blob: 7080ffc0481bee13f8724e9575f5344db4a0a2d6 [file] [log] [blame]
****************************************************************
*Subckt Model to allow adition of non-linear resistor model and gate-drain capacitance model
*******
* pvhv *
*******
.subckt pvhv d g s b w=5.0 l=0.66 ad=0 as=0 pd=0 ps=0.0 m=1 mf=1 nrd=0 nrs=0 sa=0.28 sb=1.19 sd=0
.param rdiff='8.900000e+003*pvhv_rdiff_mult'
.param rdiff_tc1=2.500000e-003
.param rdiff_tc2=2.200000e-006
****sb fixed value based on TDR rule depmos.6, for hardcoded number in CAD flow
.param sb_cadfixedvalue_pvhv=1.19
***sd intentionally left out for pvhv devices because poly-poly spacing not uniform in DE FET
* BSIMTran Version 0.1.24, Created on 4-26-2002
* Username: pxg
* Command Line: /proj/tlib/ll65h/config/cydir/bin/lnx86/bsimtran pmos_bsim4.rf pmos -p -npvhv pvhv_global.pm pvhv_cad.pm dnwdiode_pw.mod dnwdiode_pw.mod pvhv.pm3
* Working Directory: /home/pxg/rams/s8/models.3.5/rev_model/combined
* Time: Thu May 13 10:22:33 2010
* Rule File: pmos_bsim4.rf
* Output File: pvhv.pm3
* Input Files:
* (1) pvhv_global.pm
* (2) pvhv_cad.pm
* (3) dnwdiode_pw.mod
* (4) dnwdiode_pw.mod
*copyright, Cypress Semiconductor, 2007
*BSIM4.V5 PMOS Model
****Mismatch doubler for pre-silicon model
.param
+pvhv_mm_mult=0.9
.model pvhv_base.0 pmos
*
***MODEL FLAG PARAMETERS
*
+lmin = 0.655e-06 lmax = 0.665e-06 wmin = 4.990000e-006 wmax = 5.010000e-005
+level = 5.400000e+001
+version = 4.500000e+000
+binunit = 2.000000e+000
+mobmod = 0.000000e+000
+capmod = 2.000000e+000
+igcmod = 0.000000e+000
+igbmod = 0.000000e+000
+geomod = 0.000000e+000
+diomod = 1.000000e+000
+rdsmod = 1.000000e+000
+rbodymod = 1.000000e+000
+rgatemod = 0.000000e+000
+permod = 1.000000e+000
+acnqsmod = 0.000000e+000
+trnqsmod = 0.000000e+000
+fnoimod = 1.000000e+000
+tnoimod = 1.000000e+000
***PROCESS PARAMETERS
+toxe = '1.160000e-008*pvhv_toxe_mult' dev/gauss = '1.16e-008*pvhv_toxe_mult*(pvhv_mm_mult*(phv_toxe_slope1+0.05e-2)/sqrt(E(*,l)*E(*,w)*E(*,m)))'
+toxm = 1.160000e-008
+epsrox = 3.900000e+000
+xj = 1.500000e-007
+ngate = 1.000000e+023
+ndep = 1.700000e+017
+nsd = 1.000000e+020
+rsh = '1.000000e+000*pvhv_rshp_mult'
+rshg = 1.000000e-001
***BASIC MODEL PARAMETERS
+wint = '0.000000e+000+pvhv_wint_diff' dev/gauss = 'pvhv_mm_mult*phv_wint_slope/sqrt(E(*,l))'
+lint = '3.445300e-008+pvhv_lint_diff' dev/gauss = 'pvhv_mm_mult*phv_lint_slope/sqrt(E(*,w))'
+vth0 = '-1.043500e+000+pvhv_vth0_diff_0' dev/gauss = 'pvhv_mm_mult*(phv_vth0_slope+0.0065)/sqrt(E(*,l)*E(*,w)*E(*,m))'
+k1 = 6.831000e-001
+k2 = '-1.303200e-003+pvhv_k2_diff_0'
+k3 = 0.000000e+000
+k3b = 0.000000e+000
+w0 = 0.000000e+000
+dvt0 = 0.000000e+000
+dvt1 = 5.300000e-001
+dvt2 = -3.200000e-002
+dvt0w = 0.000000e+000
+dvt1w = 5.300000e+006
+dvt2w = -3.200000e-002
+dsub = '3.416000e-001+pvhv_dsub_diff_0'
+minv = 0.000000e+000
+voffl = 0.000000e+000
+dvtp0 = 0.000000e+000
+dvtp1 = 0.000000e+000
+lpe0 = '1.400000e-007+pvhv_lpe0_diff_0'
+lpeb = -6.500000e-008
+vbm = -3.000000e+000
+phin = 0.000000e+000
+cdsc = 2.520000e-004
+cdscb = 0.000000e+000
+cdscd = 0.000000e+000
+cit = 0.000000e+000
+voff = '-1.372000e-001+pvhv_voff_diff_0' dev/gauss = 'pvhv_mm_mult*(phv_voff_slope+0.02)/sqrt(E(*,l)*E(*,w)*E(*,m))'
+nfactor = '7.100000e-001+pvhv_nfactor_diff_0' dev/gauss = 'pvhv_mm_mult*(phv_nfactor_slope+0.3)/sqrt(E(*,l)*E(*,w)*E(*,m))'
+eta0 = '8.729800e-002+pvhv_eta0_diff_0'
+etab = -5.000000e-002
+u0 = '2.707600e-002+pvhv_u0_diff_0'
+ua = '2.585600e-009+pvhv_ua_diff_0'
+ub = '4.595800e-019+pvhv_ub_diff_0'
+uc = -1.220000e-010
+eu = 1.670000e+000
+vsat = '7.660800e+004+pvhv_vsat_diff_0'
+a0 = '3.820000e-001+pvhv_a0_diff_0'
+ags = '1.291200e-001+pvhv_ags_diff_0'
+a1 = 0.000000e+000
+a2 = 7.200000e-001
+b0 = '4.000000e-012+pvhv_b0_diff_0'
+b1 = '0.000000e+000+pvhv_b1_diff_0'
+keta = '-3.321800e-002+pvhv_keta_diff_0'
+dwg = 0.000000e+000
+dwb = 0.000000e+000
+pclm = '1.000000e-001+pvhv_pclm_diff_0'
+pdiblc1 = 3.900000e-001
+pdiblc2 = 8.600000e-003
+pdiblcb = -5.400000e-005
+drout = 5.600000e-001
+pvag = 5.040000e-001
+delta = 8.900000e-003
+pscbe1 = 5.088000e+008
+pscbe2 = 6.945200e-009
+fprout = 0.000000e+000
+pdits = '0.000000e+000+pvhv_pdits_diff_0'
+pditsd = '0.000000e+000+pvhv_pditsd_diff_0'
+pditsl = 0.000000e+000
***PARAMETERS FOR ASYMMETRIC AND BIAS-DEPENDENT RDS MODEL******
+rdsw = '3.310200e+002+pvhv_rdsw_diff_0'
+rsw = 1.000000e+002
+rdw = '1.000000e+001+pvhv_rdw_diff_0'
+rdswmin = 0.000000e+000
+rdwmin = 0.000000e+000
+rswmin = 0.000000e+000
+prwg = 0.000000e+000
+prwb = -4.000000e-004
+wr = 1.000000e+000
***IMPACT IONIZATION CURRENT MODEL PARAMTERS******************
+alpha0 = 2.000000e-007
+alpha1 = 1.001000e+000
+beta0 = 1.000000e+002
***GIDL INDUCED DRAIN LEAKAGE MODEL PARAMETERS*****************
+agidl = '1.650000e-010+pvhv_agidl_diff_0'
+bgidl = '5.999300e+009+pvhv_bgidl_diff_0'
+cgidl = '1.394000e+000+pvhv_cgidl_diff_0'
+egidl = 4.920000e-002
***GATE DIELECTRIC TUNNELING CURRENT MODEL PARAMETERS**********
+toxref = 1.160000e-008
+aigbacc = '4.300000e-001+pvhv_aigbacc_diff_0'
+bigbacc = 5.400000e-002
+cigbacc = 7.500000e-002
+nigbacc = '1.000000e+000+pvhv_nigbacc_diff_0'
+aigbinv = '3.500000e-001+pvhv_aigbinv_diff_0'
+bigbinv = 3.000000e-002
+cigbinv = 6.000000e-003
+eigbinv = 1.100000e+000
+nigbinv = '3.000000e+000+pvhv_nigbinv_diff_0'
+aigc = '4.300000e-001+pvhv_aigc_diff_0'
+bigc = 5.400000e-002
+cigc = 7.500000e-002
+aigsd = '4.300000e-001+pvhv_aigsd_diff_0'
+bigsd = '5.400000e-002+pvhv_bigsd_diff_0'
+cigsd = 7.500000e-002
+nigc = 1.000000e+000
+poxedge = 1.000000e+000
+pigcd = 1.000000e+000
+ntox = 1.000000e+000
***CHARGE AND CAPACITANCE MODEL PARAMETERS********************
+dlc = '-9.682600e-008+pvhv_dlc_diff+pvhv_dlc_rotweak'
+dwc = '0.000000e+000+pvhv_dwc_diff'
+xpart = 0.000000e+000
+cgso = '1.977100e-010*pvhv_soverlap_mult'
+cgdo = '1.977100e-010*pvhv_doverlap_mult'
+cgbo = 0.000000e+000
+cgdl = '1.117200e-012*pvhv_doverlap_mult'
+cgsl = '1.152000e-012*pvhv_soverlap_mult'
+clc = 6.324000e-009
+cle = 8.910000e-001
+cf = '0.000000e+000+pvhv_cf_diff'
+ckappas = 6.000000e-001
+ckappad = 6.000000e-001
+vfbcv = -1.000000e+000
+acde = 9.129800e-001
+moin = 1.556200e+001
+noff = 1.045000e+000
+voffcv = -1.815100e-001
***HIGH-SPEED/RF MODEL PARAMETERS******************************
***FLICKER AND THERMAL NOISE MODEL PARAMETERS******************
+ef = 1.000000e+000
+noia = 6.250000e+041
+noib = 3.125000e+026
+noic = 8.750000e+009
+em = 4.100000e+007
***LAYOUT-DEPENDENT PARASITICS MODEL PARAMETERS****************
+xl = 0.000000e+000
+xw = 0.000000e+000
+dmcg = 0.000000e+000
+dmdg = 0.000000e+000
+dmcgt = 0.000000e+000
+xgw = 0.000000e+000
+xgl = 0.000000e+000
+ngcon = 1.000000e+000
***ASYMMETRIC SOURCE/DRAIN JUNCTION DIODE MODEL PARAMETERS*****
+jss = 2.148300e-005
+jsws = 4.020000e-012
+jtssws = '4.020000e-012+pvhv_jtssws_diff_0'
+ijthsfwd = 1.000000e-001
+ijthsrev = 1.000000e-001
+bvs = 1.269000e+001
+xjbvs = 1.000000e+000
+pbs = 6.587000e-001
+cjs = '7.754700e-004*pvhv_ajunction_mult'
+mjs = 3.395600e-001
+pbsws = 1.000000e+000
+cjsws = '9.871700e-011*pvhv_pjunction_mult'
+mjsws = 2.467600e-001
+pbswgs = 3.000000e+000
+cjswgs = '1.460000e-010*pvhv_pjunction_mult'
+mjswgs = 8.100000e-001
***TEMPERATURE DEPENDENCE PARAMETERS***************************
+tnom = 3.000000e+001
+kt1 = '-4.930800e-001+pvhv_kt1_diff_0'
+kt1l = 1.000000e-011
+kt2 = 5.633800e-004
+ute = -1.646200e+000
+ua1 = 1.218100e-009
+ub1 = -1.241200e-018
+uc1 = 8.272000e-012
+prt = 0.000000e+000
+at = -6.400000e+004
+tvoff = '1.500000e-002+pvhv_tvoff_diff_0'
+njs = 1.363200e+000
+njd = 1.079100e+000
+tpb = 1.671000e-003
+tcj = 9.600000e-004
+tpbsw = 0.000000e+000
+tcjsw = 3.000000e-005
+tpbswg = 0.000000e+000
+tcjswg = 0.000000e+000
+xtis = 1.000000e+001
+xtid = 3.000000e+000
***DW AND DL PARAMETERS****************************************
+ll = 0.000000e+000
+wl = 0.000000e+000
+lln = 1.000000e+000
+wln = 1.000000e+000
+lw = 0.000000e+000
+ww = 0.000000e+000
+lwn = 1.000000e+000
+wwn = 1.000000e+000
+lwl = 0.000000e+000
+wwl = 0.000000e+000
+llc = 0.000000e+000
+wlc = 0.000000e+000
+lwc = 0.000000e+000
+wwc = 0.000000e+000
+lwlc = 0.000000e+000
+wwlc = 0.000000e+000
***STRESS PARAMETERS*******************************************
+saref = 0.28e-006
+sbref = 1.19e-006
+kvth0 = '0.0+pvhv_kvth0_diff'
+lkvth0 = '0.0+pvhv_lkvth0_diff'
+wkvth0 = '0.0+pvhv_wkvth0_diff'
+pkvth0 = 0
+llodvth = 1
+wlodvth = 1
+wlod = 0
+stk2 = 0
+lodk2 = 1
+lodeta0 = 1
+ku0 = '0.0+pvhv_ku0_diff'
+lku0 = '0.0+pvhv_lku0_diff'
+wku0 = '0.0+pvhv_wku0_diff'
+pku0 = 0
+tku0 = 0
+llodku0 = 1
+wlodku0 = 1
+kvsat = '0.0+pvhv_kvsat_diff'
+steta0 = 0
***WELL PROXIMITY EFFECT PARAMETERS****************************
******
.model pvhv_base.1 pmos
*
***MODEL FLAG PARAMETERS
*
+lmin = 2.15e-06 lmax = 2.17e-06 wmin = 4.990000e-006 wmax = 5.010000e-005
+level = 5.400000e+001
+version = 4.500000e+000
+binunit = 2.000000e+000
+mobmod = 0.000000e+000
+capmod = 2.000000e+000
+igcmod = 0.000000e+000
+igbmod = 0.000000e+000
+geomod = 0.000000e+000
+diomod = 1.000000e+000
+rdsmod = 1.000000e+000
+rbodymod = 1.000000e+000
+rgatemod = 0.000000e+000
+permod = 1.000000e+000
+acnqsmod = 0.000000e+000
+trnqsmod = 0.000000e+000
+fnoimod = 1.000000e+000
+tnoimod = 1.000000e+000
***PROCESS PARAMETERS
+toxe = '1.160000e-008*pvhv_toxe_mult' dev/gauss = '1.16e-008*pvhv_toxe_mult*(pvhv_mm_mult*(phv_toxe_slope2+0.03e-2)/sqrt(E(*,l)*E(*,w)*E(*,m)))'
+toxm = 1.160000e-008
+epsrox = 3.900000e+000
+xj = 1.500000e-007
+ngate = 1.000000e+023
+ndep = 1.700000e+017
+nsd = 1.000000e+020
+rsh = '1.000000e+000*pvhv_rshp_mult'
+rshg = 1.000000e-001
***BASIC MODEL PARAMETERS
+wint = '0.000000e+000+pvhv_wint_diff' dev/gauss = 'pvhv_mm_mult*phv_wint_slope/sqrt(E(*,l))'
+lint = '3.445300e-008+pvhv_lint_diff' dev/gauss = 'pvhv_mm_mult*phv_lint_slope/sqrt(E(*,w))'
+vth0 = '-1.043500e+000+pvhv_vth0_diff_1' dev/gauss = 'pvhv_mm_mult*(phv_vth0_slope+0.0065)/sqrt(E(*,l)*E(*,w)*E(*,m))'
+k1 = 6.831000e-001
+k2 = '-1.303200e-003+pvhv_k2_diff_1'
+k3 = 0.000000e+000
+k3b = 0.000000e+000
+w0 = 0.000000e+000
+dvt0 = 0.000000e+000
+dvt1 = 5.300000e-001
+dvt2 = -3.200000e-002
+dvt0w = 0.000000e+000
+dvt1w = 5.300000e+006
+dvt2w = -3.200000e-002
+dsub = '3.416000e-001+pvhv_dsub_diff_1'
+minv = 0.000000e+000
+voffl = 0.000000e+000
+dvtp0 = 0.000000e+000
+dvtp1 = 0.000000e+000
+lpe0 = '1.400000e-007+pvhv_lpe0_diff_1'
+lpeb = -6.500000e-008
+vbm = -3.000000e+000
+phin = 0.000000e+000
+cdsc = 2.520000e-004
+cdscb = 0.000000e+000
+cdscd = 0.000000e+000
+cit = 0.000000e+000
+voff = '-1.372000e-001+pvhv_voff_diff_1' dev/gauss = 'pvhv_mm_mult*(phv_voff_slope+0.02)/sqrt(E(*,l)*E(*,w)*E(*,m))'
+nfactor = '7.100000e-001+pvhv_nfactor_diff_1' dev/gauss = 'pvhv_mm_mult*(phv_nfactor_slope+0.6)/sqrt(E(*,l)*E(*,w)*E(*,m))'
+eta0 = '8.729800e-002+pvhv_eta0_diff_1'
+etab = -5.000000e-002
+u0 = '2.707600e-002+pvhv_u0_diff_1'
+ua = '2.585600e-009+pvhv_ua_diff_1'
+ub = '4.595800e-019+pvhv_ub_diff_1'
+uc = -1.220000e-010
+eu = 1.670000e+000
+vsat = '7.660800e+004+pvhv_vsat_diff_1'
+a0 = '3.820000e-001+pvhv_a0_diff_1'
+ags = '1.291200e-001+pvhv_ags_diff_1'
+a1 = 0.000000e+000
+a2 = 7.200000e-001
+b0 = '4.000000e-012+pvhv_b0_diff_1'
+b1 = '0.000000e+000+pvhv_b1_diff_1'
+keta = '-3.321800e-002+pvhv_keta_diff_1'
+dwg = 0.000000e+000
+dwb = 0.000000e+000
+pclm = '1.000000e-001+pvhv_pclm_diff_1'
+pdiblc1 = 3.900000e-001
+pdiblc2 = 8.600000e-003
+pdiblcb = -5.400000e-005
+drout = 5.600000e-001
+pvag = 5.040000e-001
+delta = 8.900000e-003
+pscbe1 = 5.088000e+008
+pscbe2 = 6.945200e-009
+fprout = 0.000000e+000
+pdits = '0.000000e+000+pvhv_pdits_diff_1'
+pditsd = '0.000000e+000+pvhv_pditsd_diff_1'
+pditsl = 0.000000e+000
***PARAMETERS FOR ASYMMETRIC AND BIAS-DEPENDENT RDS MODEL******
+rdsw = '3.310200e+002+pvhv_rdsw_diff_1'
+rsw = 1.000000e+002
+rdw = '1.000000e+001+pvhv_rdw_diff_1'
+rdswmin = 0.000000e+000
+rdwmin = 0.000000e+000
+rswmin = 0.000000e+000
+prwg = 0.000000e+000
+prwb = -4.000000e-004
+wr = 1.000000e+000
***IMPACT IONIZATION CURRENT MODEL PARAMTERS******************
+alpha0 = 2.000000e-007
+alpha1 = 1.001000e+000
+beta0 = 1.000000e+002
***GIDL INDUCED DRAIN LEAKAGE MODEL PARAMETERS*****************
+agidl = '1.650000e-010+pvhv_agidl_diff_1'
+bgidl = '5.999300e+009+pvhv_bgidl_diff_1'
+cgidl = '1.394000e+000+pvhv_cgidl_diff_1'
+egidl = 4.920000e-002
***GATE DIELECTRIC TUNNELING CURRENT MODEL PARAMETERS**********
+toxref = 1.160000e-008
+aigbacc = '4.300000e-001+pvhv_aigbacc_diff_1'
+bigbacc = 5.400000e-002
+cigbacc = 7.500000e-002
+nigbacc = '1.000000e+000+pvhv_nigbacc_diff_1'
+aigbinv = '3.500000e-001+pvhv_aigbinv_diff_1'
+bigbinv = 3.000000e-002
+cigbinv = 6.000000e-003
+eigbinv = 1.100000e+000
+nigbinv = '3.000000e+000+pvhv_nigbinv_diff_1'
+aigc = '4.300000e-001+pvhv_aigc_diff'
+bigc = 5.400000e-002
+cigc = 7.500000e-002
+aigsd = '4.300000e-001+pvhv_aigsd_diff_1'
+bigsd = '5.400000e-002+pvhv_bigsd_diff_1'
+cigsd = 7.500000e-002
+nigc = 1.000000e+000
+poxedge = 1.000000e+000
+pigcd = 1.000000e+000
+ntox = 1.000000e+000
***CHARGE AND CAPACITANCE MODEL PARAMETERS********************
+dlc = '-9.682600e-008+pvhv_dlc_diff+pvhv_dlc_rotweak'
+dwc = '0.000000e+000+pvhv_dwc_diff'
+xpart = 0.000000e+000
+cgso = '1.977100e-010*pvhv_soverlap_mult'
+cgdo = '1.977100e-010*pvhv_doverlap_mult'
+cgbo = 0.000000e+000
+cgdl = '1.117200e-012*pvhv_doverlap_mult'
+cgsl = '1.152000e-012*pvhv_soverlap_mult'
+clc = 6.324000e-009
+cle = 8.910000e-001
+cf = '0.000000e+000+pvhv_cf_diff'
+ckappas = 6.000000e-001
+ckappad = 6.000000e-001
+vfbcv = -1.000000e+000
+acde = 9.129800e-001
+moin = 1.556200e+001
+noff = 1.045000e+000
+voffcv = -1.815100e-001
***HIGH-SPEED/RF MODEL PARAMETERS******************************
***FLICKER AND THERMAL NOISE MODEL PARAMETERS******************
+ef = 1.000000e+000
+noia = 6.250000e+041
+noib = 3.125000e+026
+noic = 8.750000e+009
+em = 4.100000e+007
***LAYOUT-DEPENDENT PARASITICS MODEL PARAMETERS****************
+xl = 0.000000e+000
+xw = 0.000000e+000
+dmcg = 0.000000e+000
+dmdg = 0.000000e+000
+dmcgt = 0.000000e+000
+xgw = 0.000000e+000
+xgl = 0.000000e+000
+ngcon = 1.000000e+000
***ASYMMETRIC SOURCE/DRAIN JUNCTION DIODE MODEL PARAMETERS*****
+jss = 2.148300e-005
+jsws = 4.020000e-012
+jtssws = '4.020000e-012+pvhv_jtssws_diff_1'
+ijthsfwd = 1.000000e-001
+ijthsrev = 1.000000e-001
+bvs = 1.269000e+001
+xjbvs = 1.000000e+000
+pbs = 6.587000e-001
+cjs = '7.754700e-004*pvhv_ajunction_mult'
+mjs = 3.395600e-001
+pbsws = 1.000000e+000
+cjsws = '9.871700e-011*pvhv_pjunction_mult'
+mjsws = 2.467600e-001
+pbswgs = 3.000000e+000
+cjswgs = '1.460000e-010*pvhv_pjunction_mult'
+mjswgs = 8.100000e-001
***TEMPERATURE DEPENDENCE PARAMETERS***************************
+tnom = 3.000000e+001
+kt1 = '-4.930800e-001+pvhv_kt1_diff_1'
+kt1l = 1.000000e-011
+kt2 = 5.633800e-004
+ute = -1.646200e+000
+ua1 = 1.218100e-009
+ub1 = -1.241200e-018
+uc1 = 8.272000e-012
+prt = 0.000000e+000
+at = -6.400000e+004
+tvoff = '1.500000e-002+pvhv_tvoff_diff_1'
+njs = 1.363200e+000
+njd = 1.079100e+000
+tpb = 1.671000e-003
+tcj = 9.600000e-004
+tpbsw = 0.000000e+000
+tcjsw = 3.000000e-005
+tpbswg = 0.000000e+000
+tcjswg = 0.000000e+000
+xtis = 1.000000e+001
+xtid = 3.000000e+000
***DW AND DL PARAMETERS****************************************
+ll = 0.000000e+000
+wl = 0.000000e+000
+lln = 1.000000e+000
+wln = 1.000000e+000
+lw = 0.000000e+000
+ww = 0.000000e+000
+lwn = 1.000000e+000
+wwn = 1.000000e+000
+lwl = 0.000000e+000
+wwl = 0.000000e+000
+llc = 0.000000e+000
+wlc = 0.000000e+000
+lwc = 0.000000e+000
+wwc = 0.000000e+000
+lwlc = 0.000000e+000
+wwlc = 0.000000e+000
***STRESS PARAMETERS*******************************************
+saref = 0.28e-006
+sbref = 1.19e-006
+kvth0 = '0.0+pvhv_kvth0_diff'
+lkvth0 = '0.0+pvhv_lkvth0_diff'
+wkvth0 = '0.0+pvhv_wkvth0_diff'
+pkvth0 = 0
+llodvth = 1
+wlodvth = 1
+wlod = 0
+stk2 = 0
+lodk2 = 1
+lodeta0 = 1
+ku0 = '0.0+pvhv_ku0_diff'
+lku0 = '0.0+pvhv_lku0_diff'
+wku0 = '0.0+pvhv_wku0_diff'
+pku0 = 0
+tku0 = 0
+llodku0 = 1
+wlodku0 = 1
+kvsat = '0.0+pvhv_kvsat_diff'
+steta0 = 0
***WELL PROXIMITY EFFECT PARAMETERS****************************
******
main1 d1 g s b pvhv_base w=w l=l ad=0 as=as pd=0 ps=ps nrd=nrd nrs=nrs m=m sa=sa sb=sb_cadfixedvalue_pvhv
rldd d d1 '(1/w)*rdiff' tc1='rdiff_tc1' tc2='rdiff_tc2' m=m
dnw1 d b dnwdiode_pvhv area='ad/2' pj='pd/2' m=m
dnw2 d1 b dnwdiode_pvhv area='ad/2' pj='pd/2' m=m
.ends pvhv