Introduction to Radio Frequencies | p. 4 |
Units and Physical Constants | p. 7 |
Wavelength and Frequency | p. 7 |
Skin Effect | p. 9 |
RadioScience Receiver Basics | p. 18 |
Receiver Noise Floor | p. 19 |
Receiving System Example | p. 19 |
Noise Equations | p. 23 |
Thermal Noise | p. 23 |
Thermal Noise as a function of bandwidth | p. 23 |
Noise Factor | p. 23 |
Noise Figure | p. 23 |
Noise Temperature | p. 24 |
Some Useful Reciever Circuits | p. 26 |
RF Receiver Mixers | p. 28 |
Linear vs. Nonlinear Mixers | p. 28 |
The Receiver Mixer | p. 32 |
Simple Diode Mixer | p. 34 |
The Question of "Balance" | p. 35 |
Spurious Responses | p. 35 |
Mixer Distortion Products | p. 40 |
Intermodulation Products (IP) | p. 40 |
Third-Order Intercept Point | p. 43 |
Calculating Intercept Points | p. 46 |
Mixer Losses | p. 47 |
Noise Figure | p. 48 |
Noise Balance | p. 49 |
Single-Ended Active Mixer Circuits | p. 50 |
Balanced Active Mixers | p. 52 |
Gilbert Cell Mixers | p. 61 |
Passive Double-Balanced Mixers | p. 63 |
Diplexers | p. 66 |
Bandpass Diplexers | p. 68 |
Double DBM | p. 70 |
Image Reject Mixers | p. 71 |
VHF/UHF Microwave Mixer Circuits | p. 72 |
Special Circuits | p. 74 |
Universal IF Amplifier | p. 74 |
Logarithmic RF/IF Amplifier | p. 81 |
References | p. 82 |
Lightning Observed | p. 86 |
Types of Lightning | p. 86 |
Lightning Facts | p. 86 |
Some Lightning Detection History | p. 89 |
Storm Scope | p. 91 |
Results to Expect | p. 96 |
Electric Field Measurement | p. 96 |
ULF/ELF/VLF Electronic Circuits | p. 102 |
Operational Amplifier Gain Block | p. 102 |
DC Power Distribution | p. 108 |
Differential Amplifiers | p. 110 |
60 Hz Notch Filter | p. 112 |
Magnetometer Sensors | p. 114 |
Flux-Gate Sensors | p. 114 |
Toroidal Core Flux Gate Sensor | p. 117 |
A Practical Flux-Gate Sensor | p. 118 |
Powering the Sensors | p. 121 |
Calibration of the Sensors | p. 123 |
Analog Interface to FGM-3 | p. 126 |
Digital "Heterodyning" | p. 128 |
A Magnetometer Project and Kit | p. 129 |
Sensor Head Mechanical Construction | p. 132 |
Gradiometers | p. 134 |
Interfacing FGM-x Series Devices via Microcontrollers | p. 137 |
Acknowledgments | p. 139 |
References | p. 139 |
Sniffing Out Local Signal and Noise Sources | p. 142 |
Bag of Tricks | p. 144 |
RF Sleuthing Tools | p. 144 |
RF Detectors | p. 149 |
Conclusion | p. 150 |
Monitoring the Ultraviolet Radiation From the Sun | p. 154 |
Ultraviolet Radiation | p. 154 |
Global, Diffuse and Direct UV | p. 157 |
UV-B Radiometer Basics | p. 159 |
A UV-B Radiometer | p. 160 |
Using the Radiometer | p. 166 |
Some Results | p. 168 |
A Commercial Global UV-B Radiometer | p. 170 |
Small RF Components Used in RadioScience Observing Systems | p. 174 |
Resistive Attenuators | p. 174 |
BALUN and Impedance Matching Transformers | p. 180 |
Coaxial Switches | p. 182 |
RF Power Combiners and Splitters | p. 182 |
Resistive Combiner/Splitter | p. 182 |
Transformer Combiner/Splitter | p. 184 |
Modified VSWR Bridge Combiner/Splitter | p. 186 |
90[degree] Splitter/Combiner | p. 189 |
Transmission Line Splitter/Combiners | p. 190 |
90[degree] Transmission Line Splitter/Combiner | p. 192 |
Hybrid Ring "Rat-Race" Network | p. 192 |
The RF Hybrid Coupler | p. 194 |
Applications of Hybrids | p. 195 |
Phase-Shifted Hybrids | p. 199 |
Diplexers | p. 201 |
Using a Diplexer with a Mixer | p. 202 |
Bandpass Diplexers | p. 204 |
Directional Couplers | p. 206 |
HF/VHF/UHF Low-Noise Preamplifiers | p. 212 |
Noise and Preselectors/Preamplifiers | p. 214 |
JFET Preselector | p. 215 |
VHF Receiver Preselector | p. 219 |
MOSFET Preselector | p. 219 |
Voltage Tuned Receiver Preselector | p. 222 |
Broadband RF Preamplifier for VLF, LF and AM BCB | p. 222 |
Push-Pull RF Amplifiers | p. 225 |
The Push-Pull RF Amplifier | p. 226 |
Actual Circuit Details | p. 228 |
Variations on the Theme | p. 232 |
Broadband RF Amplifier (50-Ohm Input and Output) | p. 235 |
Broadband or Tuned RF/IF Amplifier Using the MC-1350P | p. 237 |
VLF Preamplifier | p. 239 |
Radio Telemetry on a Budget | p. 242 |
Antennas | p. 245 |
VHF/UHF Yagi | p. 245 |
VHF/UHF Ground Plane Antenna | p. 249 |
Vertical Collinear J-Pole Antenna | p. 252 |
418 MHz Stick Antenna | p. 253 |
Omnidirectional Normal Mode Helix | p. 254 |
Axial Mode Helical Antenna | p. 254 |
Coffee Can Microwave Antenna | p. 256 |
Finding Bearings on Earth--The Great Circle | p. 260 |
Latitude and Longitude | p. 260 |
The Great Circle | p. 263 |
Acknowledgment | p. 266 |
Reference | p. 266 |
Vibration Detectors and Seismographs | p. 268 |
Linear Differential Voltage Transformers (LDVT) | p. 271 |
Differential Capacitor Sensors | p. 272 |
Lehman-type Seismometer Project | p. 276 |
Searching for ET From Your Own Backyard | p. 284 |
What We're Looking For | p. 284 |
What You'll Need: The Antenna | p. 285 |
What You'll Need: The Low-Noise Preamp | p. 286 |
What You'll Need: The Receiver | p. 286 |
What You'll Need: The Computer | p. 288 |
Putting It All Together | p. 289 |
What We've Heard So Far | p. 289 |
Finding Out More | p. 291 |
Electromagnetic Interference | p. 294 |
Tools for Finding EMI Sources | p. 298 |
RF Detectors | p. 301 |
Dealing With AM and LW Broadcast Band EMI | p. 303 |
The Problem | p. 304 |
The Attenuator Solution | p. 309 |
The Antenna Solution | p. 309 |
The Filter Solution | p. 309 |
Stubs | p. 316 |
Shielding | p. 316 |
Expected Results | p. 317 |
Dealing With 60 Hz Interference | p. 318 |
Notch Filters | p. 319 |
Twin-T Notch Filter Networks | p. 321 |
Active Twin-Tee Notch Filters | p. 323 |
Noise Canceling Bridge | p. 327 |
Some Instrument Design Rules | p. 330 |
A Design Procedure | p. 330 |
Solving the (Right) Problem | p. 332 |
Determine Critical Attributes | p. 333 |
Determine Critical Parameters and Requirements | p. 334 |
Attempt a Block Diagram Solution | p. 334 |
Apportion Requirements To The Blocks | p. 334 |
Analyze and Simulate | p. 334 |
Design Specific Circuits For Each Block | p. 335 |
Built and Test The Circuits | p. 335 |
Combine the Circuits in a Formal Breadboard | p. 335 |
Test the Breadboard | p. 335 |
Build and Test a Brassboard Version | p. 336 |
Design, Build and Test Final Version | p. 336 |
Deliver, install and use the instrument! | p. 336 |
Sensor and Antenna Resolution Improvement | p. 338 |
Sensor Resolution Improvement (SRI) | p. 340 |
Initial Trials | p. 343 |
Actual Circuit Trial | p. 343 |
Single-Sensor Method | p. 344 |
Conclusion | p. 346 |
References | p. 347 |
Long Period Velocity Type Seismometers | p. 350 |
Technical Description of the Prototype Seismometer | p. 350 |
Technical Description of The Period Lengthening Device | p. 351 |
Mechanical | p. 351 |
Electronic Circuit | p. 353 |
Pendulum Responses of The Prototype Seismometer | p. 353 |
Electronic Period Adjustment | p. 356 |
Comments | p. 357 |
Improving VLF Performance of Your Shortwave Receiver | p. 360 |
Reducing AM BCB Interference on VLF | p. 361 |
Preselector/Preamplifier Project | p. 363 |
Variations on the Theme | p. 369 |
Conclusion | p. 371 |
Antenna Transmission Lines and VSWR Loss | p. 374 |
The Problem | p. 374 |
Standing Waves | p. 376 |
Scenario | p. 377 |
Radio Luxembourg Effect | p. 384 |
Science and Junk Science | p. 388 |
Is Scientific Knowledge Superior to Other Forms? | p. 388 |
Is Salt Water Taffy Being Distributed? | p. 390 |
Scientific Studies | p. 394 |
Some General Advice | p. 395 |
So Why Bother? | p. 397 |
Pseudoscience | p. 398 |
Bibliography | p. 405 |
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