TRANSMISSION LINES - COMMUNICATIONS SHOW THE DERIVATION OF THE FOLLOWING INPUT IMPEDANCES FROM THE GENERAL FORMULA: Zin = Zo Z₁ + Zotanhys Zo[12/1 Zo+Z tanh s A) LOSSLESS LINE: Zin = Zo Zo tinh B) SHORTED LINE: Zin = j Zotanes c) OPEN LINE: Zin = j Zo cotbs Zo 2 D) = 17: Zin ZL E) l = 1/2λ = Zin = ZL
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- q) lossless transmission line has a capacitance per unit length of 64pF/m and an inductance per unit length of 1μH/m. The load impedance ZL is purely resistive. Both the load impedance and the generator impedance are 50 Ohms.The generator frequency is 12.5MHz. the propagation constant β and wavelength λ equal to? a)π/5 , 10 b)π/5 , 15 c)π/3 , 15 d) π/6 , 8A lossless transmission line which operates at 1MHz, is formed by the following line parameters: R= 5 Ω, L = 1 mH, G= 0.1 ℧, C= 1µF. Calculate the Characteristic impedance. Propagation Constant Attenuation Constant Phase ConstantA 50-ohm lossless transmission line has series inductance of 250 nH/m and shunt capacitance of 100 pF/m. What is the time delay per unit length (in ns/m) of this transmission line? Enter only the numerical value. No need for the unit. Use four decimal places (if the answer is not an interger).
- A lossless transmission line has a capacitance per unit length of 64pF/m and an inductance per unit length of 1μH/m. The load impedance ZL is purely resistive. Both the load impedance and the generator impedance are 50 Ohms. the characteristic impedance and the propagation velocityStuck on this practice study question. How do solve this transmission problem? A lossless 50-ohm transmission line is terminated in a short circuit. Use the Smith chart to determine: a. The input impedance at a distance 2.3λ from the load. b. The distance from the load at which the input admittance is Yin= -j0.04 SA lossless transmission line has a Zo of 50 ohms and a line velocity of 2.4 x 10^8 m/s. If the operating frequency is 1 MHz. Determine the capacitance in pf.
- At a frequency of 4 MHz a parallel wire transmission line has the following parameters: R-0,025 O/m. L-2 uH/m, G- 0, C5.56 pF/m. The line is 100 mcters long. terminated in a resistance of 300 Calculate the following i. Characteristic impedance of the line ii. Standing wave ratio iii. Voltage reflection coefficient of the load. iv. Recalculate the characteristic impcdance assuming the transmission line is lossless. V. Calculate the propagation constant of the linc B.A 50 ohm lossless transmission line is terminated by a 100-ohm resistive load and is operated at 200MHz. At an electrical length of 1.2 wavelengths, what is the input impedance?. A 70 cm long lossless transmission line with characteristics impedance of 50 Ω operating at 5Mhz is terminated with a load of ?? = (65+j80) Ω. If the velocity is 0.8 times the velocity of light, then calculate (a) The reflection co-efficient, also verify the value using the given smith chart. (b) Compute the input impedance using the transmission line input impedance equation 50 Ω line is terminated with an impedance of ??= (90 – j120) Ω. Design a shortcircuited single stub matching circuit using Smith chart that is provided
- lossless transmission line has a characteristic impedance of Zo=302, load reflection coefficient is 0.5 .What is the load impedance?Q1) A 70 cm long lossless transmission line with characteristics impedance of 50 Ω operating at 5Mhz is terminated with a load of ZL = (65+j80) Ω. If the velocity is 0.8 times the velocity of light, then calculate (a) The reflection co-efficient, also verify the value using the given smith chart.(b) Compute the input impedance using the transmission line input impedance equation.1. We have a two-wire overhead transmission line, powered by a constant voltage source of 700 V. The values for the inductance of the conductors are 2.348x10-3 H/km and the capacitance values are 6.325x10-9 F/km. Assuming an ideal (lossless) line and its length of 130 km, determine the speed at which it propagates. PLEASE MAKE IT DIGITAL BECAUSE HAND WRITING GETS UNDERSTANDING