RF circuit design: theory and applications
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Upper Saddle River , NJ [u.a.]
Pearson Education
2009
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Ausgabe: | 2nd ed., internat. ed. |
Schriftenreihe: | Pearson international edition
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 704 S. graph. Darst. |
ISBN: | 9780131355057 0131355058 |
Internformat
MARC
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245 | 1 | 0 | |a RF circuit design |b theory and applications |c Reinhold Ludwig ; Gene Bogdanov |
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264 | 1 | |a Upper Saddle River , NJ [u.a.] |b Pearson Education |c 2009 | |
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Datensatz im Suchindex
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adam_text | * CIRCUIT DESIGN: THEORY AND APPLICATIONS REINHOLD LUDWIG WORCESTER
POLYTECHNIC INSTITUTE GENE BOGDANOV WORCESTER POLYTECHNIC INSTITUTE
PEARSON PRENTICE HALL PEARSON EDUCATION INTERNATIONAL CONTENTS PREFACE
XIII CHAPTER 1. INTRODUCTION 1 1.1 IMPORTANCE OF RADIO FREQUENCY DESIGN
2 1.2 DIMENSIONS AND UNITS 6 1.3 FREQUENCY SPECTRUM 9 1.4 RF BEHAVIOR OF
PASSIVE COMPONENTS 10 1.4.1 RESISTORS AT HIGH FREQUENCY 16 1.4.2
CAPACITORS AT HIGH FREQUENCY 19 1.4.3 INDUCTORS AT HIGH FREQUENCY 22 1.5
CHIP COMPONENTS AND CIRCUIT BOARD CONSIDERATIONS 25 1.5.1 CHIP RESISTORS
25 1.5.2 CHIP CAPACITORS 27 1.5.3 SURFACE-MOUNTED INDUCTORS 28 1.6 RF
CIRCUIT MANUFACTURING PROCESSES 29 1.7 SUMMARY 32 CHAPTER 2.
TRANSMISSION LINE ANALYSIS 41 2.1 WHY TRANSMISSION LINE THEORY? 42 2.2
EXAMPLES OF TRANSMISSION LINES 45 2.2.1 TWO-WIRE LINES 45 2.2.2 COAXIAL
LINE 46 2.2.3 MICROSTRIP LINES 47 2.3 EQUIVALENT CIRCUIT REPRESENTATION
49 CONTENTS 2.4 THEORETICAL FOUNDATION 52 2.4.1 BASIC LAWS 52 2.5
CIRCUIT PARAMETERS FOR A PARALLEL-PLATE TRANSMISSION LINE 57 2.6 SUMMARY
OF DIFFERENT LINE CONFIGURATIONS 61 2.7 GENERAL TRANSMISSION LINE
EQUATION 62 2.7.1 KIRCHHOFF VOLTAGE AND CURRENT LAW REPRESENTATIONS 62
2.7.2 TRAVELING VOLTAGE AND CURRENT WAVES 66 2.7.3 CHARACTERISTIC
IMPEDANCE 67 2.7.4 LOSSLESS TRANSMISSION LINE MODEL 67 2.8 MICROSTRIP
TRANSMISSION LINES 68 2.9 TERMINATED LOSSLESS TRANSMISSION LINE 73 2.9.1
VOLTAGE REFLECTION COEFFICIENT 73 2.9.2 PROPAGATION CONSTANT AND PHASE
VELOCITY 74 2.9.3 STANDING WAVES 75 2.10 SPECIAL TERMINATION CONDITIONS
78 2.10.1 INPUT IMPEDANCE OF TERMINATED LOSSLESS LINE 78 2.10.2
SHORT-CIRCUIT TERMINATED TRANSMISSION LINE 79 2.10.3 OPEN-CIRCUITED
TRANSMISSION LINE 82 2.10.4 QUARTER-WAVE TRANSMISSION LINE 83 2.11
SOURCED AND LOADED TRANSMISSION LINE 87 2.11.1 PHASOR REPRESENTATION OF
SOURCE 87 2.11.2 POWER CONSIDERATIONS FOR A TRANSMISSION LINE 88 2.11.3
INPUT IMPEDANCE MATCHING 91 2.11.4 RETURN LOSS AND INSERTION LOSS 92
2.12 SUMMARY 95 CHAPTER 3. THE SMITH CHART 103 3.1 FROM REFLECTION
COEFFICIENT TO LOAD IMPEDANCE 104 3.1.1 REFLECTION COEFFICIENT IN PHASOR
FORM 104 3.1.2 NORMALIZED IMPEDANCE EQUATION 106 3.1.3 PARAMETRIC
REFLECTION COEFFICIENT EQUATION 108 3.1.4 GRAPHICAL REPRESENTATION 110
3.2 IMPEDANCE TRANSFORMATION 112 3.2.1 IMPEDANCE TRANSFORMATION FOR
GENERAL LOAD 112 3.2.2 STANDING WAVE RATIO 113 3.2.3 SPECIAL
TRANSFORMATION CONDITIONS 116 3.2.4 COMPUTER SIMULATIONS 120 CONTENTS
3.3 ADMITTANCE TRANSFORMATION 123 3.3.1 PARAMETRIC ADMITTANCE EQUATION
123 3.3.2 ADDITIONAL GRAPHICAL DISPLAYS 126 3.4 PARALLEL AND SERIES
CONNECTIONS 127 3.4.1 PARALLEL CONNECTION OF R AND L ELEMENTS 127 3.4.2
PARALLEL CONNECTION OF R AND * ELEMENTS 128 3.4.3 SERIES CONNECTION OF R
AND L ELEMENTS 129 3.4.4 SERIES CONNECTION OF R AND * ELEMENTS 129 3.4.5
EXAMPLE OF A T-NETWORK 131 3.5 SUMMARY 135 CHAPTER 4. SINGLE- AND
MULTIPORT NETWORKS 145 4.1 BASIC DEFINITIONS 146 4.2 INTERCONNECTING
NETWORKS 154 4.2.1 SERIES CONNECTION OF NETWORKS 154 4.2.2 PARALLEL
CONNECTION OF NETWORKS 156 4.2.3 CASCADING NETWORKS 157 4.2.4 SUMMARY OF
ABCD NETWORK REPRESENTATIONS 158 4.3 NETWORK PROPERTIES AND APPLICATIONS
163 4.3.1 INTERRELATIONS BETWEEN PARAMETER SETS 163 4.3.2 ANALYSIS OF
MICROWAVE AMPLIFIER 166 4.4 SCATTERING PARAMETERS 169 4.4.1 DEFINITION
OF SCATTERING PARAMETERS 169 4.4.2 MEANING OF 5-PARAMETERS 172 4.4.3
CHAIN SCATTERING MATRIX 175 4.4.4 CONVERSION BETWEEN Z- AND S-PARAMETERS
177 4.4.5 SIGNAL FLOWGRAPH MODELING 178 4.4.6 GENERALIZATION OF S-
PARAMETERS 184 4.4.7 PRACTICAL MEASUREMENTS OF S-PARAMETERS 188 4.5
SUMMARY 195 CHAPTER 5. AN OVERVIEW OF RF FILTER DESIGN 205 5.1 BASIC
RESONATOR AND FILTER CONFIGURATIONS 206 5.1.1 FILTER TYPES AND
PARAMETERS 206 5.1.2 LOW-PASS FILTER 210 5.1.3 HIGH-PASS FILTER 213
5.1.4 BANDPASS AND BANDSTOP FILTERS 214 5.1.5 INSERTION LOSS 221
CONTENTS 5.2 SPECIAL FILTER REALIZATIONS 224 5.2.1 * UTTERWORTH-****
FILTERS 225 5.2.2 CHEBYSHEV-**** FILTERS 228 5.2.3 DENORMALIZATION OF
STANDARD LOW-PASS DESIGN 236 5.3 FILTER IMPLEMENTATION 245 5.3.1 UNIT
ELEMENTS 247 5.3.2 KURODA S IDENTITIES 247 5.3.3 EXAMPLES OF MICROSTRIP
FILTER DESIGN 249 5.4 COUPLED FILTER 257 5.4.1 ODD AND EVEN MODE
EXCITATION 257 5.4.2 BANDPASS FILTER SECTION 260 5.4.3 CASCADING
BANDPASS FILTER ELEMENTS 262 5.4.4 DESIGN EXAMPLE 264 5.5 SUMMARY 268
277 278 278 285 295 298 299 301 307 310 312 313 313 314 316 322 324 328
329 330 330 331 CHAPTER 6. ACTIVE RF COMPONENTS 6.1 SEMICONDUCTOR BASICS
6.1.1 6.1.2 6.1.3 PHYSICAL PROPERTIES OF SEMICONDUCTORS THE PN-JUNCTION
SCHOTTKY CONTACT 6.2 RF DIODES 6.2.1 6.2.2 6.2.3 6.2.4 6.2.5 6.2.6
SCHOTTKY DIODE PIN DIODE VARACTOR DIODE IMPATT DIODE TUNNEL DIODE
TRAPATT, BARRITT, AND GUNN DIODES 6.3 BIPOLAR-JUNCTION TRANSISTOR 6.3.1
6.3.2 6.3.3 6.3.4 6.3.5 6.3.6 CONSTRUCTION FUNCTIONALITY FREQUENCY
RESPONSE TEMPERATURE BEHAVIOR LIMITING VALUES NOISE PERFORMANCE 6.4 RF
FIELD EFFECT TRANSISTORS 6.4.1 6.4.2 CONSTRUCTION FUNCTIONALITY CONTENTS
6.4.3 FREQUENCY RESPONSE 338 6.4.4 LIMITING VALUES 339 6.5 METAL OXIDE
SEMICONDUCTOR TRANSISTORS 339 6.5.1 CONSTRUCTION 340 6.5.2 FUNCTIONALITY
341 6.6 HIGH ELECTRON MOBILITY TRANSISTORS 342 6.6.1 CONSTRUCTION 343
6.6.2 FUNCTIONALITY 343 6.6.3 FREQUENCY RESPONSE 346 6.7 SEMICONDUCTOR
TECHNOLOGY TRENDS 347 6.8 SUMMARY 352 CHAPTER 7. ACTIVE RF COMPONENT
MODELING 361 7.1 DIODE MODELS 362 7.1.1 NONLINEAR DIODE MODEL 362 7.1.2
LINEAR DIODE MODEL 364 7.2 TRANSISTOR MODELS 367 7.2.1 LARGE-SIGNAL BJT
MODELS 367 7.2.2 SMALL-SIGNAL BJT MODELS 376 7.2.3 LARGE-SIGNAL FET
MODELS 388 7.2.4 SMALL-SIGNAL FET MODELS 391 7.2.5 TRANSISTOR AMPLIFIER
TOPOLOGIES 395 7.3 MEASUREMENT OF ACTIVE DEVICES 397 7.3.1 DC
CHARACTERIZATION OF BIPOLAR TRANSISTOR 397 7.3.2 MEASUREMENTS OF AC
PARAMETERS OF BIPOLAR TRANSISTORS 398 7.3.3 MEASUREMENTS OF FIELD EFFECT
TRANSISTOR PARAMETERS 403 7.4 SCATTERING PARAMETER DEVICE
CHARACTERIZATION 404 7.5 SUMMARY 413 CHAPTER 8. MATCHING AND BIASING
NETWORKS 421 8.1 IMPEDANCE MATCHING USING DISCRETE COMPONENTS 422 8.1.1
TWO-COMPONENT MATCHING NETWORKS 422 8.1.2 FORBIDDEN REGIONS, FREQUENCY
RESPONSE, AND QUALITY FACTOR 431 8.1.3 T AND PI MATCHING NETWORKS 442
8.2 MICROSTRIP LINE MATCHING NETWORKS 446 8.2.1 FROM DISCRETE COMPONENTS
TO MICROSTRIP LINES 446 8.2.2 SINGLE-STUB MATCHING NETWORKS 450 8.2.3
DOUBLE-STUB MATCHING NETWORKS 454 CONTENTS 8.3 AMPLIFIER CLASSES OF
OPERATION AND BIASING NETWORKS 458 8.3.1 CLASSES OF OPERATION AND
EFFICIENCY OF AMPLIFIERS 458 8.3.2 BIPOLAR TRANSISTOR BIASING NETWORKS
463 8.3.3 FIELD EFFECT TRANSISTOR BIASING NETWORKS 469 8.4 SUMMARY 478
CHAPTER 9. RF TRANSISTOR AMPLIFIER DESIGN 485 9.1 CHARACTERISTICS OF
AMPLIFIERS 486 9.2 AMPLIFIER POWER RELATIONS 487 9.2.1 RF SOURCE 487
9.2.2 TRANSDUCER POWER GAIN 488 9.2.3 ADDITIONAL POWER RELATIONS 489 9.3
STABILITY CONSIDERATIONS 492 9.3.1 STABILITY CIRCLES 492 9.3.2
UNCONDITIONAL STABILITY 494 9.3.3 STABILIZATION METHODS 501 9.4 CONSTANT
GAIN 504 9.4.1 UNILATERAL DESIGN 504 9.4.2 UNILATERAL FIGURE OF MERIT
510 9.4.3 BILATERAL DESIGN 512 9.4.4 OPERATING AND AVAILABLE POWER GAIN
CIRCLES 515 9.5 NOISE FIGURE CIRCLES 521 9.6 CONSTANT VSWR CIRCLES 525
9.7 BROADBAND, HIGH-POWER, AND MULTISTAGE AMPLIFIERS 529 9.7.1 BROADBAND
AMPLIFIERS 529 9.7.2 HIGH-POWER AMPLIFIERS 540 9.7.3 MULTISTAGE
AMPLIFIERS 543 9.8 SUMMARY 550 CHAPTER 10. OSCILLATORS AND MIXERS 559
10.1 BASIC OSCILLATOR MODELS 560 10.1.1 FEEDBACK OSCILLATOR 560 10.1.2
NEGATIVE RESISTANCE OSCILLATOR 562 10.1.3 OSCILLATOR PHASE NOISE 574
10.1.4 FEEDBACK OSCILLATOR DESIGN 578 10.1.5 DESIGN STEPS 581 10.1.6
QUARTZ OSCILLATORS 585 CONTENTS 10.2 HIGH-FREQUENCY OSCILLATOR
CONFIGURATION 587 10.2.1 FIXED-FREQUENCY OSCILLATORS 591 10.2.2
DIELECTRIC RESONATOR OSCILLATORS 598 10.2.3 YIG-TUNED OSCILLATOR 603
10.2.4 VOLTAGE-CONTROLLED OSCILLATOR 604 10.2.5 GUNN ELEMENT OSCILLATOR
608 10.3 BASIC CHARACTERISTICS OF MIXERS 609 10.3.1 BASIC CONCEPTS 610
10.3.2 FREQUENCY DOMAIN CONSIDERATIONS 612 10.3.3 SINGLE-ENDED MIXER
DESIGN 614 10.3.4 SINGLE-BALANCED MIXER 622 10.3.5 DOUBLE-BALANCED MIXER
623 10.3.6 INTEGRATED ACTIVE MIXERS 624 10.3.7 IMAGE REJECT MIXER 628
10.4 SUMMARY 641 APPENDIX A. USEFUL PHYSICAL QUANTITIES AND UNITS 647
APPENDIX B. SKIN EQUATION FOR A CYLINDRICAL CONDUCTOR 653 APPENDIX C.
COMPLEX NUMBERS 657 C.L BASIC DEFINITION 657 * 2 MAGNITUDE COMPUTATIONS
657 C.3 CIRCLE EQUATION 658 APPENDIX D. MATRIX CONVERSIONS 659 APPENDIX
E. PHYSICAL PARAMETERS OF SEMICONDUCTORS 663 APPENDIX F. LONG AND SHORT
DIODE MODELS 665 F. 1 LONG DIODE 666 F.2 SHORT DIODE 666 APPENDIX G.
COUPLER S 669 G.L WILKINSON DIVIDER 669 G.2 BRANCH LINE COUPLER 672 G.3
LANGE COUPLER 676 APPENDIX H. NOISE ANALYSIS 677 H. 1 BASIC DEFINITIONS
677 H.2 NOISY TWO-PORT NETWORKS 679 CONTENTS H.3 NOISE FIGURE FOR
TWO-PORT NETWORK 682 H.4 NOISE FIGURE FOR CASCADED MULTIPORT NETWORK 685
APPENDIX I. INTRODUCTION TO MATLAB 689 1.1 BACKGROUND 689 1.2 BRIEF
EXAMPLE OF STABILITY EVALUATION 691 1.3 SIMULATION SOFTWARE 693 1.3.1
OVERVIEW 693 1.3.2 FILE ORGANIZATION 693 INDEX 695
|
any_adam_object | 1 |
author | Ludwig, Reinhold Bogdanov, Gene |
author_facet | Ludwig, Reinhold Bogdanov, Gene |
author_role | aut aut |
author_sort | Ludwig, Reinhold |
author_variant | r l rl g b gb |
building | Verbundindex |
bvnumber | BV035713788 |
classification_rvk | ZN 6400 ZN 6420 |
classification_tum | ELT 490f |
ctrlnum | (OCoLC)501388431 (DE-599)HBZHT015215819 |
dewey-full | 621.38412 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.38412 |
dewey-search | 621.38412 |
dewey-sort | 3621.38412 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | 2nd ed., internat. ed. |
format | Book |
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id | DE-604.BV035713788 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:51:46Z |
institution | BVB |
isbn | 9780131355057 0131355058 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-017990673 |
oclc_num | 501388431 |
open_access_boolean | |
owner | DE-91 DE-BY-TUM DE-Aug4 DE-859 DE-706 DE-83 |
owner_facet | DE-91 DE-BY-TUM DE-Aug4 DE-859 DE-706 DE-83 |
physical | XVI, 704 S. graph. Darst. |
publishDate | 2009 |
publishDateSearch | 2009 |
publishDateSort | 2009 |
publisher | Pearson Education |
record_format | marc |
series2 | Pearson international edition |
spelling | Ludwig, Reinhold Verfasser aut RF circuit design theory and applications Reinhold Ludwig ; Gene Bogdanov 2nd ed., internat. ed. Upper Saddle River , NJ [u.a.] Pearson Education 2009 XVI, 704 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Pearson international edition Radio circuits Design and construction Radio frequency Hochfrequenztechnik (DE-588)4025202-4 gnd rswk-swf Entwurf (DE-588)4121208-3 gnd rswk-swf Integrierte Schaltung (DE-588)4027242-4 gnd rswk-swf Schaltungsentwurf (DE-588)4179389-4 gnd rswk-swf Hochfrequenzschaltung (DE-588)4160147-6 gnd rswk-swf Hochfrequenzschaltung (DE-588)4160147-6 s Schaltungsentwurf (DE-588)4179389-4 s DE-604 Integrierte Schaltung (DE-588)4027242-4 s Hochfrequenztechnik (DE-588)4025202-4 s Entwurf (DE-588)4121208-3 s 1\p DE-604 Bogdanov, Gene Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017990673&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Ludwig, Reinhold Bogdanov, Gene RF circuit design theory and applications Radio circuits Design and construction Radio frequency Hochfrequenztechnik (DE-588)4025202-4 gnd Entwurf (DE-588)4121208-3 gnd Integrierte Schaltung (DE-588)4027242-4 gnd Schaltungsentwurf (DE-588)4179389-4 gnd Hochfrequenzschaltung (DE-588)4160147-6 gnd |
subject_GND | (DE-588)4025202-4 (DE-588)4121208-3 (DE-588)4027242-4 (DE-588)4179389-4 (DE-588)4160147-6 |
title | RF circuit design theory and applications |
title_auth | RF circuit design theory and applications |
title_exact_search | RF circuit design theory and applications |
title_full | RF circuit design theory and applications Reinhold Ludwig ; Gene Bogdanov |
title_fullStr | RF circuit design theory and applications Reinhold Ludwig ; Gene Bogdanov |
title_full_unstemmed | RF circuit design theory and applications Reinhold Ludwig ; Gene Bogdanov |
title_short | RF circuit design |
title_sort | rf circuit design theory and applications |
title_sub | theory and applications |
topic | Radio circuits Design and construction Radio frequency Hochfrequenztechnik (DE-588)4025202-4 gnd Entwurf (DE-588)4121208-3 gnd Integrierte Schaltung (DE-588)4027242-4 gnd Schaltungsentwurf (DE-588)4179389-4 gnd Hochfrequenzschaltung (DE-588)4160147-6 gnd |
topic_facet | Radio circuits Design and construction Radio frequency Hochfrequenztechnik Entwurf Integrierte Schaltung Schaltungsentwurf Hochfrequenzschaltung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017990673&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT ludwigreinhold rfcircuitdesigntheoryandapplications AT bogdanovgene rfcircuitdesigntheoryandapplications |