Experimental methods in RF design:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Newington, CT
ARRL
2003
|
Ausgabe: | 1. ed., 2. print. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | getr. Zählung Ill. u. graph. Darst. 1 CD-ROM |
ISBN: | 0872598799 |
Internformat
MARC
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adam_text |
CONTENTS
Contents
Preface
1 Getting Started
1.1 Experimenting, "Homebrewing," and the Pursuit of the New
1.2 Getting Started - Routes for the Beginning Experimenter
1.3 Some Guidelines for the Experimenter
1.4 Block Diagrams
1.5 An IC Based Direct Conversion Receiver
1.6 A Regenerative Receiver
1.7 An Audio Amplifier with Discrete Transistors
1.8 A Direct Conversion Receiver Using a Discrete Component Product Detector
1.9 Power Supplies
1.10 RF Measurements
1.11 A First Transmitter
1.12 A Bipolar Transistor Power Amplifier
1.13 An Output Low Pass Filter
1.14 About the Schematics in this Book
2 Amplifier Design Basics
2.1 Modeling Simple Solid State Devices
2.2 Amplifier Design Basics
2.3 Large Signal Amplifiers
2.4 Gain, Power, DB and Impedance Matching
2.5 Differential Amplifiers and the Op-Amp
2.6 Undesired Amplifier Characteristics
2.7 Feedback Amplifiers
2.8 Bypassing and Decoupling
2.9 Power Amplifier Basics
2.10 Practical Power Amplifiers
2.11 A 30-W - 7-MHz Power Amplifier
3 Filters and Impedance Matching Circuits
3.1 Filter Basics
3.2 The Low Pass Filter, Design and Extension
3.3 LC Bandpass Filters
3.4 Crystal Filters
3.5 Active Filters
3.6 Impedance Matching Networks
4 Oscillators and Frequency Synthesis
4.1 LC-Oscillator Basics
4.2 Practical Hartley Circuits and Oscillator Drift Compensation
4.3 The Colpitts and Some Other scillators
4.4 Noise in Oscillators
4.5 Crystal Oscillators and VXOs
4.6 Voltage Controlled Oscillators
4.7 Frequency Synthesis
4.8 The Ugly Weekender, MK-II, A 7-MHz VFO Transmitter
4.9 A General Purpose VXO-Extending Frequency Synthesizer
5 Mixers and Frequency Multipliers
5.1 Mixer Basics
5.2 Balanced Mixer Concepts
5.3 Some Practical Mixers
5.4 Frequency Multipliers
5.5 A VXO Transmitter Using a Digital Frequency Multiplier
6 Transmitters and Receivers
6.0 Signals and the Systems that Process Them
6.1 Receiver Fundamentals
6.2 IF Amplifiers and AGC
6.3 Large Signals in Receivers and Front End Design
6.4 Local Oscillator Systems
6.5 Receivers with Enhanced Dynamic Range
6.6 Transmitter and Transceiver Design
6.7 Frequency Shifts, Offsets and Incremental Tuning
6.8 Transmit-Receive Antenna Switching
6.9 The Lichen Transceiver: A Case Study
6.10 A Monoband SSB/CW Transceiver
6.11 A Portable DSB/CW 50 MHz Station
7 Measurement Equipment
7.0 Measurement Basics
7.1 DC Mesaurements
7.2 The Oscilloscope
7.3 RF Power Measurement
7.4 RF Power Measurement with an Oscilloscope
7.5 Measuring Frequency, Inductance, and Capacitance
7.6 Sources and Generators
7.7 Bridges and Impedance Measurement
7.8 Spectrum Analysis
7.9 Q Measurement of LC Resonators
7.10 Crystal Measurements
7.11 Noise and Noise Sources
7.12 Assorted Circuits
8 Direct Conversion Receivers
8.1 A Brief History
8.2 The Basic Direct Conversion Block Diagram
8.3 Peculiarities of Direct Conversion
8.4 Mixers For Direct Conversion Receivers
8.5 A Modular Direct Conversion Receiver
8.6 DC Receiver Advantages
9 Phasing Receivers and Transmitters
9.1 Block Diagrams
9.2 Introduction to the Math
9.3 From Mathematics to Practice
9.4 Sideband Suppression Design
9.5 Binaural Receivers
9.6 LO and RF Phase-Shift and In-Phase Splitter-Combiner Networks
9.7 Other Op-Amp Topologies, Polyphase Networks and DSP Phase Shifters
9.8 Intelligent Selectivity
9.9 A Next-Generation R2 Single-Signal Direct Conversion Receiver
9.10 A High Performance Phasing SSB Exciter
9.11 A Few Notes on Building Phasing Rigs
9.12 Conclusion
10 DSP Components
10.1 The EZ-Kit Lite
10.2 A Program Shell
10.3 DSP Components
10.4 Signal Generation
10.5 Random Noise Generation
10.6 Filtering Components
10.7 DSP IF
10.8 DSP Mixing
10.9 Other DSP Components
10.10 Discrete Fourier Transform
10.11 Automatic Noise Blankers
10.12 CW Signal Generation
10.13 SSB Signal Generation
11 DSP Applications in Communications
11.1 Program Structure
11.2 Using a DSP Device as a Controller
11.3 An Audio Generator Test Box
11.4 An 18-MHz Transceiver
11.5 DSP-10 2-Meter Transceiver
12 Field Operation, Portable Gear and Integrated Stations
12.1 Simple Equipment for Portable Operation
12.2 The "Unfinished," A 7-MHz CW Transceiver
12.3 The S7C, A Simple 7-MHz Super-Heterodyne Receiver
12.4 A Dual Band QRP CW Transceiver
12.5 Weak-Signal Communications Using the DSP-10
12.6 A 28-MHz QRP Module
12.7 A General Purpose Receiver Module
12.8 Direct Conversion Transceiver for 144-MHz SSB and CW
12.9 52-MHz Tunable IF for VHF and UHF Transceivers
12.10 Sleeping Bag Radio
12.11 14-MHz CW Receiver
Contents of CD-ROM
Index |
adam_txt |
CONTENTS
Contents
Preface
1 Getting Started
1.1 Experimenting, "Homebrewing," and the Pursuit of the New
1.2 Getting Started - Routes for the Beginning Experimenter
1.3 Some Guidelines for the Experimenter
1.4 Block Diagrams
1.5 An IC Based Direct Conversion Receiver
1.6 A Regenerative Receiver
1.7 An Audio Amplifier with Discrete Transistors
1.8 A Direct Conversion Receiver Using a Discrete Component Product Detector
1.9 Power Supplies
1.10 RF Measurements
1.11 A First Transmitter
1.12 A Bipolar Transistor Power Amplifier
1.13 An Output Low Pass Filter
1.14 About the Schematics in this Book
2 Amplifier Design Basics
2.1 Modeling Simple Solid State Devices
2.2 Amplifier Design Basics
2.3 Large Signal Amplifiers
2.4 Gain, Power, DB and Impedance Matching
2.5 Differential Amplifiers and the Op-Amp
2.6 Undesired Amplifier Characteristics
2.7 Feedback Amplifiers
2.8 Bypassing and Decoupling
2.9 Power Amplifier Basics
2.10 Practical Power Amplifiers
2.11 A 30-W - 7-MHz Power Amplifier
3 Filters and Impedance Matching Circuits
3.1 Filter Basics
3.2 The Low Pass Filter, Design and Extension
3.3 LC Bandpass Filters
3.4 Crystal Filters
3.5 Active Filters
3.6 Impedance Matching Networks
4 Oscillators and Frequency Synthesis
4.1 LC-Oscillator Basics
4.2 Practical Hartley Circuits and Oscillator Drift Compensation
4.3 The Colpitts and Some Other scillators
4.4 Noise in Oscillators
4.5 Crystal Oscillators and VXOs
4.6 Voltage Controlled Oscillators
4.7 Frequency Synthesis
4.8 The Ugly Weekender, MK-II, A 7-MHz VFO Transmitter
4.9 A General Purpose VXO-Extending Frequency Synthesizer
5 Mixers and Frequency Multipliers
5.1 Mixer Basics
5.2 Balanced Mixer Concepts
5.3 Some Practical Mixers
5.4 Frequency Multipliers
5.5 A VXO Transmitter Using a Digital Frequency Multiplier
6 Transmitters and Receivers
6.0 Signals and the Systems that Process Them
6.1 Receiver Fundamentals
6.2 IF Amplifiers and AGC
6.3 Large Signals in Receivers and Front End Design
6.4 Local Oscillator Systems
6.5 Receivers with Enhanced Dynamic Range
6.6 Transmitter and Transceiver Design
6.7 Frequency Shifts, Offsets and Incremental Tuning
6.8 Transmit-Receive Antenna Switching
6.9 The Lichen Transceiver: A Case Study
6.10 A Monoband SSB/CW Transceiver
6.11 A Portable DSB/CW 50 MHz Station
7 Measurement Equipment
7.0 Measurement Basics
7.1 DC Mesaurements
7.2 The Oscilloscope
7.3 RF Power Measurement
7.4 RF Power Measurement with an Oscilloscope
7.5 Measuring Frequency, Inductance, and Capacitance
7.6 Sources and Generators
7.7 Bridges and Impedance Measurement
7.8 Spectrum Analysis
7.9 Q Measurement of LC Resonators
7.10 Crystal Measurements
7.11 Noise and Noise Sources
7.12 Assorted Circuits
8 Direct Conversion Receivers
8.1 A Brief History
8.2 The Basic Direct Conversion Block Diagram
8.3 Peculiarities of Direct Conversion
8.4 Mixers For Direct Conversion Receivers
8.5 A Modular Direct Conversion Receiver
8.6 DC Receiver Advantages
9 Phasing Receivers and Transmitters
9.1 Block Diagrams
9.2 Introduction to the Math
9.3 From Mathematics to Practice
9.4 Sideband Suppression Design
9.5 Binaural Receivers
9.6 LO and RF Phase-Shift and In-Phase Splitter-Combiner Networks
9.7 Other Op-Amp Topologies, Polyphase Networks and DSP Phase Shifters
9.8 Intelligent Selectivity
9.9 A Next-Generation R2 Single-Signal Direct Conversion Receiver
9.10 A High Performance Phasing SSB Exciter
9.11 A Few Notes on Building Phasing Rigs
9.12 Conclusion
10 DSP Components
10.1 The EZ-Kit Lite
10.2 A Program Shell
10.3 DSP Components
10.4 Signal Generation
10.5 Random Noise Generation
10.6 Filtering Components
10.7 DSP IF
10.8 DSP Mixing
10.9 Other DSP Components
10.10 Discrete Fourier Transform
10.11 Automatic Noise Blankers
10.12 CW Signal Generation
10.13 SSB Signal Generation
11 DSP Applications in Communications
11.1 Program Structure
11.2 Using a DSP Device as a Controller
11.3 An Audio Generator Test Box
11.4 An 18-MHz Transceiver
11.5 DSP-10 2-Meter Transceiver
12 Field Operation, Portable Gear and Integrated Stations
12.1 Simple Equipment for Portable Operation
12.2 The "Unfinished," A 7-MHz CW Transceiver
12.3 The S7C, A Simple 7-MHz Super-Heterodyne Receiver
12.4 A Dual Band QRP CW Transceiver
12.5 Weak-Signal Communications Using the DSP-10
12.6 A 28-MHz QRP Module
12.7 A General Purpose Receiver Module
12.8 Direct Conversion Transceiver for 144-MHz SSB and CW
12.9 52-MHz Tunable IF for VHF and UHF Transceivers
12.10 Sleeping Bag Radio
12.11 14-MHz CW Receiver
Contents of CD-ROM
Index |
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edition | 1. ed., 2. print. |
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id | DE-604.BV020863404 |
illustrated | Illustrated |
index_date | 2024-07-02T13:23:43Z |
indexdate | 2024-08-30T00:04:36Z |
institution | BVB |
isbn | 0872598799 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-014185265 |
oclc_num | 51725664 |
open_access_boolean | |
owner | DE-898 DE-BY-UBR |
owner_facet | DE-898 DE-BY-UBR |
physical | getr. Zählung Ill. u. graph. Darst. 1 CD-ROM |
publishDate | 2003 |
publishDateSearch | 2003 |
publishDateSort | 2003 |
publisher | ARRL |
record_format | marc |
spelling | Hayward, Wes Verfasser aut Experimental methods in RF design Wes Hayward ; Rick Campbell ; Bob Larkin 1. ed., 2. print. Newington, CT ARRL 2003 getr. Zählung Ill. u. graph. Darst. 1 CD-ROM txt rdacontent n rdamedia nc rdacarrier Electronics Physical sciences Amateurfunk (DE-588)4001623-7 gnd rswk-swf Hochfrequenztechnik (DE-588)4025202-4 gnd rswk-swf Amateurfunk (DE-588)4001623-7 s Hochfrequenztechnik (DE-588)4025202-4 s 1\p DE-604 Campbell, Rick Sonstige oth Larkin, Bob Sonstige oth HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014185265&sequence=000002&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 | Hayward, Wes Experimental methods in RF design Electronics Physical sciences Amateurfunk (DE-588)4001623-7 gnd Hochfrequenztechnik (DE-588)4025202-4 gnd |
subject_GND | (DE-588)4001623-7 (DE-588)4025202-4 |
title | Experimental methods in RF design |
title_auth | Experimental methods in RF design |
title_exact_search | Experimental methods in RF design |
title_exact_search_txtP | Experimental methods in RF design |
title_full | Experimental methods in RF design Wes Hayward ; Rick Campbell ; Bob Larkin |
title_fullStr | Experimental methods in RF design Wes Hayward ; Rick Campbell ; Bob Larkin |
title_full_unstemmed | Experimental methods in RF design Wes Hayward ; Rick Campbell ; Bob Larkin |
title_short | Experimental methods in RF design |
title_sort | experimental methods in rf design |
topic | Electronics Physical sciences Amateurfunk (DE-588)4001623-7 gnd Hochfrequenztechnik (DE-588)4025202-4 gnd |
topic_facet | Electronics Physical sciences Amateurfunk Hochfrequenztechnik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014185265&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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