blob: 4237be1fef9fb42b52decb88994d9e6c618ed0c0 [file] [log] [blame]
**********************************************************************************
* AW (Analog Wrapper) Low Vt models for Atlantis
**********************************************************************************
**********************************************************************************
.subckt pmedlvtrf_1p68p15nf2 d g s b m=1
.model rf_rgc r tc1=tc1rcgp tc2=tc2rcgp tnom=30
.model rf_rgs r tc1=tc1rsgpu tc2=tc2rsgpu tnom=30
.model pmedlvt.0 pmos
*
***MODEL FLAG PARAMETERS
*
+lmin = 1.45e-007 lmax = 1.55e-007 wmin = 1.675e-006 wmax = 1.685e-006
+level = 54
+version = 4.5
+binunit = 2
+mobmod = 0
+capmod = 2
+igcmod = 0
+igbmod = 0
+geomod = 0
+diomod = 1
+rdsmod = 0
+rbodymod = 1
+rgatemod = 0
+permod = 1
+acnqsmod = 0
+trnqsmod = 0
+fnoimod = 1
+tnoimod = 1
+tempmod = 0
***PROCESS PARAMETERS
+toxe = '4.23e-009*pmedlvt_toxe_mult' dev/gauss = '4.23e-09*pmedlvt_toxe_mult*(pmedlvt_toxe_slope/sqrt(E(*,l)*E(*,w)*E(*,m)))'
+toxm = 4.23e-009
+dtox = 0
+epsrox = 3.9
+xj = 1.5e-007
+ngate = 1e+023
+ndep = 1.7e+017
+nsd = 1e+020
+rsh = '1*pmedlvt_rshp_mult'
+rshg = 0.1
***BASIC MODEL PARAMETERS
+wint = '7.304e-009+pmedlvt_wint_diff'
+lint = '-1.399e-008+pmedlvt_lint_diff'
+vth0 = '-0.7375+pmedlvt_vth0_diff_0' dev/gauss = 'pmedlvt_vth0_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+k1 = 0.2078
+k2 = '0.09904+pmedlvt_k2_diff_0'
+k3 = -15.85
+k3b = 2
+w0 = 0
+dvt0 = 4.496
+dvt1 = 0.294
+dvt2 = 0.015
+dvt0w = -4.977
+dvt1w = 1147000
+dvt2w = -0.00896
+dsub = 0.26
+minv = 0
+voffl = 0
+lpe0 = 0
+lpeb = 0
+vbm = -3
+dvtp0 = 0
+dvtp1 = 0
+phin = 0
+cdsc = 0.02472
+cdscb = 0.003175
+cdscd = 0
+cit = 0.0001462
+voff = '-0.4483+pmedlvt_voff_diff_0' dev/gauss = 'pmedlvt_voff_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+nfactor = '4.228+pmedlvt_nfactor_diff_0' dev/gauss = 'pmedlvt_nfactor_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+eta0 = '0.5735+pmedlvt_eta0_diff_0'
+etab = -0.03063
+u0 = '0.002233+pmedlvt_u0_diff_0'
+ua = '-2.832e-009+pmedlvt_ua_diff_0'
+ub = '2.789e-018+pmedlvt_ub_diff_0'
+uc = -1.076e-011
+ud = 0
+up = 0
+lp = 1
+eu = 1.67
+vtl = 0
+xn = 3
+vsat = '47470+pmedlvt_vsat_diff_0'
+a0 = '1.047+pmedlvt_a0_diff_0'
+ags = '0.5789+pmedlvt_ags_diff_0'
+a1 = 0
+a2 = 0.9995
+b0 = '0+pmedlvt_b0_diff_0'
+b1 = '0+pmedlvt_b1_diff_0'
+keta = '0.09663+pmedlvt_keta_diff_0'
+dwg = -5.722e-009
+dwb = -1.786e-008
+pclm = '0.2853+pmedlvt_pclm_diff_0'
+pdiblc1 = 0.0195
+pdiblc2 = 0.00043
+pdiblcb = -2.441e-005
+drout = 1
+pscbe1 = 7.69e+008
+pscbe2 = 8.801e-009
+pvag = 0
+delta = 0.01
+fprout = 0
+pdits = '0+pmedlvt_pdits_diff_0'
+pditsl = 0
+pditsd = '0+pmedlvt_pditsd_diff_0'
+lambda = 0
+lc = 5e-009
***PARAMETERS FOR ASYMMETRIC AND BIAS-DEPENDENT RDS MODEL******
+rdsw = '547.9+pmedlvt_rdsw_diff_0'
+rsw = 0
+rdw = 0
+rdswmin = 0
+rdwmin = 0
+rswmin = 0
+prwb = -0.3235
+prwg = 0.1376
+wr = 1
***IMPACT IONIZATION CURRENT MODEL PARAMTERS******************
+alpha0 = 1e-010
+alpha1 = 1e-010
+beta0 = 7.261
***GIDL INDUCED DRAIN LEAKAGE MODEL PARAMETERS*****************
+agidl = '2.214e-010+pmedlvt_agidl_diff_0'
+bgidl = '1e+009+pmedlvt_bgidl_diff_0'
+cgidl = '300+pmedlvt_cgidl_diff_0'
+egidl = 0.1
***GATE DIELECTRIC TUNNELING CURRENT MODEL PARAMETERS**********
+toxref = 4.23e-009
+dlcig = 0
+aigbacc = 0.43
+bigbacc = 0.054
+cigbacc = 0.075
+nigbacc = 1
+aigbinv = 0.35
+bigbinv = 0.03
+cigbinv = 0.006
+eigbinv = 1.1
+nigbinv = 3
+aigc = 0.43
+bigc = 0.054
+cigc = 0.075
+aigsd = 0.43
+bigsd = 0.054
+cigsd = 0.075
+nigc = 1
+poxedge = 1
+pigcd = 1
+ntox = 1
+vfbsdoff = 0
***CHARGE AND CAPACITANCE MODEL PARAMETERS********************
+dlc = '1.536e-008+pmedlvt_dlc_diff'
+dwc = '0+pmedlvt_dwc_diff'
+xpart = 0
+cgso = '7.17e-011*pmedlvt_overlap_mult'
+cgdo = '8.17e-011*pmedlvt_overlap_mult'
+cgbo = 0
+cgdl = '5.5e-013*pmedlvt_overlap_mult'
+cgsl = '5.5e-013*pmedlvt_overlap_mult'
+clc = 0
+cle = 1
+cf = 6e-012
+ckappas = 0.6
+vfbcv = -0.1447
+acde = 0.3136
+moin = 25.0
+noff = 3.9
+voffcv = 0.1462
***HIGH-SPEED/RF MODEL PARAMETERS******************************
+xrcrg1 = 12
+xrcrg2 = 1
+rbpb = 50
+rbpd = 50
+rbps = 50
+rbdb = 50
+rbsb = 50
+gbmin = 1e-012
***FLICKER AND THERMAL NOISE MODEL PARAMETERS******************
+ef = 1
+noia = '2.7e+042 * pmedlvt_noia_mult'
+noib = 0
+noic = 0
+em = 4.1e+007
+ntnoi = 1
+lintnoi = -2e-007
+af = 1
+kf = 0
+tnoia = 2.5e+007
+tnoib = 0
+rnoia = 0.69
+rnoib = 0.34
***LAYOUT-DEPENDENT PARASITICS MODEL PARAMETERS****************
+xl = 0
+xw = 0
+dmcg = 0
+dmdg = 0
+dmcgt = 0
+xgw = 0
+xgl = 0
+ngcon = 1
***ASYMMETRIC SOURCE/DRAIN JUNCTION DIODE MODEL PARAMETERS*****
+jss = 2.148e-005
+jsws = 8.04e-010
+ijthsfwd = 0.1
+ijthsrev = 0.1
+bvs = 12.69
+xjbvs = 1
+pbs = 0.6587
+cjs = '0.000738*pmedlvt_ajunction_mult'
+mjs = 0.3463
+pbsws = 0.7418
+cjsws = '9.889e-011*pmedlvt_pjunction_mult'
+mjsws = 0.2978
+pbswgs = 1.434
+cjswgs = '2.232e-010*pmedlvt_pjunction_mult'
+mjswgs = 0.9274
***TEMPERATURE DEPENDENCE PARAMETERS***************************
+tnom = 30
+kt1 = '-0.5434+pmedlvt_kt1_diff_0'
+kt2 = -0.1167
+at = 21110
+ute = -0.2531
+ua1 = -8.749e-010
+ub1 = 2.358e-018
+uc1 = 7.088e-011
+kt1l = 0
+prt = 0
+tvoff = '0+pmedlvt_tvoff_diff_0'
+njs = 1.363
+tpb = 0.002039
+tcj = 0.001241
+tpbsw = 0.001246
+tcjsw = 0.0003736
+tpbswg = 0
+tcjswg = 2e-012
+xtis = 5.2
+tvfbsdoff = 0
***DW AND DL PARAMETERS****************************************
+ll = 0
+wl = 0
+lln = 1
+wln = 1
+lw = 0
+ww = 0
+lwn = 1
+wwn = 1
+lwl = 0
+wwl = 0
+llc = 0
+wlc = 0
+lwc = 0
+wwc = 0
+lwlc = 0
+wwlc = 0
***STRESS PARAMETERS*******************************************
+saref = 1.04e-006
+sbref = 1.04e-006
+kvth0 = 3.29e-008
+lkvth0 = 0
+wkvth0 = 2e-007
+pkvth0 = 0
+llodvth = 0
+wlodvth = 1
+wlod = 0
+stk2 = 0
+lodk2 = 1
+lodeta0 = 1
+ku0 = 4.5e-008
+lku0 = 0
+wku0 = 2.5e-007
+pku0 = 0
+tku0 = 0
+llodku0 = 0
+wlodku0 = 1
+kvsat = 0.5
+steta0 = 0
***WELL PROXIMITY EFFECT PARAMETERS****************************
******
.model pmedlvt.1 pmos
*
***MODEL FLAG PARAMETERS
*
+lmin = 1.45e-007 lmax = 1.55e-007 wmin = 8.35e-007 wmax = 8.45e-007
+level = 54
+version = 4.5
+binunit = 2
+mobmod = 0
+capmod = 2
+igcmod = 0
+igbmod = 0
+geomod = 0
+diomod = 1
+rdsmod = 0
+rbodymod = 1
+rgatemod = 0
+permod = 1
+acnqsmod = 0
+trnqsmod = 0
+fnoimod = 1
+tnoimod = 1
+tempmod = 0
***PROCESS PARAMETERS
+toxe = '4.23e-009*pmedlvt_toxe_mult' dev/gauss = '4.23e-09*pmedlvt_toxe_mult*(pmedlvt_toxe_slope/sqrt(E(*,l)*E(*,w)*E(*,m)))'
+toxm = 4.23e-009
+dtox = 0
+epsrox = 3.9
+xj = 1.5e-007
+ngate = 1e+023
+ndep = 1.7e+017
+nsd = 1e+020
+rsh = '1*pmedlvt_rshp_mult'
+rshg = 0.1
***BASIC MODEL PARAMETERS
+wint = '7.304e-009+pmedlvt_wint_diff'
+lint = '-1.399e-008+pmedlvt_lint_diff'
+vth0 = '-0.7375+pmedlvt_vth0_diff_1' dev/gauss = 'pmedlvt_vth0_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+k1 = 0.2078
+k2 = '0.107+pmedlvt_k2_diff_1'
+k3 = -15.85
+k3b = 2
+w0 = 0
+dvt0 = 4.496
+dvt1 = 0.294
+dvt2 = 0.015
+dvt0w = -4.977
+dvt1w = 1147000
+dvt2w = -0.00896
+dsub = 0.26
+minv = 0
+voffl = 0
+lpe0 = 0
+lpeb = 0
+vbm = -3
+dvtp0 = 0
+dvtp1 = 0
+phin = 0
+cdsc = 0.02522
+cdscb = 0.004958
+cdscd = 0
+cit = 0.0001462
+voff = '-0.4483+pmedlvt_voff_diff_1' dev/gauss = 'pmedlvt_voff_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+nfactor = '4.228+pmedlvt_nfactor_diff_1' dev/gauss = 'pmedlvt_nfactor_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+eta0 = '0.6128+pmedlvt_eta0_diff_1'
+etab = -0.04874
+u0 = '0.002175+pmedlvt_u0_diff_1'
+ua = '-2.801e-009+pmedlvt_ua_diff_1'
+ub = '2.717e-018+pmedlvt_ub_diff_1'
+uc = -2.128e-011
+ud = 0
+up = 0
+lp = 1
+eu = 1.67
+vtl = 0
+xn = 3
+vsat = '45410+pmedlvt_vsat_diff_1'
+a0 = '1.047+pmedlvt_a0_diff_1'
+ags = '0.5789+pmedlvt_ags_diff_1'
+a1 = 0
+a2 = 0.9995
+b0 = '0+pmedlvt_b0_diff_1'
+b1 = '0+pmedlvt_b1_diff_1'
+keta = '0.09663+pmedlvt_keta_diff_1'
+dwg = -5.722e-009
+dwb = -1.786e-008
+pclm = '0.2853+pmedlvt_pclm_diff_1'
+pdiblc1 = 0.0195
+pdiblc2 = 0.00043
+pdiblcb = -2.441e-005
+drout = 1
+pscbe1 = 7.69e+008
+pscbe2 = 8.801e-009
+pvag = 0
+delta = 0.01
+fprout = 0
+pdits = '0+pmedlvt_pdits_diff_1'
+pditsl = 0
+pditsd = '0+pmedlvt_pditsd_diff_1'
+lambda = 0
+lc = 5e-009
***PARAMETERS FOR ASYMMETRIC AND BIAS-DEPENDENT RDS MODEL******
+rdsw = '547.9+pmedlvt_rdsw_diff_1'
+rsw = 0
+rdw = 0
+rdswmin = 0
+rdwmin = 0
+rswmin = 0
+prwb = -0.3235
+prwg = 0.1376
+wr = 1
***IMPACT IONIZATION CURRENT MODEL PARAMTERS******************
+alpha0 = 1e-010
+alpha1 = 1e-010
+beta0 = 7.261
***GIDL INDUCED DRAIN LEAKAGE MODEL PARAMETERS*****************
+agidl = '2.214e-010+pmedlvt_agidl_diff_1'
+bgidl = '1e+009+pmedlvt_bgidl_diff_1'
+cgidl = '300+pmedlvt_cgidl_diff_1'
+egidl = 0.1
***GATE DIELECTRIC TUNNELING CURRENT MODEL PARAMETERS**********
+toxref = 4.23e-009
+dlcig = 0
+aigbacc = 0.43
+bigbacc = 0.054
+cigbacc = 0.075
+nigbacc = 1
+aigbinv = 0.35
+bigbinv = 0.03
+cigbinv = 0.006
+eigbinv = 1.1
+nigbinv = 3
+aigc = 0.43
+bigc = 0.054
+cigc = 0.075
+aigsd = 0.43
+bigsd = 0.054
+cigsd = 0.075
+nigc = 1
+poxedge = 1
+pigcd = 1
+ntox = 1
+vfbsdoff = 0
***CHARGE AND CAPACITANCE MODEL PARAMETERS********************
+dlc = '3.536e-008+pmedlvt_dlc_diff'
+dwc = '0+pmedlvt_dwc_diff'
+xpart = 0
+cgso = '1e-013*pmedlvt_overlap_mult'
+cgdo = '1.857e-010*pmedlvt_overlap_mult'
+cgbo = 0
+cgdl = '9.55e-012*pmedlvt_overlap_mult'
+cgsl = '9.55e-012*pmedlvt_overlap_mult'
+clc = 0
+cle = 1
+cf = 1.2e-013
+ckappas = 0.6
+vfbcv = -0.1447
+acde = 0.3136
+moin = 25.0
+noff = 3.9
+voffcv = 0.1462
***HIGH-SPEED/RF MODEL PARAMETERS******************************
+xrcrg1 = 12
+xrcrg2 = 1
+rbpb = 50
+rbpd = 50
+rbps = 50
+rbdb = 50
+rbsb = 50
+gbmin = 1e-012
***FLICKER AND THERMAL NOISE MODEL PARAMETERS******************
+ef = 1
+noia = '2.7e+042 * pmedlvt_noia_mult'
+noib = 0
+noic = 0
+em = 4.1e+007
+ntnoi = 1
+lintnoi = -2e-007
+af = 1
+kf = 0
+tnoia = 2.5e+007
+tnoib = 0
+rnoia = 0.69
+rnoib = 0.34
***LAYOUT-DEPENDENT PARASITICS MODEL PARAMETERS****************
+xl = 0
+xw = 0
+dmcg = 0
+dmdg = 0
+dmcgt = 0
+xgw = 0
+xgl = 0
+ngcon = 1
***ASYMMETRIC SOURCE/DRAIN JUNCTION DIODE MODEL PARAMETERS*****
+jss = 2.148e-005
+jsws = 8.04e-010
+ijthsfwd = 0.1
+ijthsrev = 0.1
+bvs = 12.69
+xjbvs = 1
+pbs = 0.6587
+cjs = '0.000738*pmedlvt_ajunction_mult'
+mjs = 0.3463
+pbsws = 0.7418
+cjsws = '9.889e-011*pmedlvt_pjunction_mult'
+mjsws = 0.2978
+pbswgs = 1.434
+cjswgs = '2.232e-010*pmedlvt_pjunction_mult'
+mjswgs = 0.9274
***TEMPERATURE DEPENDENCE PARAMETERS***************************
+tnom = 30
+kt1 = '-0.7955+pmedlvt_kt1_diff_1'
+kt2 = -0.1319
+at = 21110
+ute = -0.1462
+ua1 = -1.988e-010
+ub1 = 1.323e-018
+uc1 = 5.411e-011
+kt1l = 0
+prt = 0
+tvoff = '0+pmedlvt_tvoff_diff_1'
+njs = 1.363
+tpb = 0.002039
+tcj = 0.001241
+tpbsw = 0.001246
+tcjsw = 0.0003736
+tpbswg = 0
+tcjswg = 2e-012
+xtis = 5.2
+tvfbsdoff = 0
***DW AND DL PARAMETERS****************************************
+ll = 0
+wl = 0
+lln = 1
+wln = 1
+lw = 0
+ww = 0
+lwn = 1
+wwn = 1
+lwl = 0
+wwl = 0
+llc = 0
+wlc = 0
+lwc = 0
+wwc = 0
+lwlc = 0
+wwlc = 0
***STRESS PARAMETERS*******************************************
+saref = 1.04e-006
+sbref = 1.04e-006
+kvth0 = 3.29e-008
+lkvth0 = 0
+wkvth0 = 2e-007
+pkvth0 = 0
+llodvth = 0
+wlodvth = 1
+wlod = 0
+stk2 = 0
+lodk2 = 1
+lodeta0 = 1
+ku0 = 4.5e-008
+lku0 = 0
+wku0 = 2.5e-007
+pku0 = 0
+tku0 = 0
+llodku0 = 0
+wlodku0 = 1
+kvsat = 0.5
+steta0 = 0
***WELL PROXIMITY EFFECT PARAMETERS****************************
******
m1 1 2 3 b pmedlvt l=0.15 w='(2)*(1.68)' ad='(2)*(0.2352)' as='(2)*(0.445)' pd='(2)*(1.96)' ps='(2)*(3.89)' nrd='(0)/(2)' nrs='(0)/(2)' delvto=0 nf=2 sa=0.265 sb=0.265 sd=0.28 m='1*m'
cpar_ds 1 3 c='(0.56f * pmedlvt_rf_aw_cap_mult)*m'
cpar_gd 2 1 c='(0.54f * pmedlvt_rf_aw_cap_mult)*m'
cpar_gs 2 3 c='(0.119f * pmedlvt_rf_aw_cap_mult)*m'
rg_stub 2a g rf_rgc r='(177 * pmedlvt_rf_aw_rgate_stub_mult)/m'
rd 1 d r='(154 * pmedlvt_rf_aw_rd_mult)/m'
rs 3 s r='(76 * pmedlvt_rf_aw_rs_mult)/m'
rg_dist 2 2a rf_rgs r='(250.129 * pmedlvt_rf_aw_rgate_dist_mult)/m'
.ends pmedlvtrf_1p68p15nf2
**********************************************************************************
**********************************************************************************
.subckt pmedlvtrf_p84p15nf2 d g s b m=1
.model rf_rgc r tc1=tc1rcgp tc2=tc2rcgp tnom=30
.model rf_rgs r tc1=tc1rsgpu tc2=tc2rsgpu tnom=30
.model pmedlvt.0 pmos
*
***MODEL FLAG PARAMETERS
*
+lmin = 1.45e-007 lmax = 1.55e-007 wmin = 1.675e-006 wmax = 1.685e-006
+level = 54
+version = 4.5
+binunit = 2
+mobmod = 0
+capmod = 2
+igcmod = 0
+igbmod = 0
+geomod = 0
+diomod = 1
+rdsmod = 0
+rbodymod = 1
+rgatemod = 0
+permod = 1
+acnqsmod = 0
+trnqsmod = 0
+fnoimod = 1
+tnoimod = 1
+tempmod = 0
***PROCESS PARAMETERS
+toxe = '4.23e-009*pmedlvt_toxe_mult' dev/gauss = '4.23e-09*pmedlvt_toxe_mult*(pmedlvt_toxe_slope/sqrt(E(*,l)*E(*,w)*E(*,m)))'
+toxm = 4.23e-009
+dtox = 0
+epsrox = 3.9
+xj = 1.5e-007
+ngate = 1e+023
+ndep = 1.7e+017
+nsd = 1e+020
+rsh = '1*pmedlvt_rshp_mult'
+rshg = 0.1
***BASIC MODEL PARAMETERS
+wint = '7.304e-009+pmedlvt_wint_diff'
+lint = '-1.399e-008+pmedlvt_lint_diff'
+vth0 = '-0.7375+pmedlvt_vth0_diff_0' dev/gauss = 'pmedlvt_vth0_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+k1 = 0.2078
+k2 = '0.09904+pmedlvt_k2_diff_0'
+k3 = -15.85
+k3b = 2
+w0 = 0
+dvt0 = 4.496
+dvt1 = 0.294
+dvt2 = 0.015
+dvt0w = -4.977
+dvt1w = 1147000
+dvt2w = -0.00896
+dsub = 0.26
+minv = 0
+voffl = 0
+lpe0 = 0
+lpeb = 0
+vbm = -3
+dvtp0 = 0
+dvtp1 = 0
+phin = 0
+cdsc = 0.02472
+cdscb = 0.003175
+cdscd = 0
+cit = 0.0001462
+voff = '-0.4483+pmedlvt_voff_diff_0' dev/gauss = 'pmedlvt_voff_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+nfactor = '4.228+pmedlvt_nfactor_diff_0' dev/gauss = 'pmedlvt_nfactor_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+eta0 = '0.5735+pmedlvt_eta0_diff_0'
+etab = -0.03063
+u0 = '0.002233+pmedlvt_u0_diff_0'
+ua = '-2.832e-009+pmedlvt_ua_diff_0'
+ub = '2.789e-018+pmedlvt_ub_diff_0'
+uc = -1.076e-011
+ud = 0
+up = 0
+lp = 1
+eu = 1.67
+vtl = 0
+xn = 3
+vsat = '47470+pmedlvt_vsat_diff_0'
+a0 = '1.047+pmedlvt_a0_diff_0'
+ags = '0.5789+pmedlvt_ags_diff_0'
+a1 = 0
+a2 = 0.9995
+b0 = '0+pmedlvt_b0_diff_0'
+b1 = '0+pmedlvt_b1_diff_0'
+keta = '0.09663+pmedlvt_keta_diff_0'
+dwg = -5.722e-009
+dwb = -1.786e-008
+pclm = '0.2853+pmedlvt_pclm_diff_0'
+pdiblc1 = 0.0195
+pdiblc2 = 0.00043
+pdiblcb = -2.441e-005
+drout = 1
+pscbe1 = 7.69e+008
+pscbe2 = 8.801e-009
+pvag = 0
+delta = 0.01
+fprout = 0
+pdits = '0+pmedlvt_pdits_diff_0'
+pditsl = 0
+pditsd = '0+pmedlvt_pditsd_diff_0'
+lambda = 0
+lc = 5e-009
***PARAMETERS FOR ASYMMETRIC AND BIAS-DEPENDENT RDS MODEL******
+rdsw = '547.9+pmedlvt_rdsw_diff_0'
+rsw = 0
+rdw = 0
+rdswmin = 0
+rdwmin = 0
+rswmin = 0
+prwb = -0.3235
+prwg = 0.1376
+wr = 1
***IMPACT IONIZATION CURRENT MODEL PARAMTERS******************
+alpha0 = 1e-010
+alpha1 = 1e-010
+beta0 = 7.261
***GIDL INDUCED DRAIN LEAKAGE MODEL PARAMETERS*****************
+agidl = '2.214e-010+pmedlvt_agidl_diff_0'
+bgidl = '1e+009+pmedlvt_bgidl_diff_0'
+cgidl = '300+pmedlvt_cgidl_diff_0'
+egidl = 0.1
***GATE DIELECTRIC TUNNELING CURRENT MODEL PARAMETERS**********
+toxref = 4.23e-009
+dlcig = 0
+aigbacc = 0.43
+bigbacc = 0.054
+cigbacc = 0.075
+nigbacc = 1
+aigbinv = 0.35
+bigbinv = 0.03
+cigbinv = 0.006
+eigbinv = 1.1
+nigbinv = 3
+aigc = 0.43
+bigc = 0.054
+cigc = 0.075
+aigsd = 0.43
+bigsd = 0.054
+cigsd = 0.075
+nigc = 1
+poxedge = 1
+pigcd = 1
+ntox = 1
+vfbsdoff = 0
***CHARGE AND CAPACITANCE MODEL PARAMETERS********************
+dlc = '1.536e-008+pmedlvt_dlc_diff'
+dwc = '0+pmedlvt_dwc_diff'
+xpart = 0
+cgso = '7.17e-011*pmedlvt_overlap_mult'
+cgdo = '8.17e-011*pmedlvt_overlap_mult'
+cgbo = 0
+cgdl = '5.5e-013*pmedlvt_overlap_mult'
+cgsl = '5.5e-013*pmedlvt_overlap_mult'
+clc = 0
+cle = 1
+cf = 6e-012
+ckappas = 0.6
+vfbcv = -0.1447
+acde = 0.3136
+moin = 25.0
+noff = 3.9
+voffcv = 0.1462
***HIGH-SPEED/RF MODEL PARAMETERS******************************
+xrcrg1 = 12
+xrcrg2 = 1
+rbpb = 50
+rbpd = 50
+rbps = 50
+rbdb = 50
+rbsb = 50
+gbmin = 1e-012
***FLICKER AND THERMAL NOISE MODEL PARAMETERS******************
+ef = 1
+noia = '2.7e+042 * pmedlvt_noia_mult'
+noib = 0
+noic = 0
+em = 4.1e+007
+ntnoi = 1
+lintnoi = -2e-007
+af = 1
+kf = 0
+tnoia = 2.5e+007
+tnoib = 0
+rnoia = 0.69
+rnoib = 0.34
***LAYOUT-DEPENDENT PARASITICS MODEL PARAMETERS****************
+xl = 0
+xw = 0
+dmcg = 0
+dmdg = 0
+dmcgt = 0
+xgw = 0
+xgl = 0
+ngcon = 1
***ASYMMETRIC SOURCE/DRAIN JUNCTION DIODE MODEL PARAMETERS*****
+jss = 2.148e-005
+jsws = 8.04e-010
+ijthsfwd = 0.1
+ijthsrev = 0.1
+bvs = 12.69
+xjbvs = 1
+pbs = 0.6587
+cjs = '0.000738*pmedlvt_ajunction_mult'
+mjs = 0.3463
+pbsws = 0.7418
+cjsws = '9.889e-011*pmedlvt_pjunction_mult'
+mjsws = 0.2978
+pbswgs = 1.434
+cjswgs = '2.232e-010*pmedlvt_pjunction_mult'
+mjswgs = 0.9274
***TEMPERATURE DEPENDENCE PARAMETERS***************************
+tnom = 30
+kt1 = '-0.5434+pmedlvt_kt1_diff_0'
+kt2 = -0.1167
+at = 21110
+ute = -0.2531
+ua1 = -8.749e-010
+ub1 = 2.358e-018
+uc1 = 7.088e-011
+kt1l = 0
+prt = 0
+tvoff = '0+pmedlvt_tvoff_diff_0'
+njs = 1.363
+tpb = 0.002039
+tcj = 0.001241
+tpbsw = 0.001246
+tcjsw = 0.0003736
+tpbswg = 0
+tcjswg = 2e-012
+xtis = 5.2
+tvfbsdoff = 0
***DW AND DL PARAMETERS****************************************
+ll = 0
+wl = 0
+lln = 1
+wln = 1
+lw = 0
+ww = 0
+lwn = 1
+wwn = 1
+lwl = 0
+wwl = 0
+llc = 0
+wlc = 0
+lwc = 0
+wwc = 0
+lwlc = 0
+wwlc = 0
***STRESS PARAMETERS*******************************************
+saref = 1.04e-006
+sbref = 1.04e-006
+kvth0 = 3.29e-008
+lkvth0 = 0
+wkvth0 = 2e-007
+pkvth0 = 0
+llodvth = 0
+wlodvth = 1
+wlod = 0
+stk2 = 0
+lodk2 = 1
+lodeta0 = 1
+ku0 = 4.5e-008
+lku0 = 0
+wku0 = 2.5e-007
+pku0 = 0
+tku0 = 0
+llodku0 = 0
+wlodku0 = 1
+kvsat = 0.5
+steta0 = 0
***WELL PROXIMITY EFFECT PARAMETERS****************************
******
.model pmedlvt.1 pmos
*
***MODEL FLAG PARAMETERS
*
+lmin = 1.45e-007 lmax = 1.55e-007 wmin = 8.35e-007 wmax = 8.45e-007
+level = 54
+version = 4.5
+binunit = 2
+mobmod = 0
+capmod = 2
+igcmod = 0
+igbmod = 0
+geomod = 0
+diomod = 1
+rdsmod = 0
+rbodymod = 1
+rgatemod = 0
+permod = 1
+acnqsmod = 0
+trnqsmod = 0
+fnoimod = 1
+tnoimod = 1
+tempmod = 0
***PROCESS PARAMETERS
+toxe = '4.23e-009*pmedlvt_toxe_mult' dev/gauss = '4.23e-09*pmedlvt_toxe_mult*(pmedlvt_toxe_slope/sqrt(E(*,l)*E(*,w)*E(*,m)))'
+toxm = 4.23e-009
+dtox = 0
+epsrox = 3.9
+xj = 1.5e-007
+ngate = 1e+023
+ndep = 1.7e+017
+nsd = 1e+020
+rsh = '1*pmedlvt_rshp_mult'
+rshg = 0.1
***BASIC MODEL PARAMETERS
+wint = '7.304e-009+pmedlvt_wint_diff'
+lint = '-1.399e-008+pmedlvt_lint_diff'
+vth0 = '-0.7375+pmedlvt_vth0_diff_1' dev/gauss = 'pmedlvt_vth0_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+k1 = 0.2078
+k2 = '0.107+pmedlvt_k2_diff_1'
+k3 = -15.85
+k3b = 2
+w0 = 0
+dvt0 = 4.496
+dvt1 = 0.294
+dvt2 = 0.015
+dvt0w = -4.977
+dvt1w = 1147000
+dvt2w = -0.00896
+dsub = 0.26
+minv = 0
+voffl = 0
+lpe0 = 0
+lpeb = 0
+vbm = -3
+dvtp0 = 0
+dvtp1 = 0
+phin = 0
+cdsc = 0.02522
+cdscb = 0.004958
+cdscd = 0
+cit = 0.0001462
+voff = '-0.4483+pmedlvt_voff_diff_1' dev/gauss = 'pmedlvt_voff_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+nfactor = '4.228+pmedlvt_nfactor_diff_1' dev/gauss = 'pmedlvt_nfactor_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+eta0 = '0.6128+pmedlvt_eta0_diff_1'
+etab = -0.04874
+u0 = '0.002175+pmedlvt_u0_diff_1'
+ua = '-2.801e-009+pmedlvt_ua_diff_1'
+ub = '2.717e-018+pmedlvt_ub_diff_1'
+uc = -2.128e-011
+ud = 0
+up = 0
+lp = 1
+eu = 1.67
+vtl = 0
+xn = 3
+vsat = '45410+pmedlvt_vsat_diff_1'
+a0 = '1.047+pmedlvt_a0_diff_1'
+ags = '0.5789+pmedlvt_ags_diff_1'
+a1 = 0
+a2 = 0.9995
+b0 = '0+pmedlvt_b0_diff_1'
+b1 = '0+pmedlvt_b1_diff_1'
+keta = '0.09663+pmedlvt_keta_diff_1'
+dwg = -5.722e-009
+dwb = -1.786e-008
+pclm = '0.2853+pmedlvt_pclm_diff_1'
+pdiblc1 = 0.0195
+pdiblc2 = 0.00043
+pdiblcb = -2.441e-005
+drout = 1
+pscbe1 = 7.69e+008
+pscbe2 = 8.801e-009
+pvag = 0
+delta = 0.01
+fprout = 0
+pdits = '0+pmedlvt_pdits_diff_1'
+pditsl = 0
+pditsd = '0+pmedlvt_pditsd_diff_1'
+lambda = 0
+lc = 5e-009
***PARAMETERS FOR ASYMMETRIC AND BIAS-DEPENDENT RDS MODEL******
+rdsw = '547.9+pmedlvt_rdsw_diff_1'
+rsw = 0
+rdw = 0
+rdswmin = 0
+rdwmin = 0
+rswmin = 0
+prwb = -0.3235
+prwg = 0.1376
+wr = 1
***IMPACT IONIZATION CURRENT MODEL PARAMTERS******************
+alpha0 = 1e-010
+alpha1 = 1e-010
+beta0 = 7.261
***GIDL INDUCED DRAIN LEAKAGE MODEL PARAMETERS*****************
+agidl = '2.214e-010+pmedlvt_agidl_diff_1'
+bgidl = '1e+009+pmedlvt_bgidl_diff_1'
+cgidl = '300+pmedlvt_cgidl_diff_1'
+egidl = 0.1
***GATE DIELECTRIC TUNNELING CURRENT MODEL PARAMETERS**********
+toxref = 4.23e-009
+dlcig = 0
+aigbacc = 0.43
+bigbacc = 0.054
+cigbacc = 0.075
+nigbacc = 1
+aigbinv = 0.35
+bigbinv = 0.03
+cigbinv = 0.006
+eigbinv = 1.1
+nigbinv = 3
+aigc = 0.43
+bigc = 0.054
+cigc = 0.075
+aigsd = 0.43
+bigsd = 0.054
+cigsd = 0.075
+nigc = 1
+poxedge = 1
+pigcd = 1
+ntox = 1
+vfbsdoff = 0
***CHARGE AND CAPACITANCE MODEL PARAMETERS********************
+dlc = '3.536e-008+pmedlvt_dlc_diff'
+dwc = '0+pmedlvt_dwc_diff'
+xpart = 0
+cgso = '1e-013*pmedlvt_overlap_mult'
+cgdo = '1.857e-010*pmedlvt_overlap_mult'
+cgbo = 0
+cgdl = '9.55e-012*pmedlvt_overlap_mult'
+cgsl = '9.55e-012*pmedlvt_overlap_mult'
+clc = 0
+cle = 1
+cf = 1.2e-013
+ckappas = 0.6
+vfbcv = -0.1447
+acde = 0.3136
+moin = 25.0
+noff = 3.9
+voffcv = 0.1462
***HIGH-SPEED/RF MODEL PARAMETERS******************************
+xrcrg1 = 12
+xrcrg2 = 1
+rbpb = 50
+rbpd = 50
+rbps = 50
+rbdb = 50
+rbsb = 50
+gbmin = 1e-012
***FLICKER AND THERMAL NOISE MODEL PARAMETERS******************
+ef = 1
+noia = '2.7e+042 * pmedlvt_noia_mult'
+noib = 0
+noic = 0
+em = 4.1e+007
+ntnoi = 1
+lintnoi = -2e-007
+af = 1
+kf = 0
+tnoia = 2.5e+007
+tnoib = 0
+rnoia = 0.69
+rnoib = 0.34
***LAYOUT-DEPENDENT PARASITICS MODEL PARAMETERS****************
+xl = 0
+xw = 0
+dmcg = 0
+dmdg = 0
+dmcgt = 0
+xgw = 0
+xgl = 0
+ngcon = 1
***ASYMMETRIC SOURCE/DRAIN JUNCTION DIODE MODEL PARAMETERS*****
+jss = 2.148e-005
+jsws = 8.04e-010
+ijthsfwd = 0.1
+ijthsrev = 0.1
+bvs = 12.69
+xjbvs = 1
+pbs = 0.6587
+cjs = '0.000738*pmedlvt_ajunction_mult'
+mjs = 0.3463
+pbsws = 0.7418
+cjsws = '9.889e-011*pmedlvt_pjunction_mult'
+mjsws = 0.2978
+pbswgs = 1.434
+cjswgs = '2.232e-010*pmedlvt_pjunction_mult'
+mjswgs = 0.9274
***TEMPERATURE DEPENDENCE PARAMETERS***************************
+tnom = 30
+kt1 = '-0.7955+pmedlvt_kt1_diff_1'
+kt2 = -0.1319
+at = 21110
+ute = -0.1462
+ua1 = -1.988e-010
+ub1 = 1.323e-018
+uc1 = 5.411e-011
+kt1l = 0
+prt = 0
+tvoff = '0+pmedlvt_tvoff_diff_1'
+njs = 1.363
+tpb = 0.002039
+tcj = 0.001241
+tpbsw = 0.001246
+tcjsw = 0.0003736
+tpbswg = 0
+tcjswg = 2e-012
+xtis = 5.2
+tvfbsdoff = 0
***DW AND DL PARAMETERS****************************************
+ll = 0
+wl = 0
+lln = 1
+wln = 1
+lw = 0
+ww = 0
+lwn = 1
+wwn = 1
+lwl = 0
+wwl = 0
+llc = 0
+wlc = 0
+lwc = 0
+wwc = 0
+lwlc = 0
+wwlc = 0
***STRESS PARAMETERS*******************************************
+saref = 1.04e-006
+sbref = 1.04e-006
+kvth0 = 3.29e-008
+lkvth0 = 0
+wkvth0 = 2e-007
+pkvth0 = 0
+llodvth = 0
+wlodvth = 1
+wlod = 0
+stk2 = 0
+lodk2 = 1
+lodeta0 = 1
+ku0 = 4.5e-008
+lku0 = 0
+wku0 = 2.5e-007
+pku0 = 0
+tku0 = 0
+llodku0 = 0
+wlodku0 = 1
+kvsat = 0.5
+steta0 = 0
***WELL PROXIMITY EFFECT PARAMETERS****************************
******
m1 1 2 3 b pmedlvt l=0.15 w='(2)*(0.84)' ad='(2)*(0.1176)' as='(2)*(0.223)' pd='(2)*(1.12)' ps='(2)*(2.21)' nrd='(0)/(2)' nrs='(0)/(2)' delvto=0 nf=2 sa=0.265 sb=0.265 sd=0.28 m='1*m'
cpar_ds 1 3 c='(0.17f * pmedlvt_rf_aw_cap_mult)*m'
cpar_gd 2 1 c='(0.300f * pmedlvt_rf_aw_cap_mult)*m'
cpar_gs 2 3 c='(0.100f * pmedlvt_rf_aw_cap_mult)*m'
rg_stub 2a g rf_rgc r='(127 * pmedlvt_rf_aw_rgate_stub_mult_2)/m'
rd 1 d r='(306 * pmedlvt_rf_aw_rd_mult)/m'
rs 3 s r='(152.5 * pmedlvt_rf_aw_rs_mult)/m'
rg_dist 2 2a rf_rgs r='(257.3 * pmedlvt_rf_aw_rgate_dist_mult_2)/m'
.ends pmedlvtrf_p84p15nf2
**********************************************************************************
**********************************************************************************
.subckt pmedlvtrf_1p68p15nf4 d g s b m=1
.model rf_rgc r tc1=tc1rcgp tc2=tc2rcgp tnom=30
.model rf_rgs r tc1=tc1rsgpu tc2=tc2rsgpu tnom=30
.model pmedlvt.0 pmos
*
***MODEL FLAG PARAMETERS
*
+lmin = 1.45e-007 lmax = 1.55e-007 wmin = 1.675e-006 wmax = 1.685e-006
+level = 54
+version = 4.5
+binunit = 2
+mobmod = 0
+capmod = 2
+igcmod = 0
+igbmod = 0
+geomod = 0
+diomod = 1
+rdsmod = 0
+rbodymod = 1
+rgatemod = 0
+permod = 1
+acnqsmod = 0
+trnqsmod = 0
+fnoimod = 1
+tnoimod = 1
+tempmod = 0
***PROCESS PARAMETERS
+toxe = '4.23e-009*pmedlvt_toxe_mult' dev/gauss = '4.23e-09*pmedlvt_toxe_mult*(pmedlvt_toxe_slope/sqrt(E(*,l)*E(*,w)*E(*,m)))'
+toxm = 4.23e-009
+dtox = 0
+epsrox = 3.9
+xj = 1.5e-007
+ngate = 1e+023
+ndep = 1.7e+017
+nsd = 1e+020
+rsh = '1*pmedlvt_rshp_mult'
+rshg = 0.1
***BASIC MODEL PARAMETERS
+wint = '7.304e-009+pmedlvt_wint_diff'
+lint = '-1.399e-008+pmedlvt_lint_diff'
+vth0 = '-0.7375+pmedlvt_vth0_diff_0' dev/gauss = 'pmedlvt_vth0_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+k1 = 0.2078
+k2 = '0.09904+pmedlvt_k2_diff_0'
+k3 = -15.85
+k3b = 2
+w0 = 0
+dvt0 = 4.496
+dvt1 = 0.294
+dvt2 = 0.015
+dvt0w = -4.977
+dvt1w = 1147000
+dvt2w = -0.00896
+dsub = 0.26
+minv = 0
+voffl = 0
+lpe0 = 0
+lpeb = 0
+vbm = -3
+dvtp0 = 0
+dvtp1 = 0
+phin = 0
+cdsc = 0.02472
+cdscb = 0.003175
+cdscd = 0
+cit = 0.0001462
+voff = '-0.4483+pmedlvt_voff_diff_0' dev/gauss = 'pmedlvt_voff_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+nfactor = '4.228+pmedlvt_nfactor_diff_0' dev/gauss = 'pmedlvt_nfactor_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+eta0 = '0.5735+pmedlvt_eta0_diff_0'
+etab = -0.03063
+u0 = '0.002233+pmedlvt_u0_diff_0'
+ua = '-2.832e-009+pmedlvt_ua_diff_0'
+ub = '2.789e-018+pmedlvt_ub_diff_0'
+uc = -1.076e-011
+ud = 0
+up = 0
+lp = 1
+eu = 1.67
+vtl = 0
+xn = 3
+vsat = '47470+pmedlvt_vsat_diff_0'
+a0 = '1.047+pmedlvt_a0_diff_0'
+ags = '0.5789+pmedlvt_ags_diff_0'
+a1 = 0
+a2 = 0.9995
+b0 = '0+pmedlvt_b0_diff_0'
+b1 = '0+pmedlvt_b1_diff_0'
+keta = '0.09663+pmedlvt_keta_diff_0'
+dwg = -5.722e-009
+dwb = -1.786e-008
+pclm = '0.2853+pmedlvt_pclm_diff_0'
+pdiblc1 = 0.0195
+pdiblc2 = 0.00043
+pdiblcb = -2.441e-005
+drout = 1
+pscbe1 = 7.69e+008
+pscbe2 = 8.801e-009
+pvag = 0
+delta = 0.01
+fprout = 0
+pdits = '0+pmedlvt_pdits_diff_0'
+pditsl = 0
+pditsd = '0+pmedlvt_pditsd_diff_0'
+lambda = 0
+lc = 5e-009
***PARAMETERS FOR ASYMMETRIC AND BIAS-DEPENDENT RDS MODEL******
+rdsw = '547.9+pmedlvt_rdsw_diff_0'
+rsw = 0
+rdw = 0
+rdswmin = 0
+rdwmin = 0
+rswmin = 0
+prwb = -0.3235
+prwg = 0.1376
+wr = 1
***IMPACT IONIZATION CURRENT MODEL PARAMTERS******************
+alpha0 = 1e-010
+alpha1 = 1e-010
+beta0 = 7.261
***GIDL INDUCED DRAIN LEAKAGE MODEL PARAMETERS*****************
+agidl = '2.214e-010+pmedlvt_agidl_diff_0'
+bgidl = '1e+009+pmedlvt_bgidl_diff_0'
+cgidl = '300+pmedlvt_cgidl_diff_0'
+egidl = 0.1
***GATE DIELECTRIC TUNNELING CURRENT MODEL PARAMETERS**********
+toxref = 4.23e-009
+dlcig = 0
+aigbacc = 0.43
+bigbacc = 0.054
+cigbacc = 0.075
+nigbacc = 1
+aigbinv = 0.35
+bigbinv = 0.03
+cigbinv = 0.006
+eigbinv = 1.1
+nigbinv = 3
+aigc = 0.43
+bigc = 0.054
+cigc = 0.075
+aigsd = 0.43
+bigsd = 0.054
+cigsd = 0.075
+nigc = 1
+poxedge = 1
+pigcd = 1
+ntox = 1
+vfbsdoff = 0
***CHARGE AND CAPACITANCE MODEL PARAMETERS********************
+dlc = '1.536e-008+pmedlvt_dlc_diff'
+dwc = '0+pmedlvt_dwc_diff'
+xpart = 0
+cgso = '7.17e-011*pmedlvt_overlap_mult'
+cgdo = '8.17e-011*pmedlvt_overlap_mult'
+cgbo = 0
+cgdl = '5.5e-013*pmedlvt_overlap_mult'
+cgsl = '5.5e-013*pmedlvt_overlap_mult'
+clc = 0
+cle = 1
+cf = 6e-012
+ckappas = 0.6
+vfbcv = -0.1447
+acde = 0.3136
+moin = 25.0
+noff = 3.9
+voffcv = 0.1462
***HIGH-SPEED/RF MODEL PARAMETERS******************************
+xrcrg1 = 12
+xrcrg2 = 1
+rbpb = 50
+rbpd = 50
+rbps = 50
+rbdb = 50
+rbsb = 50
+gbmin = 1e-012
***FLICKER AND THERMAL NOISE MODEL PARAMETERS******************
+ef = 1
+noia = '2.7e+042 * pmedlvt_noia_mult'
+noib = 0
+noic = 0
+em = 4.1e+007
+ntnoi = 1
+lintnoi = -2e-007
+af = 1
+kf = 0
+tnoia = 2.5e+007
+tnoib = 0
+rnoia = 0.69
+rnoib = 0.34
***LAYOUT-DEPENDENT PARASITICS MODEL PARAMETERS****************
+xl = 0
+xw = 0
+dmcg = 0
+dmdg = 0
+dmcgt = 0
+xgw = 0
+xgl = 0
+ngcon = 1
***ASYMMETRIC SOURCE/DRAIN JUNCTION DIODE MODEL PARAMETERS*****
+jss = 2.148e-005
+jsws = 8.04e-010
+ijthsfwd = 0.1
+ijthsrev = 0.1
+bvs = 12.69
+xjbvs = 1
+pbs = 0.6587
+cjs = '0.000738*pmedlvt_ajunction_mult'
+mjs = 0.3463
+pbsws = 0.7418
+cjsws = '9.889e-011*pmedlvt_pjunction_mult'
+mjsws = 0.2978
+pbswgs = 1.434
+cjswgs = '2.232e-010*pmedlvt_pjunction_mult'
+mjswgs = 0.9274
***TEMPERATURE DEPENDENCE PARAMETERS***************************
+tnom = 30
+kt1 = '-0.5434+pmedlvt_kt1_diff_0'
+kt2 = -0.1167
+at = 21110
+ute = -0.2531
+ua1 = -8.749e-010
+ub1 = 2.358e-018
+uc1 = 7.088e-011
+kt1l = 0
+prt = 0
+tvoff = '0+pmedlvt_tvoff_diff_0'
+njs = 1.363
+tpb = 0.002039
+tcj = 0.001241
+tpbsw = 0.001246
+tcjsw = 0.0003736
+tpbswg = 0
+tcjswg = 2e-012
+xtis = 5.2
+tvfbsdoff = 0
***DW AND DL PARAMETERS****************************************
+ll = 0
+wl = 0
+lln = 1
+wln = 1
+lw = 0
+ww = 0
+lwn = 1
+wwn = 1
+lwl = 0
+wwl = 0
+llc = 0
+wlc = 0
+lwc = 0
+wwc = 0
+lwlc = 0
+wwlc = 0
***STRESS PARAMETERS*******************************************
+saref = 1.04e-006
+sbref = 1.04e-006
+kvth0 = 3.29e-008
+lkvth0 = 0
+wkvth0 = 2e-007
+pkvth0 = 0
+llodvth = 0
+wlodvth = 1
+wlod = 0
+stk2 = 0
+lodk2 = 1
+lodeta0 = 1
+ku0 = 4.5e-008
+lku0 = 0
+wku0 = 2.5e-007
+pku0 = 0
+tku0 = 0
+llodku0 = 0
+wlodku0 = 1
+kvsat = 0.5
+steta0 = 0
***WELL PROXIMITY EFFECT PARAMETERS****************************
******
.model pmedlvt.1 pmos
*
***MODEL FLAG PARAMETERS
*
+lmin = 1.45e-007 lmax = 1.55e-007 wmin = 8.35e-007 wmax = 8.45e-007
+level = 54
+version = 4.5
+binunit = 2
+mobmod = 0
+capmod = 2
+igcmod = 0
+igbmod = 0
+geomod = 0
+diomod = 1
+rdsmod = 0
+rbodymod = 1
+rgatemod = 0
+permod = 1
+acnqsmod = 0
+trnqsmod = 0
+fnoimod = 1
+tnoimod = 1
+tempmod = 0
***PROCESS PARAMETERS
+toxe = '4.23e-009*pmedlvt_toxe_mult' dev/gauss = '4.23e-09*pmedlvt_toxe_mult*(pmedlvt_toxe_slope/sqrt(E(*,l)*E(*,w)*E(*,m)))'
+toxm = 4.23e-009
+dtox = 0
+epsrox = 3.9
+xj = 1.5e-007
+ngate = 1e+023
+ndep = 1.7e+017
+nsd = 1e+020
+rsh = '1*pmedlvt_rshp_mult'
+rshg = 0.1
***BASIC MODEL PARAMETERS
+wint = '7.304e-009+pmedlvt_wint_diff'
+lint = '-1.399e-008+pmedlvt_lint_diff'
+vth0 = '-0.7375+pmedlvt_vth0_diff_1' dev/gauss = 'pmedlvt_vth0_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+k1 = 0.2078
+k2 = '0.107+pmedlvt_k2_diff_1'
+k3 = -15.85
+k3b = 2
+w0 = 0
+dvt0 = 4.496
+dvt1 = 0.294
+dvt2 = 0.015
+dvt0w = -4.977
+dvt1w = 1147000
+dvt2w = -0.00896
+dsub = 0.26
+minv = 0
+voffl = 0
+lpe0 = 0
+lpeb = 0
+vbm = -3
+dvtp0 = 0
+dvtp1 = 0
+phin = 0
+cdsc = 0.02522
+cdscb = 0.004958
+cdscd = 0
+cit = 0.0001462
+voff = '-0.4483+pmedlvt_voff_diff_1' dev/gauss = 'pmedlvt_voff_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+nfactor = '4.228+pmedlvt_nfactor_diff_1' dev/gauss = 'pmedlvt_nfactor_slope/sqrt(E(*,l)*E(*,w)*E(*,m))'
+eta0 = '0.6128+pmedlvt_eta0_diff_1'
+etab = -0.04874
+u0 = '0.002175+pmedlvt_u0_diff_1'
+ua = '-2.801e-009+pmedlvt_ua_diff_1'
+ub = '2.717e-018+pmedlvt_ub_diff_1'
+uc = -2.128e-011
+ud = 0
+up = 0
+lp = 1
+eu = 1.67
+vtl = 0
+xn = 3
+vsat = '45410+pmedlvt_vsat_diff_1'
+a0 = '1.047+pmedlvt_a0_diff_1'
+ags = '0.5789+pmedlvt_ags_diff_1'
+a1 = 0
+a2 = 0.9995
+b0 = '0+pmedlvt_b0_diff_1'
+b1 = '0+pmedlvt_b1_diff_1'
+keta = '0.09663+pmedlvt_keta_diff_1'
+dwg = -5.722e-009
+dwb = -1.786e-008
+pclm = '0.2853+pmedlvt_pclm_diff_1'
+pdiblc1 = 0.0195
+pdiblc2 = 0.00043
+pdiblcb = -2.441e-005
+drout = 1
+pscbe1 = 7.69e+008
+pscbe2 = 8.801e-009
+pvag = 0
+delta = 0.01
+fprout = 0
+pdits = '0+pmedlvt_pdits_diff_1'
+pditsl = 0
+pditsd = '0+pmedlvt_pditsd_diff_1'
+lambda = 0
+lc = 5e-009
***PARAMETERS FOR ASYMMETRIC AND BIAS-DEPENDENT RDS MODEL******
+rdsw = '547.9+pmedlvt_rdsw_diff_1'
+rsw = 0
+rdw = 0
+rdswmin = 0
+rdwmin = 0
+rswmin = 0
+prwb = -0.3235
+prwg = 0.1376
+wr = 1
***IMPACT IONIZATION CURRENT MODEL PARAMTERS******************
+alpha0 = 1e-010
+alpha1 = 1e-010
+beta0 = 7.261
***GIDL INDUCED DRAIN LEAKAGE MODEL PARAMETERS*****************
+agidl = '2.214e-010+pmedlvt_agidl_diff_1'
+bgidl = '1e+009+pmedlvt_bgidl_diff_1'
+cgidl = '300+pmedlvt_cgidl_diff_1'
+egidl = 0.1
***GATE DIELECTRIC TUNNELING CURRENT MODEL PARAMETERS**********
+toxref = 4.23e-009
+dlcig = 0
+aigbacc = 0.43
+bigbacc = 0.054
+cigbacc = 0.075
+nigbacc = 1
+aigbinv = 0.35
+bigbinv = 0.03
+cigbinv = 0.006
+eigbinv = 1.1
+nigbinv = 3
+aigc = 0.43
+bigc = 0.054
+cigc = 0.075
+aigsd = 0.43
+bigsd = 0.054
+cigsd = 0.075
+nigc = 1
+poxedge = 1
+pigcd = 1
+ntox = 1
+vfbsdoff = 0
***CHARGE AND CAPACITANCE MODEL PARAMETERS********************
+dlc = '3.536e-008+pmedlvt_dlc_diff'
+dwc = '0+pmedlvt_dwc_diff'
+xpart = 0
+cgso = '1e-013*pmedlvt_overlap_mult'
+cgdo = '1.857e-010*pmedlvt_overlap_mult'
+cgbo = 0
+cgdl = '9.55e-012*pmedlvt_overlap_mult'
+cgsl = '9.55e-012*pmedlvt_overlap_mult'
+clc = 0
+cle = 1
+cf = 1.2e-013
+ckappas = 0.6
+vfbcv = -0.1447
+acde = 0.3136
+moin = 25.0
+noff = 3.9
+voffcv = 0.1462
***HIGH-SPEED/RF MODEL PARAMETERS******************************
+xrcrg1 = 12
+xrcrg2 = 1
+rbpb = 50
+rbpd = 50
+rbps = 50
+rbdb = 50
+rbsb = 50
+gbmin = 1e-012
***FLICKER AND THERMAL NOISE MODEL PARAMETERS******************
+ef = 1
+noia = '2.7e+042 * pmedlvt_noia_mult'
+noib = 0
+noic = 0
+em = 4.1e+007
+ntnoi = 1
+lintnoi = -2e-007
+af = 1
+kf = 0
+tnoia = 2.5e+007
+tnoib = 0
+rnoia = 0.69
+rnoib = 0.34
***LAYOUT-DEPENDENT PARASITICS MODEL PARAMETERS****************
+xl = 0
+xw = 0
+dmcg = 0
+dmdg = 0
+dmcgt = 0
+xgw = 0
+xgl = 0
+ngcon = 1
***ASYMMETRIC SOURCE/DRAIN JUNCTION DIODE MODEL PARAMETERS*****
+jss = 2.148e-005
+jsws = 8.04e-010
+ijthsfwd = 0.1
+ijthsrev = 0.1
+bvs = 12.69
+xjbvs = 1
+pbs = 0.6587
+cjs = '0.000738*pmedlvt_ajunction_mult'
+mjs = 0.3463
+pbsws = 0.7418
+cjsws = '9.889e-011*pmedlvt_pjunction_mult'
+mjsws = 0.2978
+pbswgs = 1.434
+cjswgs = '2.232e-010*pmedlvt_pjunction_mult'
+mjswgs = 0.9274
***TEMPERATURE DEPENDENCE PARAMETERS***************************
+tnom = 30
+kt1 = '-0.7955+pmedlvt_kt1_diff_1'
+kt2 = -0.1319
+at = 21110
+ute = -0.1462
+ua1 = -1.988e-010
+ub1 = 1.323e-018
+uc1 = 5.411e-011
+kt1l = 0
+prt = 0
+tvoff = '0+pmedlvt_tvoff_diff_1'
+njs = 1.363
+tpb = 0.002039
+tcj = 0.001241
+tpbsw = 0.001246
+tcjsw = 0.0003736
+tpbswg = 0
+tcjswg = 2e-012
+xtis = 5.2
+tvfbsdoff = 0
***DW AND DL PARAMETERS****************************************
+ll = 0
+wl = 0
+lln = 1
+wln = 1
+lw = 0
+ww = 0
+lwn = 1
+wwn = 1
+lwl = 0
+wwl = 0
+llc = 0
+wlc = 0
+lwc = 0
+wwc = 0
+lwlc = 0
+wwlc = 0
***STRESS PARAMETERS*******************************************
+saref = 1.04e-006
+sbref = 1.04e-006
+kvth0 = 3.29e-008
+lkvth0 = 0
+wkvth0 = 2e-007
+pkvth0 = 0
+llodvth = 0
+wlodvth = 1
+wlod = 0
+stk2 = 0
+lodk2 = 1
+lodeta0 = 1
+ku0 = 4.5e-008
+lku0 = 0
+wku0 = 2.5e-007
+pku0 = 0
+tku0 = 0
+llodku0 = 0
+wlodku0 = 1
+kvsat = 0.5
+steta0 = 0
***WELL PROXIMITY EFFECT PARAMETERS****************************
******
m1 1 2 3 b pmedlvt l=0.15 w='(4)*(1.68)' ad='(4)*(0.2352)' as='(4)*(0.34)' pd='(4)*(1.96)' ps='(4)*(2.925)' nrd='(0)/(4)' nrs='(0)/(4)' delvto=0 nf=4 sa=0.265 sb=0.265 sd=0.28 m='1*m'
cpar_ds 1 3 c='(0.82f * pmedlvt_rf_aw_cap_mult)*m'
cpar_gd 2 1 c='(0.984f * pmedlvt_rf_aw_cap_mult)*m'
cpar_gs 2 3 c='(0.354f * pmedlvt_rf_aw_cap_mult)*m'
rg_stub 2a g rf_rgc r='(88.5 * pmedlvt_rf_aw_rgate_stub_mult)/m'
rd 1 d r='(78 * pmedlvt_rf_aw_rd_mult)/m'
rs 3 s r='(50.6 * pmedlvt_rf_aw_rs_mult)/m'
rg_dist 2 2a rf_rgs r='(100.061 * pmedlvt_rf_aw_rgate_dist_mult)/m'
.ends pmedlvtrf_1p68p15nf4
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