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.MODEL BC107BP/ZTX NPN IS =1.8E-14 ISE=5.0E-14 NF =.9955 NE =1.46 BF =400 +BR =35.5 IKF=.14 IKR=.03 ISC=1.72E-13 NC =1.27 NR =1.005 RB =.56 RE =.6 +RC =.25 VAF=80 VAR=12.5 CJE=13E-12 TF =.64E-9 CJC=4E-12 TR =50.72E-9 +VJC=.54 MJC=.33 .MODEL 1N4004 D (IS=3.699E-09 RS=1.756E-02 N=1.774 + XTI=3.0 EG=1.110 CJO=1.732E-11 M=0.3353 + VJ=0.3905 FC=0.5 BV=400 IBV=1.0E-03) .model J2N3819 NJF BETA=1.57m LAMBDA=4m VTO=-1.954 + CGD=1.5p M=.3821 PB=1 FC=.5 CGS=1.5p IS=173.3f N=1 XTI=3 KF=37.24E-18 AF=1 .MODEL QN3866 NPN (IS=40.6F NF=1 BF=97.5 VAF=98.5 IKF=.24 + ISE=41.6P NE=2 BR=4 NR=1 VAR=14 IKR=.36 RE=4.81 RB=19.2 + RC=1.92 XTB=1.5 CJE=20.4P CJC=6.00P TF=227P TR=123N) * 30 Volt .4 Amp 700 MHz SiNPN Transistor 02-20-1991 .model MPF102 NJF(Beta=1.04m Betatce=-.5 Rd=1 Rs=1 Lambda=2m Vto=-3.41 + Vtotc=-2.5m Is=33.57f Isr=322.4f N=1 Nr=2 Xti=3 Alpha=311.7 + Vk=243.6 Cgd=1.6p M=.3622 Pb=1 Fc=.5 Cgs=2.414p Kf=11.73E- 18 + Af=1) * National pid=50 case=TO92 * 88-08-02 rmn BVmin=25 .model J310 NJF(Beta=3.384m Betatce=-.5 Rd=1 Rs=1 Lambda=17m Vto=-3.409 + Vtotc=-2.5m Is=193.9f Isr=1.881p N=1 Nr=2 Xti=3 Alpha=7.533u + Vk=74.1 Cgd=6.2p M=.4647 Pb=1 Fc=.5 Cgs=6.2p Kf=46.34E-18

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Page 1: Model

.MODEL BC107BP/ZTX NPN IS =1.8E-14 ISE=5.0E-14 NF =.9955 NE =1.46 BF =400

+BR =35.5 IKF=.14 IKR=.03 ISC=1.72E-13 NC =1.27 NR =1.005 RB =.56 RE =.6 +RC =.25 VAF=80 VAR=12.5 CJE=13E-12 TF =.64E-9 CJC=4E-12 TR =50.72E-9 +VJC=.54 MJC=.33

.MODEL 1N4004 D (IS=3.699E-09 RS=1.756E-02 N=1.774+ XTI=3.0 EG=1.110 CJO=1.732E-11 M=0.3353+ VJ=0.3905 FC=0.5 BV=400 IBV=1.0E-03)

.model J2N3819 NJF BETA=1.57m LAMBDA=4m VTO=-1.954+ CGD=1.5p M=.3821 PB=1 FC=.5 CGS=1.5p IS=173.3f N=1 XTI=3 KF=37.24E-18 AF=1

.MODEL QN3866 NPN (IS=40.6F NF=1 BF=97.5 VAF=98.5 IKF=.24+ ISE=41.6P NE=2 BR=4 NR=1 VAR=14 IKR=.36 RE=4.81 RB=19.2+ RC=1.92 XTB=1.5 CJE=20.4P CJC=6.00P TF=227P TR=123N)* 30 Volt .4 Amp 700 MHz SiNPN Transistor 02-20-1991

.model MPF102 NJF(Beta=1.04m Betatce=-.5 Rd=1 Rs=1 Lambda=2m Vto=-3.41 + Vtotc=-2.5m Is=33.57f Isr=322.4f N=1 Nr=2 Xti=3 Alpha=311.7 + Vk=243.6 Cgd=1.6p M=.3622 Pb=1 Fc=.5 Cgs=2.414p Kf=11.73E-18 + Af=1) * National pid=50 case=TO92 * 88-08-02 rmn BVmin=25

.model J310 NJF(Beta=3.384m Betatce=-.5 Rd=1 Rs=1 Lambda=17m Vto=-3.409 + Vtotc=-2.5m Is=193.9f Isr=1.881p N=1 Nr=2 Xti=3 Alpha=7.533u + Vk=74.1 Cgd=6.2p M=.4647 Pb=1 Fc=.5 Cgs=6.2p Kf=46.34E-18 + Af=1) * National pid=92 case=TO92 * 88-07-14 bam BVmin=25

.model J2N3819 NJF(Beta=1.304m Betatce=-.5 Rd=1 Rs=1 Lambda=2.25m Vto=-3 + Vtotc=-2.5m Is=33.57f Isr=322.4f N=1 Nr=2 Xti=3 Alpha=311.7 + Vk=243.6 Cgd=1.6p M=.3622 Pb=1 Fc=.5 Cgs=2.414p Kf=9.882E-18 + Af=1) * National pid=50 case=TO92 * 88-08-01 rmn BVmin=25

Page 2: Model

*//////////////////////////////////////////////////////////////////////* (C) National Semiconductor, Inc.* Models developed and under copyright by:* National Semiconductor, Inc.

*/////////////////////////////////////////////////////////////////////* Legal Notice: This material is intended for free software support.* The file may be copied, and distributed; however, reselling the * material is illegal

*////////////////////////////////////////////////////////////////////* For ordering or technical information on these models, contact:* National Semiconductor's Customer Response Center* 7:00 A.M.--7:00 P.M. U.S. Central Time* (800) 272-9959* For Applications support, contact the Internet address:* [email protected]

*//////////////////////////////////////////////////////////*LM741 OPERATIONAL AMPLIFIER MACRO-MODEL*//////////////////////////////////////////////////////////** connections: non-inverting input* | inverting input* | | positive power supply* | | | negative power supply* | | | | output* | | | | |* | | | | |.SUBCKT LM741/NS 1 2 99 50 28**Features:*Improved performance over industry standards*Plug-in replacement for LM709,LM201,MC1439,748*Input and output overload protection*****************INPUT STAGE***************IOS 2 1 20N*^Input offset currentR1 1 3 250KR2 3 2 250KI1 4 50 100UR3 5 99 517R4 6 99 517Q1 5 2 4 QXQ2 6 7 4 QX*Fp2=2.55 MHzC4 5 6 60.3614P************COMMON MODE EFFECT************I2 99 50 1.6MA

Page 3: Model

*^Quiescent supply currentEOS 7 1 POLY(1) 16 49 1E-3 1*Input offset voltage.^R8 99 49 40KR9 49 50 40K**********OUTPUT VOLTAGE LIMITING********V2 99 8 1.63D1 9 8 DXD2 10 9 DXV3 10 50 1.63***************SECOND STAGE***************EH 99 98 99 49 1G1 98 9 5 6 2.1E-3*Fp1=5 HzR5 98 9 95.493MEGC3 98 9 333.33P****************POLE STAGE*****************Fp=30 MHzG3 98 15 9 49 1E-6R12 98 15 1MEGC5 98 15 5.3052E-15**********COMMON-MODE ZERO STAGE***********Fpcm=300 HzG4 98 16 3 49 3.1623E-8L2 98 17 530.5MR13 17 16 1K***************OUTPUT STAGE***************F6 50 99 POLY(1) V6 450U 1E1 99 23 99 15 1R16 24 23 25D5 26 24 DXV6 26 22 0.65VR17 23 25 25D6 25 27 DXV7 22 27 0.65VV5 22 21 0.18VD4 21 15 DXV4 20 22 0.18VD3 15 20 DXL3 22 28 100PRL3 22 28 100K****************MODELS USED***************.MODEL DX D(IS=1E-15).MODEL QX NPN(BF=625)

Page 4: Model

*.ENDS*$