(Symbol jtl_test);
($Id:$);
(xic 3.2.2 FreeBSD7 12/16/2009 05:26 GMT);
(PHYSICAL);
(RESOLUTION 1000);
( CREATED 12/16/2009 5:26:23, MODIFIED 12/16/2009 5:26:23 );
9 jtl_test;
DS 0 1 1;
DF;
E
(ELECTRICAL);
(RESOLUTION 1000);
5 7102 (||1:-9000 -5000||) (||1:16000 -5000||) (||1:22000 -5000||) (||1:28000 -5000||) (||1:34000 -5000||) (||1:40000 -5000||);
5 7101 tran 1p 1n;
9 jtl_test;
DS 0 1 1;
(SymbolCall jtl);
5 11 X 4 subckt;
5 10 1 2 37000 -2000 X4vbias 0 0 0 ?;
5 10 8 1 40000 -5000 X4out 0 0 0 ?;
5 10 4 0 34000 -5000 X4in 0 0 0 ?;
1 Bound 34000 -7000 40000 -2000;
9 jtl;
C 0 T 43000 -11000;
(SymbolCall jtl);
5 11 X 3 subckt;
5 10 1 2 31000 -2000 X3vbias 0 0 0 ?;
5 10 4 1 34000 -5000 X3out 0 0 0 ?;
5 10 5 0 28000 -5000 X3in 0 0 0 ?;
1 Bound 28000 -7000 34000 -2000;
9 jtl;
C 0 T 37000 -11000;
(SymbolCall jtl);
5 11 X 2 subckt;
5 10 1 2 25000 -2000 X2vbias 0 0 0 ?;
5 10 5 1 28000 -5000 X2out 0 0 0 ?;
5 10 6 0 22000 -5000 X2in 0 0 0 ?;
1 Bound 22000 -7000 28000 -2000;
9 jtl;
C 0 T 31000 -11000;
(SymbolCall jtl);
5 11 X 1 subckt;
5 10 1 2 19000 -2000 X1vbias 0 0 0 ?;
5 10 6 1 22000 -5000 X1out 0 0 0 ?;
5 10 7 0 16000 -5000 X1in 0 0 0 ?;
1 Bound 16000 -7000 22000 -2000;
9 jtl;
C 0 T 25000 -11000;
(SymbolCall gnd);
5 10 0 0 -9000 2000;
1 Bound -10000 -600 -8000 2000;
9 gnd;
C 0 T -10000 1000;
(SymbolCall gnd);
5 10 0 0 -9000 -15000;
1 Bound -10000 -17600 -8000 -15000;
9 gnd;
C 0 T -10000 -16000;
(SymbolCall res);
5 10 2 1 1000 -5000 R0- 0 0 0 ?;
5 10 3 0 -9000 -5000 R0+ 0 0 0 ?;
5 15 -8000 -6000 1 0 "<v>/<value>O";
5 2 100;
5 11 R 0;
1 Bound -9000 -6250 1000 -4000;
( Rotate 90 );
9 res;
C 0 R 0 1 T -9000 -5000;
(SymbolCall dcsfq);
5 11 X 0 subckt;
5 10 1 2 11000 0 X0vbias 0 0 0 ?;
5 10 7 1 16000 -5000 X0OUT 0 0 0 ?;
5 10 2 0 7000 -5000 X0IN 0 0 0 ?;
1 Bound 7000 -7000 16000 0;
9 dcsfq;
C 0 T 14000 -16000;
(SymbolCall vsrc);
5 10 0 1 -9000 2000;
5 10 1 0 -9000 12000;
5 15 -9000 8000 0 -1;
5 2 pwl 0 0 10p 10m;
5 11 V 0;
5 5 nophys;
1 Bound -11000 2000 -7000 12000;
9 vsrc;
C 0 T -11000 2000;
(SymbolCall vsrc);
5 10 0 1 -9000 -15000;
5 10 3 0 -9000 -5000;
5 15 -9000 -9000 0 -1;
5 2 pulse 0 50m 20p 50p 50p 100p 300p;
5 11 V 1;
5 5 nophys;
1 Bound -11000 -15000 -7000 -5000;
9 vsrc;
C 0 T -11000 -15000;
(SymbolCall vcc);
5 11 @ 5;
5 10 1 0 37000 -2000;
1 Bound 36000 -2000 38000 200;
9 vcc;
C 0 T 37000 -2000;
(SymbolCall vcc);
5 11 @ 4;
5 10 1 0 31000 -2000;
1 Bound 30000 -2000 32000 200;
9 vcc;
C 0 T 31000 -2000;
(SymbolCall vcc);
5 11 @ 3;
5 10 1 0 25000 -2000;
1 Bound 24000 -2000 26000 200;
9 vcc;
C 0 T 25000 -2000;
(SymbolCall vcc);
5 11 @ 2;
5 10 1 0 19000 -2000;
1 Bound 18000 -2000 20000 200;
9 vcc;
C 0 T 19000 -2000;
(SymbolCall vcc);
5 10 1 0 11000 0;
5 11 @ 1;
1 Bound 10000 0 12000 2200;
9 vcc;
C 0 T 11000 0;
(SymbolCall vcc);
5 10 1 0 -9000 12000;
5 11 @ 0;
1 Bound -10000 12000 -8000 14200;
9 vcc;
C 0 T -9000 12000;
L SCED;
5 10 2 0 0 0;
W2 0 1000 -5000 7000 -5000;
L NAME;
5 16 V 0 11;
94 <<V0>> -11250 7000 64 1275 1000;
5 16 X 0 11;
94 <<X0>> 6250 -2750 0 1275 1000;
5 16 R 0 11;
94 <<R0>> -8750 -3750 0 1275 1000;
5 16 X 1 11;
94 <<X1>> 15250 -4750 0 1050 1000;
5 16 X 2 11;
94 <<X2>> 21250 -4750 0 1275 1000;
5 16 X 3 11;
94 <<X3>> 27250 -4750 0 1275 1000;
5 16 X 4 11;
94 <<X4>> 33250 -4750 0 1275 1000;
5 16 V 1 11;
94 <<V1>> -11250 -10000 64 1050 1000;
L VALU;
5 16 V 0 2;
94 <<pwl 0 0 10p 10m>> -6750 7250 0 8325 1000;
5 16 R 0 2;
94 <<100>> 750 -7500 64 1650 1000;
5 16 V 1 2;
94 <<pulse 0 50m 20p 50p 50p 100p 300p>> -14750 -19750 0 19350 1000;
L NODE;
5 16 @ 0 11;
94 <<vcc>> -9750 14450 0 1875 1000;
5 16 @ 1 11;
94 <<vcc>> 10250 2450 0 1875 1000;
5 16 @ 2 11;
94 <<vcc>> 18250 450 0 1875 1000;
5 16 @ 3 11;
94 <<vcc>> 24250 450 0 1875 1000;
5 16 @ 4 11;
94 <<vcc>> 30250 450 0 1875 1000;
5 16 @ 5 11;
94 <<vcc>> 36250 450 0 1875 1000;
L SPTX;
94 <<.options ysep>> -15000 16000 0 13568 2021;
DF;
E
* Generated by Xic from cell jtl_test
.options ysep
R0 3 2 100
V0 vcc 0 pwl 0 0 10p 10m
V1 3 0 pulse 0 50m 20p 50p 50p 100p 300p
X0 2 7 vcc dcsfq
X1 7 6 vcc jtl
X2 6 5 vcc jtl
X3 5 4 vcc jtl
X4 4 8 vcc jtl
.subckt dcsfq IN OUT vbias
B0 10 3 17 jjr area=.17
B1 9 8 15 jjr area=.25
B2 6 7 13 jjr area=.15
B3 1 5 12 jjr area=.17
L0 6 0 3.58pH
LP0 11 2 0.08pH
LP1 4 10 1.29pH
LP2 3 2 1.13pH
LP3 2 9 1.74pH
LP4 3 1 0.21pH
LP5 4 6 1.27pH
LP6 8 0 0.13pH
LP7 7 1 0.69pH
LP8 5 0 0.18pH
LT0 9 OUT 2.11pH
LT1 IN 4 3.38pH
R0 vbias 11 27
.ends dcsfq
.subckt jtl in out vbias
B0 5 3 7 jjr area=.25
B1 4 2 6 jjr area=.25
LP0 3 0 .1pH
LP1 2 0 .1pH
LT0 in 5 2.1pH
LT1 5 1 2.1pH
LT2 1 4 2.1pH
LT3 4 out 2.1pH
R0 vbias 1 29
.ends jtl
.model jjr jj(rtype=1, cct=1, icon=10m, vg=2.8m, delv=0.08m,
+ icrit=1m, vshunt=0.5mV cap=1.31p)

