## Radio Frequency Circuit DesignA much-needed, up-to-date guide to the rapidly growing area of RF circuit design, this book walks readers through a whole range of new and improved techniques for the analysis and design of receiver and transmitter circuits, illustrating them through examples from modern-day communications systems. The application of MMIC to RF design is also discussed. |

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### Contents

1 | |

9 | |

3 Impedance Matching | 33 |

4 Multiport Circuit Parameters and Transmission Lines | 51 |

5 Filter Design and Approximation | 84 |

6 Transmission Line Transformers | 105 |

7 Class A Amplifiers | 122 |

8 Noise | 144 |

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### Common terms and phrases

admittance amplitude analysis approximation bandwidth capacitance capacitor characteristic impedance Chebyshev Circuit Design circuit elements class B amplifier closed loop collector conductor described determined device diameter dielectric diode double-balanced mixer efficiency emitter equations equivalent circuit feedback formulas given harmonic inductance inductor input impedance input signal intermodulation linear loop filter loss low-pass filter matching circuit matrix maximum microstrip Microwave Theory Tech noise figure noise power nonlinear oscillator output frequency output power output voltage pass band phase detector phase detector output phase lock loop port ratio reactance reference frequency reflection coefficient resistor resonant result RF signal scattering parameters shown in Fig shunt SPICE spiral temperature terminated transfer function transmission line transmission line transformer two-port circuit typically VCO frequency voltage wave wireless zero