mirror of https://github.com/efabless/caravel.git
80 lines
4.5 KiB
Plaintext
80 lines
4.5 KiB
Plaintext
**.subckt simple_por_tb vdd3v3 vdd1v8 porb_h porb_l por_l
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*.opin vdd3v3
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*.opin vdd1v8
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*.opin porb_h
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*.opin porb_l
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*.opin por_l
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x1 vdd3v3 vdd1v8 porb_h porb_l por_l GND GND simple_por
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V1 vdd3v3 GND PWL(0.0 0 100u 0 5m 3.3)
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V2 vdd1v8 GND PWL(0.0 0 300u 0 5.3m 1.8)
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**** begin user architecture code
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.lib /usr/share/pdk/sky130A/libs.tech/ngspice/sky130.lib.spice tt
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.include /usr/share/pdk/sky130A/libs.ref/sky130_fd_sc_hvl/spice/sky130_fd_sc_hvl.spice
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.control
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tran 1u 20m
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plot V(vdd3v3) V(vdd1v8) V(porb_h) V(porb_l) V(por_l)
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.endc
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**** end user architecture code
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**.ends
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* expanding symbol: simple_por.sym # of pins=7
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* sym_path: /home/tim/gits/caravel/xschem/simple_por.sym
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* sch_path: /home/tim/gits/caravel/xschem/simple_por.sch
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.subckt simple_por vdd3v3 vdd1v8 porb_h porb_l por_l vss3v3 vss1v8
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*.iopin vdd3v3
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*.iopin vss3v3
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*.opin porb_h
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*.opin porb_l
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*.opin por_l
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*.iopin vdd1v8
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*.iopin vss1v8
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XC1 net9 vss3v3 sky130_fd_pr__cap_mim_m3_1 W=30 L=30 MF=1 m=1
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XC2 vss3v3 net9 sky130_fd_pr__cap_mim_m3_2 W=30 L=30 MF=1 m=1
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XM1 net3 net7 net5 vdd3v3 sky130_fd_pr__pfet_g5v0d10v5 L=0.8 W=2 nf=1 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XM2 net2 net3 vss3v3 vss3v3 sky130_fd_pr__nfet_g5v0d10v5 L=0.8 W=2 nf=1 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XR1 net4 vdd3v3 vss3v3 sky130_fd_pr__res_xhigh_po_0p69 L=500 mult=1 m=1
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XM4 net5 net6 vdd3v3 vdd3v3 sky130_fd_pr__pfet_g5v0d10v5 L=0.8 W=2 nf=1 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XM5 net3 net3 vss3v3 vss3v3 sky130_fd_pr__nfet_g5v0d10v5 L=0.8 W=14 nf=7 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XR2 vss3v3 net4 vss3v3 sky130_fd_pr__res_xhigh_po_0p69 L=150 mult=1 m=1
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XM7 net2 net2 net1 vdd3v3 sky130_fd_pr__pfet_g5v0d10v5 L=0.8 W=2 nf=1 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XM8 net1 net1 vdd3v3 vdd3v3 sky130_fd_pr__pfet_g5v0d10v5 L=0.8 W=14 nf=7 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XM10 net7 net4 vss3v3 vss3v3 sky130_fd_pr__nfet_g5v0d10v5 L=0.8 W=2 nf=1 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XM9 net7 net7 net6 vdd3v3 sky130_fd_pr__pfet_g5v0d10v5 L=0.8 W=2 nf=1 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XM11 net6 net6 vdd3v3 vdd3v3 sky130_fd_pr__pfet_g5v0d10v5 L=0.8 W=16 nf=8 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XM12 net8 net1 vdd3v3 vdd3v3 sky130_fd_pr__pfet_g5v0d10v5 L=0.8 W=2 nf=1 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XM13 net9 net2 net8 vdd3v3 sky130_fd_pr__pfet_g5v0d10v5 L=0.8 W=2 nf=1 ad='int((nf+1)/2) * W/nf * 0.29'
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+ as='int((nf+2)/2) * W/nf * 0.29' pd='2*int((nf+1)/2) * (W/nf + 0.29)' ps='2*int((nf+2)/2) * (W/nf + 0.29)'
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+ nrd='0.29 / W' nrs='0.29 / W' sa=0 sb=0 sd=0 mult=1 m=1
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XR3 vss3v3 vss3v3 vss3v3 sky130_fd_pr__res_xhigh_po_0p69 L=25 mult=2 m=2
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x2 net10 vss3v3 vss3v3 vdd3v3 vdd3v3 porb_h sky130_fd_sc_hvl__buf_8
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x3 net10 vss1v8 vss1v8 vdd1v8 vdd1v8 porb_l sky130_fd_sc_hvl__buf_8
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x4 net10 vss1v8 vss1v8 vdd1v8 vdd1v8 por_l sky130_fd_sc_hvl__inv_8
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x5 net9 vss3v3 vss3v3 vdd3v3 vdd3v3 net10 sky130_fd_sc_hvl__schmittbuf_1
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.ends
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.GLOBAL GND
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** flattened .save nodes
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.end
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