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div16.v

// // Integer Multicycle Divide circuit (divide a 16-bit number by a 16-bit number in 16 cycles). // // a / b = q with remainder r // // Where a is 16-bits, // Where b is 16 bits // // Module

fm_breaker.m

function fm_breaker(flag,t) % FM_BREAKER define circuit breakers % % FM_BREAKER(FLAG,T) % FLAG = 0 initialization % FLAG = 1 breaker operations % T current simulation time %

clock.txt

Clock Circuits Early boards used discrete clock crystals since there typically were only 2-4, but as newer boards can require more than a dozen frequencies, an integrated clock circuit is often u

div16.v

// // Integer Multicycle Divide circuit (divide a 16-bit number by a 16-bit number in 16 cycles). // // a / b = q with remainder r // // Where a is 16-bits, // Where b is 16 bits // // Module

momserver.log

Momentum Server logfile: momServer.log Circuit simulation started for Design: testNSM_WCDMA2C_Memoryless Checking upfront Layout Component Model generation. No upfront Layout Component Model Genera

volts_vs_phase_angle_x.m

% M-file: volts_vs_phase_angle.m % M-file to calculate the rms voltage applied to a load as % a function of the phase angle firing circuit, and to % plot the resulting relationship. % Loop over

volts_vs_phase_angle.m

% M-file: volts_vs_phase_angle.m % M-file to calculate the rms voltage applied to a load as % a function of the phase angle firing circuit, and to % plot the resulting relationship. % Loop over

fig3_14.m

% % This file generates the plot shown in Figure 3-14 % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and Practice" % close all; % close all opened graphs

fig3_13.m

% % This file generates the plot shown in Figure 3-13 % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and Practice" % close all; % close all opened graphs

fig3_9.m

% % This file generates the graph shown in Figure 3-9 % % Copyright (c) 1999 by P.Bretchko and R.Ludwig % "RF Circuit Design: Theory and Practice" % close all; % close all opened graphs