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Dielectric Resonators - Tecnun

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Contents<br />

Chapter 1<br />

INTRODUCTION<br />

Chapter 2 MICROW AVE RESONATORS<br />

2.1 Introduction<br />

2.2 Q Factor<br />

2.3 Lumped Element Resonant Circuits<br />

2.4 Transmission Line <strong>Resonators</strong><br />

2.5 Cavity <strong>Resonators</strong><br />

2.6 Conductor and <strong>Dielectric</strong> Losses<br />

2.7 Incremental Rules<br />

2.8 Circuit Modeling of <strong>Resonators</strong><br />

2.9 Q Measurement Techniques<br />

Appendix 2.A Integrals of Bessel Functions<br />

References<br />

Chapter 3 DIELECTRIC ROD WAVEGUlDES<br />

3.1 Introduction<br />

3.2 Basic Equations<br />

3.3 Solutions of the Wave Equation in Cylindrical Coordinates<br />

3.4 The Eigenvalue Equation<br />

3.5 The modes of the Rod<br />

3.6 Power Considerations<br />

3.7 The Parallel-Plate <strong>Dielectric</strong> Resonator<br />

3.8 Measurement of the <strong>Dielectric</strong> Constant<br />

References<br />

Chapter 4 SIMPLE MODELS<br />

4.1 Introduction<br />

4.2 Notion of the Magnetic Conductor<br />

4.3 Circular Waveguides with Magnetic Walls<br />

4.4 The Cohn Model<br />

4.5 Perturbational Correction to the Cohn Model<br />

4.6 The Itoh and Rudokas Model<br />

4.7 Numerical Solution of the Pair of Transcendental<br />

Equations<br />

1<br />

9<br />

9<br />

10<br />

16<br />

21<br />

26<br />

43<br />

46<br />

49<br />

53<br />

61<br />

62<br />

65<br />

65<br />

67<br />

72<br />

74<br />

81<br />

95<br />

100<br />

105<br />

110 -<br />

113<br />

113<br />

114<br />

120<br />

126<br />

133<br />

144<br />

148

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