************************
* models.hlib: HP26 Transistor model descriptions
*
* This file contains descriptions of the 3 extremes of the P and N
* transistors for the HP26 process.  Each library entry defines
* the "P" or "N" model differently.  The library entries are
* PT, PF, PS, NT, NF, and NS, corresponding to the nominal, fast, and 
* slow varieties of the device. Thus, including the "PF" library entry
* defines P devices to be fast.
*
* Note that these are NOT the process corners!
* Corners are composed of a combination of N and P speeds, voltage
* levels and temperatures.  The appropriate process corners are defined
* in the "corners" file in this directory.
*
* Data here is from Revision C (May 13, 1991) of HP26 design rules
*
* HSPICE is assumed not to suffer from temperature modelling errors, so
* the equations of Uo and Vmax temperature adjustments are ignored
*


*=============================  NS: Slow N ==================================
.lib ns 
.MODEL N NMOS
+ LEVEL = 3 
+ vto   = 0.765      $ V
+ uo    =   520      $ cm^2/V*S
+ tox   =   210A     $ Angstroms
+ ld    = 0.015u     $ meters
+ nsub  = 2.315e16   $ /cm^3
+ vmax  =   1.4e5    $ m/sec
+ theta =  0.06      $ /V
+ eta   =  0.11      $
+ kappa =  0.01      $
+ js    =     5m     $ A/m^2
+ cgdo  =   172p     $ aF/um == pF/m
+ cgso  =   172p     $    as above
* + cgbo=
+ cj    =   200u     $ aF/um^2 == uF/m^2
+ cjsw  =   380p     $ aF/um == pF/m
+ mj    =  0.50 
+ mjsw  =  0.12
+ pb    =  0.83      $ V
*+ tnom  =    25      $ degrees 
+ wd    = 0.200u     $ meters
* rdsw               $ weird parameter : resistance * width
                     $ may have to be geometrically calculated
+ acm=2 capop=4
.endl   


*=============================  NT: Typical N ================================
.lib nt 
.MODEL N NMOS
+ LEVEL = 3 
+ vto   = 0.700      $ V
+ uo    =   534      $ cm^2/V*S
+ tox   =   200A     $ Angstroms
+ ld    = 0.075u     $ meters
+ nsub  = 2.042e16   $ /cm^3
+ vmax  =   1.4e5    $ m/sec
+ theta =  0.06      $ /V
+ eta   =  0.11      $
+ kappa =  0.01      $
+ js    =     5m     $ A/m^2
+ cgdo  =   165p     $ aF/um == pF/m
+ cgso  =   165p     $    as above
* + cgbo=
+ cj    =   190u     $ aF/um^2 == uF/m^2
+ cjsw  =   355p     $ aF/um == pF/m
+ mj    =  0.50 
+ mjsw  =  0.12
+ pb    =  0.83      $ V
*+ tnom  =    25      $ degrees 
+ wd    = 0.150u     $ meters
* rdsw               $ weird parameter : resistance * width
                     $ may have to be geometrically calculated
+ acm=2 capop=4
.endl   


*=============================  NT: Typical N ================================
.lib nt 
.MODEL N NMOS
+ LEVEL = 3 
+ vto   = 0.700      $ V
+ uo    =   534      $ cm^2/V*S
+ tox   =   200A     $ Angstroms
+ ld    = 0.075u     $ meters
+ nsub  = 2.042e16   $ /cm^3
+ vmax  =   1.4e5    $ m/sec
+ theta =  0.06      $ /V
+ eta   =  0.11      $
+ kappa =  0.01      $
+ js    =     5m     $ A/m^2
+ cgdo  =   165p     $ aF/um == pF/m
+ cgso  =   165p     $    as above
* + cgbo=
+ cj    =   190u     $ aF/um^2 == uF/m^2
+ cjsw  =   355p     $ aF/um == pF/m
+ mj    =  0.50 
+ mjsw  =  0.12
+ pb    =  0.83      $ V
*+ tnom  =    25      $ degrees 
+ wd    = 0.150u     $ meters
* rdsw               $ weird parameter : resistance * width
                     $ may have to be geometrically calculated
+ acm=2 capop=4
.endl   

*=============================  NF: Fast N =================================
.lib nf
.MODEL N NMOS
+ LEVEL = 3 
+ vto   = 0.635      $ V
+ uo    =   548      $ cm^2/V*S
+ tox   =   190A     $ Angstroms
+ ld    = 0.135u     $ meters
+ nsub  = 1.769e16   $ /cm^3
+ vmax  =   1.4e5    $ m/sec
+ theta =  0.06      $ /V
+ eta   =  0.11      $
+ kappa =  0.01      $
+ js    =     5m     $ A/m^2
+ cgdo  =   158p     $ aF/um == pF/m
+ cgso  =   158p     $    as above
* + cgbo=
+ cj    =   180u     $ aF/um^2 == uF/m^2
+ cjsw  =   333p     $ aF/um == pF/m
+ mj    =  0.50 
+ mjsw  =  0.12
+ pb    =  0.83      $ V
*+ tnom  =    25      $ degrees 
+ wd    = 0.100u     $ meters
* rdsw               $ weird parameter : resistance * width
                     $ may have to be geometrically calculated
+ acm=2 capop=4
.endl   



*=============================  PS : Slow P =================================
.lib ps
.MODEL P PMOS
+ LEVEL = 3 
+ vto   =-0.935      $ V
+ uo    =   180      $ cm^2/V*S
+ tox   =   210A     $ Angstroms
+ ld    = 0.000u     $ meters
+ nsub  = 2.700e16   $ /cm^3
+ vmax  =   2.0e5    $ m/sec
+ theta =  0.13      $ /V
+ eta   =  0.15      $
+ kappa =  0.01      $
+ js    =     5m     $ A/m^2
+ cgdo  =   166p     $ aF/um == pF/m
+ cgso  =   166p     $    as above
* + cgbo=
+ cj    =   520u     $ aF/um^2 == uF/m^2
+ cjsw  =   400p     $ aF/um == pF/m
+ mj    =  0.50 
+ mjsw  =  0.03
+ pb    =  0.83      $ V
*+ tnom  =    25      $ degrees 
+ wd    = 0.25u     $ meters
* rdsw               $ weird parameter : resistance * width
                     $ may have to be geometrically calculated
+ acm=2 capop=4
.endl   


*=============================  PT : Typical P ================================
.lib pt
.MODEL P PMOS
+ LEVEL = 3 
+ vto   =-0.870      $ V
+ uo    =   185      $ cm^2/V*S
+ tox   =   200A     $ Angstroms
+ ld    = 0.060u     $ meters
+ nsub  = 2.000e16   $ /cm^3
+ vmax  =   2.0e5    $ m/sec
+ theta =  0.13      $ /V
+ eta   =  0.15      $
+ kappa =  0.01      $
+ js    =     5m     $ A/m^2
+ cgdo  =   145p     $ aF/um == pF/m
+ cgso  =   145p     $    as above
* + cgbo=
+ cj    =   460u     $ aF/um^2 == uF/m^2
+ cjsw  =   340p     $ aF/um == pF/m
+ mj    =  0.50 
+ mjsw  =  0.03
+ pb    =  0.83      $ V
*+ tnom  =    25      $ degrees 
+ wd    = 0.20u     $ meters
* rdsw               $ weird parameter : resistance * width
                     $ may have to be geometrically calculated
+ acm=2 capop=4
.endl   


*=============================  PF: Fast P ===================================
.lib pf
.MODEL P PMOS
+ LEVEL = 3 
+ vto   =-0.805      $ V
+ uo    =   190      $ cm^2/V*S
+ tox   =   190A     $ Angstroms
+ ld    = 0.120u     $ meters
+ nsub  = 1.300e16   $ /cm^3
+ vmax  =   2.0e5    $ m/sec
+ theta =  0.13      $ /V
+ eta   =  0.15      $
+ kappa =  0.01      $
+ js    =     5m     $ A/m^2
+ cgdo  =   124p     $ aF/um == pF/m
+ cgso  =   124p     $    as above
* + cgbo=
+ cj    =   400u     $ aF/um^2 == uF/m^2
+ cjsw  =   270p     $ aF/um == pF/m
+ mj    =  0.50 
+ mjsw  =  0.03
+ pb    =  0.83      $ V
*+ tnom  =    25      $ degrees 
+ wd    = 0.15u     $ meters
* rdsw               $ weird parameter : resistance * width
                     $ may have to be geometrically calculated
+ acm=2 capop=4
.endl   




