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Preface | |
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Introduction. | |
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References | |
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Transmission Properties of Coplanar Waveguides. | |
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Rigorous, Full-Wave Analysis of Transmission Properties | |
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The Coplanar Waveguide with a Single Center Strip and Finite Ground-Plane Width | |
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The Coplanar Waveguide with a Single Center Strip and Infinite Ground-Plane Width | |
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Coupled Coplanar Waveguides | |
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Scattering Matrix of Coupled Coplanar Waveguides | |
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Coupled Coplanar Waveguides and Microstrip Lines-A Comparison | |
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Quasi-Static Analysis of Coplanar Waveguides Using the Finite Difference Method | |
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Introduction | |
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The Finite Difference Method as Applied to the Analysis of Coplanar Waveguide Structures | |
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The Solution of Laplace's Equation for Planar and Coplanar Line Structures Using the Finite Difference Method | |
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Application of the Quasi-Static Techniques to the Analysis of Coplanar Waveguides | |
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Characteristic Parameters of Coplanar Waveguides | |
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The Influence of the Metalization Thickness on the Line Parameters | |
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The Influence of the Ground Strip Width on the Line Parameters | |
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The Influence of the Shielding on the Line Parameters | |
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Special Forms of Coplanar Waveguides | |
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Coplanar-like Waveguides | |
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Coupled Coplanar Waveguide Structures | |
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Analysis of the Characteristic Parameter Matrices | |
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Determination of the Scattering Matrix of Coupled Coplanar Waveguides | |
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Closed Formula Static Analysis of Coplanar Waveguide Properties | |
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Analysis of a Generalized Coplanar Waveguide with Supporting Substrate Layers | |
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Structure SCPW1 | |
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Structure SCPW2 | |
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Structure SCPW3 | |
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Numerical Results | |
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Static Formulas for Calculating the Parameters of General Broadside-Coupled Coplanar Waveguides | |
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Analytical Formulas and Results for the General Broadside-Coupled Coplanar Waveguide | |
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Analysis of an Asymmetric Supported BSC-CPW | |
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Application of the GBSC-CPW as Single CPW | |
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Criteria for the Coplanar Behavior of the Structure | |
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Bibliography and References | |
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Coplanar Waveguide Discontinuities. | |
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The Three-Dimensional Finite Difference Analysis | |
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Computation of the Electric Field Strength | |
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Computation of the Magnetic Field Strength | |
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Convergence and Error Discussion for the Analysis Technique | |
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Coplanar Waveguide Discontinuities | |
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Modeling the Discontinuities | |
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Extraction of the Model Parameters | |
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Description of Coplanar Waveguide Discontinuities | |
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The Coplanar Open End | |
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The Coplanar Waveguide Short-Circuited End | |
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The Gap in a Coplanar Waveguide | |
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The Coplanar Waveguide Step | |
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Air Bridges in Coplanar Waveguides | |
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The Coplanar Waveguide Bend | |
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The Coplanar Waveguide T-Junction | |
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3.5.7.1 Analysis of the Odd-Mode Excitation | |
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The Coplanar T-Junction as a Mode Converter | |
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The Coplanar Waveguide Crossing | |
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Bibliography and References | |
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Coplanar Lumped Elements. | |
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Introduction | |
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The Coplanar Interdigital Capacitor | |
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The Lumped Element Modeling Approach | |
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Enhancement of the Interdigital Capacitor Model for Application at Millimeter-Wave Frequencies | |
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The Coplanar Metal-Insulator-Metal (MIM) Capacitor | |
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The Coplanar Spiral Inductor | |
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Enhancement of the Inductor Model for Millimeter-Wave Frequencies | |
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Coupled Coplanar Rectangular Inductors | |
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The Coplanar Rectangular Spiral Transformer | |
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The Coplanar Thin-Film Resistor | |
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Bibliography and References | |
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Coplanar Element Library and Circuit Design Program. | |
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Introduction | |
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Modeling, Convergence, and Accuracy | |
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Overview on Coplan for ADSTM | |
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Data Items | |
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Library Elements | |
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Cache Management | |
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Layout | |
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Coplanar Data Items | |
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Overview | |
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Description of the Data Items | |
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Coplanar Substrate Data Definition C_SUB | |
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Coplanar Line-Type Data Definition C_LINTYP | |
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Coplanar Coupled Lines Data Definition C_NL_TYP | |
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Coplanar Bridge-Type Data Definition C_AIRTYP | |
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Coplanar Grid Data Definition C_GRID | |
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Process (Foundry) Used for Fabrication C_PROCES | |
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Technological Data Definition | |
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Layer Data Definition | |
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The Coplanar Components and Their Models | |
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Coplanar Waveguide RF-Port C_PORT | |
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Coplanar Transmission Line C_LIN | |
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Coplanar Inter-Metal via | |
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Coplanar Resistively Loaded Transmission Line C_TFG | |
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Coplanar MIM-Capacitor to Ground C_CAPLIN | |
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Coplanar Open-Ended Transmission Line C_OPEN | |
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Coplanar Short-Circuited Transmission Line C_SHORT | |
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Gap in a Coplanar Transmission Line C_GAP | |
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Step in a Coplanar Transmission Line C_STEP | |
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Coplanar Waveguide Taper C_TAPER | |
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Coplanar Air Bridges C_AIR | |
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Bend in a Coplanar Transmission Line C_BEND | |
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T-Junction in Coplanar Transmission Lines C_TEE | |
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Crossing of Coplanar Transmission Lines C_CROSS | |
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Coplanar Interdigital Capacitor C_IDC | |
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Coplanar Rectangular Inductor C_RIND | |
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Coplanar Thin-Film Resistor C_TFR | |
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Coplanar Metal-Insulator-Metal Capacitor C_MIM | |
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Bibliography | |
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Coplanar Filters and Couplers. | |
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Coplanar Lumped Element Filters | |
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The Coplanar Spiral Inductor as a Filter | |
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Design and Realization | |
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Results | |
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Phase-Shifting Filter Circuits | |
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Coplanar Passive Lumped-Element Band-Pass Filters | |
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Theoretical Background | |
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Properties of the Coplanar Hybrid Band-Pass Filters | |
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Special Coplanar Waveguide Filters | |
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The Coplanar Band-Reject Filter | |
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The Hybrid Band-Reject Filter | |
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The Monolithic Band-Reject Filter | |
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Coplanar Millimeter-Wave Filters | |
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Coplanar Edge-Coupled Line Structures | |
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Verification of Coupling Between Coupled Coplanar Waveguides | |
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End-Coupled Coplanar Line Structures | |
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Coplanar Waveguide End-Coupled to an Orthogonal Coplanar Waveguide | |
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Coupled Coplanar Waveguide Filters and Couplers | |
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Interdigital Filter Design | |
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Coplanar Waveguide Couplers | |
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Coplanar MMIC Wilkinson Couplers | |
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Conventional Wilkinson Couplers | |
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Wilkinson Couplers with Discrete Elements | |
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MMIC Applicable Wilkinson Couplers with Coplanar Lumped Elements | |
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Wilkinson Coupler in Coplanar Waveguide Technique for Millimeter-Wave Frequencies | |
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Bibliography and References | |
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Coplanar Microwave Integrated Circuits. | |
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Introduction | |
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The Effect of the Shielding on Modeling | |
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The Waveguide Properties | |
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Coplanar Transistors and Coplanar Switches | |
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Active Power Dividers and Combiners and Switches | |
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Power Dividers and Combiners | |
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Fundamental Coplanar Switch Circuits | |
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Results and Measurements | |
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Device Scaling | |
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Design and Realization of Coplanar RF Switches | |
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Coplanar Microwave Active Filters | |
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Introduction | |
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The Coplanar Active Inductor | |
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The First-Order Active Coplanar Band-Pass Filter | |
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The Fixed Center Frequency Second-Order Active Filter | |
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The Coplanar Active Tunable Filter | |
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Coplanar Microwave Amplifiers | |
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Coplanar Microwave Amplifiers in Waveguide Design | |
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Introduction | |
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Circuit Design and Technological Aspects | |
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Results and Comparison with Measurements | |
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Coplanar Lumped-Element MMIC Amplifiers | |
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Introduction | |
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MMIC Design and Results | |
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Influence of the Backside Metalization on the Design of a Coplanar Low-Noise Amplifier | |
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Modeling the Transistor and Its Noise Properties | |
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The Coplanar LNA Design | |
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Simulation Results | |
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Measurement Results | |
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Miniaturized Ka-band MMIC High-Gain Medium-Power Amplifier in Coplanar Waveguide Technique | |
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Introduction | |
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MMIC Design and Results | |
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Coplanar Electronic Circulators | |
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Coplanar Frequency Doublers | |
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Different Realization Concepts of FET Frequency Doublers | |
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The Single-Device FET Frequency Doubler | |
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The Balanced (Push-Push) FET Frequency Doubler | |
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The Wideband FET Frequency Doubler | |
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Realization of Coplanar Frequency Doublers | |
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The Coplanar Balanced Hybrid MIC Frequency Doubler | |
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The Coplanar Balanced Monolithic MIC Frequency Doubler | |
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A Coplanar Times Five Frequency Multiplier | |
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Microwave and Millimeter-Wave Oscillators in Coplanar Technology | |
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Coplanar Microwave Oscillators | |
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A 5-GHz Coplanar Voltage-Controlled Oscillator | |
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Bibliography and References | |
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Index | |