20091130Lect38EE429_529A

20091130Lect38EE429_529A - EE 429 & EE 529...

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Unformatted text preview: EE 429 & EE 529 Introduction to EMC University at Buffalo Dr. James J. Whalen Lecture 37 Monday November 17,2008 Chapter 8 1.Simple Radiated Susceptibility Models 2. Transfer Impedance 3. Homework Assignment on Chapter 8 RE & RS wobttCtsr s II to ivllf E; EJ.. fu Wqe.> H J.. ~o plilVf tJ W lf~ Hl '~t 11.1- !.J 1t/1B i C (t1-1 y I f - - - - - - - 2J--'~. I(x) r - -- - - ( } ~ ~ ..- - , RS~ + t + + ~RL Vs S V(X) ilL +--- L _ _ 1 - - 0---.-. . J - I - - _ J l{X) x J , . . . - - - ; ) ( ~i ~i 1 Et = Ey (b) lf1x-J--r----r__. - - - o:=:==}----, + ls~xV(x + ~x) _____----IL.-.-~ ----- a::::==J--...J ~~~-----f1x------~ (c) FIGURE 8.21 Modeling a two-conductor line to determine the terminal voltage! induced by an incident electromagnetic field: (a) problem definition; (b) effects of the transverse electric field component and the normal magnetic field component; (c) , per-unit-length equivalent circuit. X 1- II emf If} ~ m \(.-'\ \.s-= - J W~o t-t z-.5 ,/\ .2 .5 : :-JW C EyS 2 ~ ~ A ni-e O { \ CL I d- - - - - - - - = 9 > 6ce.uj = b Power TrC11)S((\jJ jp~ = P T...
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20091130Lect38EE429_529A - EE 429 & EE 529...

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