
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Singapore : , : Springer, , [2022] | ||
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Lo trovi qui: Univ. Federico II | ||
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Amplifiers in radio receivers : characteristics, operating principles, and efficiency / / Sergey Viktorovich Dvornikov [and three others] |
Autore | Dvornikov Sergey Viktorovich |
Pubbl/distr/stampa | Singapore : , : Springer, , [2022] |
Descrizione fisica | 1 online resource (259 pages) |
Disciplina | 621.381535 |
Collana | Springer aerospace technology |
Soggetto topico | Amplifiers, Radio frequency |
ISBN | 981-19-6215-4 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Intro -- Introduction -- Contents -- Abbreviations -- 1 Technical Characteristics and Structural Diagrams of Radio Receiving Devices -- 1.1 General Information About Radio Receiving Devices -- 1.2 Interference with Radio Reception -- 1.3 Main Characteristics of Radio Receivers -- 1.3.1 Receiver Specifications -- 1.3.2 Operational and Technical Characteristics of Receivers -- 1.4 Block Diagrams of Radio Receivers -- References -- 2 Noise Ratio in Receivers -- 2.1 General Information on Fluctuation Noise in Receivers -- 2.2 Sources of Noise in the Radio -- 2.2.1 Resistor Noise -- 2.2.2 Noise of Oscillatory Circuits -- 2.2.3 Receiving Antenna Noise -- 2.2.4 Noise of Active Elements of the Receiver -- 2.3 Noise Figure and Noise Temperature of a Linear Quadrupole -- 2.4 Noise Figure and Noise Temperature of a Multistage Circuit -- 2.5 Radio Sensitivity -- References -- 3 Schemical Basics of Input Circuits and Selective Amplifiers -- 3.1 Purpose and Basic Characteristics of Input Circuits and Selective Amplifiers -- 3.2 Classification and Diagrams of Input Circuits and Selective Amplifiers -- 3.2.1 Classification and Diagrams of Input Circuits of Various Ranges -- 3.2.2 Classification and Circuits of Selective Amplifiers -- 3.2.3 Lumped Selector Filters -- 3.3 Generalized Equivalent Circuit of the Selective Amplifier and the Input Circuit -- References -- 4 Selective Amplifiers. Principles of Optimizing Their Parameters -- 4.1 Gain and Amplifier Selectivity Characteristic -- 4.2 Optimization of the Amplifier Gain -- 4.2.1 Conditions for Obtaining the Maximum Gain of the Amplifier -- 4.2.2 Features of Obtaining the Maximum Gain for a Given Bandwidth -- 4.3 Noise Figure of a Resonant Amplifier With an Input Circuit -- 4.4 Influence of Internal Feedback on the Properties of the Resonant Amplifier.
4.4.1 Brief Information About the Feedback in the Amplifier Stage -- 4.4.2 Influence of the Internal Feedback of the Amplifier on Its Input Conductance -- 4.4.3 Stability Factor and Stable Amplifier Gain -- 4.4.4 Methods for Increasing the Stability of Selective Amplifiers -- References -- 5 Multistage Single-Circuit Selective Amplifiers -- 5.1 Multistage Resonant Amplifier -- 5.2 Broadband Selective Amplifiers -- 5.2.1 Amplifiers with Twos of Detuned Stages -- 5.2.2 Amplifiers with Triplets of Detuned Stages -- 5.2.3 Comparative Assessment of Various Single-Loop Amplifier Circuits -- 5.3 Characteristics of Transients in Linear Electoral Paths -- 5.4 Transients in Single-Loop Multistage Amplifiers -- 5.4.1 Resonant Amplifier -- 5.4.2 Amplifier with Pairs of Detuned Stages -- 5.4.3 Amplifier with Triplets of Detuned Stages -- References -- 6 Frequency Converters -- 6.1 General Information About Frequency Converters -- 6.2 Equivalent Circuit Parameters of the Frequency Converter -- 6.3 Transistor Frequency Converters -- 6.4 Diode Frequency Converters -- References -- 7 Low-Noise Amplifiers -- 7.1 Regenerative Amplifiers -- 7.1.1 General Information About Regenerative Amplifiers -- 7.1.2 Regenerative Amplifier Gain -- 7.1.3 Noise Characteristics of Regenerative Amplifiers -- 7.2 Paramagnetic Amplifiers and Tunnel Diode Amplifiers -- 7.3 Parametric Amplifiers -- 7.3.1 General Information About Parametric Amplifiers -- 7.3.2 Circuits and Design Features of Parametric Amplifiers -- 7.3.3 Gain of a Dual-Circuit Reflective Parametric Amplifier -- 7.3.4 Noise Temperature of a Two-Terminal Reflective Parametric Amplifier -- 7.4 Transistor Amplifiers -- 7.5 Comparative Evaluation of Low-Noise Amplifiers -- References -- 8 Radio Detectors -- 8.1 Principle of Operation and Main Characteristics of Amplitude Detectors. 8.2 Diode Detectors. Detecting Strong Signals -- 8.3 Transistor Detectors of Amplitude-Modulated Signals -- 8.4 Pulse Signal Detectors -- 8.4.1 Radio Pulse Diode Detectors -- 8.4.2 Peak Pulse Detectors -- 8.5 Amplitude Limiters -- 8.6 Operating Principle and Basic Characteristics of Frequency Detectors -- 8.7 Differential Frequency Detectors -- 8.8 Operating Principle and Basic Characteristics of Phase Detectors -- 8.9 Balance Phase Detector -- References -- 9 Radio Adjustments -- 9.1 Purpose and Types of Regulations -- 9.2 Main Structural Diagrams and Characteristics of Separate Elements of AFC Systems -- 9.3 Analysis of the Linear Operation of the Chap System -- 9.4 Operation of the Chap System at Large Distributions -- 9.5 Linear PLL Operation -- 9.6 PLL Operation at Large Distributions -- 9.7 General Information About AGC Systems -- 9.8 Structural Diagram of the AGC with Feedback and Characteristics of Its Separate Elements -- 9.9 Analysis of the AGC System with Feedback -- References -- 10 Digital Radio Devices -- 10.1 General Information on Digital Radio Receivers -- 10.2 Analog-Digital Signal Conversion -- 10.3 Digital Filters -- 10.4 Digital Frequency Synthesizers -- 10.5 Digital Demodulators -- 10.6 Digital Systems of Automatic Regulations in the DRRD -- References. |
Record Nr. | UNISA-996499865003316 |
Dvornikov Sergey Viktorovich
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Singapore : , : Springer, , [2022] | ||
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Lo trovi qui: Univ. di Salerno | ||
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Balanced Phono-Amps [[electronic resource] ] : An Extension to the 'The Sound of Silence' Editions / / by Burkhard Vogel |
Autore | Vogel Burkhard |
Edizione | [2nd ed. 2019.] |
Pubbl/distr/stampa | Cham : , : Springer International Publishing : , : Imprint : Springer, , 2019 |
Descrizione fisica | 1 online resource (871 pages) |
Disciplina | 621.381535 |
Soggetto topico |
Acoustical engineering
Electronics Microelectronics Acoustics Signal processing Image processing Speech processing systems Engineering Acoustics Electronics and Microelectronics, Instrumentation Signal, Image and Speech Processing |
ISBN | 3-030-11229-2 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | The Complete Engine II – Overview -- Mathcad Worksheets Amp3 -- The Transformer and Op-Amp Driven Input Stage Amp1 -- The BJT and Op-Amp Driven Input Stage Amp2 -- Selection of Draft Designs of Other Input Stages -- Measurement Tools and Trimming -- Mathcad Worksheets of Measurement Tools -- Mathcad Worksheets of the MM Noise Reduction Method -- Mathcad Worksheets of DIF Amps. |
Record Nr. | UNINA-9910337634403321 |
Vogel Burkhard
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Cham : , : Springer International Publishing : , : Imprint : Springer, , 2019 | ||
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Lo trovi qui: Univ. Federico II | ||
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Behavioral modeling and linearization of RF power amplifiers / / John Wood |
Autore | Wood John (Principal research & development electronic engineer) |
Pubbl/distr/stampa | Boston : , : Artech House, , ©2014 |
Descrizione fisica | 1 online resource (379 p.) |
Disciplina | 621.381535 |
Collana | Artech House microwave library |
Soggetto topico | Amplifiers, Radio frequency |
Soggetto genere / forma | Electronic books. |
ISBN | 1-60807-121-9 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | Models, modeling, and simulation -- Linear systems and identification -- Modeling PA nonlinearities -- Memory effects -- Nonlinear dynamical models -- Digital pre-distortion -- Crest factor reduction of digital communication signals -- RF pre-distortion -- Frequency domain models. |
Record Nr. | UNINA-9910465191203321 |
Wood John (Principal research & development electronic engineer)
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Boston : , : Artech House, , ©2014 | ||
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Lo trovi qui: Univ. Federico II | ||
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Behavioral modeling and linearization of RF power amplifiers / / John Wood |
Autore | Wood John (Principal research & development electronic engineer) |
Pubbl/distr/stampa | Boston : , : Artech House, , ©2014 |
Descrizione fisica | 1 online resource (379 p.) |
Disciplina | 621.381535 |
Collana | Artech House microwave library |
Soggetto topico | Amplifiers, Radio frequency |
ISBN | 1-60807-121-9 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | Models, modeling, and simulation -- Linear systems and identification -- Modeling PA nonlinearities -- Memory effects -- Nonlinear dynamical models -- Digital pre-distortion -- Crest factor reduction of digital communication signals -- RF pre-distortion -- Frequency domain models. |
Record Nr. | UNINA-9910662045703321 |
Wood John (Principal research & development electronic engineer)
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Boston : , : Artech House, , ©2014 | ||
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Lo trovi qui: Univ. Federico II | ||
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Circuiti retroazionati e amplificatori operazionali / D. H. Horrocks |
Autore | HORROCKS, David H. |
Pubbl/distr/stampa | Bresso : Jackson libri, 1996 |
Descrizione fisica | V, 233 p. : ill. ; 24 cm |
Disciplina | 621.381535 |
Collana | Guide introduttive all'elettronica |
Soggetto topico | Amplificatori operazionali |
ISBN | 88-256-0969-8 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | ita |
Record Nr. | UNISA-990000054780203316 |
HORROCKS, David H.
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Bresso : Jackson libri, 1996 | ||
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Lo trovi qui: Univ. di Salerno | ||
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Current Feedback Operational Amplifiers and Their Applications [[electronic resource] /] / by Raj Senani, D. R. Bhaskar, A. K. Singh, V. K. Singh |
Autore | Senani Raj |
Edizione | [1st ed. 2013.] |
Pubbl/distr/stampa | New York, NY : , : Springer New York : , : Imprint : Springer, , 2013 |
Descrizione fisica | 1 online resource (262 p.) |
Disciplina |
621.381535
621.395 |
Collana | Analog Circuits and Signal Processing |
Soggetto topico |
Electronic circuits
Electronics Microelectronics Signal processing Image processing Speech processing systems Circuits and Systems Electronics and Microelectronics, Instrumentation Signal, Image and Speech Processing |
ISBN |
1-299-33697-3
1-4614-5188-4 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | CFOAs: merits, demerits, basic circuits and available varieties -- Simulation of inductors and other types of impedances using CFOAs -- Design of Filters using CFOAs -- Synthesis of Sinusoidal oscillators using CFOAs -- Miscellaneous Linear and Nonlinear applications of CFOAs -- Realization of other building blocks using CFOAs -- Advances in the design of Bipolar/CMOS CFOAs and future directions of research on CFOAs. |
Record Nr. | UNINA-9910437908403321 |
Senani Raj
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New York, NY : , : Springer New York : , : Imprint : Springer, , 2013 | ||
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Lo trovi qui: Univ. Federico II | ||
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Fundamentals of RF and microwave transistor amplifiers [[electronic resource] /] / Inder Bahl |
Autore | Bahl I. J |
Pubbl/distr/stampa | Oxford, : Wiley, 2009 |
Descrizione fisica | 1 online resource (697 p.) |
Disciplina |
621.3815/35
621.381535 |
Soggetto topico |
Amplifiers, Radio frequency
Microwave amplifiers Transistor amplifiers |
Soggetto genere / forma | Electronic books. |
ISBN |
1-282-36840-0
9786612368400 0-470-46234-5 0-470-46231-0 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Fundamentals of RF and Microwave Transistor Amplifiers; Contents in Brief; Contents; Foreword; Preface; 1. Introduction; 1.1. Transistor Amplifier; 1.2. Early History of Transistor Amplifiers; 1.3. Benefits of Transistor Amplifiers; 1.4. Transistors; 1.5. Design of Amplifiers; 1.6. Amplifier Manufacturing Technologies; 1.7. Applications of Amplifiers; 1.8. Amplifier Cost; 1.9. Current Trends; 1.10. Book Organization; References; 2. Linear Network Analysis; 2.1. Impedance Matrix; 2.2. Admittance Matrix; 2.3. ABCD Parameters; 2.4. S-Parameters; 2.4.1. S-Parameters for a One-Port Network
2.5. Relationships Between Various Two-Port ParametersReferences; Problems; 3. Amplifier Characteristics and Definitions; 3.1. Bandwidth; 3.2. Power Gain; 3.3. Input and Output VSWR; 3.4. Output Power; 3.5. Power Added Efficiency; 3.6. Intermodulation Distortion; 3.6.1. IP3; 3.6.2. ACPR; 3.6.3. EVM; 3.7. Harmonic Power; 3.8. Peak-to-Average Ratio; 3.9. Combiner Efficiency; 3.10. Noise Characterization; 3.10.1. Noise Figure; 3.10.2. Noise Temperature; 3.10.3. Noise Bandwidth; 3.10.4. Optimum Noise Match; 3.10.5. Constant Noise Figure and Gain Circles; 3.10.6. Simultaneous Input and Noise Match 3.11. Dynamic Range3.12. Multistage Amplifier Characteristics; 3.12.1. Multistage IP3; 3.12.2. Multistage PAE; 3.12.3. Multistage NF; 3.13. Gate and Drain Pushing Factors; 3.14. Amplifier Temperature Coefficient; 3.15. Mean Time to Failure; References; Problems; 4. Transistors; 4.1. Transistor Types; 4.2. Silicon Bipolar Transistor; 4.2.1. Figure of Merit; 4.2.2. High-Frequency Noise Performance of Silicon BJT; 4.2.3. Power Performance; 4.3. GaAs MESFET; 4.3.1. Small-Signal Equivalent Circuit; 4.3.2. Figure of Merit; 4.3.3. High-Frequency Noise Properties of MESFETs 4.4. Heterojunction Field Effect Transistor4.4.1. High-Frequency Noise Properties of HEMTs; 4.4.2. Indium Phosphide pHEMTs; 4.5. Heterojunction Bipolar Transistors; 4.5.1. High-Frequency Noise Properties of HBTs; 4.5.2. SiGe Heterojunction Bipolar Transistors; 4.6. MOSFET; References; Problems; 5. Transistor Models; 5.1. Transistor Model Types; 5.1.1. Physics/Electromagnetic Theory Based Models; 5.1.2. Analytical or Hybrid Models; 5.1.3. Measurement Based Models; 5.2. MESFET Models; 5.2.1. Linear Models; 5.2.2. Nonlinear Models; 5.3. pHEMT Models; 5.3.1. Linear Models; 5.3.2. Nonlinear Models 5.4. HBT Model5.5. MOSFET Models; 5.6. BJT Models; 5.7. Transistor Model Scaling; 5.8. Source-Pull and Load-Pull Data; 5.8.1. Theoretical Load-Pull Data; 5.8.2. Measured Power and PAE Source Pull and Load Pull; 5.8.3. Measured IP3 Source and Load Impedance; 5.8.4. Source and Load Impedance Scaling; 5.9. Temperature-Dependent Models; References; Problems; 6. Matching Network Components; 6.1. Impedance Matching Elements; 6.2. Transmission Line Matching Elements; 6.2.1. Microstrip; 6.2.2. Coplanar Lines; 6.3. Lumped Elements; 6.3.1. Capacitors; 6.3.2. Inductors; 6.3.3. Resistors 6.4. Bond Wire Inductors |
Record Nr. | UNINA-9910139979603321 |
Bahl I. J
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Oxford, : Wiley, 2009 | ||
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Lo trovi qui: Univ. Federico II | ||
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