vbic: rm obsolete regression test
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@ -1,287 +0,0 @@
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***************************************************************
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* Comments for the user:
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* The VBIC Model includes the self heating effect and the user can switch selfheating on or off.
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* a) no self heating: set Rth = 0
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* b) with self heating: set Rth=80K/W + Rth_PCB (customer)
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* Note: Rth = 80 K/W includes only the thermal resistance of die and package and
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* the thermal resistance of the customer PCB must be added (Rth=80K/W + Rth_PCB)
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* Infineon Technologies AG
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* VBIC MODEL IN SPICE 2G6 SYNTAX
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* VALID UP TO 10 GHZ
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* >>> BFP780 <<<
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* (C) 2015 Infineon Technologies AG
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* Version 1.1 October 2015
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***************************************************************
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*.OPTION TNOM=25, GMIN= 1.00e-12
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*BFP780 C B E1 E2
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.SUBCKT BFP780 1 2 3 4
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*
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CCEPAR 11 33 800E-015
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*
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LEx 30 35 3E-011
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LBx 20 2 3E-011
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LCx 10 1 3E-011
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*
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CBPAD 22 44 30E-015
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CCPAD 11 44 30E-015
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CEPAD 33 44 30E-015
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*
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LB 22 20 777E-12
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LC 10 11 777E-12
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*
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CBEPCK 20 30 5.703E-015
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CBCPCK 10 20 1.497E-014
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CCEPCK 10 30 6.032E-014
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*
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RE1 35 3 1E-03
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RE2 35 4 1E-03
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*
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Rsub1 44 30 0.2144
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Rps 44 33 0.07306
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*
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D1 33 22 Diode_fb
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D2 44 22 Diode_fbd
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*
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.MODEL Diode_fb D(
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+ IS=3.5E-015
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+ N=1
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+ CJO=10e-15
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+ RS=6.1
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+ Tnom=25)
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*
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.MODEL Diode_fbd D(
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+ IS=1E-015
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+ N=1
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+ CJO=10E-15
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+ RS=1
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+ Tnom=25)
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*
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Q1 11 22 33 44 M_BFP780
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*
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.ENDS BFP780
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.MODEL M_BFP780 NPN (Level=4
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+ Tnom=25
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+ Cbeo=2.47E-012
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+ Cje=561.3E-015
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+ Pe=0.7
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+ Me=0.333
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+ Aje=-1
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+ Wbe=1
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+ Cbco=10E-015
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+ Cjc=668.6E-015
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+ Pc=0.54
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+ Mc=0.333
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+ Ajc=-1
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+ Cjep=2.616E-015
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+ Cjcp=900E-015
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+ Ps=0.6
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+ Ms=0.3
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+ Ajs=-0.5
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+ Fc=0.94
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+ Vef=545.4
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+ Ver=3.291
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+ Is=2.3E-015
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+ Nf=0.9855
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+ Ibei=1.893E-018
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+ Nei=0.9399
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+ Iben=4.77E-015
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+ Nen=1.361
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+ Ikf=1
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+ Nr=0.9912
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+ Ibci=157.5E-018
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+ Nci=1.1
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+ Ibcn=4.929E-015
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+ Ncn=1.463
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+ Ikr=0.01178
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+ Wsp=1
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+ Isp=1E-015
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+ Nfp=1
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+ Ibcip=1E-015
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+ Ncip=1.029
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+ Ibcnp=1E-015
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+ Ncnp=1
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+ Ikp=1E-3
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+ Ibeip=1E-015
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+ Ibenp=1E-015
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+ Re=0.15
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+ Rcx=0.01
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+ Rci=2.665
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+ Qco=1E-015
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+ Vo=0.0005022
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+ Gamm=5.659E-012
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+ Hrcf=0.21
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+ Rbx=5
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+ Rbi=1.964
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+ Rbp=265.5
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+ Rs=26.56
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+ Avc1=3.97
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+ Avc2=29.52
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+ Tf=1.6E-012
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+ Qtf=50E-3
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+ Xtf=30
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+ Vtf=0.7
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+ Itf=1
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+ Tr=1E-015
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+ Td=500E-015
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+ Cth=0
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+ Rth=0
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+ Ea=1.12
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+ Eaie=1.12
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+ Eaic=1.12
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+ Eais=1
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+ Eane=1.12
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+ Eanc=1.12
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+ Eans=1
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+ Xre=0
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+ Xrb=0
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+ Xrc=0
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+ Xrs=0
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+ Xvo=0
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+ Xis=-1.631
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+ Xii=0
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+ Xin=0
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+ Tnf=0
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+ Tavc=0.002613
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+ Kfn=0
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+ Afn=1
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+ Bfn=1 )
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***************************************************************
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*
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*.ENDS BFP780
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***************************************************************
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* Comments for the user:
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* The VBIC Model includes the self heating effect and the user can switch selfheating on or off.
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* a) no self heating: set Rth = 0
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* b) with self heating: set Rth=20K/W + Rth_PCB (customer)
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* Note: Rth = 20 K/W includes only the thermal resistance of die and package and
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* the thermal resistance of the customer PCB must be added (Rth=20K/W + Rth_PCB)
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* Infineon Technologies AG
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* VBIC MODEL
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* VALID UP TO 6 GHZ
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* >>> BFQ790 <<<
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* (C) 2015 Infineon Technologies AG
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* Version 1.0 Juni 2015
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***************************************************************
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*.OPTION TNOM=25, GMIN= 1.00e-12
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*BFQ790 C B E
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* without access to the external thermal node (Rth to be adjusted by the customer in the model parameter list for the transistor
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.SUBCKT BFQ790 1 2 3
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*
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* with access to external thermal node
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*.SUBCKT BFQ790 1 2 3 55
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*
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CCSPAR 11 44 1.375E-012
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LEx 30 3 4.36882E-011
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LBx 20 2 2.77681E-011
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LCx 10 1 4.265E-011
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CBEPCK 20 30 1.105E-013
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CBCPCK 10 20 1E-014
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CCEPCK 10 30 1E-015
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LB 222 20 1.02449E-009
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LC 10 11 1.89901E-009
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*
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RBL 222 22 45
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CBL 222 22 3E-011
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*
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Rsub1 44 30 0.000500184
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Rps 44 33 0.102733
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*
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*
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* without access to the external thermal node
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Q1 11 22 33 44 M_BFQ790
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*
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* with access to the thermal node
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* Q1 11 22 33 44 55 M_BFQ790
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*
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.MODEL M_BFQ790 NPN Level=4(
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+ Tnom=25
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+ Cbeo=9.31E-012
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+ Cje=7.693E-013
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+ Pe=0.5892
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+ Me=0.3115
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+ Aje=-0.5
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+ Wbe=1
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+ Cbco=1.966E-013
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+ Cjc=1E-015
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+ Pc=0.5095
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+ Mc=0.2797
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+ Ajc=-0.5
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+ Cjep=1.875E-012
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+ Cjcp=2.067E-012
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+ Ps=0.5086
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+ Ms=0.2865
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+ Ajs=-0.5
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+ Fc=0.93
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+ Vef=615.1
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+ Ver=5.61838
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+ Is=9.704E-015
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+ Nf=1.001
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+ Ibei=5E-017
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+ Nei=1.013
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+ Iben=3.609E-014
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+ Nen=1.46
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+ Ikf=2
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+ Nr=0.9958
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+ Ibci=1.001E-017
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+ Nci=1.015
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+ Ibcn=2.918E-014
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+ Ncn=1.399
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+ Ikr=0.2301
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+ Wsp=1
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+ Isp=1E-015
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+ Nfp=1
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+ Ibcip=2E-017
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+ Ncip=1
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+ Ibcnp=1.7E-015
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+ Ncnp=1.67
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+ Ikp=0.0002
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+ Ibeip=7E-017
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+ Ibenp=2.4E-014
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+ Re=0.2
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+ Rcx=0.02559
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+ Rci=1.168
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+ Qco=4E-015
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+ Vo=0.4234
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+ Gamm=2.199E-012
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+ Hrcf=0.1907
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+ Rbx=0.2825
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+ Rbi=1.868
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+ Rbp=0.001
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+ Rs=10
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+ Avc1=1
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+ Avc2=25.84
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+ Tf=3E-012
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+ Qtf=0.6758
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+ Xtf=0.01293
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+ Vtf=0.5
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+ Itf=0.1948
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+ Tr=1E-015
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+ Td=1E-015
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+ Cth=0
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+ Rth=0
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+ Ea=1.12
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+ Eaie=1.12
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+ Eaic=1.12
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+ Eais=1.12
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+ Eane=1.12
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+ Eanc=1.12
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+ Eans=1.12
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+ Xre=0
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+ Xrb=0
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+ Xrc=0
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+ Xrs=0
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+ Xvo=0
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+ Xis=1.907
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+ Xii=4.963
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+ Xin=-2.837
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+ Tnf=1E-006
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+ Tavc=0.006705
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+ Kfn=0
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+ Afn=1
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+ Bfn=1 )
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***************************************************************
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*
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.ENDS BFQ790
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@ -1,23 +0,0 @@
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VBIC Output Test Ic=f(Vc,Ib) vs self heating
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vc c 0 0
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ib 0 b 10u
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ve e 0 0
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vs s 0 0
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vc1 c c1 0
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vb1 b b1 0
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ve1 e e1 0
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vs1 s s1 0
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.temp 27
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Q1 c1 b1 e1 s1 dt M_BFP780 area=1
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.include Infineon_VBIC_RTH_0.lib
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.control
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dc vc 0.0 5.0 0.05 ib 50u 500u 50u
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settype temperature v(dt)
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plot v(dt)
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altermod @M_BFP780[RTH]=0
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dc vc 0.0 5.0 0.05 ib 50u 500u 50u
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plot dc1.vc1#branch dc2.vc1#branch
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.endc
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.end
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