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Amplitude Int0 Int1 Int1 Int2 Bool1 Bool1 Bool0 Bool1 Bool0 Int10 Int2 Double0 Double10 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 Bool1 Int2 Int1 Int2 Bool1 Bool1 Bool1 Bool0 Bool0 Int10 Int2 Double0 Double0.01 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 t(sec) Int0 Int0 Bool1 Double0 Double0 Double1 Array_Dbl641;4;;;nX37ER0mv24;oZ7FUyOj034 Array_Dbl641;4;;;iz14;E324 Array_I641;4;;x;l7;CB Int1 Bool1 Int2 Int1073741824 Int8000 Arial Double8 Double0 Double8398.7031817999414 Double6592.0275590551182 Double156.4149284362793 Double0 Double0 Int0 Empty Empty Double125 Courier New y = Eq1.Y1 x = Eq1.t setindep("y", "x"); Int8 y Int255 Int2 y < Post Processed > Bool0 Bool0 Int0 Int2 Int9000 Bool0 Double0 Double0 Int0 Empty Empty Double125 Courier New y = Eq1.Y2 x = Eq1.t setindep("y", "x"); Int8 y Int16711680 Int1 y < Post Processed > Bool0 Bool0 Int0 Int2 Int8999 Double0 Double0 Int0 Empty Empty Double125 Courier New y = Eq1.Y3 x = Eq1.t setindep("y", "x"); Int8 y Int43520 Int3 y < Post Processed > Bool0 Bool0 Int0 Int2 Int8998 Bool0 Double14 Waveforms Y Bool1 Bool0 Bool1 Int1 Int2 Bool1 Bool0 Bool0 Int1 Int0 Int1 Double0.2173 Double0.1674375 Bool0 Double0 Double0 Int7000 Int0 Int1 Int2 Bool1 Bool1 Bool1 Bool1 Bool0 Int10 Int2 Double-3 Double3 Int255 Int0 Int12632256 Int0 Int0 Int9 Int10000 Int255 Bool1 |Y(f)| Int0 Int1 Int1 Int2 Bool1 Bool1 Bool0 Bool1 Bool0 Int10 Int2 Double0 Double10 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 Bool1 Int2 Int1 Int2 Bool1 Bool1 Bool1 Bool1 Bool0 Int10 Int2 Double0 Double6400 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 Hz Int0 Int0 Bool1 Double0 Double0 Double1 Array_Dbl641;4;;;YtAxpXiRy24;}}}}}}}Fl24 Array_Dbl641;4;;;Ox14;k14 Array_I641;4;K;j3;U7;78 Int1 Bool1 Int1 Int1073741824 Int8000 Arial Double8 Double0 Double3843.5850715637202 Double7282.7830188679236 Double156.4149284362793 Double0 Double0 Int0 Empty Empty Double125 Courier New y = Eq1.x1 x = Eq1.freq setindep("y", "x"); Int8 y Int255 Int2 y < Post Processed > Bool0 Bool0 Int0 Int2 Int9000 Double0 Double0 Int0 Empty Empty Double125 Courier New y = Eq1.x2 x = Eq1.freq setindep("y", "x"); Int8 y Int16711680 Int1 y < Post Processed > Bool0 Bool0 Int0 Int0 Int8999 Double0 Double0 Int0 Empty Empty Double125 Courier New y = Eq1.x3 x = Eq1.freq setindep("y", "x"); Int8 y Int43520 Int3 y < Post Processed > Bool0 Bool0 Int0 Int2 Int8998 Bool0 Bool0 Double14 Spectrum Analysis Y Bool1 Bool0 Bool1 Int1 Int2 Bool1 Bool0 Bool0 Int1 Int0 Int1 Double0.1016 Double0.18498268867924528 Bool0 Double0 Double0 Int7000 Int0 Int1 Int2 Bool1 Bool1 Bool1 Bool0 Bool0 Int13 Int2 Double-4 Double2.5 Int255 Int0 Int12632256 Int0 Int0 Int9 Int10000 Int255 Bool1 Recovered Mag(Y3) Int0 Int1 Int1 Int2 Bool1 Bool1 Bool0 Bool1 Bool0 Int10 Int2 Double0 Double10 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 Bool1 Int2 Int1 Int2 Bool1 Bool1 Bool1 Bool0 Bool0 Int10 Int2 Double0 Double0.01 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 time(sec) Int0 Int0 Bool1 Double0 Double0 Double1 Array_Dbl641;4;;;Y5BMiOnyp24;TbrLMNP5034 Array_Dbl641;4;;;t14;W224 Array_I641;4;m;p1;q6;jB Int1 Bool1 Int0 Int1073741824 Int8000 Arial Double8 Double0 Double8078.7556752382607 Double5107.0866141732276 Double156.4149284362793 Double0 Double0 Int8 y Int255 Int2 y < Post Processed > Bool0 Bool0 Int0 Int2 Int9000 Int0 Empty Empty Double125 Courier New y = Eq1.y3 x = Eq1.t setindep("y", "x"); Bool0 Double14 Recovered Waveform Y Bool1 Bool0 Bool1 Int1 Int2 Bool1 Bool0 Bool0 Int1 Int0 Int1 Double0.20917333333333332 Double0.12972 Bool0 <P>25-apr-2012</P> <P>M.W. Ingalls</P> <P>&nbsp;</P> <P>In the Eq1 block I have tried to constuct a discreet sampling of a 10 nSec waveform comprised of a 1 kHz cosine, magnitude 1.5, and a 500 Hz sine, magnitude 2.3. In order to have sufficient resolution, we have chosen 256 sampled data points.</P> <P>&nbsp;</P> <P>The time interval between samples is T/N, approx. = 36 uSec. The sample frequency is thus 25.6 kHz. (The high sample frequency results from the large number of data points in order make the time-domain plots smooth. I can recover the correct spectrum with as few as 20 data points.)</P> <P>&nbsp;</P> <H2>Scaling</H2> <P>Refer to L.N. Thibos, ch 4.</P> Array_Dbl641;4;;;oa9JcCXdw24;248GWmXt24 Array_Dbl641;4;;;i{14;8x14 Array_I641;4;f;e1;e8;49 Int1 Bool1 Int4 Bool0 Bool0 <P>From Brigham, ch. 05:</P> <BLOCKQUOTE style="MARGIN-RIGHT: 0px" dir=ltr> <P>"Analogous to time domain sampling there exists a sampling theorem in the frequency domain. If a function <EM>h(t)</EM> is time-;imited, that is</P> <P>&nbsp;</P> <P align=center><EM>h(t) = 0 |t| &gt; Tc</EM></P> <P align=center>&nbsp;</P> <P align=left>then its Fourier transform <EM>H(f)</EM> can be uniquely determined from equidistant samples of <EM>H(f)."</EM></P></BLOCKQUOTE> <P dir=ltr align=left>Refer to Hines &amp; Stinehelfer '74</P> <P dir=ltr align=left>&nbsp;</P> Array_Dbl641;4;;;iNlUzwDHo24;vobBNkq4w24 Array_Dbl641;4;;;4r14;4{14 Array_I641;4;i;K;H6;h9 Int1 Bool0 Int0 Bool0 Bool0 Bool0 Int0 Array_Dbl641;4;;;b8HY49Iqq24;shNlUzAMg24 Array_Dbl641;4;;;u14;Ok14 Schematic Array_I641;4;1;;L6;m4 Int1 Bool0 Int1 Bool0 *INP INPUT Impedance Int2000 Int5 Bool1 Port Number Int3 Bool0 Int1 Input: Standard (*INP) INP_INPUT Int0 Basic Int180 Port_1,1 *INP INPUT Impedance Int2000 Int5 Bool1 Port Number Int3 Bool0 Int1 *GND GROUND True Ground GND_GROUND Int0 SIGNAL_GROUND Basic 90 Bool1 Port_1,2 *GND GROUND TLP TLE Impedance Int34769 Int0 Double49 R0 Physical Length Int6005 Int2 Array_Dbl642;201;1;;xHXh75kU4{3;xHXh75kUK{3;uwHXh75kU{3;xHXh75kUa{3;QcPcPcPcf{3;uwHXh75kk{3;i75kUKuwn{3;xHXh75kUq{3;ARzemrZ2t{3;QcPcPcPcv{3;fmrZ2NFAy{3;uwHXh75k{{3;a2NFARze0}3;i75kUKuw1}3;pCpCpCpC3}3;xHXh75kU4}3;3NFARzem5}3;ARzemrZ27}3;IXh75kUK8}3;QcPcPcPc9}3;Xh75kUKuA}3;fmrZ2NFAC}3;nrZ2NFARD}3;uwHXh75kE}3;G}3;a2NFARzeG}3;85kUKuwHH}3;i75kUKuwH}3;FARzemrZI}3;pCpCpCpCJ}3;NFARzemrJ}3;xHXh75kUK}3;VKuwHXh7L}3;3NFARzemL}3;dPcPcPcPM}3;ARzemrZ2N}3;kUKuwHXhN}3;IXh75kUKO}3;sZ2NFARzO}3;QcPcPcPcP}3;{emrZ2NFQ}3;Xh75kUKuQ}3;5kUKuwHXS}3;fmrZ2NFAR}3;DpCpCpCpR}3;nrZ2NFART}3;LuwHXh75U}3;uwHXh75kU}3;RzemrZ2NV}3;W}3;IXh75kUKW}3;a2NFARzeW}3;sZ2NFARzW}3;85kUKuwHX}3;QcPcPcPcX}3;i75kUKuwX}3;{emrZ2NFY}3;FARzemrZY}3;Xh75kUKuY}3;pCpCpCpCZ}3;5kUKuwHXZ}3;NFARzemrZ}3;fmrZ2NFAa}3;xHXh75kUa}3;DpCpCpCpa}3;VKuwHXh7b}3;nrZ2NFARb}3;3NFARzemb}3;LuwHXh75c}3;dPcPcPcPc}3;uwHXh75kc}3;ARzemrZ2d}3;RzemrZ2Nd}3;kUKuwHXhd}3;e}3;IXh75kUKe}3;a2NFARzee}3;sZ2NFARze}3;85kUKuwHf}3;QcPcPcPcf}3;i75kUKuwf}3;{emrZ2NFg}3;GARzemrZg}3;Xh75kUKug}3;pCpCpCpCh}3;5kUKuwHXh}3;NFARzemrh}3;fmrZ2NFAi}3;xHXh75kUi}3;DpCpCpCpi}3;VKuwHXh7j}3;nrZ2NFARj}3;3NFARzemj}3;LuwHXh75k}3;dPcPcPcPk}3;uwHXh75kk}3;ARzemrZ2l}3;RzemrZ2Nl}3;kUKuwHXhl}3;m}3;fmrZ2NFAm}3;IXh75kUKm}3;xHXh75kUm}3;a2NFARzem}3;DpCpCpCpm}3;sZ2NFARzm}3;VKuwHXh7n}3;85kUKuwHn}3;nrZ2NFARn}3;QcPcPcPcn}3;3NFARzemn}3;i75kUKuwn}3;LuwHXh75o}3;{emrZ2NFo}3;dPcPcPcPo}3;FARzemrZo}3;uwHXh75ko}3;Xh75kUKuo}3;ARzemrZ2p}3;pCpCpCpCp}3;RzemrZ2Np}3;5kUKuwHXp}3;kUKuwHXhp}3;NFARzemrp}3;q}3;fmrZ2NFAq}3;IXh75kUKq}3;xHXh75kUq}3;a2NFARzeq}3;DpCpCpCpq}3;sZ2NFARzq}3;VKuwHXh7r}3;85kUKuwHr}3;nrZ2NFARr}3;QcPcPcPcr}3;3NFARzemr}3;i75kUKuwr}3;LuwHXh75s}3;{emrZ2NFs}3;dPcPcPcPs}3;FARzemrZs}3;uwHXh75ks}3;Xh75kUKus}3;ARzemrZ2t}3;pCpCpCpCt}3;RzemrZ2Nt}3;5kUKuwHXt}3;kUKuwHXht}3;NFARzemrt}3;u}3;fmrZ2NFAu}3;IXh75kUKu}3;xHXh75kUu}3;a2NFARzeu}3;DpCpCpCpu}3;sZ2NFARzu}3;VKuwHXh7v}3;85kUKuwHv}3;nrZ2NFARv}3;QcPcPcPcv}3;3NFARzemv}3;i75kUKuwv}3;LuwHXh75w}3;{emrZ2NFw}3;dPcPcPcPw}3;GARzemrZw}3;uwHXh75kw}3;Xh75kUKuw}3;ARzemrZ2x}3;pCpCpCpCx}3;RzemrZ2Nx}3;5kUKuwHXx}3;kUKuwHXhx}3;NFARzemrx}3;y}3;fmrZ2NFAy}3;IXh75kUKy}3;xHXh75kUy}3;a2NFARzey}3;DpCpCpCpy}3;sZ2NFARzy}3;VKuwHXh7z}3;85kUKuwHz}3;nrZ2NFARz}3;QcPcPcPcz}3;3NFARzemz}3;i75kUKuwz}3;LuwHXh75{}3;{emrZ2NF{}3;dPcPcPcP{}3;GARzemrZ{}3;uwHXh75k{}3;Xh75kUKu{}3;ARzemrZ2}}3;pCpCpCpC}}3;RzemrZ2N}}3;5kUKuwHX}}3;kUKuwHXh}}3;NFARzemr}}3;4 len Effective Dielectric Constant (Relative) Int2 Double1 1 Bool0 Loss in dB/meter at Freq Int2 Bool0 Bool1 Frequency for loss Int33771 Int2 Bool0 Bool1 Physical transmission line TLP_TLP Int0 SHORT_TLE T-Line Port_1,1|Port_2,4 TLP TLE Impedance Int34769 Int0 R0 Physical Length Int6005 Int2 len Effective Dielectric Constant (Relative) Int2 Double1 1 Bool0 Loss in dB/meter at Freq Int2 Bool0 Bool1 Frequency for loss Int33771 Int2 Bool0 Bool1 Bool0 SWITCH_Linear1 Switch1 Insertion Loss Int47769 Int1 Double1.0115794542598986 .05 Isolation Int47769 Int1 Bool1 Bool0 Switch State:0-Off,1-Port1,N-PortN Int1 Bool0 Double1 Bool1 Input Impedance Int34769 Int5 Bool1 Bool0 Output Impedance Int34769 Int5 Bool1 Bool0 Open Port Impedance Int34769 Int5 Bool1 Bool0 Switch - SPST SPST Int0 System Term_0,3|Term_1,2 SWITCH_NonLinear1 SDSwitch1 SWITCH_Linear1 Switch1 Insertion Loss Int47769 Int1 Double1.0115794542598986 .05 Isolation Int47769 Int1 Bool1 Bool0 Switch State:0-Off,1-Port1,N-PortN Int1 Bool0 Double1 Bool1 Input Impedance Int34769 Int5 Bool1 Bool0 Output Impedance Int34769 Int5 Bool1 Bool0 Open Port Impedance Int34769 Int5 Bool1 Bool0 Bool0 TLP TLE Impedance Int34769 Int0 R0 Double49 Physical Length Int6005 Int2 lenConn Double0.03 Effective Dielectric Constant (Relative) Int2 Double1 1 Bool0 Loss in dB/meter at Freq Int2 Bool0 Bool1 Frequency for loss Int33771 Int2 Bool0 Bool1 Physical transmission line TLP_TLP Int0 SHORT_TLE T-Line Port_1,6|Port_2,3 TLP TLE Impedance Int34769 Int0 R0 Double49 Physical Length Int6005 Int2 lenConn Double0.03 Effective Dielectric Constant (Relative) Int2 Double1 1 Bool0 Loss in dB/meter at Freq Int2 Bool0 Bool1 Frequency for loss Int33771 Int2 Bool0 Bool1 Bool0 ATTN_Linear ATTN Loss Int47769 Int1 Double10 dBAtt Input Impedance Int34769 Int5 Bool1 Bool0 Output Impedance Int34769 Int5 Bool1 Bool0 Attenuator Attn Int0 System Port_1,5|Port_2,6 ATTN_NonLinear AttnFreq SDATA_NL NPO2 NPOD2 ATTN_Linear ATTN Loss Int47769 Int1 dBAtt Double10 Input Impedance Int34769 Int5 Bool1 Bool0 Output Impedance Int34769 Int5 Bool1 Bool0 Bool0 TLP TLE Impedance Int34769 Int0 Double51 R1 Physical Length Int6005 Int2 Double0.03 lenAtt Effective Dielectric Constant (Relative) Int2 Double1 1 Bool0 Loss in dB/meter at Freq Int2 Double10 dBAtt Bool1 Bool0 Frequency for loss Int33771 Int2 Bool0 Bool1 Physical transmission line TLP_TLP Int0 SHORT_TLE T-Line Port_1,4|Port_2,5 TLP TLE Impedance Int34769 Int0 R1 Double51 Physical Length Int6005 Int2 lenAtt Double0.03 Effective Dielectric Constant (Relative) Int2 Double1 1 Bool0 Loss in dB/meter at Freq Int2 dBAtt Bool1 Bool0 Double10 Frequency for loss Int33771 Int2 Bool0 Bool1 Bool0 1.0 Int6003 Double166.666667 Int0 Int128 Double0 Double0 Double11000 Double8500 Int32 Bool1 Double90.909090909090907 Array_Dbl641;4;gU3lll0NN24;uattKjSmW24;M8F4qTnny24;DqVmZpz5r24 Array_Dbl641;4;;;Rs14;ue14 Bool0 TL3 Double2500.0000088334455 Double3208.3334145839531 TLE Double0 Double125 Bool0 Int1 Bool1 Double500 Double290.5 Bool1 Int0 TL3 Bool0 Int5 Double0 Double0 Int1 Int11141120 Z=49Ω [R0] Bool0 Int5 Double0 Double112.82 Int1 Int11141120 L=10cm [len] Bool0 Int5 Double0 Double225.64 Int1 G1 Double90 Double6998.6672370624783 Double3222.0001841561725 GROUND Double0 Double111 Bool0 Int1 Bool1 Double120.73195648193359 Double262.49942016601562 TL2 Double5165.9999113647273 Double3208.000025302671 TLE Double0 Double125 Bool0 Int1 Bool1 Double500 Double290.5 Bool1 Int0 TL2 Bool0 Int5 Double0 Double0 Int1 Int11141120 Z=49Ω [R0] Bool0 Int5 Double0 Double112.82 Int1 Int11141120 L=3cm [lenConn] Bool0 Int5 Double0 Double225.64 Int1 Attn_1 Double4500 Double3000 ATTN Double0 Double333 Bool0 Int1 Bool1 Double333 Double590.5 Bool1 Int0 Attn_1 Bool0 Int5 Double0 Double0 Int1 Int11141120 L=10dB [dBAtt] Bool0 Int5 Double0 Double112.82 Int1 TL1 Double3499.9999999999991 Double3208.0000000000005 TLE Double0 Double125 Bool0 Int1 Bool1 Double500 Double290.5 Bool1 Int0 TL1 Bool0 Int5 Double0 Double0 Int1 Int11141120 Z=51Ω [R1] Bool0 Int5 Double0 Double112.82 Int1 Int11141120 L=3cm [lenAtt] Bool0 Int5 Double0 Double225.64 Int1 SPST_1 Double6331.333515906229 Double2999.6666158593548 Switch1 Double0 Double333 Bool0 Int1 Bool1 Double333 Double595 Bool1 Int0 SPST_1 Bool0 Int5 Double0 Double0 Int1 Int11141120 IL=.05dB Bool0 Int5 Double0 Double112.82 Int1 Bool0 Int0 Int0 Int1 Array_Dbl641;4;KLmu24;W}}2g24;W5u24;W2g24 Double0 Double0 Bool0 Int1 Int1 Port_1 Double2500.0002769765688 Double3250.3333997655968 INPUT Double0 Double83 Bool0 Double180 Int1 Bool1 Double77.99951171875 Double206.500244140625 Bool1 Int0 Port_1 Bool0 Int5 Double0 Double-112.82 Int9 Int11141120 ZO=50Ω Bool0 Int5 Double0 Double1.1657341758564144e-015 Int9 Double-180 Double0.2159 Double0.27940000000000004 Double90.909090909090907 Bool0 Int1 Bool0 Bool1 27 Int12001 Double27 fig2_ckt 'fig2_ckt ' ' Bool1 Bool0 Int0 Double2000000000 Int1004 fstart Double10000000000 Int1004 fstop Double201 npts Int0 Double1000000 Int1004 0.001 ' Int1004 Int0 Double1e-010 Int3001 100e-12 Double18 18 Bool0 Double0 Double0 Int7000 Int0 Int1 Int2 Bool1 Bool1 Bool1 Bool1 Bool0 Int10 Int2 Double0.056234132519034911 Double0.14125375446227545 Int255 Int0 Int12632256 Int0 Int0 Int9 Int10000 Int13002 Int255 Bool1 dB Int1 Int1 Int2 Bool1 Bool1 Bool0 Bool1 Bool0 Int10 Int2 Double0 Double10 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 Bool1 Int2 Int1 Int2 Bool1 Bool1 Bool1 Bool1 Bool0 Int10 Int2 Double2000000000 Double10000000000 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 GHz Int1004 Int0 Bool1 Double0 Double0 Double1 Array_Dbl641;4;;;GW0124eSo24;35AKeGXBz24 Array_Dbl641;4;;;Gr14;o024 Array_I641;4;M;Z2;{5;EC Int1 Bool0 Int4 Int1073741824 Int8000 Arial Double8 Double0 Double7313.6638117212015 Double4718.5039370078739 Double156.4149284362793 Double0 Double0 Int0 Empty Empty Double125 Courier New Inl_i=S Int7 Int255 Int2 S fig2_f_Data Bool0 Bool0 Int0 Int1 Int9000 Bool0 Bool0 Double14 S11(f) X Bool1 Bool0 Bool1 Int1 Int2 Bool1 Bool0 Bool0 Int1 Int0 Int1 Double0.18974 Double0.11985 Bool0 Int1 Double201 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Double0.3 Double0.3 Array_Dbl641;4;;;vobBNkCCp24;tiPpcDBTn24 Array_Dbl641;4;;;8s14;8q14 Array_I641;4;h;O6;X6;TC Int1 Bool0 Int4 Bool0 %Special Genesys syntax using('fig2_f_Data'); % %What happens to frequency? N=numel(S); tdr=1/N*ifft(S(:,1)); v_ph=30e9 len=[0:N-1]%*(v_ph*deltaT) Int0 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Int1004 Bool1 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02 Hines and Stinehelfer\HS_fig_2\fig2_f_Data\Eqns\VarBlock\F Int13002 Bool1 Array_Cplx642;2;201;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914;;914; 02 Hines and Stinehelfer\HS_fig_2\fig2_f_Data\Eqns\VarBlock\F Int2000 Bool1 Linear Analysis : fig2_f 5/1/2012..10:36 AM Execution time: 0.0546 sec Bool1 vswr(S[1,1]) 02 Hines and Stinehelfer\HS_fig_2\fig2_f_Data\Eqns\VarBlock\F Empty Empty Double125 Courier New Double125 Bool0 02 Hines and Stinehelfer\HS_fig_2\fig2_f_Data Int1 Double49 Double51 Double10 Int3 Bool1 Double3 Double10 Double3 Double2 Double10 Double201 Int8 Empty Empty Double125 Courier New Int2 Double0.3 Double0.026239067055393587 Array_Dbl641;4;;;SrgLhMbdn24;gIbALg4Ji24 Array_Dbl641;4;;;Kq14;Km14 Array_I641;4;G;y5;f5;0B Int1 Bool0 Int2 Bool0 R0=49%Cannot be precisely 50 R1=51 len=?10%cm lenAtt=3 dBAtt=10 lenConn=3 % fstart=2%GHz fstop=10 npts=201 %hee! hee! p=nextpow2(npts) %another undocumented %Matlab function! Double0 Double0 Int7000 Bool1 Arial Double8 Int400 Int0 Int0 Int1 Int2 Bool1 Bool1 Bool1 Bool1 Bool0 Int10 Int2 Double-20 Double20 Int255 Int0 Int12632256 Int0 Int0 Int9 Int10000 Int255 Bool1 Int0 Int1 Int1 Int2 Bool1 Bool1 Bool0 Bool1 Bool0 Int10 Int2 Double0 Double10 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 Bool1 Int2 Int1 Int2 Bool1 Bool1 Bool1 Bool0 Bool0 Int8 Int2 Double1 Double25 Int0 Int0 Int12632256 Int0 Int0 Int9 Int10000 cm Int0 Int0 Bool1 Double0 Double0 Double1 Array_Dbl641;4;;;1248G8Yv24;3mA0h0iTr24 Array_Dbl641;4;;;Rz14;iu14 Array_I641;4;;w4;h7;DC Int1 Bool0 Int1 Int1073741824 Int8000 Arial Double8 Double0 Double5338.3357277317 Double6536.5157480314956 Double156.4149284362793 Double0 Double0 Int0 Empty Empty Double125 Courier New y = fig2_eng.TDI11 x = fig2_eng.len setindep("y", "x"); Int8 y Int255 Int1 y < Post Processed > Bool0 Bool0 Int0 Int2 Int9000 Bool0 Double0 Double0 Int0 Empty Empty Double125 Courier New y = fig2_eng.TDR11 x = fig2_eng.len setindep("y", "x"); Int8 y Int16711680 Int1 y < Post Processed > Bool0 Bool0 Int0 Int2 Int8999 Bool0 Bool1 Double14 TDR X Bool1 Bool0 Bool1 Int1 Int2 Bool1 Bool0 Bool0 Int1 Int0 Int1 Double0.13956666666666667 Double0.1660275 Bool0 Int0 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Empty Empty Double125 Courier New Int2 Double0.24579124579124578 Double0.29373650107991361 Array_Dbl641;4;;;6COmW1JF134;48GW01AOo24 Array_Dbl641;4;;;u324;Cr14 Array_I641;4;O1;L;eB;j6 Int1 Bool0 Int4 Bool0 S11=fig2_f_Data.S[1,1] deltaf=(max(fig2_f_Data.F)-min(fig2_f_Data.F))/(npts-1) s=p t0=1/deltaf/2^s len=[0:2^s]*t0*(30e9/2) TDR11=real(ifft(S11,2^s)) TDI11=im(ifft(S11,2^s)) <P>26-apr-2012</P> <P>&nbsp;</P> <P>TDR of a 10 cm airline, a 3 cm, 10 dB attenuator, and a 3 cm offset short. We can change the start and stop frequencies of the sweep and still recover the lengths of the circuit elements, provided we collect enough frequency data. (Finally!)</P> <P>&nbsp;</P> <P>NOTE: "Math Language" is evidently "Matlab". You can search for Matlab syntax in the function reference that is not listed and come up with all sorts of wonderful functions!</P> Array_Dbl641;4;;;RvobBNkUm24;8HY49IKtx24 Array_Dbl641;4;;;p14;4024 Array_I641;4;51;H4;96;zC Int1 Bool0 Int3 Bool0 Int0 Double10000000 Double0 Double27 Double8.8541878170000005e-012 Double376.730313461 Double1.2566370614359173e-006 Double299792458 Double0.69314718055994529 Double2.7182818284590451 Double0.017453292519943295 Double57.295779513082323 Empty Empty Double125 Courier New FREQ=1e7 TIME=0.0 TEMPERATURE=27.0 _EPS0=8.854187817e-12 _ETA0=376.730313461 _MU0=1.2566370614359173e-6 _VAIR=2.99792458e8 _LN2=0.69314718055994530941723212145818 _EXP1=2.7182818284590452353602874713527 _DTOR=0.0174532925199432957692369076848861 _RTOD=1/_DTOR Bool0