* (C) Copyright Navitas Semiconductor. All rights reserved.


.SUBCKT NV6428 s1 s2 g1 g2
.param  w = 0.322
.model GaN4QSi nmos level = 7 version = 3.1 tnom = 25
+ MOBMOD = 1  CAPMOD = 2  NOIMOD = 1  PARAMCHK = 1   
+ DELTA = 0.01  TOX = 2.16E-08  TOXM = 2.16E-08   
+ VTH0 = 1.283  K1 = 0.16  K2 = -0.02624  K3 = 0   
+ K3B = -1E-15  W0 = 2.5E-06  NLX = 1.74E-07  DVT0 = 2.2   
+ DVT1 = 0.53  DVT2 = -0.032  DVT0W = 0  DVT1W = 5.3E+06   
+ DVT2W = -0.032  ETA0 = 0  ETAB = 0  DSUB = 0.56   
+ U0 = 1671  WU0 = -6.88E-19  UA = 1E-09  UB = 9.284E-18  UC = -1.694E-10   
+ VSAT = 1.932E+05  LVSAT = 1E-15  WVSAT = 1E-15  A0 = 0.06902  WA0 = 0.4775  AGS = 0.0  B0 = 0   
+ B1 = 0  KETA = -1.778E-10  A1 = 0  A2 = 1   
+ RDSW = 2100  PRWB = -0.3027  PRWG = 0.08375  WR = 1   
+ WINT = 0  WL = 0  WLN = 1  WW = 0   
+ WWN = 1  WWL = 0  DWG = 0  DWB = 0   
+ LINT = -7E-07  LL = 0  LLN = 1  LW = 0   
+ LWN = 1  LWL = 0   
+ VOFF = -0.225  LVOFF = -2.393E-07  NFACTOR = 1.168  LNFACTOR = 6.73E-06  CIT = 0  CDSC = 0.00024   
+ CDSCB = 0  CDSCD = 0  PCLM = 2E-16  PDIBLC1 = 0.001837   
+ PDIBLC2 = 1.109E-12  PDIBLCB = 0  DROUT = 0.56  PSCBE1 = 4.24E+09   
+ PSCBE2 = 1.413E-12  PVAG = 0  VBM = -3   
+ ALPHA0 = 0  ALPHA1 = 0  BETA0 = 30   
+ JS = 0  JSW = 0  NJ = 45.5  IJTH = 0   
+ CJ = 0  MJ = 0.5  PB = 1  CJSW = 0   
+ MJSW = 0.33  PBSW = 1  CJSWG = 0  MJSWG = 0.33   
+ PBSWG = 1  CGDO = 0  CGSO = 0  CGBO = 0   
+ CGSL = 0  CGDL = 0  CKAPPA = 0.6  CF = 0   
+ NOFF = 1  VOFFCV = 0  ACDE = 1  MOIN = 15   
+ DWC = 0  LLC = 0  LWC = 0   
+ LWLC = 0  WLC = 0  WWC = 0  WWLC = 0   
+ CLC = 1E-07  CLE = 0.6   
+ ELM = 2  XPART = 0.5   
+ KT1 = 0.7482  WKT1 = 0  KT1L = 0  KT2 = 0  UTE = -1.097  LUTE = 1E-15   
+ UA1 = 2.443E-08  UB1 = -3.141E-17  UC1 = -5.152E-10  AT = 3.388E+04  LAT = 0   
+ PRT = 3020  XTI = 3  TPB = 0  TPBSW = 0   
+ TPBSWG = 0  TCJ = 0  TCJSW = 0  TCJSWG = 0    
+ DLC = {(0.5*1.4u)-(0.5*1e-8)} 
+ DWC = {(0.5*w)-(0.5*1e-7)} 

m1 d g1 s1 sub  GaN4QSi w = {w}  l = {1.4u}  AS = 0  AD = 0  PS = 0  PD = 0  m = 1  
m2 d g2 s2 sub  GaN4QSi w = {w}  l = {1.4u}  AS = 0  AD = 0  PS = 0  PD = 0  m = 1   
R1 s1 sub 1.0e6
R2 s2 sub 1.0e6

E21 201 101 s1 sub 1.0
V21 0 101 0V
Cf21 201 0 1.0E-6
G21 s1 sub VALUE = {(w*1.0e-12*(100.5 + IF(v(s2, s1)>0,(100*exp(-(v(s2, s1)-335)*(v(s2, s1)-335)/(200*200))+0.47*IF(v(sub, s1)>0,0,IF(v(sub, s1)<-125,-125,v(sub, s1)))),0)))*I(V21)*1E6}
E22 202 102 g1 s1 1.0
V22 0 102 0V
Cf22 202 0 1.0E-6
G22 g1 s1 VALUE = {(w*1.0e-12*(371.13 +1140.0*(1+tanh(5*(v(g1, s1)-1.5)))))*I(V22)*1E6}
E23 203 103 g1 d 1.0
V23 0 103 0V
Cf23 203 0 1.0E-6
G23 g1 d VALUE = {(w*1.0e-12*(3.3521+92.9*(1+tanh(-0.0314*(v(d, g1)-18.8-0.085*v(sub, s1))))+192.78*(1+tanh(0.382*(v(g1, d)-1.5)))-2.5421*(1+tanh(11.32e-5*(v(d, g1)-1.77e4-0.085*v(sub, s1))))))*I(V23)*1E6}
E24 204 104 d s1 1.0
V24 0 104 0V
Cf24 204 0 1.0E-6
G24 d s1 VALUE = {(w*1.0e-12*(1.3754 + 186.0236*(1+tanh(-0.086688*(v(d, s1)-56.52-0.2*v(sub, s1))))+99.0675*(1+tanh(-0.10277*(v(d, s1)-86.59-0.2*v(sub, s1)))) + 64.5*(1+tanh(-0.023*(v(d, s1)-156.3-0.2*v(sub, s1))))+1.6*(1+tanh(-4.5*(v(d, s1)-556691-0.2*v(sub, s1))))))*I(V24)*1E6}
E25 205 105 d sub 1.0
V25 0 105 0V
Cf25 205 0 1.0E-6
G25 d sub VALUE = {(IF(v(s1, s2)>0,(w*1.0e-12*(0.47*IF(v(sub, s2)>0,0,IF(v(sub, s2)<-125,-125,v(sub, s2)))+8.9716e-4+375.85*(1+tanh(-2.5182e-3*(v(d, s2)-0.11872-0.362*v(sub, s2))))+11.662*(1+tanh(-0.24274*(v(d, s2)-55.531-0.362*v(sub, s2))))+6.9885*(1+tanh(-0.1303*(v(d, s2)-83.0-0.362*v(sub, s2))))+0.8*(1+tanh(-0.435*(v(d, s2)-144.39-0.362*v(sub, s2)))))),(w*1.0e-12*(0.47*IF(v(sub, s1)>0,0,IF(v(sub, s1)<-125,-125,v(sub, s1)))+8.9716e-4+375.85*(1+tanh(-2.5182e-3*(v(d, s1)-0.11872-0.362*v(sub, s1))))+11.662*(1+tanh(-0.24274*(v(d, s1)-55.531-0.362*v(sub, s1))))+6.9885*(1+tanh(-0.1303*(v(d, s1)-83.0-0.362*v(sub, s1))))+0.8*(1+tanh(-0.435*(v(d, s1)-144.39-0.362*v(sub, s1))))))))*I(V25)*1E6}
E26 206 106 s2 sub 1.0
V26 0 106 0V
Cf26 206 0 1.0E-6
G26 s2 sub VALUE = {(w*1.0e-12*(100.5 + IF(v(s1, s2)>0,(100*exp(-(v(s1, s2)-335)*(v(s1, s2)-335)/(200*200))+0.47*IF(v(sub, s2)>0,0,IF(v(sub, s2)<-125,-125,v(sub, s2)))),0)))*I(V26)*1E6}
E27 207 107 g2 s2 1.0
V27 0 107 0V
Cf27 207 0 1.0E-6
G27 g2 s2 VALUE = {(w*1.0e-12*(371.13 +1140.0*(1+tanh(5*(v(g2, s2)-1.5)))))*I(V27)*1E6}
E28 208 108 g2 d 1.0
V28 0 108 0V
Cf28 208 0 1.0E-6
G28 g2 d VALUE = {(w*1.0e-12*(3.3521+92.9*(1+tanh(-0.0314*(v(d, g2)-18.8-0.085*v(sub, s2))))+192.78*(1+tanh(0.382*(v(g2, d)-1.5)))-2.5421*(1+tanh(11.32e-5*(v(d, g2)-1.77e4-0.085*v(sub, s2))))))*I(V28)*1E6}
E29 209 109 d s2 1.0
V29 0 109 0V
Cf29 209 0 1.0E-6
G29 d s2 VALUE = {(w*1.0e-12*(1.3754 + 186.0236*(1+tanh(-0.086688*(v(d, s2)-56.52-0.2*v(sub, s2))))+99.0675*(1+tanh(-0.10277*(v(d, s2)-86.59-0.2*v(sub, s2)))) + 64.5*(1+tanh(-0.023*(v(d, s2)-156.3-0.2*v(sub, s2))))+1.6*(1+tanh(-4.5*(v(d, s2)-556691-0.2*v(sub, s2))))))*I(V29)*1E6}
E20 200 100 s2 s1 1.0
V20 0 100 0V
Cf20 200 0 1.0E-6
G20 s2 s1 VALUE = {(w*1.0e-12*273.7046)*I(V20)*1E6}

.ENDS NV6428