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  3. Display lower hierarchy evaluated parameters in symbol instantiated...

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Display lower hierarchy evaluated parameters in symbol instantiated at top level

Saumeek
Saumeek over 1 year ago

Please guide me to display the evaluated (numerical) value of w i.e., iPar("wf")*pPar("nf"), for both PMOS and NMOS when the inverter symbol is instantiated in a new schematic. Please find below the figures and netlist. 

// Point Netlist Generated on: Jun 29 01:16:36 2024
// Generated for: spectre
// Design Netlist Generated on: Jun 29 01:16:36 2024
// Design library name: testCkt
// Design cell name: Netlist
// Design view name: schematic
simulator lang=spectre
include "ade_e.scs"
global 0 VSS! VDD!
include "$SPECTRE_MODEL_PATH/12LP_Spectre.lib" section=tt
parameters wireopt=1

// Library name: CellLib
// Cell name: inv_1v8
// View name: schematic
subckt inv_1v8 Vdd Vss in out inh_hSup inh_lSup
parameters Nl Nn Nnf Pl Pn Pnf
N0 (out in Vss inh_lSup) egnfet m=1 l=(Nl) nfin=(Nn) nf=(Nnf)*(1) \
par=(1) par_nf=(1)*((Nnf)*(1)) asej=(110n)*(11n)*((Nn)) + ((Nn))*(int((Nnf)/2))*(((255n)-((Nl))-(0n)-(0))*(11n)) \
adej=((Nn))*(1+int(((Nnf)-1)/2))*(((255n)-((Nl))-(0n)-(0))*(11n)) \
psej=(1)*((Nn))*2*(110n)+(11n) + ((Nn))*(int((Nnf)/2))*(1)*2*((255n)-((Nl))-(0n)-(0)) \
pdej=((Nn))*(1+int(((Nnf)-1)/2))*(1)*2*((255n)-((Nl))-(0n)-(0)) \
pdevdops=1 pdevlgeos=1 pdevwgeos=1 psw_acv_sign=1 plnest=1 \
pldist=1 plorient=0 cpp=255n fpitch=48n xpos=-99 ypos=-99 ptwell=0 \
sca=0 scb=0 scc=0 pre_layout_local=-1 ngcon=1 p_vta=0 p_la=0 \
u0mult_fet=1 lle_sa=((0.14)/2+0.11) lle_sb=((0.14)/2+0.11) \
lle_rxrxa=(255n) lle_rxrxb=(255n) lle_rxrxn=192n lle_rxrxs=192n \
lle_pcrxn=95n lle_pcrxs=95n lle_nwa=2u lle_nwb=2u lle_nwn=192n \
lle_nws=192n lle_ctne=0 lle_ctnw=0 lle_ctse=0 lle_ctsw=0 \
lle_sctne=0 lle_sctnw=0 lle_sctse=0 lle_sctsw=0 \
lrsd=((255n)-((Nl))-(0n))/2.0 dtemp=0 l_shape=0 l_shape_s=0 \
nsig_dop1=0 nsig_dop2=0 nsig_dibl=0 nsig_pc=0 nsig_rx=0 fc_index=0 \
fc_sigma=3 analog=-1 nf_pex=(Nnf)
P0 (out in Vdd inh_hSup) egpfet m=1 l=(Pl) nfin=(Pn) nf=(Pnf)*(1) \
par=(1) par_nf=(1)*((Pnf)*(1)) asej=(110n)*(11n)*((Pn)) + ((Pn))*(int((Pnf)/2))*(((255n)-((Pl))-(0n)-(0))*(11n)) \
adej=((Pn))*(1+int(((Pnf)-1)/2))*(((255n)-((Pl))-(0n)-(0))*(11n)) \
psej=(1)*((Pn))*2*(110n)+(11n) + ((Pn))*(int((Pnf)/2))*(1)*2*((255n)-((Pl))-(0n)-(0)) \
pdej=((Pn))*(1+int(((Pnf)-1)/2))*(1)*2*((255n)-((Pl))-(0n)-(0)) \
pdevdops=1 pdevlgeos=1 pdevwgeos=1 psw_acv_sign=1 plnest=1 \
pldist=1 plorient=0 cpp=255n fpitch=48n xpos=-99 ypos=-99 ptwell=0 \
sca=0 scb=0 scc=0 pre_layout_local=-1 ngcon=1 p_vta=0 p_la=0 \
u0mult_fet=1 lle_sa=((0.14)/2+0.11) lle_sb=((0.14)/2+0.11) \
lle_rxrxa=(255n) lle_rxrxb=(255n) lle_rxrxn=192n lle_rxrxs=192n \
lle_pcrxn=95n lle_pcrxs=95n lle_nwa=2u lle_nwb=2u lle_nwn=192n \
lle_nws=192n lle_ctne=0 lle_ctnw=0 lle_ctse=0 lle_ctsw=0 \
lle_sctne=0 lle_sctnw=0 lle_sctse=0 lle_sctsw=0 \
lrsd=((255n)-((Pl))-(0n))/2.0 dtemp=0 l_shape=0 l_shape_s=0 \
nsig_dop1=0 nsig_dop2=0 nsig_dibl=0 nsig_pc=0 nsig_rx=0 fc_index=0 \
fc_sigma=3 analog=-1 nf_pex=(Pnf)
ends inv_1v8
// End of subcircuit definition.

// Library name: testCkt
// Cell name: Netlist
// View name: schematic
I0 (net3 net4 net1 net2 VDD! VSS!) inv_1v8 Nl=180n Nn=38 Nnf=2 Pl=180n \
Pn=38 Pnf=4
simulatorOptions options psfversion="1.4.0" reltol=1e-3 vabstol=1e-6 \
iabstol=1e-12 temp=27 tnom=27 scalem=1.0 scale=1.0 gmin=1e-12 rforce=1 \
maxnotes=5 maxwarns=5 digits=5 cols=80 pivrel=1e-3 \
sensfile="../psf/sens.output" checklimitdest=psf
modelParameter info what=models where=rawfile
element info what=inst where=rawfile
outputParameter info what=output where=rawfile
designParamVals info what=parameters where=rawfile
primitives info what=primitives where=rawfile
subckts info what=subckts where=rawfile
saveOptions options save=allpub

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