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ex6_1.m

% % This program plots Si, Ge, and GaAs conductivities % as a function of temperature as described in Example 6.1 % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design:

ex6_3.m

% % This program computes the capacitance of the pn-junction % as a function of the applied voltage % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and Pra

ex5_2.m

% % This file computes various quality factors and % generates the graph for Example 5.2 % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and Practice" %

ex5_4.m

% % This file computes the attenuation profile of the % Chebyshev filter designed in the Example 5.4 % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and P

ex2_1.m

% % This program computes magnetic field produced % by a constant current in the wire as described % in Example 2.1 % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Des

makefile

all: ../tools/combine ../../bios.bin -a 0x7f00 ../param/param.tbl bios.img clean: rm -rf *.img

ex10_6.m

% % In this example we design an oscillator % using a dielectric resonator (DR) % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and Practice" % close a

ex8_5.m

% % This program generates an impedance transformation % plot and displays it inside the Smith Chart % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and P

ex6_1.m

% % This program plots Si, Ge, and GaAs conductivities % as a function of temperature as described in Example 6.1 % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design:

ex6_3.m

% % This program computes the capacitance of the pn-junction % as a function of the applied voltage % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and Pra