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1526le5

May 7th, 2024 (edited)
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  1. * MC 1526le5
  2. .SUBCKT 1564 Y1 A1 B1 Y2 A2 B2 0V B3 A3 Y3 B4 A4 Y4 VCC
  3. .PARAM expV2 = 0.306
  4. .PARAM addV2 = {expV2}
  5. .PARAM expTau1 = 8.798E-8
  6. .PARAM addTau1 = 2.1E-7
  7. .PARAM Td1 = 200n
  8. .PARAM addTd1 = {{Td1} + 3.45E-7}
  9. .PARAM Td2 = 2u
  10. .PARAM Ip = 3m
  11. .PARAM In = 4.5m
  12. .PARAM dUnmax = 0.61
  13. .PARAM dUpmax = 1.37
  14. .PARAM Mn = 0.18
  15. .PARAM Mp = 0.33
  16. .PARAM koef = 1
  17. D1 A3 VCC DIODE AREA=8.0742E-010
  18. M1 Daa001 Gaa001 2 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  19. V0013 U336/OUT Gaa001 AC 0.0 PWL FILE=long3.txt
  20. R0015 Daa001 14 {koef*abs(Mp*(V(U336/OUT,Gaa001)/dUpmax)*V(Daa001,2)/Ip)*(time>Td1)}
  21. D2 Y3 VCC DIODE AREA=8.3742E-010
  22. D3 B4 VCC DIODE AREA=8.0742E-010
  23. D4 A4 VCC DIODE AREA=8.0742E-010
  24. D5 Y4 VCC DIODE AREA=8.3742E-010
  25. D6 0V A3 DIODE AREA=1.10476E-009
  26. R1 11 A3 RES R=46.875
  27. R2 11 U24/OUT RES R=65.8621
  28. M2 Daa002 Gaa002 6 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=6.76774E-010 PD=0.000183169 AS=9.206E-011 PS=6.52642E-005
  29. V0023 U24/OUT Gaa002 AC 0.0 PWL FILE=long3.txt
  30. R0025 Daa002 VCC {koef*abs(Mp*(V(U24/OUT,Gaa002)/dUpmax)*V(Daa002,6)/Ip)*(time>Td1)}
  31. M3 Daa003 Gaa003 6 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  32. V0033 U336/OUT Gaa003 AC 0.0 PWL FILE=long3.txt
  33. R0035 Daa003 14 {koef*abs(Mp*(V(U336/OUT,Gaa003)/dUpmax)*V(Daa003,6)/Ip)*(time>Td1)}
  34. M4 Daa004 Gaa004 5 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=6.76774E-010 PD=0.000183169 AS=9.206E-011 PS=6.52642E-005
  35. V0043 U336/OUT Gaa004 AC 0.0 PWL FILE=long3.txt
  36. R0045 Daa004 VCC {koef*abs(Mp*(V(U336/OUT,Gaa004)/dUpmax)*V(Daa004,5)/Ip)*(time>Td1)}
  37. M5 Daa005 Gaa005 5 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  38. V0053 U24/OUT Gaa005 AC 0.0 PWL FILE=long3.txt
  39. R0055 Daa005 14 {koef*abs(Mp*(V(U24/OUT,Gaa005)/dUpmax)*V(Daa005,5)/Ip)*(time>Td1)}
  40. M6 Daa006 Gaa006 2 VCC PCH L=3.39073E-006 W=7.26169E-005 AD=6.76774E-010 PD=0.000183169 AS=9.206E-011 PS=6.52642E-005
  41. V0063 U24/OUT Gaa006 AC 0.0 PWL FILE=long3.txt
  42. R0065 Daa006 VCC {koef*abs(Mp*(V(U24/OUT,Gaa006)/dUpmax)*V(Daa006,2)/Ip)*(time>Td1)}
  43. D7 0V Y3 DIODE AREA=8.82522E-010
  44. D8 0V VCC DIODE AREA=1.44052E-009
  45. D9 0V B4 DIODE AREA=1.10476E-009
  46. R3 18 B4 RES R=46.875
  47. D10 0V A4 DIODE AREA=1.10476E-009
  48. R4 25 A4 RES R=46.875
  49. D11 0V 11 DIODE AREA=3.1576E-010
  50. M7 Daa007 Gaa007 11 0V NCH L=2.84241E-006 W=0.000133647 AD=1.50882E-009 PD=0.000455609 AS=7.7048E-010 PS=0.000122822
  51. V0071 Naa4007 Gaa007 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  52. V0072 0V Naa4007 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  53. R0074 Daa007 0V {koef*abs(Mn*(V(0V,Gaa007)/dUnmax)*V(Daa007,11)/In)*(time>Td1)}
  54. M8 Daa008 Gaa008 11 0V NCH L=2.84241E-006 W=0.000133647 AD=5.6446E-010 PD=0.000164044 AS=7.7048E-010 PS=0.000122822
  55. V0081 Naa4008 Gaa008 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  56. V0082 0V Naa4008 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  57. R0084 Daa008 0V {koef*abs(Mn*(V(0V,Gaa008)/dUnmax)*V(Daa008,11)/In)*(time>Td1)}
  58. R5 26 U336/OUT RES R=65.8621
  59. M9 Daa009 Gaa009 VCC VCC PCH L=3.3907E-006 W=7.26169E-005 AD=9.20603E-011 PD=6.52642E-005 AS=6.76774E-010 PS=0.000183169
  60. V0093 U336/OUT Gaa009 AC 0.0 PWL FILE=long3.txt
  61. R0095 Daa009 13 {koef*abs(Mp*(V(U336/OUT,Gaa009)/dUpmax)*V(Daa009,VCC)/Ip)*(time>Td1)}
  62. M10 Daa010 Gaa010 13 VCC PCH L=3.6355E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.20603E-011 PS=6.52642E-005
  63. V0103 U24/OUT Gaa010 AC 0.0 PWL FILE=long3.txt
  64. R0105 Daa010 14 {koef*abs(Mp*(V(U24/OUT,Gaa010)/dUpmax)*V(Daa010,13)/Ip)*(time>Td1)}
  65. M11 Daa011 Gaa011 14 0V NCH L=3.02885E-006 W=4.76517E-005 AD=4.5557E-010 PD=0.000137102 AS=1.0902E-010 PS=3.85019E-005
  66. V0111 Naa4011 Gaa011 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  67. V0112 U24/OUT Naa4011 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  68. R0114 Daa011 0V {koef*abs(Mn*(V(U24/OUT,Gaa011)/dUnmax)*V(Daa011,14)/In)*(time>Td1)}
  69. M12 Daa012 Gaa012 16 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  70. V0123 14 Gaa012 AC 0.0 PWL FILE=long3.txt
  71. R0125 Daa012 VCC {koef*abs(Mp*(V(14,Gaa012)/dUpmax)*V(Daa012,16)/Ip)*(time>Td1)}
  72. M13 Daa013 Gaa013 16 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  73. V0133 14 Gaa013 AC 0.0 PWL FILE=long3.txt
  74. R0135 Daa013 VCC {koef*abs(Mp*(V(14,Gaa013)/dUpmax)*V(Daa013,16)/Ip)*(time>Td1)}
  75. M14 Daa014 Gaa014 Y3 VCC PCH L=3.57635E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  76. V0143 16 Gaa014 AC 0.0 PWL FILE=long3.txt
  77. R0145 Daa014 VCC {koef*abs(Mp*(V(16,Gaa014)/dUpmax)*V(Daa014,Y3)/Ip)*(time>Td1)}
  78. M15 Daa015 Gaa015 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  79. V0153 16 Gaa015 AC 0.0 PWL FILE=long3.txt
  80. R0155 Daa015 VCC {koef*abs(Mp*(V(16,Gaa015)/dUpmax)*V(Daa015,Y3)/Ip)*(time>Td1)}
  81. M16 Daa016 Gaa016 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  82. V0163 16 Gaa016 AC 0.0 PWL FILE=long3.txt
  83. R0165 Daa016 VCC {koef*abs(Mp*(V(16,Gaa016)/dUpmax)*V(Daa016,Y3)/Ip)*(time>Td1)}
  84. M17 Daa017 Gaa017 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  85. V0173 16 Gaa017 AC 0.0 PWL FILE=long3.txt
  86. R0175 Daa017 VCC {koef*abs(Mp*(V(16,Gaa017)/dUpmax)*V(Daa017,Y3)/Ip)*(time>Td1)}
  87. M18 Daa018 Gaa018 Y3 VCC PCH L=3.57635E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  88. V0183 16 Gaa018 AC 0.0 PWL FILE=long3.txt
  89. R0185 Daa018 VCC {koef*abs(Mp*(V(16,Gaa018)/dUpmax)*V(Daa018,Y3)/Ip)*(time>Td1)}
  90. M19 Daa019 Gaa019 Y3 VCC PCH L=3.57639E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  91. V0193 16 Gaa019 AC 0.0 PWL FILE=long3.txt
  92. R0195 Daa019 VCC {koef*abs(Mp*(V(16,Gaa019)/dUpmax)*V(Daa019,Y3)/Ip)*(time>Td1)}
  93. M20 Daa020 Gaa020 Y3 VCC PCH L=3.57639E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  94. V0203 16 Gaa020 AC 0.0 PWL FILE=long3.txt
  95. R0205 Daa020 VCC {koef*abs(Mp*(V(16,Gaa020)/dUpmax)*V(Daa020,Y3)/Ip)*(time>Td1)}
  96. M21 Daa021 Gaa021 Y3 VCC PCH L=3.57639E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  97. V0213 16 Gaa021 AC 0.0 PWL FILE=long3.txt
  98. R0215 Daa021 VCC {koef*abs(Mp*(V(16,Gaa021)/dUpmax)*V(Daa021,Y3)/Ip)*(time>Td1)}
  99. M22 Daa022 Gaa022 23 0V NCH L=3.02885E-006 W=4.76517E-005 AD=4.55569E-010 PD=0.000137102 AS=1.0902E-010 PS=3.85019E-005
  100. V0221 Naa4022 Gaa022 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  101. V0222 U131/OUT Naa4022 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  102. R0224 Daa022 0V {koef*abs(Mn*(V(U131/OUT,Gaa022)/dUnmax)*V(Daa022,23)/In)*(time>Td1)}
  103. M23 Daa023 Gaa023 19 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=5.43574E-010 PD=0.000174169 AS=9.206E-011 PS=6.52642E-005
  104. V0233 U131/OUT Gaa023 AC 0.0 PWL FILE=long3.txt
  105. R0235 Daa023 VCC {koef*abs(Mp*(V(U131/OUT,Gaa023)/dUpmax)*V(Daa023,19)/Ip)*(time>Td1)}
  106. M24 Daa024 Gaa024 19 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  107. V0243 U132/OUT Gaa024 AC 0.0 PWL FILE=long3.txt
  108. R0245 Daa024 23 {koef*abs(Mp*(V(U132/OUT,Gaa024)/dUpmax)*V(Daa024,19)/Ip)*(time>Td1)}
  109. M25 Daa025 Gaa025 18 0V NCH L=2.84241E-006 W=0.000133647 AD=2.0114E-010 PD=6.36759E-005 AS=7.7048E-010 PS=0.000122822
  110. V0251 Naa4025 Gaa025 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  111. V0252 0V Naa4025 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  112. R0254 Daa025 0V {koef*abs(Mn*(V(0V,Gaa025)/dUnmax)*V(Daa025,18)/In)*(time>Td1)}
  113. M26 Daa026 Gaa026 23 0V NCH L=3.02885E-006 W=4.76517E-005 AD=4.55569E-010 PD=0.000137102 AS=1.0902E-010 PS=3.85019E-005
  114. V0261 Naa4026 Gaa026 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  115. V0262 U132/OUT Naa4026 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  116. R0264 Daa026 0V {koef*abs(Mn*(V(U132/OUT,Gaa026)/dUnmax)*V(Daa026,23)/In)*(time>Td1)}
  117. R6 U131/OUT 18 RES R=65.8621
  118. D12 0V 18 DIODE AREA=3.1576E-010
  119. M27 Daa027 Gaa027 21 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=5.43574E-010 PD=0.000174169 AS=9.206E-011 PS=6.52642E-005
  120. V0273 U131/OUT Gaa027 AC 0.0 PWL FILE=long3.txt
  121. R0275 Daa027 VCC {koef*abs(Mp*(V(U131/OUT,Gaa027)/dUpmax)*V(Daa027,21)/Ip)*(time>Td1)}
  122. M28 Daa028 Gaa028 21 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  123. V0283 U132/OUT Gaa028 AC 0.0 PWL FILE=long3.txt
  124. R0285 Daa028 23 {koef*abs(Mp*(V(U132/OUT,Gaa028)/dUpmax)*V(Daa028,21)/Ip)*(time>Td1)}
  125. M29 Daa029 Gaa029 20 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=5.43574E-010 PD=0.000174169 AS=9.206E-011 PS=6.52642E-005
  126. V0293 U132/OUT Gaa029 AC 0.0 PWL FILE=long3.txt
  127. R0295 Daa029 VCC {koef*abs(Mp*(V(U132/OUT,Gaa029)/dUpmax)*V(Daa029,20)/Ip)*(time>Td1)}
  128. M30 Daa030 Gaa030 20 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  129. V0303 U131/OUT Gaa030 AC 0.0 PWL FILE=long3.txt
  130. R0305 Daa030 23 {koef*abs(Mp*(V(U131/OUT,Gaa030)/dUpmax)*V(Daa030,20)/Ip)*(time>Td1)}
  131. M31 Daa031 Gaa031 0V 0V NCH L=2.84241E-006 W=0.000133647 AD=7.7048E-010 PD=0.000122822 AS=1E-010 PS=3.4E-005
  132. V0311 Naa4031 Gaa031 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  133. V0312 0V Naa4031 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  134. R0314 Daa031 18 {koef*abs(Mn*(V(0V,Gaa031)/dUnmax)*V(Daa031,0V)/In)*(time>Td1)}
  135. M32 Daa032 Gaa032 24 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=5.43574E-010 PD=0.000174169 AS=9.20589E-011 PS=6.52642E-005
  136. V0323 U132/OUT Gaa032 AC 0.0 PWL FILE=long3.txt
  137. R0325 Daa032 VCC {koef*abs(Mp*(V(U132/OUT,Gaa032)/dUpmax)*V(Daa032,24)/Ip)*(time>Td1)}
  138. M33 Daa033 Gaa033 24 VCC PCH L=3.63558E-006 W=4.75002E-005 AD=1.09021E-010 PD=3.85019E-005 AS=9.20589E-011 PS=6.52642E-005
  139. V0333 U131/OUT Gaa033 AC 0.0 PWL FILE=long3.txt
  140. R0335 Daa033 23 {koef*abs(Mp*(V(U131/OUT,Gaa033)/dUpmax)*V(Daa033,24)/Ip)*(time>Td1)}
  141. M34 Daa034 Gaa034 25 0V NCH L=2.84241E-006 W=0.000133647 AD=2.0114E-010 PD=6.36759E-005 AS=7.7048E-010 PS=0.000122822
  142. V0341 Naa4034 Gaa034 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  143. V0342 0V Naa4034 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  144. R0344 Daa034 0V {koef*abs(Mn*(V(0V,Gaa034)/dUnmax)*V(Daa034,25)/In)*(time>Td1)}
  145. R7 U132/OUT 25 RES R=65.8621
  146. D13 0V 25 DIODE AREA=3.1576E-010
  147. M35 Daa035 Gaa035 25 0V NCH L=2.84241E-006 W=0.000133647 AD=1.87214E-009 PD=0.000555977 AS=7.7048E-010 PS=0.000122822
  148. V0351 Naa4035 Gaa035 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  149. V0352 0V Naa4035 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  150. R0354 Daa035 0V {koef*abs(Mn*(V(0V,Gaa035)/dUnmax)*V(Daa035,25)/In)*(time>Td1)}
  151. D14 0V VCC DIODE AREA=1.44052E-009
  152. D15 B3 VCC DIODE AREA=8.0742E-010
  153. M36 Daa036 Gaa036 26 0V NCH L=2.84241E-006 W=0.000133647 AD=1.03664E-009 PD=0.000309826 AS=7.7048E-010 PS=0.000122822
  154. V0361 Naa4036 Gaa036 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  155. V0362 0V Naa4036 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  156. R0364 Daa036 0V {koef*abs(Mn*(V(0V,Gaa036)/dUnmax)*V(Daa036,26)/In)*(time>Td1)}
  157. M37 Daa037 Gaa037 26 0V NCH L=2.84241E-006 W=0.000133647 AD=1.03664E-009 PD=0.000309826 AS=7.7048E-010 PS=0.000122822
  158. V0371 Naa4037 Gaa037 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  159. V0372 0V Naa4037 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  160. R0374 Daa037 0V {koef*abs(Mn*(V(0V,Gaa037)/dUnmax)*V(Daa037,26)/In)*(time>Td1)}
  161. M38 Daa038 Gaa038 16 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  162. V0381 Naa4038 Gaa038 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  163. V0382 14 Naa4038 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  164. R0384 Daa038 0V {koef*abs(Mn*(V(14,Gaa038)/dUnmax)*V(Daa038,16)/In)*(time>Td1)}
  165. M39 Daa039 Gaa039 16 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  166. V0391 Naa4039 Gaa039 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  167. V0392 14 Naa4039 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  168. R0394 Daa039 0V {koef*abs(Mn*(V(14,Gaa039)/dUnmax)*V(Daa039,16)/In)*(time>Td1)}
  169. M40 Daa040 Gaa040 14 0V NCH L=3.02885E-006 W=4.76517E-005 AD=4.5557E-010 PD=0.000137102 AS=1.0902E-010 PS=3.85019E-005
  170. V0401 Naa4040 Gaa040 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  171. V0402 U336/OUT Naa4040 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  172. R0404 Daa040 0V {koef*abs(Mn*(V(U336/OUT,Gaa040)/dUnmax)*V(Daa040,14)/In)*(time>Td1)}
  173. M41 Daa041 Gaa041 16 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  174. V0413 14 Gaa041 AC 0.0 PWL FILE=long3.txt
  175. R0415 Daa041 VCC {koef*abs(Mp*(V(14,Gaa041)/dUpmax)*V(Daa041,16)/Ip)*(time>Td1)}
  176. M42 Daa042 Gaa042 16 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  177. V0423 14 Gaa042 AC 0.0 PWL FILE=long3.txt
  178. R0425 Daa042 VCC {koef*abs(Mp*(V(14,Gaa042)/dUpmax)*V(Daa042,16)/Ip)*(time>Td1)}
  179. M43 Daa043 Gaa043 16 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  180. V0433 14 Gaa043 AC 0.0 PWL FILE=long3.txt
  181. R0435 Daa043 VCC {koef*abs(Mp*(V(14,Gaa043)/dUpmax)*V(Daa043,16)/Ip)*(time>Td1)}
  182. M44 Daa044 Gaa044 16 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  183. V0443 14 Gaa044 AC 0.0 PWL FILE=long3.txt
  184. R0445 Daa044 VCC {koef*abs(Mp*(V(14,Gaa044)/dUpmax)*V(Daa044,16)/Ip)*(time>Td1)}
  185. M45 Daa045 Gaa045 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  186. V0453 16 Gaa045 AC 0.0 PWL FILE=long3.txt
  187. R0455 Daa045 VCC {koef*abs(Mp*(V(16,Gaa045)/dUpmax)*V(Daa045,Y3)/Ip)*(time>Td1)}
  188. M46 Daa046 Gaa046 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  189. V0463 16 Gaa046 AC 0.0 PWL FILE=long3.txt
  190. R0465 Daa046 VCC {koef*abs(Mp*(V(16,Gaa046)/dUpmax)*V(Daa046,Y3)/Ip)*(time>Td1)}
  191. M47 Daa047 Gaa047 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  192. V0473 16 Gaa047 AC 0.0 PWL FILE=long3.txt
  193. R0475 Daa047 VCC {koef*abs(Mp*(V(16,Gaa047)/dUpmax)*V(Daa047,Y3)/Ip)*(time>Td1)}
  194. M48 Daa048 Gaa048 Y3 VCC PCH L=3.57639E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  195. V0483 16 Gaa048 AC 0.0 PWL FILE=long3.txt
  196. R0485 Daa048 VCC {koef*abs(Mp*(V(16,Gaa048)/dUpmax)*V(Daa048,Y3)/Ip)*(time>Td1)}
  197. M49 Daa049 Gaa049 Y3 VCC PCH L=3.57639E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  198. V0493 16 Gaa049 AC 0.0 PWL FILE=long3.txt
  199. R0495 Daa049 VCC {koef*abs(Mp*(V(16,Gaa049)/dUpmax)*V(Daa049,Y3)/Ip)*(time>Td1)}
  200. M50 Daa050 Gaa050 Y3 VCC PCH L=3.57639E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  201. V0503 16 Gaa050 AC 0.0 PWL FILE=long3.txt
  202. R0505 Daa050 VCC {koef*abs(Mp*(V(16,Gaa050)/dUpmax)*V(Daa050,Y3)/Ip)*(time>Td1)}
  203. M51 Daa051 Gaa051 28 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  204. V0511 Naa4051 Gaa051 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  205. V0512 23 Naa4051 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  206. R0514 Daa051 0V {koef*abs(Mn*(V(23,Gaa051)/dUnmax)*V(Daa051,28)/In)*(time>Td1)}
  207. M52 Daa052 Gaa052 28 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  208. V0521 Naa4052 Gaa052 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  209. V0522 23 Naa4052 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  210. R0524 Daa052 0V {koef*abs(Mn*(V(23,Gaa052)/dUnmax)*V(Daa052,28)/In)*(time>Td1)}
  211. M53 Daa053 Gaa053 28 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  212. V0531 Naa4053 Gaa053 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  213. V0532 23 Naa4053 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  214. R0534 Daa053 0V {koef*abs(Mn*(V(23,Gaa053)/dUnmax)*V(Daa053,28)/In)*(time>Td1)}
  215. M54 Daa054 Gaa054 28 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  216. V0541 Naa4054 Gaa054 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  217. V0542 23 Naa4054 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  218. R0544 Daa054 0V {koef*abs(Mn*(V(23,Gaa054)/dUnmax)*V(Daa054,28)/In)*(time>Td1)}
  219. M55 Daa055 Gaa055 28 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  220. V0553 23 Gaa055 AC 0.0 PWL FILE=long3.txt
  221. R0555 Daa055 VCC {koef*abs(Mp*(V(23,Gaa055)/dUpmax)*V(Daa055,28)/Ip)*(time>Td1)}
  222. M56 Daa056 Gaa056 28 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  223. V0563 23 Gaa056 AC 0.0 PWL FILE=long3.txt
  224. R0565 Daa056 VCC {koef*abs(Mp*(V(23,Gaa056)/dUpmax)*V(Daa056,28)/Ip)*(time>Td1)}
  225. M57 Daa057 Gaa057 28 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  226. V0573 23 Gaa057 AC 0.0 PWL FILE=long3.txt
  227. R0575 Daa057 VCC {koef*abs(Mp*(V(23,Gaa057)/dUpmax)*V(Daa057,28)/Ip)*(time>Td1)}
  228. M58 Daa058 Gaa058 28 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  229. V0583 23 Gaa058 AC 0.0 PWL FILE=long3.txt
  230. R0585 Daa058 VCC {koef*abs(Mp*(V(23,Gaa058)/dUpmax)*V(Daa058,28)/Ip)*(time>Td1)}
  231. M59 Daa059 Gaa059 28 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  232. V0593 23 Gaa059 AC 0.0 PWL FILE=long3.txt
  233. R0595 Daa059 VCC {koef*abs(Mp*(V(23,Gaa059)/dUpmax)*V(Daa059,28)/Ip)*(time>Td1)}
  234. M60 Daa060 Gaa060 28 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  235. V0603 23 Gaa060 AC 0.0 PWL FILE=long3.txt
  236. R0605 Daa060 VCC {koef*abs(Mp*(V(23,Gaa060)/dUpmax)*V(Daa060,28)/Ip)*(time>Td1)}
  237. M61 Daa061 Gaa061 28 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  238. V0613 23 Gaa061 AC 0.0 PWL FILE=long3.txt
  239. R0615 Daa061 VCC {koef*abs(Mp*(V(23,Gaa061)/dUpmax)*V(Daa061,28)/Ip)*(time>Td1)}
  240. M62 Daa062 Gaa062 28 VCC PCH L=3.62964E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  241. V0623 23 Gaa062 AC 0.0 PWL FILE=long3.txt
  242. R0625 Daa062 VCC {koef*abs(Mp*(V(23,Gaa062)/dUpmax)*V(Daa062,28)/Ip)*(time>Td1)}
  243. D16 0V B3 DIODE AREA=1.10476E-009
  244. D17 0V 26 DIODE AREA=3.1576E-010
  245. R8 26 B3 RES R=46.875
  246. M63 Daa063 Gaa063 16 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  247. V0631 Naa4063 Gaa063 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  248. V0632 14 Naa4063 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  249. R0634 Daa063 0V {koef*abs(Mn*(V(14,Gaa063)/dUnmax)*V(Daa063,16)/In)*(time>Td1)}
  250. M64 Daa064 Gaa064 16 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  251. V0641 Naa4064 Gaa064 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  252. V0642 14 Naa4064 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  253. R0644 Daa064 0V {koef*abs(Mn*(V(14,Gaa064)/dUnmax)*V(Daa064,16)/In)*(time>Td1)}
  254. M65 Daa065 Gaa065 16 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  255. V0653 14 Gaa065 AC 0.0 PWL FILE=long3.txt
  256. R0655 Daa065 VCC {koef*abs(Mp*(V(14,Gaa065)/dUpmax)*V(Daa065,16)/Ip)*(time>Td1)}
  257. M66 Daa066 Gaa066 16 VCC PCH L=3.62964E-006 W=5.29245E-005 AD=4.7717E-010 PD=0.000135217 AS=1.2902E-010 PS=4.25019E-005
  258. V0663 14 Gaa066 AC 0.0 PWL FILE=long3.txt
  259. R0665 Daa066 VCC {koef*abs(Mp*(V(14,Gaa066)/dUpmax)*V(Daa066,16)/Ip)*(time>Td1)}
  260. M67 Daa067 Gaa067 Y3 VCC PCH L=3.57642E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  261. V0673 16 Gaa067 AC 0.0 PWL FILE=long3.txt
  262. R0675 Daa067 VCC {koef*abs(Mp*(V(16,Gaa067)/dUpmax)*V(Daa067,Y3)/Ip)*(time>Td1)}
  263. M68 Daa068 Gaa068 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59658E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  264. V0683 16 Gaa068 AC 0.0 PWL FILE=long3.txt
  265. R0685 Daa068 VCC {koef*abs(Mp*(V(16,Gaa068)/dUpmax)*V(Daa068,Y3)/Ip)*(time>Td1)}
  266. M69 Daa069 Gaa069 Y3 VCC PCH L=3.57639E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  267. V0693 16 Gaa069 AC 0.0 PWL FILE=long3.txt
  268. R0695 Daa069 VCC {koef*abs(Mp*(V(16,Gaa069)/dUpmax)*V(Daa069,Y3)/Ip)*(time>Td1)}
  269. M70 Daa070 Gaa070 Y3 VCC PCH L=3.57639E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  270. V0703 16 Gaa070 AC 0.0 PWL FILE=long3.txt
  271. R0705 Daa070 VCC {koef*abs(Mp*(V(16,Gaa070)/dUpmax)*V(Daa070,Y3)/Ip)*(time>Td1)}
  272. M71 Daa071 Gaa071 Y3 VCC PCH L=3.5764E-006 W=6.89245E-005 AD=5.58448E-010 PD=0.000151674 AS=2.09021E-010 PS=5.85019E-005
  273. V0713 16 Gaa071 AC 0.0 PWL FILE=long3.txt
  274. R0715 Daa071 VCC {koef*abs(Mp*(V(16,Gaa071)/dUpmax)*V(Daa071,Y3)/Ip)*(time>Td1)}
  275. M72 Daa072 Gaa072 Y4 0V NCH L=2.96116E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  276. V0721 Naa4072 Gaa072 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  277. V0722 28 Naa4072 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  278. R0724 Daa072 0V {koef*abs(Mn*(V(28,Gaa072)/dUnmax)*V(Daa072,Y4)/In)*(time>Td1)}
  279. M73 Daa073 Gaa073 Y4 0V NCH L=2.96116E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  280. V0731 Naa4073 Gaa073 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  281. V0732 28 Naa4073 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  282. R0734 Daa073 0V {koef*abs(Mn*(V(28,Gaa073)/dUnmax)*V(Daa073,Y4)/In)*(time>Td1)}
  283. M74 Daa074 Gaa074 Y4 0V NCH L=2.96116E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  284. V0741 Naa4074 Gaa074 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  285. V0742 28 Naa4074 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  286. R0744 Daa074 0V {koef*abs(Mn*(V(28,Gaa074)/dUnmax)*V(Daa074,Y4)/In)*(time>Td1)}
  287. M75 Daa075 Gaa075 Y4 0V NCH L=2.96116E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  288. V0751 Naa4075 Gaa075 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  289. V0752 28 Naa4075 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  290. R0754 Daa075 0V {koef*abs(Mn*(V(28,Gaa075)/dUnmax)*V(Daa075,Y4)/In)*(time>Td1)}
  291. M76 Daa076 Gaa076 Y4 0V NCH L=2.96116E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  292. V0761 Naa4076 Gaa076 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  293. V0762 28 Naa4076 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  294. R0764 Daa076 0V {koef*abs(Mn*(V(28,Gaa076)/dUnmax)*V(Daa076,Y4)/In)*(time>Td1)}
  295. M77 Daa077 Gaa077 Y4 0V NCH L=2.96116E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  296. V0771 Naa4077 Gaa077 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  297. V0772 28 Naa4077 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  298. R0774 Daa077 0V {koef*abs(Mn*(V(28,Gaa077)/dUnmax)*V(Daa077,Y4)/In)*(time>Td1)}
  299. M78 Daa078 Gaa078 Y4 0V NCH L=2.96116E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  300. V0781 Naa4078 Gaa078 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  301. V0782 28 Naa4078 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  302. R0784 Daa078 0V {koef*abs(Mn*(V(28,Gaa078)/dUnmax)*V(Daa078,Y4)/In)*(time>Td1)}
  303. M79 Daa079 Gaa079 Y4 VCC PCH L=3.57633E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  304. V0793 28 Gaa079 AC 0.0 PWL FILE=long3.txt
  305. R0795 Daa079 VCC {koef*abs(Mp*(V(28,Gaa079)/dUpmax)*V(Daa079,Y4)/Ip)*(time>Td1)}
  306. M80 Daa080 Gaa080 Y4 VCC PCH L=3.57633E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  307. V0803 28 Gaa080 AC 0.0 PWL FILE=long3.txt
  308. R0805 Daa080 VCC {koef*abs(Mp*(V(28,Gaa080)/dUpmax)*V(Daa080,Y4)/Ip)*(time>Td1)}
  309. M81 Daa081 Gaa081 Y4 VCC PCH L=3.57633E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  310. V0813 28 Gaa081 AC 0.0 PWL FILE=long3.txt
  311. R0815 Daa081 VCC {koef*abs(Mp*(V(28,Gaa081)/dUpmax)*V(Daa081,Y4)/Ip)*(time>Td1)}
  312. M82 Daa082 Gaa082 Y4 VCC PCH L=3.57633E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  313. V0823 28 Gaa082 AC 0.0 PWL FILE=long3.txt
  314. R0825 Daa082 VCC {koef*abs(Mp*(V(28,Gaa082)/dUpmax)*V(Daa082,Y4)/Ip)*(time>Td1)}
  315. M83 Daa083 Gaa083 Y4 VCC PCH L=3.57637E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  316. V0833 28 Gaa083 AC 0.0 PWL FILE=long3.txt
  317. R0835 Daa083 VCC {koef*abs(Mp*(V(28,Gaa083)/dUpmax)*V(Daa083,Y4)/Ip)*(time>Td1)}
  318. M84 Daa084 Gaa084 Y4 VCC PCH L=3.57633E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  319. V0843 28 Gaa084 AC 0.0 PWL FILE=long3.txt
  320. R0845 Daa084 VCC {koef*abs(Mp*(V(28,Gaa084)/dUpmax)*V(Daa084,Y4)/Ip)*(time>Td1)}
  321. M85 Daa085 Gaa085 Y4 VCC PCH L=3.57633E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  322. V0853 28 Gaa085 AC 0.0 PWL FILE=long3.txt
  323. R0855 Daa085 VCC {koef*abs(Mp*(V(28,Gaa085)/dUpmax)*V(Daa085,Y4)/Ip)*(time>Td1)}
  324. M86 Daa086 Gaa086 Y4 VCC PCH L=3.57633E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  325. V0863 28 Gaa086 AC 0.0 PWL FILE=long3.txt
  326. R0865 Daa086 VCC {koef*abs(Mp*(V(28,Gaa086)/dUpmax)*V(Daa086,Y4)/Ip)*(time>Td1)}
  327. M87 Daa087 Gaa087 Y4 VCC PCH L=3.57633E-006 W=6.89245E-005 AD=5.59661E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  328. V0873 28 Gaa087 AC 0.0 PWL FILE=long3.txt
  329. R0875 Daa087 VCC {koef*abs(Mp*(V(28,Gaa087)/dUpmax)*V(Daa087,Y4)/Ip)*(time>Td1)}
  330. D18 0V Y4 DIODE AREA=8.8252E-010
  331. M88 Daa088 Gaa088 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  332. V0881 Naa4088 Gaa088 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  333. V0882 16 Naa4088 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  334. R0884 Daa088 0V {koef*abs(Mn*(V(16,Gaa088)/dUnmax)*V(Daa088,Y3)/In)*(time>Td1)}
  335. M89 Daa089 Gaa089 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  336. V0891 Naa4089 Gaa089 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  337. V0892 16 Naa4089 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  338. R0894 Daa089 0V {koef*abs(Mn*(V(16,Gaa089)/dUnmax)*V(Daa089,Y3)/In)*(time>Td1)}
  339. M90 Daa090 Gaa090 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  340. V0901 Naa4090 Gaa090 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  341. V0902 16 Naa4090 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  342. R0904 Daa090 0V {koef*abs(Mn*(V(16,Gaa090)/dUnmax)*V(Daa090,Y3)/In)*(time>Td1)}
  343. M91 Daa091 Gaa091 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  344. V0911 Naa4091 Gaa091 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  345. V0912 16 Naa4091 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  346. R0914 Daa091 0V {koef*abs(Mn*(V(16,Gaa091)/dUnmax)*V(Daa091,Y3)/In)*(time>Td1)}
  347. M92 Daa092 Gaa092 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  348. V0921 Naa4092 Gaa092 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  349. V0922 16 Naa4092 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  350. R0924 Daa092 0V {koef*abs(Mn*(V(16,Gaa092)/dUnmax)*V(Daa092,Y3)/In)*(time>Td1)}
  351. M93 Daa093 Gaa093 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  352. V0931 Naa4093 Gaa093 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  353. V0932 16 Naa4093 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  354. R0934 Daa093 0V {koef*abs(Mn*(V(16,Gaa093)/dUnmax)*V(Daa093,Y3)/In)*(time>Td1)}
  355. M94 Daa094 Gaa094 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  356. V0941 Naa4094 Gaa094 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  357. V0942 16 Naa4094 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  358. R0944 Daa094 0V {koef*abs(Mn*(V(16,Gaa094)/dUnmax)*V(Daa094,Y3)/In)*(time>Td1)}
  359. M95 Daa095 Gaa095 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  360. V0951 Naa4095 Gaa095 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  361. V0952 16 Naa4095 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  362. R0954 Daa095 0V {koef*abs(Mn*(V(16,Gaa095)/dUnmax)*V(Daa095,Y3)/In)*(time>Td1)}
  363. M96 Daa096 Gaa096 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  364. V0961 Naa4096 Gaa096 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  365. V0962 16 Naa4096 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  366. R0964 Daa096 0V {koef*abs(Mn*(V(16,Gaa096)/dUnmax)*V(Daa096,Y3)/In)*(time>Td1)}
  367. M97 Daa097 Gaa097 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  368. V0971 Naa4097 Gaa097 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  369. V0972 16 Naa4097 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  370. R0974 Daa097 0V {koef*abs(Mn*(V(16,Gaa097)/dUnmax)*V(Daa097,Y3)/In)*(time>Td1)}
  371. M98 Daa098 Gaa098 Y3 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.3157E-010 PD=0.000142055 AS=2.0902E-010 PS=5.85019E-005
  372. V0981 Naa4098 Gaa098 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  373. V0982 16 Naa4098 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  374. R0984 Daa098 0V {koef*abs(Mn*(V(16,Gaa098)/dUnmax)*V(Daa098,Y3)/In)*(time>Td1)}
  375. M99 Daa099 Gaa099 0V 0V NCH L=2.96118E-006 W=6.76517E-005 AD=2.09018E-010 PD=5.85019E-005 AS=5.3157E-010 PS=0.000142055
  376. V0991 Naa4099 Gaa099 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  377. V0992 16 Naa4099 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  378. R0994 Daa099 Y3 {koef*abs(Mn*(V(16,Gaa099)/dUnmax)*V(Daa099,0V)/In)*(time>Td1)}
  379. M100 Daa100 Gaa100 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69331E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  380. V1003 16 Gaa100 AC 0.0 PWL FILE=long3.txt
  381. R1005 Daa100 VCC {koef*abs(Mp*(V(16,Gaa100)/dUpmax)*V(Daa100,Y3)/Ip)*(time>Td1)}
  382. M101 Daa101 Gaa101 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69331E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  383. V1013 16 Gaa101 AC 0.0 PWL FILE=long3.txt
  384. R1015 Daa101 VCC {koef*abs(Mp*(V(16,Gaa101)/dUpmax)*V(Daa101,Y3)/Ip)*(time>Td1)}
  385. M102 Daa102 Gaa102 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69331E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  386. V1023 16 Gaa102 AC 0.0 PWL FILE=long3.txt
  387. R1025 Daa102 VCC {koef*abs(Mp*(V(16,Gaa102)/dUpmax)*V(Daa102,Y3)/Ip)*(time>Td1)}
  388. M103 Daa103 Gaa103 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69331E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  389. V1033 16 Gaa103 AC 0.0 PWL FILE=long3.txt
  390. R1035 Daa103 VCC {koef*abs(Mp*(V(16,Gaa103)/dUpmax)*V(Daa103,Y3)/Ip)*(time>Td1)}
  391. M104 Daa104 Gaa104 Y3 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69331E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  392. V1043 16 Gaa104 AC 0.0 PWL FILE=long3.txt
  393. R1045 Daa104 VCC {koef*abs(Mp*(V(16,Gaa104)/dUpmax)*V(Daa104,Y3)/Ip)*(time>Td1)}
  394. M105 Daa105 Gaa105 Y4 0V NCH L=2.9612E-006 W=6.76517E-005 AD=1.5004E-010 PD=4.23813E-005 AS=2.0902E-010 PS=5.85019E-005
  395. V1051 Naa4105 Gaa105 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  396. V1052 28 Naa4105 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  397. R1054 Daa105 0V {koef*abs(Mn*(V(28,Gaa105)/dUnmax)*V(Daa105,Y4)/In)*(time>Td1)}
  398. M106 Daa106 Gaa106 Y4 0V NCH L=2.9612E-006 W=6.76517E-005 AD=1.5004E-010 PD=4.23813E-005 AS=2.0902E-010 PS=5.85019E-005
  399. V1061 Naa4106 Gaa106 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  400. V1062 28 Naa4106 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  401. R1064 Daa106 0V {koef*abs(Mn*(V(28,Gaa106)/dUnmax)*V(Daa106,Y4)/In)*(time>Td1)}
  402. M107 Daa107 Gaa107 Y4 0V NCH L=2.9612E-006 W=6.76517E-005 AD=8.542E-011 PD=2.62191E-005 AS=2.0902E-010 PS=5.85019E-005
  403. V1071 Naa4107 Gaa107 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  404. V1072 28 Naa4107 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  405. R1074 Daa107 0V {koef*abs(Mn*(V(28,Gaa107)/dUnmax)*V(Daa107,Y4)/In)*(time>Td1)}
  406. M108 Daa108 Gaa108 Y4 0V NCH L=2.9612E-006 W=6.76517E-005 AD=1.04924E-009 PD=0.00028288 AS=2.0902E-010 PS=5.85019E-005
  407. V1081 Naa4108 Gaa108 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  408. V1082 28 Naa4108 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  409. R1084 Daa108 0V {koef*abs(Mn*(V(28,Gaa108)/dUnmax)*V(Daa108,Y4)/In)*(time>Td1)}
  410. M109 Daa109 Gaa109 Y4 0V NCH L=2.96121E-006 W=6.76517E-005 AD=1.04924E-009 PD=0.00028288 AS=2.09022E-010 PS=5.85019E-005
  411. V1091 Naa4109 Gaa109 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  412. V1092 28 Naa4109 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  413. R1094 Daa109 0V {koef*abs(Mn*(V(28,Gaa109)/dUnmax)*V(Daa109,Y4)/In)*(time>Td1)}
  414. M110 Daa110 Gaa110 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=1.617E-010 PD=4.73411E-005 AS=2.0902E-010 PS=5.85019E-005
  415. V1103 28 Gaa110 AC 0.0 PWL FILE=long3.txt
  416. R1105 Daa110 VCC {koef*abs(Mp*(V(28,Gaa110)/dUpmax)*V(Daa110,Y4)/Ip)*(time>Td1)}
  417. M111 Daa111 Gaa111 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=1.617E-010 PD=4.73411E-005 AS=2.0902E-010 PS=5.85019E-005
  418. V1113 28 Gaa111 AC 0.0 PWL FILE=long3.txt
  419. R1115 Daa111 VCC {koef*abs(Mp*(V(28,Gaa111)/dUpmax)*V(Daa111,Y4)/Ip)*(time>Td1)}
  420. M112 Daa112 Gaa112 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=9.225E-011 PD=2.9199E-005 AS=2.0902E-010 PS=5.85019E-005
  421. V1123 28 Gaa112 AC 0.0 PWL FILE=long3.txt
  422. R1125 Daa112 VCC {koef*abs(Mp*(V(28,Gaa112)/dUpmax)*V(Daa112,Y4)/Ip)*(time>Td1)}
  423. M113 Daa113 Gaa113 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=1.617E-010 PD=4.73411E-005 AS=2.0902E-010 PS=5.85019E-005
  424. V1133 28 Gaa113 AC 0.0 PWL FILE=long3.txt
  425. R1135 Daa113 VCC {koef*abs(Mp*(V(28,Gaa113)/dUpmax)*V(Daa113,Y4)/Ip)*(time>Td1)}
  426. M114 Daa114 Gaa114 Y4 VCC PCH L=3.57642E-006 W=6.89245E-005 AD=8.08485E-011 PD=2.36706E-005 AS=2.0902E-010 PS=5.85019E-005
  427. V1143 28 Gaa114 AC 0.0 PWL FILE=long3.txt
  428. R1145 Daa114 VCC {koef*abs(Mp*(V(28,Gaa114)/dUpmax)*V(Daa114,Y4)/Ip)*(time>Td1)}
  429. M115 Daa115 Gaa115 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=8.08485E-011 PD=2.36706E-005 AS=2.0902E-010 PS=5.85019E-005
  430. V1153 28 Gaa115 AC 0.0 PWL FILE=long3.txt
  431. R1155 Daa115 VCC {koef*abs(Mp*(V(28,Gaa115)/dUpmax)*V(Daa115,Y4)/Ip)*(time>Td1)}
  432. M116 Daa116 Gaa116 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=1.617E-010 PD=4.73411E-005 AS=2.0902E-010 PS=5.85019E-005
  433. V1163 28 Gaa116 AC 0.0 PWL FILE=long3.txt
  434. R1165 Daa116 VCC {koef*abs(Mp*(V(28,Gaa116)/dUpmax)*V(Daa116,Y4)/Ip)*(time>Td1)}
  435. M117 Daa117 Gaa117 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=8.085E-011 PD=2.36706E-005 AS=2.0902E-010 PS=5.85019E-005
  436. V1173 28 Gaa117 AC 0.0 PWL FILE=long3.txt
  437. R1175 Daa117 VCC {koef*abs(Mp*(V(28,Gaa117)/dUpmax)*V(Daa117,Y4)/Ip)*(time>Td1)}
  438. M118 Daa118 Gaa118 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=1.617E-010 PD=4.73411E-005 AS=2.0902E-010 PS=5.85019E-005
  439. V1183 28 Gaa118 AC 0.0 PWL FILE=long3.txt
  440. R1185 Daa118 VCC {koef*abs(Mp*(V(28,Gaa118)/dUpmax)*V(Daa118,Y4)/Ip)*(time>Td1)}
  441. M119 Daa119 Gaa119 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=1.617E-010 PD=4.73411E-005 AS=2.0902E-010 PS=5.85019E-005
  442. V1193 28 Gaa119 AC 0.0 PWL FILE=long3.txt
  443. R1195 Daa119 VCC {koef*abs(Mp*(V(28,Gaa119)/dUpmax)*V(Daa119,Y4)/Ip)*(time>Td1)}
  444. M120 Daa120 Gaa120 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=8.085E-011 PD=2.36706E-005 AS=2.0902E-010 PS=5.85019E-005
  445. V1203 28 Gaa120 AC 0.0 PWL FILE=long3.txt
  446. R1205 Daa120 VCC {koef*abs(Mp*(V(28,Gaa120)/dUpmax)*V(Daa120,Y4)/Ip)*(time>Td1)}
  447. M121 Daa121 Gaa121 Y4 VCC PCH L=3.57635E-006 W=6.89245E-005 AD=8.085E-011 PD=2.36706E-005 AS=2.0902E-010 PS=5.85019E-005
  448. V1213 28 Gaa121 AC 0.0 PWL FILE=long3.txt
  449. R1215 Daa121 VCC {koef*abs(Mp*(V(28,Gaa121)/dUpmax)*V(Daa121,Y4)/Ip)*(time>Td1)}
  450. M122 Daa122 Gaa122 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=1.617E-010 PD=4.73411E-005 AS=2.0902E-010 PS=5.85019E-005
  451. V1223 28 Gaa122 AC 0.0 PWL FILE=long3.txt
  452. R1225 Daa122 VCC {koef*abs(Mp*(V(28,Gaa122)/dUpmax)*V(Daa122,Y4)/Ip)*(time>Td1)}
  453. M123 Daa123 Gaa123 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=1.617E-010 PD=4.73411E-005 AS=2.0902E-010 PS=5.85019E-005
  454. V1233 28 Gaa123 AC 0.0 PWL FILE=long3.txt
  455. R1235 Daa123 VCC {koef*abs(Mp*(V(28,Gaa123)/dUpmax)*V(Daa123,Y4)/Ip)*(time>Td1)}
  456. M124 Daa124 Gaa124 Y4 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=8.085E-011 PD=2.36706E-005 AS=2.0902E-010 PS=5.85019E-005
  457. V1243 28 Gaa124 AC 0.0 PWL FILE=long3.txt
  458. R1245 Daa124 VCC {koef*abs(Mp*(V(28,Gaa124)/dUpmax)*V(Daa124,Y4)/Ip)*(time>Td1)}
  459. M125 Daa125 Gaa125 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  460. V1251 Naa4125 Gaa125 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  461. V1252 35 Naa4125 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  462. R1254 Daa125 0V {koef*abs(Mn*(V(35,Gaa125)/dUnmax)*V(Daa125,Y2)/In)*(time>Td1)}
  463. M126 Daa126 Gaa126 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  464. V1261 Naa4126 Gaa126 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  465. V1262 35 Naa4126 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  466. R1264 Daa126 0V {koef*abs(Mn*(V(35,Gaa126)/dUnmax)*V(Daa126,Y2)/In)*(time>Td1)}
  467. M127 Daa127 Gaa127 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  468. V1271 Naa4127 Gaa127 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  469. V1272 35 Naa4127 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  470. R1274 Daa127 0V {koef*abs(Mn*(V(35,Gaa127)/dUnmax)*V(Daa127,Y2)/In)*(time>Td1)}
  471. M128 Daa128 Gaa128 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  472. V1281 Naa4128 Gaa128 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  473. V1282 35 Naa4128 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  474. R1284 Daa128 0V {koef*abs(Mn*(V(35,Gaa128)/dUnmax)*V(Daa128,Y2)/In)*(time>Td1)}
  475. M129 Daa129 Gaa129 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  476. V1291 Naa4129 Gaa129 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  477. V1292 35 Naa4129 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  478. R1294 Daa129 0V {koef*abs(Mn*(V(35,Gaa129)/dUnmax)*V(Daa129,Y2)/In)*(time>Td1)}
  479. M130 Daa130 Gaa130 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  480. V1301 Naa4130 Gaa130 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  481. V1302 35 Naa4130 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  482. R1304 Daa130 0V {koef*abs(Mn*(V(35,Gaa130)/dUnmax)*V(Daa130,Y2)/In)*(time>Td1)}
  483. M131 Daa131 Gaa131 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37856E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  484. V1311 Naa4131 Gaa131 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  485. V1312 35 Naa4131 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  486. R1314 Daa131 0V {koef*abs(Mn*(V(35,Gaa131)/dUnmax)*V(Daa131,Y2)/In)*(time>Td1)}
  487. M132 Daa132 Gaa132 Y2 VCC PCH L=3.57642E-006 W=6.89245E-005 AD=5.65703E-010 PD=0.000155788 AS=2.0902E-010 PS=5.85019E-005
  488. V1323 35 Gaa132 AC 0.0 PWL FILE=long3.txt
  489. R1325 Daa132 VCC {koef*abs(Mp*(V(35,Gaa132)/dUpmax)*V(Daa132,Y2)/Ip)*(time>Td1)}
  490. M133 Daa133 Gaa133 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.65703E-010 PD=0.000155788 AS=2.0902E-010 PS=5.85019E-005
  491. V1333 35 Gaa133 AC 0.0 PWL FILE=long3.txt
  492. R1335 Daa133 VCC {koef*abs(Mp*(V(35,Gaa133)/dUpmax)*V(Daa133,Y2)/Ip)*(time>Td1)}
  493. M134 Daa134 Gaa134 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.65703E-010 PD=0.000155788 AS=2.0902E-010 PS=5.85019E-005
  494. V1343 35 Gaa134 AC 0.0 PWL FILE=long3.txt
  495. R1345 Daa134 VCC {koef*abs(Mp*(V(35,Gaa134)/dUpmax)*V(Daa134,Y2)/Ip)*(time>Td1)}
  496. M135 Daa135 Gaa135 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.65703E-010 PD=0.000155788 AS=2.0902E-010 PS=5.85019E-005
  497. V1353 35 Gaa135 AC 0.0 PWL FILE=long3.txt
  498. R1355 Daa135 VCC {koef*abs(Mp*(V(35,Gaa135)/dUpmax)*V(Daa135,Y2)/Ip)*(time>Td1)}
  499. M136 Daa136 Gaa136 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.65703E-010 PD=0.000155788 AS=2.0902E-010 PS=5.85019E-005
  500. V1363 35 Gaa136 AC 0.0 PWL FILE=long3.txt
  501. R1365 Daa136 VCC {koef*abs(Mp*(V(35,Gaa136)/dUpmax)*V(Daa136,Y2)/Ip)*(time>Td1)}
  502. M137 Daa137 Gaa137 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.65703E-010 PD=0.000155788 AS=2.0902E-010 PS=5.85019E-005
  503. V1373 35 Gaa137 AC 0.0 PWL FILE=long3.txt
  504. R1375 Daa137 VCC {koef*abs(Mp*(V(35,Gaa137)/dUpmax)*V(Daa137,Y2)/Ip)*(time>Td1)}
  505. D19 0V Y2 DIODE AREA=8.8252E-010
  506. M138 Daa138 Gaa138 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  507. V1381 Naa4138 Gaa138 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  508. V1382 29 Naa4138 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  509. R1384 Daa138 0V {koef*abs(Mn*(V(29,Gaa138)/dUnmax)*V(Daa138,Y1)/In)*(time>Td1)}
  510. M139 Daa139 Gaa139 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  511. V1391 Naa4139 Gaa139 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  512. V1392 29 Naa4139 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  513. R1394 Daa139 0V {koef*abs(Mn*(V(29,Gaa139)/dUnmax)*V(Daa139,Y1)/In)*(time>Td1)}
  514. M140 Daa140 Gaa140 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  515. V1401 Naa4140 Gaa140 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  516. V1402 29 Naa4140 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  517. R1404 Daa140 0V {koef*abs(Mn*(V(29,Gaa140)/dUnmax)*V(Daa140,Y1)/In)*(time>Td1)}
  518. M141 Daa141 Gaa141 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  519. V1411 Naa4141 Gaa141 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  520. V1412 29 Naa4141 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  521. R1414 Daa141 0V {koef*abs(Mn*(V(29,Gaa141)/dUnmax)*V(Daa141,Y1)/In)*(time>Td1)}
  522. M142 Daa142 Gaa142 Y1 0V NCH L=2.96123E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  523. V1421 Naa4142 Gaa142 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  524. V1422 29 Naa4142 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  525. R1424 Daa142 0V {koef*abs(Mn*(V(29,Gaa142)/dUnmax)*V(Daa142,Y1)/In)*(time>Td1)}
  526. M143 Daa143 Gaa143 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  527. V1433 29 Gaa143 AC 0.0 PWL FILE=long3.txt
  528. R1435 Daa143 VCC {koef*abs(Mp*(V(29,Gaa143)/dUpmax)*V(Daa143,Y1)/Ip)*(time>Td1)}
  529. M144 Daa144 Gaa144 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  530. V1443 29 Gaa144 AC 0.0 PWL FILE=long3.txt
  531. R1445 Daa144 VCC {koef*abs(Mp*(V(29,Gaa144)/dUpmax)*V(Daa144,Y1)/Ip)*(time>Td1)}
  532. M145 Daa145 Gaa145 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  533. V1453 29 Gaa145 AC 0.0 PWL FILE=long3.txt
  534. R1455 Daa145 VCC {koef*abs(Mp*(V(29,Gaa145)/dUpmax)*V(Daa145,Y1)/Ip)*(time>Td1)}
  535. M146 Daa146 Gaa146 VCC VCC PCH L=3.57636E-006 W=6.89245E-005 AD=2.09019E-010 PD=5.85019E-005 AS=5.5845E-010 PS=0.000151674
  536. V1463 29 Gaa146 AC 0.0 PWL FILE=long3.txt
  537. R1465 Daa146 Y1 {koef*abs(Mp*(V(29,Gaa146)/dUpmax)*V(Daa146,VCC)/Ip)*(time>Td1)}
  538. M147 Daa147 Gaa147 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  539. V1473 29 Gaa147 AC 0.0 PWL FILE=long3.txt
  540. R1475 Daa147 VCC {koef*abs(Mp*(V(29,Gaa147)/dUpmax)*V(Daa147,Y1)/Ip)*(time>Td1)}
  541. M148 Daa148 Gaa148 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  542. V1483 29 Gaa148 AC 0.0 PWL FILE=long3.txt
  543. R1485 Daa148 VCC {koef*abs(Mp*(V(29,Gaa148)/dUpmax)*V(Daa148,Y1)/Ip)*(time>Td1)}
  544. M149 Daa149 Gaa149 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  545. V1493 29 Gaa149 AC 0.0 PWL FILE=long3.txt
  546. R1495 Daa149 VCC {koef*abs(Mp*(V(29,Gaa149)/dUpmax)*V(Daa149,Y1)/Ip)*(time>Td1)}
  547. M150 Daa150 Gaa150 Y1 VCC PCH L=3.57642E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  548. V1503 29 Gaa150 AC 0.0 PWL FILE=long3.txt
  549. R1505 Daa150 VCC {koef*abs(Mp*(V(29,Gaa150)/dUpmax)*V(Daa150,Y1)/Ip)*(time>Td1)}
  550. M151 Daa151 Gaa151 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  551. V1513 29 Gaa151 AC 0.0 PWL FILE=long3.txt
  552. R1515 Daa151 VCC {koef*abs(Mp*(V(29,Gaa151)/dUpmax)*V(Daa151,Y1)/Ip)*(time>Td1)}
  553. M152 Daa152 Gaa152 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.5845E-010 PD=0.000151674 AS=2.0902E-010 PS=5.85019E-005
  554. V1523 29 Gaa152 AC 0.0 PWL FILE=long3.txt
  555. R1525 Daa152 VCC {koef*abs(Mp*(V(29,Gaa152)/dUpmax)*V(Daa152,Y1)/Ip)*(time>Td1)}
  556. D20 0V Y1 DIODE AREA=8.8252E-010
  557. M153 Daa153 Gaa153 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  558. V1531 Naa4153 Gaa153 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  559. V1532 35 Naa4153 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  560. R1534 Daa153 0V {koef*abs(Mn*(V(35,Gaa153)/dUnmax)*V(Daa153,Y2)/In)*(time>Td1)}
  561. M154 Daa154 Gaa154 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  562. V1541 Naa4154 Gaa154 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  563. V1542 35 Naa4154 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  564. R1544 Daa154 0V {koef*abs(Mn*(V(35,Gaa154)/dUnmax)*V(Daa154,Y2)/In)*(time>Td1)}
  565. M155 Daa155 Gaa155 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  566. V1551 Naa4155 Gaa155 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  567. V1552 35 Naa4155 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  568. R1554 Daa155 0V {koef*abs(Mn*(V(35,Gaa155)/dUnmax)*V(Daa155,Y2)/In)*(time>Td1)}
  569. M156 Daa156 Gaa156 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  570. V1561 Naa4156 Gaa156 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  571. V1562 35 Naa4156 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  572. R1564 Daa156 0V {koef*abs(Mn*(V(35,Gaa156)/dUnmax)*V(Daa156,Y2)/In)*(time>Td1)}
  573. M157 Daa157 Gaa157 Y2 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.4389E-010 PD=0.000149068 AS=2.0902E-010 PS=5.85019E-005
  574. V1571 Naa4157 Gaa157 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  575. V1572 35 Naa4157 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  576. R1574 Daa157 0V {koef*abs(Mn*(V(35,Gaa157)/dUnmax)*V(Daa157,Y2)/In)*(time>Td1)}
  577. M158 Daa158 Gaa158 35 VCC PCH L=3.62972E-006 W=5.29245E-005 AD=1.28823E-009 PD=0.000372385 AS=1.29022E-010 PS=4.25019E-005
  578. V1583 32 Gaa158 AC 0.0 PWL FILE=long3.txt
  579. R1585 Daa158 VCC {koef*abs(Mp*(V(32,Gaa158)/dUpmax)*V(Daa158,35)/Ip)*(time>Td1)}
  580. M159 Daa159 Gaa159 35 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.86771E-010 PD=0.000140931 AS=1.2902E-010 PS=4.25019E-005
  581. V1593 32 Gaa159 AC 0.0 PWL FILE=long3.txt
  582. R1595 Daa159 VCC {koef*abs(Mp*(V(32,Gaa159)/dUpmax)*V(Daa159,35)/Ip)*(time>Td1)}
  583. M160 Daa160 Gaa160 35 VCC PCH L=3.62972E-006 W=5.29245E-005 AD=1.28258E-010 PD=3.75487E-005 AS=1.29022E-010 PS=4.25019E-005
  584. V1603 32 Gaa160 AC 0.0 PWL FILE=long3.txt
  585. R1605 Daa160 VCC {koef*abs(Mp*(V(32,Gaa160)/dUpmax)*V(Daa160,35)/Ip)*(time>Td1)}
  586. M161 Daa161 Gaa161 35 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.86771E-010 PD=0.000140931 AS=1.2902E-010 PS=4.25019E-005
  587. V1613 32 Gaa161 AC 0.0 PWL FILE=long3.txt
  588. R1615 Daa161 VCC {koef*abs(Mp*(V(32,Gaa161)/dUpmax)*V(Daa161,35)/Ip)*(time>Td1)}
  589. M162 Daa162 Gaa162 35 VCC PCH L=3.62972E-006 W=5.29245E-005 AD=1.28258E-010 PD=3.75487E-005 AS=1.29022E-010 PS=4.25019E-005
  590. V1623 32 Gaa162 AC 0.0 PWL FILE=long3.txt
  591. R1625 Daa162 VCC {koef*abs(Mp*(V(32,Gaa162)/dUpmax)*V(Daa162,35)/Ip)*(time>Td1)}
  592. M163 Daa163 Gaa163 35 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.86771E-010 PD=0.000140931 AS=1.2902E-010 PS=4.25019E-005
  593. V1633 32 Gaa163 AC 0.0 PWL FILE=long3.txt
  594. R1635 Daa163 VCC {koef*abs(Mp*(V(32,Gaa163)/dUpmax)*V(Daa163,35)/Ip)*(time>Td1)}
  595. M164 Daa164 Gaa164 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  596. V1643 35 Gaa164 AC 0.0 PWL FILE=long3.txt
  597. R1645 Daa164 VCC {koef*abs(Mp*(V(35,Gaa164)/dUpmax)*V(Daa164,Y2)/Ip)*(time>Td1)}
  598. M165 Daa165 Gaa165 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  599. V1653 35 Gaa165 AC 0.0 PWL FILE=long3.txt
  600. R1655 Daa165 VCC {koef*abs(Mp*(V(35,Gaa165)/dUpmax)*V(Daa165,Y2)/Ip)*(time>Td1)}
  601. M166 Daa166 Gaa166 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  602. V1663 35 Gaa166 AC 0.0 PWL FILE=long3.txt
  603. R1665 Daa166 VCC {koef*abs(Mp*(V(35,Gaa166)/dUpmax)*V(Daa166,Y2)/Ip)*(time>Td1)}
  604. M167 Daa167 Gaa167 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  605. V1673 35 Gaa167 AC 0.0 PWL FILE=long3.txt
  606. R1675 Daa167 VCC {koef*abs(Mp*(V(35,Gaa167)/dUpmax)*V(Daa167,Y2)/Ip)*(time>Td1)}
  607. M168 Daa168 Gaa168 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37855E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  608. V1681 Naa4168 Gaa168 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  609. V1682 29 Naa4168 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  610. R1684 Daa168 0V {koef*abs(Mn*(V(29,Gaa168)/dUnmax)*V(Daa168,Y1)/In)*(time>Td1)}
  611. M169 Daa169 Gaa169 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37855E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  612. V1691 Naa4169 Gaa169 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  613. V1692 29 Naa4169 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  614. R1694 Daa169 0V {koef*abs(Mn*(V(29,Gaa169)/dUnmax)*V(Daa169,Y1)/In)*(time>Td1)}
  615. M170 Daa170 Gaa170 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37855E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  616. V1701 Naa4170 Gaa170 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  617. V1702 29 Naa4170 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  618. R1704 Daa170 0V {koef*abs(Mn*(V(29,Gaa170)/dUnmax)*V(Daa170,Y1)/In)*(time>Td1)}
  619. M171 Daa171 Gaa171 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37855E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  620. V1711 Naa4171 Gaa171 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  621. V1712 29 Naa4171 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  622. R1714 Daa171 0V {koef*abs(Mn*(V(29,Gaa171)/dUnmax)*V(Daa171,Y1)/In)*(time>Td1)}
  623. M172 Daa172 Gaa172 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37855E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  624. V1721 Naa4172 Gaa172 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  625. V1722 29 Naa4172 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  626. R1724 Daa172 0V {koef*abs(Mn*(V(29,Gaa172)/dUnmax)*V(Daa172,Y1)/In)*(time>Td1)}
  627. M173 Daa173 Gaa173 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37855E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  628. V1731 Naa4173 Gaa173 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  629. V1732 29 Naa4173 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  630. R1734 Daa173 0V {koef*abs(Mn*(V(29,Gaa173)/dUnmax)*V(Daa173,Y1)/In)*(time>Td1)}
  631. M174 Daa174 Gaa174 Y1 0V NCH L=2.9612E-006 W=6.76517E-005 AD=5.37855E-010 PD=0.000145633 AS=2.0902E-010 PS=5.85019E-005
  632. V1741 Naa4174 Gaa174 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  633. V1742 29 Naa4174 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  634. R1744 Daa174 0V {koef*abs(Mn*(V(29,Gaa174)/dUnmax)*V(Daa174,Y1)/In)*(time>Td1)}
  635. M175 Daa175 Gaa175 29 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.82931E-010 PD=0.000138645 AS=1.2902E-010 PS=4.25019E-005
  636. V1753 39 Gaa175 AC 0.0 PWL FILE=long3.txt
  637. R1755 Daa175 VCC {koef*abs(Mp*(V(39,Gaa175)/dUpmax)*V(Daa175,29)/Ip)*(time>Td1)}
  638. M176 Daa176 Gaa176 29 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.82931E-010 PD=0.000138645 AS=1.2902E-010 PS=4.25019E-005
  639. V1763 39 Gaa176 AC 0.0 PWL FILE=long3.txt
  640. R1765 Daa176 VCC {koef*abs(Mp*(V(39,Gaa176)/dUpmax)*V(Daa176,29)/Ip)*(time>Td1)}
  641. M177 Daa177 Gaa177 29 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.82931E-010 PD=0.000138645 AS=1.2902E-010 PS=4.25019E-005
  642. V1773 39 Gaa177 AC 0.0 PWL FILE=long3.txt
  643. R1775 Daa177 VCC {koef*abs(Mp*(V(39,Gaa177)/dUpmax)*V(Daa177,29)/Ip)*(time>Td1)}
  644. M178 Daa178 Gaa178 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69329E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  645. V1783 29 Gaa178 AC 0.0 PWL FILE=long3.txt
  646. R1785 Daa178 VCC {koef*abs(Mp*(V(29,Gaa178)/dUpmax)*V(Daa178,Y1)/Ip)*(time>Td1)}
  647. M179 Daa179 Gaa179 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69329E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  648. V1793 29 Gaa179 AC 0.0 PWL FILE=long3.txt
  649. R1795 Daa179 VCC {koef*abs(Mp*(V(29,Gaa179)/dUpmax)*V(Daa179,Y1)/Ip)*(time>Td1)}
  650. M180 Daa180 Gaa180 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69329E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  651. V1803 29 Gaa180 AC 0.0 PWL FILE=long3.txt
  652. R1805 Daa180 VCC {koef*abs(Mp*(V(29,Gaa180)/dUpmax)*V(Daa180,Y1)/Ip)*(time>Td1)}
  653. D21 0V VCC DIODE AREA=8.3742E-010
  654. M181 Daa181 Gaa181 32 0V NCH L=3.02885E-006 W=4.76517E-005 AD=4.5557E-010 PD=0.000137102 AS=1.0902E-010 PS=3.85019E-005
  655. V1811 Naa4181 Gaa181 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  656. V1812 U200/OUT Naa4181 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  657. R1814 Daa181 0V {koef*abs(Mn*(V(U200/OUT,Gaa181)/dUnmax)*V(Daa181,32)/In)*(time>Td1)}
  658. M182 Daa182 Gaa182 32 0V NCH L=3.02885E-006 W=4.76517E-005 AD=4.5557E-010 PD=0.000137102 AS=1.0902E-010 PS=3.85019E-005
  659. V1821 Naa4182 Gaa182 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  660. V1822 U201/OUT Naa4182 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  661. R1824 Daa182 0V {koef*abs(Mn*(V(U201/OUT,Gaa182)/dUnmax)*V(Daa182,32)/In)*(time>Td1)}
  662. M183 Daa183 Gaa183 35 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  663. V1831 Naa4183 Gaa183 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  664. V1832 32 Naa4183 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  665. R1834 Daa183 0V {koef*abs(Mn*(V(32,Gaa183)/dUnmax)*V(Daa183,35)/In)*(time>Td1)}
  666. M184 Daa184 Gaa184 35 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  667. V1841 Naa4184 Gaa184 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  668. V1842 32 Naa4184 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  669. R1844 Daa184 0V {koef*abs(Mn*(V(32,Gaa184)/dUnmax)*V(Daa184,35)/In)*(time>Td1)}
  670. M185 Daa185 Gaa185 31 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=6.76776E-010 PD=0.000183169 AS=9.206E-011 PS=6.52642E-005
  671. V1853 U201/OUT Gaa185 AC 0.0 PWL FILE=long3.txt
  672. R1855 Daa185 VCC {koef*abs(Mp*(V(U201/OUT,Gaa185)/dUpmax)*V(Daa185,31)/Ip)*(time>Td1)}
  673. M186 Daa186 Gaa186 31 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  674. V1863 U200/OUT Gaa186 AC 0.0 PWL FILE=long3.txt
  675. R1865 Daa186 32 {koef*abs(Mp*(V(U200/OUT,Gaa186)/dUpmax)*V(Daa186,31)/Ip)*(time>Td1)}
  676. M187 Daa187 Gaa187 30 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=6.76776E-010 PD=0.000183169 AS=9.206E-011 PS=6.52642E-005
  677. V1873 U200/OUT Gaa187 AC 0.0 PWL FILE=long3.txt
  678. R1875 Daa187 VCC {koef*abs(Mp*(V(U200/OUT,Gaa187)/dUpmax)*V(Daa187,30)/Ip)*(time>Td1)}
  679. M188 Daa188 Gaa188 30 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  680. V1883 U201/OUT Gaa188 AC 0.0 PWL FILE=long3.txt
  681. R1885 Daa188 32 {koef*abs(Mp*(V(U201/OUT,Gaa188)/dUpmax)*V(Daa188,30)/Ip)*(time>Td1)}
  682. M189 Daa189 Gaa189 35 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  683. V1891 Naa4189 Gaa189 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  684. V1892 32 Naa4189 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  685. R1894 Daa189 0V {koef*abs(Mn*(V(32,Gaa189)/dUnmax)*V(Daa189,35)/In)*(time>Td1)}
  686. M190 Daa190 Gaa190 35 0V NCH L=3.01109E-006 W=5.16517E-005 AD=4.61169E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  687. V1901 Naa4190 Gaa190 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  688. V1902 32 Naa4190 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  689. R1904 Daa190 0V {koef*abs(Mn*(V(32,Gaa190)/dUnmax)*V(Daa190,35)/In)*(time>Td1)}
  690. M191 Daa191 Gaa191 34 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=6.76776E-010 PD=0.000183169 AS=9.206E-011 PS=6.52642E-005
  691. V1913 U200/OUT Gaa191 AC 0.0 PWL FILE=long3.txt
  692. R1915 Daa191 VCC {koef*abs(Mp*(V(U200/OUT,Gaa191)/dUpmax)*V(Daa191,34)/Ip)*(time>Td1)}
  693. M192 Daa192 Gaa192 34 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  694. V1923 U201/OUT Gaa192 AC 0.0 PWL FILE=long3.txt
  695. R1925 Daa192 32 {koef*abs(Mp*(V(U201/OUT,Gaa192)/dUpmax)*V(Daa192,34)/Ip)*(time>Td1)}
  696. M193 Daa193 Gaa193 35 VCC PCH L=3.62964E-006 W=5.29245E-005 AD=4.86771E-010 PD=0.000140931 AS=1.2902E-010 PS=4.25019E-005
  697. V1933 32 Gaa193 AC 0.0 PWL FILE=long3.txt
  698. R1935 Daa193 VCC {koef*abs(Mp*(V(32,Gaa193)/dUpmax)*V(Daa193,35)/Ip)*(time>Td1)}
  699. M194 Daa194 Gaa194 35 VCC PCH L=3.62968E-006 W=5.29245E-005 AD=3.33188E-010 PD=9.51391E-005 AS=1.29022E-010 PS=4.25019E-005
  700. V1943 32 Gaa194 AC 0.0 PWL FILE=long3.txt
  701. R1945 Daa194 VCC {koef*abs(Mp*(V(32,Gaa194)/dUpmax)*V(Daa194,35)/Ip)*(time>Td1)}
  702. M195 Daa195 Gaa195 33 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=6.76776E-010 PD=0.000183169 AS=9.206E-011 PS=6.52642E-005
  703. V1953 U201/OUT Gaa195 AC 0.0 PWL FILE=long3.txt
  704. R1955 Daa195 VCC {koef*abs(Mp*(V(U201/OUT,Gaa195)/dUpmax)*V(Daa195,33)/Ip)*(time>Td1)}
  705. M196 Daa196 Gaa196 33 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  706. V1963 U200/OUT Gaa196 AC 0.0 PWL FILE=long3.txt
  707. R1965 Daa196 32 {koef*abs(Mp*(V(U200/OUT,Gaa196)/dUpmax)*V(Daa196,33)/Ip)*(time>Td1)}
  708. M197 Daa197 Gaa197 Y2 VCC PCH L=3.57642E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  709. V1973 35 Gaa197 AC 0.0 PWL FILE=long3.txt
  710. R1975 Daa197 VCC {koef*abs(Mp*(V(35,Gaa197)/dUpmax)*V(Daa197,Y2)/Ip)*(time>Td1)}
  711. M198 Daa198 Gaa198 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  712. V1983 35 Gaa198 AC 0.0 PWL FILE=long3.txt
  713. R1985 Daa198 VCC {koef*abs(Mp*(V(35,Gaa198)/dUpmax)*V(Daa198,Y2)/Ip)*(time>Td1)}
  714. M199 Daa199 Gaa199 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  715. V1993 35 Gaa199 AC 0.0 PWL FILE=long3.txt
  716. R1995 Daa199 VCC {koef*abs(Mp*(V(35,Gaa199)/dUpmax)*V(Daa199,Y2)/Ip)*(time>Td1)}
  717. M200 Daa200 Gaa200 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  718. V2003 35 Gaa200 AC 0.0 PWL FILE=long3.txt
  719. R2005 Daa200 VCC {koef*abs(Mp*(V(35,Gaa200)/dUpmax)*V(Daa200,Y2)/Ip)*(time>Td1)}
  720. M201 Daa201 Gaa201 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  721. V2013 35 Gaa201 AC 0.0 PWL FILE=long3.txt
  722. R2015 Daa201 VCC {koef*abs(Mp*(V(35,Gaa201)/dUpmax)*V(Daa201,Y2)/Ip)*(time>Td1)}
  723. M202 Daa202 Gaa202 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  724. V2023 35 Gaa202 AC 0.0 PWL FILE=long3.txt
  725. R2025 Daa202 VCC {koef*abs(Mp*(V(35,Gaa202)/dUpmax)*V(Daa202,Y2)/Ip)*(time>Td1)}
  726. M203 Daa203 Gaa203 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  727. V2033 35 Gaa203 AC 0.0 PWL FILE=long3.txt
  728. R2035 Daa203 VCC {koef*abs(Mp*(V(35,Gaa203)/dUpmax)*V(Daa203,Y2)/Ip)*(time>Td1)}
  729. M204 Daa204 Gaa204 Y2 VCC PCH L=3.57641E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  730. V2043 35 Gaa204 AC 0.0 PWL FILE=long3.txt
  731. R2045 Daa204 VCC {koef*abs(Mp*(V(35,Gaa204)/dUpmax)*V(Daa204,Y2)/Ip)*(time>Td1)}
  732. M205 Daa205 Gaa205 29 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61168E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  733. V2051 Naa4205 Gaa205 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  734. V2052 39 Naa4205 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  735. R2054 Daa205 0V {koef*abs(Mn*(V(39,Gaa205)/dUnmax)*V(Daa205,29)/In)*(time>Td1)}
  736. M206 Daa206 Gaa206 39 0V NCH L=3.02885E-006 W=4.76517E-005 AD=4.55568E-010 PD=0.000137102 AS=1.0902E-010 PS=3.85019E-005
  737. V2061 Naa4206 Gaa206 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  738. V2062 U202/OUT Naa4206 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  739. R2064 Daa206 0V {koef*abs(Mn*(V(U202/OUT,Gaa206)/dUnmax)*V(Daa206,39)/In)*(time>Td1)}
  740. M207 Daa207 Gaa207 36 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=8.95301E-010 PD=0.000242547 AS=9.206E-011 PS=6.52642E-005
  741. V2073 U202/OUT Gaa207 AC 0.0 PWL FILE=long3.txt
  742. R2075 Daa207 VCC {koef*abs(Mp*(V(U202/OUT,Gaa207)/dUpmax)*V(Daa207,36)/Ip)*(time>Td1)}
  743. M208 Daa208 Gaa208 36 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  744. V2083 U203/OUT Gaa208 AC 0.0 PWL FILE=long3.txt
  745. R2085 Daa208 39 {koef*abs(Mp*(V(U203/OUT,Gaa208)/dUpmax)*V(Daa208,36)/Ip)*(time>Td1)}
  746. M209 Daa209 Gaa209 29 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61168E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  747. V2091 Naa4209 Gaa209 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  748. V2092 39 Naa4209 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  749. R2094 Daa209 0V {koef*abs(Mn*(V(39,Gaa209)/dUnmax)*V(Daa209,29)/In)*(time>Td1)}
  750. M210 Daa210 Gaa210 29 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61168E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  751. V2101 Naa4210 Gaa210 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  752. V2102 39 Naa4210 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  753. R2104 Daa210 0V {koef*abs(Mn*(V(39,Gaa210)/dUnmax)*V(Daa210,29)/In)*(time>Td1)}
  754. M211 Daa211 Gaa211 29 0V NCH L=3.01113E-006 W=5.16517E-005 AD=4.61168E-010 PD=0.000132074 AS=1.2902E-010 PS=4.25019E-005
  755. V2111 Naa4211 Gaa211 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  756. V2112 39 Naa4211 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  757. R2114 Daa211 0V {koef*abs(Mn*(V(39,Gaa211)/dUnmax)*V(Daa211,29)/In)*(time>Td1)}
  758. M212 Daa212 Gaa212 39 0V NCH L=3.02885E-006 W=4.76517E-005 AD=4.55568E-010 PD=0.000137102 AS=1.0902E-010 PS=3.85019E-005
  759. V2121 Naa4212 Gaa212 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  760. V2122 U203/OUT Naa4212 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  761. R2124 Daa212 0V {koef*abs(Mn*(V(U203/OUT,Gaa212)/dUnmax)*V(Daa212,39)/In)*(time>Td1)}
  762. M213 Daa213 Gaa213 29 VCC PCH L=3.62966E-006 W=5.29245E-005 AD=6.48003E-010 PD=0.000238003 AS=1.2902E-010 PS=4.25019E-005
  763. V2133 39 Gaa213 AC 0.0 PWL FILE=long3.txt
  764. R2135 Daa213 VCC {koef*abs(Mp*(V(39,Gaa213)/dUpmax)*V(Daa213,29)/Ip)*(time>Td1)}
  765. M214 Daa214 Gaa214 29 VCC PCH L=3.62966E-006 W=5.29245E-005 AD=3.17342E-010 PD=7.00202E-005 AS=1.2902E-010 PS=4.25019E-005
  766. V2143 39 Gaa214 AC 0.0 PWL FILE=long3.txt
  767. R2145 Daa214 VCC {koef*abs(Mp*(V(39,Gaa214)/dUpmax)*V(Daa214,29)/Ip)*(time>Td1)}
  768. M215 Daa215 Gaa215 29 VCC PCH L=3.62966E-006 W=5.29245E-005 AD=3.17342E-010 PD=7.00202E-005 AS=1.2902E-010 PS=4.25019E-005
  769. V2153 39 Gaa215 AC 0.0 PWL FILE=long3.txt
  770. R2155 Daa215 VCC {koef*abs(Mp*(V(39,Gaa215)/dUpmax)*V(Daa215,29)/Ip)*(time>Td1)}
  771. M216 Daa216 Gaa216 38 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=8.95301E-010 PD=0.000242547 AS=9.206E-011 PS=6.52642E-005
  772. V2163 U202/OUT Gaa216 AC 0.0 PWL FILE=long3.txt
  773. R2165 Daa216 VCC {koef*abs(Mp*(V(U202/OUT,Gaa216)/dUpmax)*V(Daa216,38)/Ip)*(time>Td1)}
  774. M217 Daa217 Gaa217 38 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  775. V2173 U203/OUT Gaa217 AC 0.0 PWL FILE=long3.txt
  776. R2175 Daa217 39 {koef*abs(Mp*(V(U203/OUT,Gaa217)/dUpmax)*V(Daa217,38)/Ip)*(time>Td1)}
  777. M218 Daa218 Gaa218 37 VCC PCH L=3.39062E-006 W=7.26169E-005 AD=2.12025E-011 PD=5.03381E-006 AS=9.206E-011 PS=6.52642E-005
  778. V2183 U203/OUT Gaa218 AC 0.0 PWL FILE=long3.txt
  779. R2185 Daa218 VCC {koef*abs(Mp*(V(U203/OUT,Gaa218)/dUpmax)*V(Daa218,37)/Ip)*(time>Td1)}
  780. M219 Daa219 Gaa219 37 VCC PCH L=3.63556E-006 W=4.75002E-005 AD=1.0902E-010 PD=3.85019E-005 AS=9.206E-011 PS=6.52642E-005
  781. V2193 U202/OUT Gaa219 AC 0.0 PWL FILE=long3.txt
  782. R2195 Daa219 39 {koef*abs(Mp*(V(U202/OUT,Gaa219)/dUpmax)*V(Daa219,37)/Ip)*(time>Td1)}
  783. M220 Daa220 Gaa220 29 VCC PCH L=3.6297E-006 W=5.29245E-005 AD=4.82931E-010 PD=0.000138645 AS=1.2902E-010 PS=4.25019E-005
  784. V2203 39 Gaa220 AC 0.0 PWL FILE=long3.txt
  785. R2205 Daa220 VCC {koef*abs(Mp*(V(39,Gaa220)/dUpmax)*V(Daa220,29)/Ip)*(time>Td1)}
  786. M221 Daa221 Gaa221 29 VCC PCH L=3.62964E-006 W=5.29245E-005 AD=4.82931E-010 PD=0.000138645 AS=1.2902E-010 PS=4.25019E-005
  787. V2213 39 Gaa221 AC 0.0 PWL FILE=long3.txt
  788. R2215 Daa221 VCC {koef*abs(Mp*(V(39,Gaa221)/dUpmax)*V(Daa221,29)/Ip)*(time>Td1)}
  789. M222 Daa222 Gaa222 41 VCC PCH L=3.39067E-006 W=7.26169E-005 AD=8.95301E-010 PD=0.000242547 AS=9.20585E-011 PS=6.52642E-005
  790. V2223 U203/OUT Gaa222 AC 0.0 PWL FILE=long3.txt
  791. R2225 Daa222 VCC {koef*abs(Mp*(V(U203/OUT,Gaa222)/dUpmax)*V(Daa222,41)/Ip)*(time>Td1)}
  792. M223 Daa223 Gaa223 39 VCC PCH L=3.63563E-006 W=4.75002E-005 AD=9.20585E-011 PD=6.52642E-005 AS=1.0902E-010 PS=3.85019E-005
  793. V2233 U202/OUT Gaa223 AC 0.0 PWL FILE=long3.txt
  794. R2235 Daa223 41 {koef*abs(Mp*(V(U202/OUT,Gaa223)/dUpmax)*V(Daa223,39)/Ip)*(time>Td1)}
  795. M224 Daa224 Gaa224 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69329E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  796. V2243 29 Gaa224 AC 0.0 PWL FILE=long3.txt
  797. R2245 Daa224 VCC {koef*abs(Mp*(V(29,Gaa224)/dUpmax)*V(Daa224,Y1)/Ip)*(time>Td1)}
  798. M225 Daa225 Gaa225 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.69329E-010 PD=0.000157845 AS=2.0902E-010 PS=5.85019E-005
  799. V2253 29 Gaa225 AC 0.0 PWL FILE=long3.txt
  800. R2255 Daa225 VCC {koef*abs(Mp*(V(29,Gaa225)/dUpmax)*V(Daa225,Y1)/Ip)*(time>Td1)}
  801. D22 Y1 VCC DIODE AREA=8.3742E-010
  802. D23 0V 42 DIODE AREA=3.1576E-010
  803. M226 Daa226 Gaa226 42 0V NCH L=2.84241E-006 W=0.000133647 AD=1.03664E-009 PD=0.000309826 AS=7.7048E-010 PS=0.000122822
  804. V2261 Naa4226 Gaa226 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  805. V2262 0V Naa4226 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  806. R2264 Daa226 0V {koef*abs(Mn*(V(0V,Gaa226)/dUnmax)*V(Daa226,42)/In)*(time>Td1)}
  807. M227 Daa227 Gaa227 42 0V NCH L=2.84241E-006 W=0.000133647 AD=1.03664E-009 PD=0.000309826 AS=7.7048E-010 PS=0.000122822
  808. V2271 Naa4227 Gaa227 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  809. V2272 0V Naa4227 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  810. R2274 Daa227 0V {koef*abs(Mn*(V(0V,Gaa227)/dUnmax)*V(Daa227,42)/In)*(time>Td1)}
  811. R9 42 U200/OUT RES R=65.8621
  812. D24 0V 45 DIODE AREA=3.1576E-010
  813. M228 Daa228 Gaa228 45 0V NCH L=2.84241E-006 W=0.000133647 AD=9.57715E-010 PD=0.000283926 AS=7.7048E-010 PS=0.000122822
  814. V2281 Naa4228 Gaa228 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  815. V2282 0V Naa4228 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  816. R2284 Daa228 0V {koef*abs(Mn*(V(0V,Gaa228)/dUnmax)*V(Daa228,45)/In)*(time>Td1)}
  817. M229 Daa229 Gaa229 45 0V NCH L=2.84243E-006 W=0.000133647 AD=9.57715E-010 PD=0.000283926 AS=7.70478E-010 PS=0.000122822
  818. V2291 Naa4229 Gaa229 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  819. V2292 0V Naa4229 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  820. R2294 Daa229 0V {koef*abs(Mn*(V(0V,Gaa229)/dUnmax)*V(Daa229,45)/In)*(time>Td1)}
  821. R10 45 U201/OUT RES R=65.8621
  822. M230 Daa230 Gaa230 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  823. V2303 35 Gaa230 AC 0.0 PWL FILE=long3.txt
  824. R2305 Daa230 VCC {koef*abs(Mp*(V(35,Gaa230)/dUpmax)*V(Daa230,Y2)/Ip)*(time>Td1)}
  825. M231 Daa231 Gaa231 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  826. V2313 35 Gaa231 AC 0.0 PWL FILE=long3.txt
  827. R2315 Daa231 VCC {koef*abs(Mp*(V(35,Gaa231)/dUpmax)*V(Daa231,Y2)/Ip)*(time>Td1)}
  828. M232 Daa232 Gaa232 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  829. V2323 35 Gaa232 AC 0.0 PWL FILE=long3.txt
  830. R2325 Daa232 VCC {koef*abs(Mp*(V(35,Gaa232)/dUpmax)*V(Daa232,Y2)/Ip)*(time>Td1)}
  831. M233 Daa233 Gaa233 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  832. V2333 35 Gaa233 AC 0.0 PWL FILE=long3.txt
  833. R2335 Daa233 VCC {koef*abs(Mp*(V(35,Gaa233)/dUpmax)*V(Daa233,Y2)/Ip)*(time>Td1)}
  834. M234 Daa234 Gaa234 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  835. V2343 35 Gaa234 AC 0.0 PWL FILE=long3.txt
  836. R2345 Daa234 VCC {koef*abs(Mp*(V(35,Gaa234)/dUpmax)*V(Daa234,Y2)/Ip)*(time>Td1)}
  837. M235 Daa235 Gaa235 Y2 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=5.59659E-010 PD=0.000152359 AS=2.0902E-010 PS=5.85019E-005
  838. V2353 35 Gaa235 AC 0.0 PWL FILE=long3.txt
  839. R2355 Daa235 VCC {koef*abs(Mp*(V(35,Gaa235)/dUpmax)*V(Daa235,Y2)/Ip)*(time>Td1)}
  840. R11 46 U202/OUT RES R=65.8621
  841. M236 Daa236 Gaa236 46 0V NCH L=2.84241E-006 W=0.000133647 AD=7.0982E-010 PD=0.000219358 AS=7.7048E-010 PS=0.000122822
  842. V2361 Naa4236 Gaa236 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  843. V2362 0V Naa4236 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  844. R2364 Daa236 0V {koef*abs(Mn*(V(0V,Gaa236)/dUnmax)*V(Daa236,46)/In)*(time>Td1)}
  845. D25 0V 46 DIODE AREA=3.1576E-010
  846. M237 Daa237 Gaa237 46 0V NCH L=2.84241E-006 W=0.000133647 AD=7.0982E-010 PD=0.000219358 AS=7.7048E-010 PS=0.000122822
  847. V2371 Naa4237 Gaa237 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  848. V2372 0V Naa4237 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  849. R2374 Daa237 0V {koef*abs(Mn*(V(0V,Gaa237)/dUnmax)*V(Daa237,46)/In)*(time>Td1)}
  850. M238 Daa238 Gaa238 48 0V NCH L=2.84241E-006 W=0.000133647 AD=6.48893E-010 PD=0.000203894 AS=7.7048E-010 PS=0.000122822
  851. V2381 Naa4238 Gaa238 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  852. V2382 0V Naa4238 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  853. R2384 Daa238 0V {koef*abs(Mn*(V(0V,Gaa238)/dUnmax)*V(Daa238,48)/In)*(time>Td1)}
  854. R12 48 U203/OUT RES R=65.8621
  855. D26 0V 48 DIODE AREA=3.1576E-010
  856. M239 Daa239 Gaa239 48 0V NCH L=2.84239E-006 W=0.000133647 AD=6.48893E-010 PD=0.000203894 AS=7.7048E-010 PS=0.000122822
  857. V2391 Naa4239 Gaa239 AC 0.0 EXP ( 0.0 {addV2} {addTd1} {addTau1} {Td2} 0.0 )
  858. V2392 0V Naa4239 AC 0.0 EXP ( 0.0 {expV2} {Td1} {expTau1} {Td2} 0.0 )
  859. R2394 Daa239 0V {koef*abs(Mn*(V(0V,Gaa239)/dUnmax)*V(Daa239,48)/In)*(time>Td1)}
  860. M240 Daa240 Gaa240 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  861. V2403 29 Gaa240 AC 0.0 PWL FILE=long3.txt
  862. R2405 Daa240 VCC {koef*abs(Mp*(V(29,Gaa240)/dUpmax)*V(Daa240,Y1)/Ip)*(time>Td1)}
  863. M241 Daa241 Gaa241 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  864. V2413 29 Gaa241 AC 0.0 PWL FILE=long3.txt
  865. R2415 Daa241 VCC {koef*abs(Mp*(V(29,Gaa241)/dUpmax)*V(Daa241,Y1)/Ip)*(time>Td1)}
  866. M242 Daa242 Gaa242 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  867. V2423 29 Gaa242 AC 0.0 PWL FILE=long3.txt
  868. R2425 Daa242 VCC {koef*abs(Mp*(V(29,Gaa242)/dUpmax)*V(Daa242,Y1)/Ip)*(time>Td1)}
  869. R13 B2 42 RES R=46.875
  870. R14 A2 45 RES R=46.875
  871. R15 B1 46 RES R=46.875
  872. R16 A1 48 RES R=46.875
  873. M243 Daa243 Gaa243 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  874. V2433 29 Gaa243 AC 0.0 PWL FILE=long3.txt
  875. R2435 Daa243 VCC {koef*abs(Mp*(V(29,Gaa243)/dUpmax)*V(Daa243,Y1)/Ip)*(time>Td1)}
  876. M244 Daa244 Gaa244 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  877. V2443 29 Gaa244 AC 0.0 PWL FILE=long3.txt
  878. R2445 Daa244 VCC {koef*abs(Mp*(V(29,Gaa244)/dUpmax)*V(Daa244,Y1)/Ip)*(time>Td1)}
  879. M245 Daa245 Gaa245 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  880. V2453 29 Gaa245 AC 0.0 PWL FILE=long3.txt
  881. R2455 Daa245 VCC {koef*abs(Mp*(V(29,Gaa245)/dUpmax)*V(Daa245,Y1)/Ip)*(time>Td1)}
  882. M246 Daa246 Gaa246 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  883. V2463 29 Gaa246 AC 0.0 PWL FILE=long3.txt
  884. R2465 Daa246 VCC {koef*abs(Mp*(V(29,Gaa246)/dUpmax)*V(Daa246,Y1)/Ip)*(time>Td1)}
  885. D27 0V B2 DIODE AREA=1.10476E-009
  886. D28 B2 VCC DIODE AREA=8.0742E-010
  887. D29 0V A2 DIODE AREA=1.10476E-009
  888. D30 A2 VCC DIODE AREA=8.0742E-010
  889. D31 Y2 VCC DIODE AREA=8.3742E-010
  890. D32 0V VCC DIODE AREA=1.44052E-009
  891. D33 0V VCC DIODE AREA=1.44052E-009
  892. D34 B1 VCC DIODE AREA=8.0742E-010
  893. D35 0V B1 DIODE AREA=1.10476E-009
  894. D36 A1 VCC DIODE AREA=8.0742E-010
  895. D37 0V A1 DIODE AREA=1.10476E-009
  896. M247 Daa247 Gaa247 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  897. V2473 29 Gaa247 AC 0.0 PWL FILE=long3.txt
  898. R2475 Daa247 VCC {koef*abs(Mp*(V(29,Gaa247)/dUpmax)*V(Daa247,Y1)/Ip)*(time>Td1)}
  899. M248 Daa248 Gaa248 Y1 VCC PCH L=3.57638E-006 W=6.89245E-005 AD=4.93954E-010 PD=0.000149267 AS=2.0902E-010 PS=5.85019E-005
  900. V2483 29 Gaa248 AC 0.0 PWL FILE=long3.txt
  901. R2485 Daa248 VCC {koef*abs(Mp*(V(29,Gaa248)/dUpmax)*V(Daa248,Y1)/Ip)*(time>Td1)}
  902.  
  903. * Total Nodes: 54
  904. * Total Elements: 301
  905. * Total Number of Shorted Elements not written to the SPICE file: 0
  906. * Output Generation Elapsed Time: 0.016 sec
  907. * Total Extract Elapsed Time: 4.297 sec
  908.  
  909. .ENDS 1526
Tags: spice 1526le5;
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