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ex9_8.m
%
% In this example we plot the output matching network's
% constant gain circles as part of the amplifier design
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design:
ex8_8.m
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% This program generates an impedance transformation
% plot in the Smith Chart as described in Example 8-8
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design: Theo
ex8_6.m
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% This program generates an impedance transformation
% plot in the Smith Chart described in Example 8-6
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design: Theory
fig8_8.m
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% This program generates an impedance transformation
% plot for the circuits shown in Figure 8-8 (b) and (c)
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design: The
fig5_29.m
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% Computation of attenuation profile for the bandstop filter obtained
% from the lowpass 3dB Chebyshev prototype
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design:
fig5_28.m
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% Computation of attenuation profile for the bandpass filter obtained
% from the lowpass 3dB Chebyshev prototype
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design:
fig5_12.m
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% This file computes the bandstop filter response
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design: Theory and Practice"
%
close all; % close all opened graphs
fig5_19.m
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% This routine plots the first four Chebyshev polynomials
% in the normalized frequency range from -1 to 1
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design: Theor
fig5_25.m
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% Computation of attenuation profile for the lowpass filter obtained
% from the lowpass 3dB Chebyshev prototype
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design:
fig5_26.m
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% Computation of attenuation profile for the highpass filter obtained
% from the lowpass 3dB Chebyshev prototype
%
% Copyright (c) 1999 by P.Bretchko and R.Ludwig
% "RF Circuit Design: