measure small signal bandwidth
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matlab/mat/tf_pd200_1_10uF_small_signal.mat
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matlab/mat/tf_pd200_1_10uF_small_signal.mat
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matlab/mat/tf_pd200_2_10uF_small_signal.mat
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matlab/mat/tf_pd200_2_10uF_small_signal.mat
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matlab/mat/tf_pd200_3_10uF_small_signal.mat
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matlab/mat/tf_pd200_3_10uF_small_signal.mat
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matlab/mat/tf_pd200_4_10uF_small_signal.mat
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matlab/mat/tf_pd200_4_10uF_small_signal.mat
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matlab/mat/tf_pd200_5_10uF_small_signal.mat
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matlab/mat/tf_pd200_5_10uF_small_signal.mat
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matlab/mat/tf_pd200_6_10uF_small_signal.mat
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matlab/mat/tf_pd200_6_10uF_small_signal.mat
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matlab/mat/tf_pd200_7_10uF_small_signal.mat
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matlab/mat/tf_pd200_7_10uF_small_signal.mat
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@ -13,18 +13,15 @@ Vout = data(:, 2);
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t = data(:, end);
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%% Notes
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pre_amp = struct('coupling', 'DC A', ...
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'gain', 50000, ...
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'LPF', '6dB 0.1Hz', ...
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'input', 'SSI2V (20bits, +/- 10V)', ...
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'HPF', '6dB 30kHz');
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pre_amp = struct('coupling', 'AC', ...
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'gain', 10^4, ...
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'LPF', '2.5Hz', ...
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'HPF', '100kHz');
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pd200 = struct('input', 'DAC', ...
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'signal', 'sweep sine 0.1V 1Hz-5kHz', ...
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'f_max', f1, ...
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'load', '3 uF');
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'load', '10 uF');
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notes = struct('pd200', pd200);
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%% Save
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save('mat/tf_pd200_7_0_1V.mat', 't', 'Vin', 'Vout', 'notes');
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save('mat/tf_pd200_7_10uF_small_signal.mat', 't', 'Vin', 'Vout', 'notes');
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@ -3,7 +3,7 @@ Ts = 1/Fs; % [s]
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f0 = 1; % [Hz]
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V0 = 0.1; % Sweep Sine Amplitude [V]
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C = 2.7e-6; % Capacitance of the Load [F]
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C = 10e-6; % Capacitance of the Load [F]
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Imax_rms = 0.57; % [A]
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f1 = 0.8*Imax_rms/(C*V0*20/sqrt(2))/2/pi; % [Hz]
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@ -14,4 +14,3 @@ t = 0:Ts:t1;
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Vin = struct('time', t, ...
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'signals', struct('values', V0*chirp(t, f0, t1, f1, 'logarithmic', -90)', ...
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'dimensions', 1));
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