blob: 23083dd1a50b3436e28a3f024f15b86febe75e36 [file] [log] [blame]
* BSIMTran Version 0.1.24, Created on 4-26-2002
* Username: hai
* Command Line: /home/hai/config/cydir/bin/lnx86/bsimtran diode.rf diode -p -ndnwdiode_pw dnw_pw_iv_m31.pm dnw_pw_cv_m31.pm dnwdiode_pw.mod
* Working Directory: /home/hai/models/s8/s8tee/models.3.1/diodes/dnwell_pw
* Time: Fri May 18 11:15:28 2007
* Rule File: diode.rf
* Output File: dnwdiode_pw.mod
* Input Files:
* (1) dnw_pw_iv_m31.pm
* (2) dnw_pw_cv_m31.pm
*copyright, Cypress Semiconductor, 2001
*BSIM3.V3 Diode Model
.model dnwdiode_pw d
+level = 3
*
*PARAMETERS TO MAKE MODEL INTO CADFLOW
*
+tlevc = 1
+scalm = 1e-6
+area = 1e12
*
*JUNCTION CAPACITANCE PARAMETERS
*
+cj = '0.00038945*1e-12*dnwdiode_pw_ajunction_mult' $ farads/m^2
+mj = 0.33982
+pb = 0.58758 $ V
+cjsw = '3.743e-010*1e-6*dnwdiode_pw_pjunction_mult' $ farads/m
+mjsw = 0.23357
+php = 0.5348 $ V
+cta = 0.0016157 $ 1/C
+ctp = 0.0008 $ 1/C
+tpb = 0.0025003 $ V/C
+tphp = 0.001675 $ V/C
*
*DIODE IV PARAMETERS
*
+js = 1.4693e-017 $ A/m^2
+jsw = 7.41e-018 $ A/m
+n = 1.0791
+rs = 900 $ ohms (ohms/m^2 if area defined in netlist)
+ik = '2.08e-009/1e-12' $ A/m^2
+ikr = '0/1e-12' $ A/m^2
+vb = 16.38 $ V
+ibv = 0.00106 $ A
+trs = 0 $ 1/C
+eg = 1.17 $ eV
+xti = 3.0
+tref = 30 $ C
*
*DEFAULT PARAMETERS
*
+tcv = 0 $ 1/C
+gap1 = 0.000473 $ eV/C
+gap2 = 1110
+ttt1 = 0 $ 1/C
+ttt2 = 0 $ 1/C^2
+tm1 = 0 $ 1/C
+tm2 = 0 $ 1/C^2
+lm = 0 $ m
+lp = 0 $ m
+wm = 0 $ m
+wp = 0 $ m
+xm = 0 $ m
+xoi = 10000
+xom = 10000 $ Angstrom
+xp = 0 $ m
+xw = 0 $ m
.model dnwdiode_pw_no_rs d
+level = 3
*
*PARAMETERS TO MAKE MODEL INTO CADFLOW
*
+tlevc = 1
+scalm = 1e-6
+area = 1e12
*
*JUNCTION CAPACITANCE PARAMETERS
*
+cj = '0.00038945*1e-12*dnwdiode_pw_ajunction_mult' $ farads/m^2
+mj = 0.33982
+pb = 0.58758 $ V
+cjsw = '3.743e-010*1e-6*dnwdiode_pw_pjunction_mult' $ farads/m
+mjsw = 0.23357
+php = 0.5348 $ V
+cta = 0.0016157 $ 1/C
+ctp = 0.0008 $ 1/C
+tpb = 0.0025003 $ V/C
+tphp = 0.001675 $ V/C
*
*DIODE IV PARAMETERS
*
+js = 1.4693e-017 $ A/m^2
+jsw = 7.41e-018 $ A/m
+n = 1.0791
+rs = 0 $ ohms (ohms/m^2 if area defined in netlist)
+ik = '2.08e-009/1e-12' $ A/m^2
+ikr = '0/1e-12' $ A/m^2
+vb = 16.38 $ V
+ibv = 0.00106 $ A
+trs = 0 $ 1/C
+eg = 1.17 $ eV
+xti = 3.0
+tref = 30 $ C
*
*DEFAULT PARAMETERS
*
+tcv = 0 $ 1/C
+gap1 = 0.000473 $ eV/C
+gap2 = 1110
+ttt1 = 0 $ 1/C
+ttt2 = 0 $ 1/C^2
+tm1 = 0 $ 1/C
+tm2 = 0 $ 1/C^2
+lm = 0 $ m
+lp = 0 $ m
+wm = 0 $ m
+wp = 0 $ m
+xm = 0 $ m
+xoi = 10000
+xom = 10000 $ Angstrom
+xp = 0 $ m
+xw = 0 $ m
.subckt xdnwdiode_pwell_rf c0 c1 area=-1 pj=-1
.param
+ra1 = 4.94e4
+ra2 = 130
+rp1 = 7920
+wl = 'sqrt(0.0625*pj*pj-area)'
+wi = 'pj/4 + wl'
+le = 'pj/4 - wl'
ra c0 a r ='(ra1/area + ra2/(le/wi+wi/le))*(9.82e-01*2-dnwdiode_pw_ajunction_mult)'
rp c0 p r ='(rp1/pj)*(9.6304e-01*2-dnwdiode_pw_pjunction_mult)'
da a c1 dnwdiode_pw_no_rs area=area pj=0
dp p c1 dnwdiode_pw_no_rs area=1e-18 pj=pj
.ends xdnwdiode_pwell_rf
.subckt xesd_ndiode_h_dnwl_100 c0 c1 area=-1 pj=-1
ra c0 a r = 13.25
d1 a c1 dnwdiode_pw_no_rs area='area*1.76' pj=pj
.ends xesd_ndiode_h_dnwl_100
.subckt xesd_ndiode_h_dnwl_200 c0 c1 area=-1 pj=-1
ra c0 a r = 5.82
d1 a c1 dnwdiode_pw_no_rs area='area*1.65' pj=pj
.ends xesd_ndiode_h_dnwl_200
.subckt xesd_ndiode_h_dnwl_300 c0 c1 area=-1 pj=-1
ra c0 a r = 3.29
d1 a c1 dnwdiode_pw_no_rs area='area*1.6' pj=pj
.ends xesd_ndiode_h_dnwl_300