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RF Circuit Design
CHAPTER1
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 Design - Summary 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 Definitions -- Transistor 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 Tobols
Design Tool Basics - Design Languages - RFIC Design Flow- RFIC Design Flow Example - Simulation Example 1 - Simulation Example 2 - Modeling - PCB Design - Packaging - Case Study - Summary
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