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Lecture
Transmission Lines II: Terminated Lines and Impedance Matching
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Related lectures (32)
Transmission Line Theory: Wave Propagation
Explores transmission line theory, telegrapher's equations, and frequency-domain solutions for lossless and lossy lines.
Transmission Lines: Arbitrary Terminations
Explores the effects of complex impedance on reflected waves and distribution of quantities.
Transmission Lines: Solutions and Equations
Explores time-domain and frequency-domain solutions for transmission lines, including the Bergeron Method and input impedance.
Transmission Lines: Impedance Matching and Transformers
Explores terminated transmission lines, impedance matching, transformers, and power transfer techniques.
Telegrapher's Equations: Solutions and Examples
Explores time-domain solutions for lossless lines and examples of wave propagation behavior.
Reflectometry in Time Domain
Delves into reflectometry in the time domain, showcasing practical load characterization examples and common temporal signatures.
Transmission Line Theory: Frequency Solutions
Explores frequency solutions for transmission lines, including voltage reflection coefficients and the Blumer index.
Understanding the Smith Chart
Covers the Smith Chart, a graphical tool for solving transmission line problems and impedance matching.
Impedance Matching and Wireless Communication
Explores impedance matching in passive RF circuits and wireless communication principles, covering analog and digital modulation, power efficiency, and noncoherent detection.
Short-Circuited or Open Lines
Explores short-circuited and open transmission lines, analyzing impedance conditions and reactive behaviors.
Reflection at Discontinuities: Transmission Line Terminations
Covers the reflection coefficient of loads in transmission lines and the generation of reflected voltages and currents.
Charge capacitive et resistive
Explores the temporal variation of load voltage in a complex transmission line example.
Rectangular Pulse Generation and Transmission
Explores the generation and transmission of rectangular pulses in high-frequency logic circuits.
Impedance Transformation
Covers the transformation of impedance in transmission lines and determining unknown impedances from measurements.
Transmission lines: Incremental Models and Terminated Lines
Explores incremental models, terminated lines, VSWR, and input impedance in transmission lines.
High-Speed Photodetectors: Bandwidth and Design Considerations
Covers the design and bandwidth limitations of high-speed photodiodes, including optimization strategies and the role of traveling wave photodiodes.
Transmission Lines: Series Connection
Covers the theory and example of connecting two transmission lines in series.
Microstrip Line: Characteristics and Modes
Covers the analysis and synthesis of microstrip lines, discussing effective permittivity, characteristic impedance, attenuation, and dispersion.
Transmission Lines: Basic Equations (C11-C14)
Covers the mathematical theory of transmission lines, focusing on basic equations and characteristic impedance.
Input impedance: Wave reflections & Fourier analysis
Explores input impedance, wave reflections, and Fourier analysis of arterial waves.
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