A 75 Q lossless transmission line is to be matched with a 100-j802 load using Single stub. Calculate the stub length and its distance from the load corresponding to the frequency of 30 MHz using Smith chart.
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- For 860 MHz carrier frequency and for the geometry and graph shown in figures Q3A and Q3B, determine: A) the loss due to knife-edge diffraction, and1. On a lossless 500 coaxial transmission line with a shorted load: a. a voltage minimum will occur at the load. b. a current maximum will occur at the load. c. a voltage maximum will occur A/4 back from the load. d. the voltage and current are in phase. e. the voltage and current are 90° out of phase. f. the standing wave moves toward the source. 2. Sketch the TDR trace which would be observed by connecting a 100 ft. length of RG-8/U Type coax to a TDR and terminating the coax in a resistance of 100 ohms. Calculate and illustrate (show all parameter names and numeric values) the relative voltages of the incident and reflected waves and the 1 and 2-way time delays as illustrated in the file "For the final exam" emailed to you earlier this week. RG-8/U Type coax has the following specifications: Zo = 50 Ohm, VF 66%. 3. Determine Zin of a lossless 50 transmission line X/4 long having a ZL = 50 Q.State the difference between high and low frequency signals travel in typical transmission lines.
- Due to line mismatch, a voltage standing wave ratio of 10 is calculated. The total volatge at the load is 5Vrms. What is the peak amplitude of the incident voltage at the load? Assume that the incident and reflected voltages are in phase at the point of reflection.In thesystemshown below, representing a terrestrial microwave link, P-100W, Peur100 dam, Lym kow2 dfi, Gyeto (absolute), Gno dB. Determine the free space loss L Pri Pout LT G7 GR LR. PinProblem 1: The message signal as below is used to angle modulate a carrier c(t) = 100cos4000лt. (a) (5pts) Determine the peak-frequency deviation with k=2 using FM. (b) (5pts) Determine the peak-phase deviation with k₂ =1 using PM. (c) (10pts) If k=k=5, determine the maximum instantaneous frequency in FM and PM respectively. (d) (10pts) Determine the phase (t) of the FM modulated signal with k₂ =2. m(t) 3 0 -3 2 4 6
- 19. The _____________ gives a visual indication of system linearity and noise performance.A. spread spectrumB. pseudonoiseC. spectral regrowthD. constellation patternA 105MHz, 90 v peak signal is incident on a 50-ohm transmission line. The line is 125m long and is terminated in 300-ohm load. What is the SWR for this situation? Find the reflection coefficient.Each end of a long transmission line is perfectly matched but from time domain spectrometer display at the input is observed the voltage variation given below. According to this figure a) For ideal case what should be observed on the time domain spectrometer at he input. Draw ideal case bounce diagram and explain shortly
- g) Why the Capacitance effect is neglected in Short Transmission Line. h) Distinguish between Lumped or Distributed elements in a Transmission Line.6. The short circuit load is connected to a transmission line. When the transmission line length is between lumped element. However, when zero and a quarter wavelength, the circuit will behave like the transmission line length is between a quarter wavelength and a half wavelength, the circuit will lumped element. behave likeProblem 1: The message signal as below is used to angle modulate a carrier c(t) = 100cos4000лt. (a) (b) (c) (d) Determine the peak-frequency deviation with k=2 using FM. Determine the peak-phase deviation with k=1 using PM. If k=kp=5, determine the maximum instantaneous frequency in FM and PM respectively. Determine the phase o(t) of the FM modulated signal with k+=2. m(t) 3 0 2 4 6 t -3