Elen3000 Chapter 1 figsJuly 23, 2025 |
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Figure 1: Common transmission lines |
Figure 2: The infinite, uniform transmission line |
Figure 3: The infinite, uniform transmission line, EM perspective |
Figure 4: Magnetic Flux Density at a point r from a current carrying wire |
Figure 5: Two Conductors & Flux Linkage Λ |
Figure 6: The Lumpy, or lumped model of the infinite transmission line |
Figure 7: The Lumpy, or lumped model of the infinite transmission line, Lossless |
Figure 8: The voltage developed along an elemental distance dx of an infinitely long tr line. |
Figure 9: Positional distribution of voltage waves (Current
similar) |
Figure 10: Parameterised Microstrip Z0 vs єr and
w/h |
Figure 11: Attenuation down the line |
Figure 12: A terminated, uniform two-wire transmission line |
Figure 13: Uniform, Terminated Line |
Figure 14: Open Circuited transmission line |
Figure 15: Short Circuited transmission line |
Figure 16: Transmission line example |
Figure 17: A half wavelength long transmission line |
Figure 18: Load Impedance matched to the characteristic impedance |
Figure 19: A quarter wavelength long transmission line |
Figure 20: The M-Net filter for Bop reception |
Figure 21: Design of a matching section |
Figure 22: Standing wave voltage defns |
Figure 23: The Voltage and Current waveforms on a transmission line |
Figure 24: A terminated transmission line |
Figure 25: Example transmission line |
Figure 26: Two transmission lines of unequal Z0 |
Figure 27: Power flow in the lumped model of the lossless line |
Figure 28: Power flow over a mismatched line, but matched load |
Figure 29: Power lost in Transfer |
Figure 30: Example transmission line |
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