Use a Smith Chart to design a double stub tuner to match a load with input...
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Use a Smith Chart to design a double stub tuner to match a load with input impedance ZL = 50 j150 N to a transmission line with characteristic impedance Zo = 50 2. Use stub separation d = X/8 and open-circuited shunt stubs. (a) Draw a circuit diagram of your completed design. Label the characteristic impedances, electrical lengths (in wavelengths), and terminations (if applicable) of all transmission line sections (both stubs and the transmission line section between them). (b) Your design is to be realized in microstrip. Draw a top view diagram of the microstrip implementation (conductive traces, input, and terminations) of this circuit. Use variables to label the stub lengths ₁ and 2 the transmission line section length d, and line width w. (You will calculate their physical values in the next step.) Your design is to be realized in microstrip on a substrate with €, 4 and h = 2 mm, with an operating frequency of 3 GHz. Specify the physical width and length of all transmission line sections in millimeters. (c) = Use a Smith Chart to design a double stub tuner to match a load with input impedance ZL = 50 j150 N to a transmission line with characteristic impedance Zo = 50 2. Use stub separation d = X/8 and open-circuited shunt stubs. (a) Draw a circuit diagram of your completed design. Label the characteristic impedances, electrical lengths (in wavelengths), and terminations (if applicable) of all transmission line sections (both stubs and the transmission line section between them). (b) Your design is to be realized in microstrip. Draw a top view diagram of the microstrip implementation (conductive traces, input, and terminations) of this circuit. Use variables to label the stub lengths ₁ and 2 the transmission line section length d, and line width w. (You will calculate their physical values in the next step.) Your design is to be realized in microstrip on a substrate with €, 4 and h = 2 mm, with an operating frequency of 3 GHz. Specify the physical width and length of all transmission line sections in millimeters. (c) =
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Answer rating: 100% (QA)
d Yf 104m 2050 5 218 A 2x10 mise 3x109 42 tocm Z 2120 22 1208 22 ... View the full answer
Related Book For
Fundamentals of Applied Electromagnetics
ISBN: 978-0132139311
6th edition
Authors: Fawwaz T. Ulaby, Eric Michielssen, Umberto Ravaioli
Posted Date:
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