1. The document discusses transmission lines and their characteristics including different types of transmission lines, distributed circuit models, transmission line equations, and phasor analysis.
2. It also covers topics such as impedance matching, transmission line parameters, wavelength, wave velocity, and signal propagation on transmission lines.
3. Examples of wavelength and wave velocity for different materials at frequencies of 1 GHz and 10 GHz are provided.
This document discusses traveling waves and scattering parameters for analyzing multi-port networks. It begins by defining traveling waves as voltage and current waves that propagate through transmission lines. It then introduces scattering parameters (S-parameters) which describe the input-output relationship of linear electrical networks with multiple ports. S-parameters are presented as elements of a scattering matrix that relates incoming and outgoing wave amplitudes at each port. Methods for calculating reflection and transmission coefficients from S-parameters are provided for characterizing two-port networks. The analysis is then generalized to n-port networks using scattering matrices. Key parameters like return loss, insertion loss, and available power are defined in terms of S-parameters.
The document discusses electromagnetic induction in a two-coil system. It presents equations describing the flux linkage and induced voltages in the coils due to changing current. The coils are modeled using inductances L1, L2 and mutual inductance M. Kirchhoff's voltage law is applied to each coil to derive differential equations relating the coil voltages and currents.
1) The document describes circuit analysis techniques including Kirchhoff's laws, Thevenin's theorem, and Norton's theorem. Various circuit examples are presented to illustrate the application of these techniques.
2) Methods for analyzing practical sources such as batteries are discussed. Equivalent circuits are derived for common source configurations.
3) Maximum power transfer principles are covered along with the conditions required to achieve maximum power for resistive circuits and voltage or current sources.
86Duino 12自由度小六足機器人 DIY 教學
86小六足3D列印機構檔: http://www.thingiverse.com/thing:964149
86小六足原始設計檔: https://github.com/roboard/86Hexapod
This slide is made by the RoBoard team of DMP Electronics Inc.:
https://www.facebook.com/roboard.fans
This document discusses traveling waves and scattering parameters for analyzing multi-port networks. It begins by defining traveling waves as voltage and current waves that propagate through transmission lines. It then introduces scattering parameters (S-parameters) which describe the input-output relationship of linear electrical networks with multiple ports. S-parameters are presented as elements of a scattering matrix that relates incoming and outgoing wave amplitudes at each port. Methods for calculating reflection and transmission coefficients from S-parameters are provided for characterizing two-port networks. The analysis is then generalized to n-port networks using scattering matrices. Key parameters like return loss, insertion loss, and available power are defined in terms of S-parameters.
The document discusses electromagnetic induction in a two-coil system. It presents equations describing the flux linkage and induced voltages in the coils due to changing current. The coils are modeled using inductances L1, L2 and mutual inductance M. Kirchhoff's voltage law is applied to each coil to derive differential equations relating the coil voltages and currents.
1) The document describes circuit analysis techniques including Kirchhoff's laws, Thevenin's theorem, and Norton's theorem. Various circuit examples are presented to illustrate the application of these techniques.
2) Methods for analyzing practical sources such as batteries are discussed. Equivalent circuits are derived for common source configurations.
3) Maximum power transfer principles are covered along with the conditions required to achieve maximum power for resistive circuits and voltage or current sources.
86Duino 12自由度小六足機器人 DIY 教學
86小六足3D列印機構檔: http://www.thingiverse.com/thing:964149
86小六足原始設計檔: https://github.com/roboard/86Hexapod
This slide is made by the RoBoard team of DMP Electronics Inc.:
https://www.facebook.com/roboard.fans