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MOD_EXAMPLE/SPICE/FD_2_Wire_LTspice.lib 4.06 KB
a4086fdd   Steve Greedy   Add Example MOD
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* LTspice multi-conductor transmission line model
* Created by Spice cable model builder v2.3.1
*
* Transmission line subcircuit
*
*
* End 1 nodes:
*
* node:  2 cable number:  1 type:cylindrical name:single_wire  conductor number  1
* node:  3 cable number:  2 type:cylindrical name:single_wire  conductor number  1
*
* End 2 nodes:
*
* node:  4 cable number:  1 type:cylindrical name:single_wire  conductor number  1
* node:  5 cable number:  2 type:cylindrical name:single_wire  conductor number  1
*
.subckt  FD_2_Wire
+     2     3
+     4     5
*
* D.C. RESISTANCE END 1
*
Rdc_c1_e1                          2     6    1.666532E-01
Rdc_c2_e1                          3     1    1.666532E-01
*
* D.C. RESISTANCE END 2
*
Rdc_c1_e2                          4     7    1.666532E-01
Rdc_c2_e2                          5     1    1.666532E-01
*
* DOMAIN TRANSFORMATION END 1
*
*
* Domain decomposition Voltage sources used for current sensing
*
Vmeas_domain_decomp_c1_e1          6     9
*
* Domain decomposition Voltage controlled voltage sources (domain to conductor)
*
E_domain_decomp_c1_dc1_e1          9     1     8     1    1.000000E+00
*
* Domain decomposition Current controlled current sources (conductor to domain)
*
F_domain_decomp_c1_dc1_e1          1     8 Vmeas_domain_decomp_c1_e1         1.000000E+00
*
* DOMAIN TRANSFORMATION END 2
*
*
* Domain decomposition Voltage sources used for current sensing
*
Vmeas_domain_decomp_c1_e2          7    11
*
* Domain decomposition Voltage controlled voltage sources (domain to conductor)
*
E_domain_decomp_c1_dc1_e2         11     1    10     1    1.000000E+00
*
* Domain decomposition Current controlled current sources (conductor to domain)
*
F_domain_decomp_c1_dc1_e2          1    10 Vmeas_domain_decomp_c1_e2         1.000000E+00
*
* DOMAIN      1
*
*
* Modal Decomposition
*
*
* Modal decomposition Voltage sources used for current sensing
*
Vmeas_mode_decomp_d1_c1_e1         8    13
*
* Modal decomposition Voltage controlled voltage sources (mode to conductor)
*
E_mode_decomp_d1_c1_m1_e1         13     1    12     1    1.00000000E+00
*
* Modal decomposition Current controlled current sources (conductor to mode)
*
F_mode_decomp_d1_c1_m1_e1          1    12 Vmeas_mode_decomp_d1_c1_e1        1.00000000E+00
*
* Modal decomposition Voltage sources used for current sensing
*
Vmeas_mode_decomp_d1_c1_e2        10    15
*
* Modal decomposition Voltage controlled voltage sources (mode to conductor)
*
E_mode_decomp_d1_c1_m1_e2         15     1    14     1    1.00000000E+00
*
* Modal decomposition Current controlled current sources (conductor to mode)
*
F_mode_decomp_d1_c1_m1_e2          1    14 Vmeas_mode_decomp_d1_c1_e2        1.00000000E+00
*
* Modal impedance: end1
*
RZCm_d1_m1_e1                     12    16    3.305770E+02
*
* Modal impedance: end2
*
RZCm_d1_m1_e2                     14    17    3.305770E+02
*
* Modal frequency dependent voltage controlled voltage source : end1
*
E_m_d1_m1_e1                      16     1    18     1    1.000000E+00
*
* Modal frequency dependent voltage controlled voltage source : end2
*
E_m_d1_m1_e2                      17     1    19     1    1.000000E+00
*
* Delay line for positive z propagation
*
T_pz_d1_m1_e1                     19     1    20     1 Z0=    3.305770E+02 TD=    6.337718E-09
*
* Delay line for negative z propagation
*
T_mz_d1_m1_e2                     18     1    21     1 Z0=    3.305770E+02 TD=    6.337718E-09
*
* Modal impedances on modal positive z propagation delay lines
*
RZC_pz_d1_m1_e1                   19     1    3.305770E+02
*
* Modal impedances on modal negative z propagation delay lines
*
RZC_mz_d1_m1_e2                   18     1    3.305770E+02
*
* Delay line frequency dependent controlled sources for positive z propagation
*
E_m_pz_d1_m1_e1                   20    22    12     1    2.000000E+00
E_m_pz_d1_m1_e2                   22     1    16     1   -1.000000E+00
*
* Delay line frequency dependent controlled sources for negative z propagation
*
E_m_mz_d1_m1_e1                   21    23    14     1    2.000000E+00
E_m_mz_d1_m1_e2                   23     1    17     1   -1.000000E+00
*
.ends
*