1. Assume that we have a transmission line with characteristic impedance zo. We input a waveform...
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1. Assume that we have a transmission line with characteristic impedance zo. We input a waveform with an amplitude Vo and frequency w such that the TL length I contains exactly two periods. Assume V+ is maximum at the edges at time t = 0. (a) Plot and justify the reflected voltage waveform V. (x, t) as a function of x for the time values Assume z, is in open condition. wt = 0, (b) Plot and justify the reflected voltage waveform V-(x, t) as a function of x for the time values Assume z, is in closed condition. wt = 0, (c) Plot and justify the reflected voltage waveform V. (x, t) as a function of x for the time values Assume z₁, is in matching condition. wt = 0, V V V T X x 1. Assume that we have a transmission line with characteristic impedance zo. We input a waveform with an amplitude Vo and frequency w such that the TL length I contains exactly two periods. Assume V+ is maximum at the edges at time t = 0. (a) Plot and justify the reflected voltage waveform V. (x, t) as a function of x for the time values Assume z, is in open condition. wt = 0, (b) Plot and justify the reflected voltage waveform V-(x, t) as a function of x for the time values Assume z, is in closed condition. wt = 0, (c) Plot and justify the reflected voltage waveform V. (x, t) as a function of x for the time values Assume z₁, is in matching condition. wt = 0, V V V T X x
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Daic L Answer Given Characterstic impedance Zo a 2100 Zo open circuit 400 ca... View the full answer
Related Book For
Computer Architecture A Quantitative Approach
ISBN: 978-8178672663
5th edition
Authors: John L. Hennessy, David A. Patterson
Posted Date:
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