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calcBJTBiasBasic.m
calcCascadedNoise.m
calcMicrostripEL.m
calcMicrostripEre.m
calcMicrostripL.m
calcMicrostripMenu.m
calcMicrostripW.m
calcMicrostripZo.m
calcStabilityCircles.m
calcVSWRcircle.m
csv2mdf.m
db2r.m
dbm2watt.m
example1.m
example2.m
example3.m
example4.m
gamma2rl2vswr.m
gammaLoad2gammaIn.m
getFreqDistribution.m
getNextPlotStyle.m
getRandomColor.m
gtoz.m
importCsvColData.m
importCsvFolder.m
importS2P.m
listDir.m
loadMdf.m
materialProperties.m
plotStabilityCircles.m
ptor.m
r2db.m
rtop.m
saveMdf.m
scAddCircle.m
scAddLabels.m
scAddPoint.m
scCreate.m
singleFreqSparams.m
testStability.m
watt2dbm.m
ztog.m


gammaLoad2gammaIn.m

%%%%~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
%%%%
%%%% Transform load reflection coef. to input reflection coef.
%%%% of specified s-parameters
%%%% -- Basically embedding s-parameters in front of a load
%%%% -- Can be used to see how an amplifier load effects the input refl coef
%%%% -- Stability can be checked by load pulling and monitoring the input
%%%%
%%%% Output:
%%%% gamma_input_mag - input reflection coefficient magnitude
%%%% gamma_input_ang - input reflection coefficient angle (degrees)
%%%%
%%%% Input:
%%%% s = [s11rect, s12rect ; s21rect, s22rect ]
%%%% gamma_load_mag - load reflection coefficient magnitude
%%%% gamma_load_ang - load reflection coefficient angle (degrees)
%%%%          
%%%% Usage:
%%%% [gamma_in_mag,gamma_in_ang] = gammaLoad2gammaIn(s,gamma_load_mag,gamma_load_ang)
%%%%
%%%%
%%%% curtis | creatingrf[@]gmail.com
%%%% gammaLoad2gammaIn.m
%%%% Last Edited: 6/15/12
%%%% Octave tested: 9/1/13
%%%% Matlab tested: 6/15/12
%%%%~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~



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