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CU Amiga Super CD-ROM 26
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CU Amiga Magazine's Super CD-ROM 26 (1998)(EMAP Images)(GB)[!][issue 1998-09].iso
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CUCD
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Utilities
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AmiSPICEed
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bibs
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AnalogDevices.bib
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1998-05-26
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14KB
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809 lines
#AmiSPICEed library
Analog devices
#ELEMENT
LF411
X
LF411
#SUBCIRCUIT
C1 11 12 4.196E-12
C2 6 7 10.00E-12
Css 10 99 1.333E-12
Dc 5 53 dx
De 54 5 dx
Dlp 90 91 dx
Dln 92 90 dx
Dp 4 3 dx
Bgnd 99 0 V=(0.5*V(3,0))+(0.5*V(4,0))
Bb 7 99 I=(31.83E6*I(Vb))+30E6*(-I(Vc)+I(Ve)+I(Vlp)-I(Vln))
Ga 6 0 11 12 251.4E-6
Gcm 0 6 10 99 2.514E-9
Iss 10 4 DC 170.0E-6
Hlim 90 0 Vlim 1K
J1 11 2 10 jx
J2 12 1 10 jx
R2 6 9 100.0E3
Rd1 3 11 3.978E3
Rd2 3 12 3.978E3
Ro1 8 5 50
Ro2 7 99 25
Rp 3 4 15.00E3
Rss 10 99 1.176E6
Vb 9 0 DC 0
Vc 3 53 DC 1.500
Ve 54 4 DC 1.500
Vlim 7 8 DC 0
Vlp 91 0 DC 25
Vln 0 92 DC 25
.Model dx D(Is=800.0E-18 Rs=1m)
.Model jx NJF(Is=12.50E-12 Beta=743.3E-6 Vto=-1)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#ELEMENT
LM111
X
LM111
#SUBCIRCUIT
F1 9 3 V1 1
Iee 3 7 Dc 100.0E-6
Vi1 21 1 DC .45
Vi2 22 2 DC .45
Q1 9 21 7 qin
Q2 8 22 7 qin
Q3 9 8 4 qmo
Q4 8 8 4 qmi
.Model qin PNP(Is=800.0E-18 Bf=833.3)
.Model qmi NPN(Is=800.0E-18 Bf=1002)
.Model qmo NPN(Is=800.0E-18 Bf=1000 Cjc=1E-15 Tr=118.8E-9)
E1 10 6 9 4 1
V1 10 11 DC 0
Q5 5 11 6 qoc
.Model qoc NPN(Is=800.0E-18 Bf=34.49E3 Cjc=1E-15 Tf=364.6E-12 Tr=79.34E-9)
Dp 4 3 dx
Rp 3 4 6.122E3
.Model dx D(Is=800.0E-18 Rs=1)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
open collector output
60,0,#DIR_RIGHT
output ground
30,20,#DIR_DOWN
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
L,30,20,30,9
L,29,5,30,5
L,30,6,29,7
L,28,7,27,6
L,27,5,27,4
L,28,3,30,3
L,22,4,22,6
L,23,7,24,7
L,25,6,25,4
L,24,3,23,3
#END_GRAPH
#ELEMENT
LM324
X
LM324
#SUBCIRCUIT
C1 11 12 2.887E-12
C2 6 7 30.00E-12
Dc 5 53 dx
De 54 5 dx
Dlp 90 91 dx
Dln 92 90 dx
Dp 4 3 dx
Bgnd 99 0 V=(0.5*V(3,0))+(0.5*V(4,0))
Bb 7 99 I=(21.22E6*I(Vb))+20E6*(-I(Vc)+I(Ve)+I(Vlp)-I(Vln))
Ga 6 0 11 12 188.5E-6
Gcm 0 6 10 99 59.61E-9
Iee 3 10 DC 15.09E-6
Hlim 90 0 Vlim 1K
Q1 11 2 13 qx
Q2 12 1 14 qx
R2 6 9 100.0E3
Rc1 4 11 5.305E3
Rc2 4 12 5.305E3
Re1 13 10 1.845E3
Re2 14 10 1.845E3
Ree 10 99 13.25E6
Ro1 8 5 50
Ro2 7 99 25
Rp 3 4 9.082E3
Vb 9 0 DC 0
Vc 3 53 DC 1.500
Ve 54 4 DC 0.65
Vlim 7 8 DC 0
Vlp 91 0 DC 40
Vln 0 92 DC 40
.Model dx D(Is=800.0E-18 Rs=1)
.Model qx PNP(Is=800.0E-18 Bf=166.7)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#ELEMENT
OP97
X
OP97
#SUBCIRCUIT
RC1 3 80 8.842E+03
RC2 3 90 8.842E+03
Q1 80 2 10 QM1
Q2 90 1 11 QM2
DDM1 2 1 DM2
DDM2 1 2 DM2
C1 80 90 5.460E-12
RE1 10 12 2.246E+02
RE2 11 12 2.246E+02
IEE 12 4 6.000E-06
RE 12 0 3.333E+07
CE 12 0 1.579E-12
GCM 0 8 12 0 2.841E-11
GA 8 0 80 90 1.131E-04
R2 8 0 1.000E+05
C2 101 8 3.000E-11
GB 101 0 8 0 1.960E+02
RO1 101 5 1.000E+02
RO2 101 0 9.000E+02
RC 17 0 1.063E-04
GC 0 17 5 0 9.408E+03
D1 101 17 DM1
D2 17 101 DM1
D3 5 13 DM2
D4 14 5 DM2
VC 3 13 1.785E+00
VE 14 4 1.785E+00
IP 3 4 3.740E-04
DSUB 4 3 DM2
.MODEL QM1 NPN (IS=8.000E-16 BF=7.500E+04)
.MODEL QM2 NPN (IS=8.008E-16 BF=1.500E+05)
.MODEL DM1 D (IS=1.179E-19)
.MODEL DM2 D (IS=8.000E-16)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#ELEMENT
uA741
X
uA741
#SUBCIRCUIT
C1 11 12 8.661E-12
C2 6 7 30.00E-12
Dc 5 53 dx
De 54 5 dx
Dlp 90 91 dx
Dln 92 90 dx
Dp 4 3 dx
Bgnd 99 0 V=(0.5*V(3,0))+(0.5*V(4,0))
Bb 7 99 I=(10.61E6*I(Vb))+(10E6*(-I(Vc)+I(Ve)+I(Vlp)-I(Vln)))
Ga 6 0 11 12 188.5E-6
Gcm 0 6 10 99 5.961E-9
Iee 10 4 DC 15.16E-6
Hlim 90 0 Vlim 1K
Q1 11 2 13 qx
Q2 12 1 14 qx
R2 6 9 100.0E3
Rc1 3 11 5.305E3
Rc2 3 12 5.305E3
Re1 13 10 1.836E3
Re2 14 10 1.836E3
Ree 10 99 13.19E6
Ro1 8 5 50
Ro2 7 99 100
Rp 3 4 18.16E3
Vb 9 0 DC 0
Vc 3 53 DC 1
Ve 54 4 DC 1
Vlim 7 8 DC 0
Vlp 91 0 DC 40
Vln 0 92 DC 40
.Model dx D(Is=800.0E-18 Rs=1)
.Model qx NPN(Is=800.0E-18 Bf=93.75)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#ELEMENT
LM13600
X
LM13600
#SUBCIRCUIT
* Upper Mirrors
Q1 11 10 3 Tpnp .15
Q2 10 10 3 Tpnp .15
Q3 13 14 3 Tpnp .15
Q4 14 14 3 Tpnp .15
Q5 12 11 10 Tpnp .15
Q6 5 13 14 Tpnp .15
* Output Buffer
Q7 3 6 15 Tnpn .15
Q8 3 15 7 Tnpn .15
* Lin. Diodes
Q9 9 9 2 Tnpn .15
Q10 9 9 1 Tnpn .15
* Diff. Stage
Q11 11 2 18 Tnpn .15
Q12 13 1 18 Tnpn .15
* Lower Mirrors
Q13 18 8 17 Tnpn .15
Q14 5 12 16 Tnpn .15
Q15 8 17 4 Tnpn .15
Q16 17 17 4 Tnpn .15
Q17 15 17 4 Tnpn .15
Q18 12 16 4 Tnpn .15
Q19 16 16 4 Tnpn .15
.model Tnpn NPN(IS=16.08F XTI=3 EG=1.11 VAF=159.9 BF=246.8 NE=1.545
+ISE=16.08F IKF=.1568 XTB=1 BR=1.407 NC=2 ISC=0 IKR=0 RC=1.2
+CJC=6.072P VJC=.75 MJC=.3333 FC=.5 CJE=10.67P VJE=.75 MJE=.3333
+TR=10N TF=448.7P ITF=.2 VTF=20 XTF=4)
.model Tpnp PNP(IS=9.006F XTI=3 EG=1.11 VAF=95.7 BF=183.4 NE=1.816
+ISE=9.006F IKF=.1 XTB=1 BR=2.38 NC=2 ISC=0 IKR=0 RC=1.1
+CJC=8.873P VJC=.75 MJC=.3333 FC=.5 CJE=5.335P VJE=.75 MJE=.3333
+TR=10N TF=948.3P ITF=.1 VTF=10 XTF=1.5)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-40,#DIR_UP
negative power supply
0,40,#DIR_DOWN
output
90,0,#DIR_DOWN
buffer input
100,0,#DIR_DOWN
buffer output
130,30,#DIR_DOWN
Amplifier Bias Current input
70,-40,#DIR_UP
Diode Bias Current input
-50,0,#DIR_LEFT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
C,60,0,10,10
C,70,0,10,10
L,80,0,90,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-40
L,0,22,0,40
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
L,0,-30,130,-30
L,-40,0,-50,0
L,65,-8,65,-20
L,65,-20,70,-20
L,70,-20,70,-40
L,113,-17,113,17
L,112,-17,112,17
L,113,-8,130,-17
L,113,8,130,17
L,130,-17,130,-30
L,130,17,130,30
L,112,0,100,0
L,130,17,121,17
L,130,17,125,9
L,113,-12,130,-21
L,-45,-5,-35,-5
L,-45,-15,-35,-15
L,-45,-5,-40,-15
L,-35,-5,-40,-15
L,-45,5,-35,5
L,-45,15,-35,15
L,-45,5,-40,15
L,-35,5,-40,15
#END_GRAPH
#ELEMENT
TL031-32-34
X
TL031
#SUBCIRCUIT
C1 11 12 3.498E-12
C2 6 7 15.00E-12
CSS 10 99 11.38E-12
DC 5 53 DX
DE 54 5 DX
DLP 90 91 DX
DLN 92 90 DX
DP 4 3 DX
BGND 99 0 V=(0.5*V(3,0))+(0.5*V(4,0))
BB 7 99 I=(936.5E3*I(Vb))+900E3*(-I(Vc)+I(Ve)+I(Vlp)-I(Vln))
GA 6 0 11 12 113.1E-6
GCM 0 6 10 99 2.257E-9
ISS 3 10 DC 76.50E-6
HLIM 90 0 VLIM 1K
J1 11 2 10 JX
J2 12 1 10 JX
R2 6 9 100.0E3
RD1 4 11 8.841E3
RD2 4 12 8.841E3
RO1 8 5 135
RO2 7 99 135
RP 3 4 138.5E3
RSS 10 99 2.614E6
VB 9 0 DC 0
VC 3 53 DC 1.700
VE 54 4 DC 1.800
VLIM 7 8 DC 0
VLP 91 0 DC 8
VLN 0 92 DC 8
.MODEL DX D(IS=800.0E-18)
.MODEL JX PJF(IS=1.000E-12 BETA=140E-6 VTO=-1)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#ELEMENT
TL051-52-54
X
TL051
#SUBCIRCUIT
C1 11 12 3.988E-12
C2 6 7 15.00E-12
DC 5 53 DX
DE 54 5 DX
DLP 90 91 DX
DLN 92 90 DX
DP 4 3 DX
BGND 99 0 V=(0.5*V(3,0))+(0.5*V(4,0))
BB 7 99 I=(2.875E6*I(Vb))+3E6*(-I(Vc)+I(Ve)+I(Vlp)-I(Vln))
GA 6 0 11 12 292.2E-6
GCM 0 6 10 99 6.542E-9
ISS 3 10 DC 300.0E-6
HLIM 90 0 VLIM 1K
J1 11 2 10 JX
J2 12 1 10 JX
R2 6 9 100.0E3
RD1 4 11 3.422E3
RD2 4 12 3.422E3
RO1 8 5 125
RO2 7 99 125
RP 3 4 11.11E3
RSS 10 99 666.7E3
VB 9 0 DC 0
VC 3 53 DC 3
VE 54 4 DC 3.700
VLIM 7 8 DC 0
VLP 91 0 DC 28
VLN 0 92 DC 28
.MODEL DX D(IS=800.0E-18)
.MODEL JX PJF(IS=15.00E-12 BETA=185.2E-6 VTO=-1)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#ELEMENT
TL061-62-64
X
TL061
#SUBCIRCUIT
C1 11 12 3.498E-12
C2 6 7 15.00E-12
DC 5 53 DX
DE 54 5 DX
DLP 90 91 DX
DLN 92 90 DX
DP 4 3 DX
BGND 99 0 V=(0.5*V(3,0))+(0.5*V(4,0))
BB 7 99 I=(318.3E3*I(Vb))+300E3*(-I(Vc)+I(Ve)+I(Vlp)-I(Vln))
GA 6 0 11 12 94.26E-6
GCM 0 6 10 99 1.607E-9
ISS 3 10 DC 52.50E-6
HLIM 90 0 VLIM 1K
J1 11 2 10 JX
J2 12 1 10 JX
R2 6 9 100.0E3
RD1 4 11 10.61E3
RD2 4 12 10.61E3
RO1 8 5 200
RO2 7 99 200
RP 3 4 150.0E3
RSS 10 99 3.810E6
VB 9 0 DC 0
VC 3 53 DC 2.200
VE 54 4 DC 2.200
VLIM 7 8 DC 0
VLP 91 0 DC 15
VLN 0 92 DC 15
.MODEL DX D(IS=800.0E-18)
.MODEL JX PJF(IS=15.00E-12 BETA=100.5E-6 VTO=-1)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#ELEMENT
TL071-72-74
X
TL071
#SUBCIRCUIT
C1 11 12 3.498E-12
C2 6 7 15.00E-12
DC 5 53 DX
DE 54 5 DX
DLP 90 91 DX
DLN 92 90 DX
DP 4 3 DX
Bgnd 99 0 V=(0.5*V(3,0))+(0.5*V(4,0))
Bb 7 99 I=(4.715E6*I(Vb))+5E6*(-I(Vc)+I(Ve)+I(Vlp)-I(Vln))
GA 6 0 11 12 282.8E-6
GCM 0 6 10 99 8.942E-9
ISS 3 10 DC 195.0E-6
HLIM 90 0 VLIM 1K
J1 11 2 10 JX
J2 12 1 10 JX
R2 6 9 100.0E3
RD1 4 11 3.536E3
RD2 4 12 3.536E3
RO1 8 5 150
RO2 7 99 150
RP 3 4 2.143E3
RSS 10 99 1.026E6
VB 9 0 DC 0
VC 3 53 DC 2.200
VE 54 4 DC 2.200
VLIM 7 8 DC 0
VLP 91 0 DC 25
VLN 0 92 DC 25
.MODEL DX D(IS=800.0E-18)
.MODEL JX PJF(IS=15.00E-12 BETA=270.1E-6 VTO=-1)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#ELEMENT
TLC272
X
TLC272
#SUBCIRCUIT
C1 11 12 4.693E-12
C2 6 7 20.00E-12
DC 5 53 DX
DE 54 5 DX
DLP 90 91 DX
DLN 92 90 DX
DP 4 3 DX
Bgnd 99 0 V=(0.5*V(3,0))+(0.5*V(4,0))
Bb 7 99 I=(1.354E6*I(Vb))+3E6*(-I(Vc)+I(Ve)+I(Vlp)-I(Vln))
GA 6 0 11 12 175.9E-6
GCM 0 6 10 99 19.786E-9
ISS 3 10 DC 92.00E-6
HLIM 90 0 VLIM 1K
J1 11 2 10 JX
J2 12 1 10 JX
R2 6 9 100.0E3
RD1 60 11 5.684E3
RD2 60 12 5.684E3
RO1 8 5 75
RO2 7 99 75
RP 3 4 11.66E3
RSS 10 99 2.174E6
VAD 60 4 -.8
VB 9 0 DC 0
VC 3 53 DC 2.140
VE 54 4 DC .64
VLIM 7 8 DC 0
VLP 91 0 DC 25
VLN 0 92 DC 25
.MODEL DX D(IS=800.0E-18)
.MODEL JX PJF(IS=350.0E-15 BETA=672.8E-6 VTO=-.190)
#END_MOD
#NO_MODE
#NO_OPTS
non-inverting input
-50,-20,#DIR_LEFT
inverting input
-50,20,#DIR_LEFT
positive power supply
0,-30,#DIR_UP
negative power supply
0,30,#DIR_DOWN
output
60,0,#DIR_RIGHT
#END_KNOTS
N,-10,2,0,0
L,50,0,-40,-40
L,-40,-40,-40,40
L,-40,40,50,0
L,50,0,60,0
L,-40,-20,-50,-20
L,-40,20,-50,20
L,0,-22,0,-30
L,0,22,0,30
L,-30,-23,-30,-17
L,-33,-20,-27,-20
L,-33,20,-27,20
L,-2,-16,2,-16
L,0,-18,0,-14
L,-2,16,2,16
L,-7,-13,-10,-20
L,-7,-13,-4,-20
L,-7,20,-10,13
L,-7,20,-4,13
#END_GRAPH
#END_BIB