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📁 [电子线路模拟仿真软件].TINA.Pro.V.6.Educational-141M.zip
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.MODEL MstroMOD NMOS (VTO=5.05 KP=3.8 IS=1e-30 N=10 TOX=1 L=1u W=1u)
.MODEL MweakMOD NMOS (VTO=3.23 KP=0.02 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1
+ RD=100)
.MODEL RbreakMOD RES (TC1=1.0e-3 TC2=0)
.MODEL RdrainMOD RES (TC1=0.23 TC2=6.50e-4)
.MODEL RSLCMOD RES (TC1=3e-3 TC2=0)
.MODEL RsourceMOD RES (TC1=0 TC2=0)
.MODEL RvthresMOD RES (TC1=-6.5e-3 TC2=-1.0e-6)
.MODEL RvtempMOD RES (TC1=-1.1e-3 TC2=0)
.MODEL S1AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-12.00 VOFF=-8.50)
.MODEL S1BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-8.50 VOFF=-12.00)
.MODEL S2AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=6.00 VOFF=9.00)
.MODEL S2BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=9.00 VOFF=6.00)
.ENDS
*
.SUBCKT FSF450  2 1 3
*Term. Conn.*** D G S 
* Spice model circuit for the FSF450
*For a detail electrical specification see datasheet file FN3970
**************************************************************************
*   For further discussion of the basics of this PSPICE PowerFET         *
*   macromodel consult "A New PSPICE Sub-circuit for the Power MOSFET    *
*   Featuring Global Temperature Options" by William J. Hepp and C. Frank*
*   Wheatley. This macromodel does not include the temperature variation *
*   of the various parameters as outlined in the application note.       *
*NOM TEMP=25 deg C                                                       *
**************************************************************************
Ca 12 8 4.0n
Cb 15 14 4.2n
Cin 6 8 2.90n
Dbody 7 5 DbodyMOD
Dbreak 5 11 DbreakMOD
Dplcap 10 5 DplcapMOD
Ebreak 11 7 17 18 628.0
Eds 14 8 5 8 1
Egs 13 8 6 8 1
Esg 6 10 6 8 1
Evthres 6 21 19 8 1
Evtemp 20 6 18 22 1
It 8 17 1
Lgate 1 9 7.456n
Ldrain 2 5 2.679n
Lsource 3 7 6.155n
RLgate 1 9 74.56
RLdrain 2 5 26.79
RLsource 3 7 61.55
Mmed 16 21 8 8 MmedMOD
Mstro 16 6 8 8 MstroMOD
Mweak 16 21 8 8 MweakMOD
Rbreak 17 18 RbreakMOD 1
Rdrain 50 16 RdrainMOD 421.5m
Rgate 9 20 1
RSLC1 5 51 RSLCMOD 1u
RSLC2 5 50 1k
Rin 6 8 1e9
Rsource 8 7 RsourceMOD 8m
Rvthres 22 8 RvthresMOD 1
Rvtemp 18 19 RvtempMOD 1
S1a 6 12 13 8 S1AMOD
S1b 13 12 13 8 S1BMOD
S2a 6 15 14 13 S2AMOD
S2b 13 15 14 13 S2BMOD
Vbat 22 19 DC 1
ESLC 51 50  VALUE={(V(5,51)/ABS(V(5,51)))*(PWR(V(5,51)/(1e-6*17),3.5))}
.MODEL DbodyMOD D (IS=1.50e-11 RS=11.75m N=1.045 IKF=0.5 TRS1=3.5e-3 TRS2=0
+ CJO=2.15n M=0.53 TT=364.5n VJ=0.5 XTI=7)
.MODEL DbreakMOD D (IS=1e-14 RS=2.5 TRS1=1.0e-3 TRS2=5e-5)
.MODEL DplcapMOD D (CJO=0.42n M=0.53 IS=1e-30 N=10)
.MODEL MmedMOD NMOS (VTO=4 KP=1.90 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1)
.MODEL MstroMOD NMOS (VTO=4.85 KP=6 IS=1e-30 N=10 TOX=1 L=1u W=1u)
.MODEL MweakMOD NMOS (VTO=3.12 KP=0.02 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1
+ RD=100)
.MODEL RbreakMOD RES (TC1=1.2e-3 TC2=0)
.MODEL RdrainMOD RES (TC1=8.5e-3 TC2=2.0e-5)
.MODEL RSLCMOD RES (TC1=3e-3 TC2=0)
.MODEL RsourceMOD RES (TC1=0 TC2=0)
.MODEL RvthresMOD RES (TC1=-3e-3 TC2=0)
.MODEL RvtempMOD RES (TC1=-6e-3 TC2=0)
.MODEL S1AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-9.50 VOFF=-4.50)
.MODEL S1BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-4.50 VOFF=-9.50)
.MODEL S2AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=6.00 VOFF=11.00)
.MODEL S2BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=11.00 VOFF=6.00)
.ENDS
*
.SUBCKT FSS234  2 1 3
*Term. Conn.*** D G S 
* Spice model circuit for the FSS234
*For a detail electrical specification see datasheet file FN4053
**************************************************************************
*   For further discussion of the basics of this PSPICE PowerFET         *
*   macromodel consult "A New PSPICE Sub-circuit for the Power MOSFET    *
*   Featuring Global Temperature Options" by William J. Hepp and C. Frank*
*   Wheatley. This macromodel does not include the temperature variation *
*   of the various parameters as outlined in the application note.       *
*NOM TEMP=25 deg C                                                       *
**************************************************************************
Ca 12 8 1.1n
Cb 15 14 1.1n
Cin 6 8 0.72n
Dbody 7 5 DbodyMOD
Dbreak 5 11 DbreakMOD
Dplcap 10 5 DplcapMOD
Ebreak 11 7 17 18 265.5
Eds 14 8 5 8 1
Egs 13 8 6 8 1
Esg 6 10 6 8 1
Evthres 6 21 19 8 1
Evtemp 20 6 18 22 1
It 8 17 1
Lgate 1 9 2.97n
Ldrain 2 5 1n
Lsource 3 7 4.05n
RLgate 1 9 29.7
RLdrain 2 5 10
RLsource 3 7 40.5
Mmed 16 21 8 8 MmedMOD
Mstro 16 6 8 8 MstroMOD
Mweak 16 21 8 8 MweakMOD
Rbreak 17 18 RbreakMOD 1
Rdrain 50 16 RdrainMOD 314m
Rgate 9 20 1
RSLC1 5 51 RSLCMOD 1u
RSLC2 5 50 1k
Rin 6 8 1e9
Rsource 8 7 RsourceMOD 95m
Rvthres 22 8 RvthresMOD 1
Rvtemp 18 19 RvtempMOD 1
S1a 6 12 13 8 S1AMOD
S1b 13 12 13 8 S1BMOD
S2a 6 15 14 13 S2AMOD
S2b 13 15 14 13 S2BMOD
Vbat 22 19 DC 1
ESLC 51 50  VALUE={(V(5,51)/ABS(V(5,51)))*(PWR(V(5,51)/(1e-6*13),4.3))}
.MODEL DbodyMOD D (IS=2.25e-12 RS=17m N=1.07 TRS1=1e-3 TRS2=0
+ CJO=0.9n M=0.5 TT=189n VJ=0.5 XTI=0.25)
.MODEL DbreakMOD D (IS=1e-14 RS=3.1 TRS1=1.8e-3 TRS2=0)
.MODEL DplcapMOD D (CJO=0.31n M=0.57 IS=1e-30 N=10 VJ=0.75)
.MODEL MmedMOD NMOS (VTO=4 KP=0.75 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1)
.MODEL MstroMOD NMOS (VTO=5.5 KP=4 IS=1e-30 N=10 TOX=1 L=1u W=1u)
.MODEL MweakMOD NMOS (VTO=3.33 KP=0.015 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1
+ RD=100)
.MODEL RbreakMOD RES (TC1=1.2e-3 TC2=0)
.MODEL RdrainMOD RES (TC1=0.01 TC2=2.25e-5)
.MODEL RSLCMOD RES (TC1=3e-3 TC2=0)
.MODEL RsourceMOD RES (TC1=0 TC2=0)
.MODEL RvthresMOD RES (TC1=-3e-3 TC2=0)
.MODEL RvtempMOD RES (TC1=-4e-3 TC2=0)
.MODEL S1AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-14.00 VOFF=-2.00)
.MODEL S1BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-2.00 VOFF=-14.00)
.MODEL S2AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=4.00 VOFF=9.00)
.MODEL S2BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=9.00 VOFF=4.00)
.ENDS
*
.SUBCKT FSL430  2 1 3
*Term. Conn.*** D G S 
* Spice model circuit for the FSL430
*For a detail electrical specification see datasheet file FN4010
**************************************************************************
*   For further discussion of the basics of this PSPICE PowerFET         *
*   macromodel consult "A New PSPICE Sub-circuit for the Power MOSFET    *
*   Featuring Global Temperature Options" by William J. Hepp and C. Frank*
*   Wheatley. This macromodel does not include the temperature variation *
*   of the various parameters as outlined in the application note.       *
*NOM TEMP=25 deg C                                                       *
**************************************************************************
Ca 12 8 1.05n
Cb 15 14 1.05n
Cin 6 8 0.72n
Dbody 7 5 DbodyMOD
Dbreak 5 11 DbreakMOD
Dplcap 10 5 DplcapMOD
Ebreak 11 7 17 18 599
Eds 14 8 5 8 1
Egs 13 8 6 8 1
Esg 6 10 6 8 1
Evthres 6 21 19 8 1
Evtemp 20 6 18 22 1
It 8 17 1
Lgate 1 9 7.456n
Ldrain 2 5 2.679n
Lsource 3 7 6.155n
RLgate 1 9 74.56
RLdrain 2 5 26.79
RLsource 3 7 61.55
Mmed 16 21 8 8 MmedMOD
Mstro 16 6 8 8 MstroMOD
Mweak 16 21 8 8 MweakMOD
Rbreak 17 18 RbreakMOD 1
Rdrain 50 16 RdrainMOD 1.712
Rgate 9 20 1
RSLC1 5 51 RSLCMOD 1u
RSLC2 5 50 1k
Rin 6 8 1e9
Rsource 8 7 RsourceMOD 2.5m
Rvthres 22 8 RvthresMOD 1
Rvtemp 18 19 RvtempMOD 1
S1a 6 12 13 8 S1AMOD
S1b 13 12 13 8 S1BMOD
S2a 6 15 14 13 S2AMOD
S2b 13 15 14 13 S2BMOD
Vbat 22 19 DC 1
ESLC 51 50  VALUE={(V(5,51)/ABS(V(5,51)))*(PWR(V(5,51)/(1e-6*4),2.8))}
.MODEL DbodyMOD D (IS=7e-12 RS=32m N=1.115 IKF=0.5 TRS1=4e-3 TRS2=0 
+ CJO=0.6n M=0.48 TT=115.5n VJ=0.5 XTI=3)
.MODEL DbreakMOD D (IS=1e-14 RS=12.5 TRS1=0 TRS2=0)
.MODEL DplcapMOD D (CJO=76p IS=1e-30 N=10 M=0.45)
* CJO of DbodyMOD = 5*Coss at 25V
* CJO of DplcapMOD = 5* Crss at 25V
* TT of DbodyMOD = 100*Ciss at 25V
.MODEL MstroMOD NMOS (VTO=4.98 KP=1.2 IS=1e-30 N=10 TOX=1 L=1u W=1u)
.MODEL MmedMOD NMOS (VTO=4.21 KP=0.35 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1)
.MODEL MweakMOD NMOS (VTO=3.54 KP=0.024 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1 RD=100)
.MODEL RbreakMOD RES (TC1=1.25e-3 TC2=0)
.MODEL RdrainMOD RES (TC1=8.25e-3 TC2=1.6e-5)
.MODEL RSLCMOD RES (TC1=3e-3 TC2=0)
.MODEL RsourceMOD RES (TC1=0 TC2=0)
.MODEL RvthresMOD RES (TC1=-8.5e-4 TC2=-3.5e-6)
.MODEL RvtempMOD RES (TC1=-6.5e-3 TC2=0)
.MODEL S1AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-9.00 VOFF=-3.00)
.MODEL S1BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-3.00 VOFF=-9.00)
.MODEL S2AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=12.00 VOFF=17.50)
.MODEL S2BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=17.50 VOFF=12.00)
.ENDS
*
.SUBCKT FSS130  2 1 3
*Term. Conn.*** D G S 
* Spice model circuit for the FSS130
*For a detail electrical specification see datasheet file FN4059
**************************************************************************
*   For further discussion of the basics of this PSPICE PowerFET         *
*   macromodel consult "A New PSPICE Sub-circuit for the Power MOSFET    *
*   Featuring Global Temperature Options" by William J. Hepp and C. Frank*
*   Wheatley. This macromodel does not include the temperature variation *
*   of the various parameters as outlined in the application note.       *
*NOM TEMP=25 deg C                                                       *
**************************************************************************
Ca 12 8 0.95n
Cb 15 14 1.1n
Cin 6 8 0.725n
Dbody 7 5 DbodyMOD
Dbreak 5 11 DbreakMOD
Dplcap 10 5 DplcapMOD
Ebreak 11 7 17 18 115
Eds 14 8 5 8 1
Egs 13 8 6 8 1
Esg 6 10 6 8 1
Evthres 6 21 19 8 1
Evtemp 20 6 18 22 1
It 8 17 1
Lgate 1 9 2.97n
Ldrain 2 5 1n
Lsource 3 7 4.05n
RLgate 1 9 29.7
RLdrain 2 5 10
RLsource 3 7 40.5
Mmed 16 21 8 8 MmedMOD
Mstro 16 6 8 8 MstroMOD
Mweak 16 21 8 8 MweakMOD
Rbreak 17 18 RbreakMOD 1
Rdrain 50 16 RdrainMOD 6.25m
Rgate 9 20 1
RSLC1 5 51 RSLCMOD 1u
RSLC2 5 50 1k
Rin 6 8 1e9
Rsource 8 7 RsourceMOD 89m
Rvthres 22 8 RvthresMOD 1
Rvtemp 18 19 RvtempMOD 1
S1a 6 12 13 8 S1AMOD
S1b 13 12 13 8 S1BMOD
S2a 6 15 14 13 S2AMOD
S2b 13 15 14 13 S2BMOD
Vbat 22 19 DC 1
ESLC 51 50  VALUE={(V(5,51)/ABS(V(5,51)))*(PWR(V(5,51)/(1e-6*39),4.75))}
.MODEL DbodyMOD D (IS=1e-12 RS=15.5m N=1.0325 IKF=1.25 TRS1=3e-3 TRS2=0 
+ CJO=0.98n M=0.4 TT=197n VJ=0.5 XTI=5)
.MODEL DbreakMOD D (IS=1e-14 RS=0.8 TRS1=0 TRS2=0)
.MODEL DplcapMOD D (CJO=875p IS=1e-30 N=10 M=0.7)
* CJO of DbodyMOD = 5*Coss at 25V
* CJO of DplcapMOD = 5* Crss at 25V
* TT of DbodyMOD = 100*Ciss at 25V
.MODEL MstroMOD NMOS (VTO=5.2 KP=3.25 IS=1e-30 N=10 TOX=1 L=1u W=1u)
.MODEL MmedMOD NMOS (VTO=4.2 KP=1 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1)
.MODEL MweakMOD NMOS (VTO=3.31 KP=0.022 IS=1e-30 N=10 TOX=1 L=1u W=1u RG=1 RD=100)
.MODEL RbreakMOD RES (TC1=1e-3 TC2=0)
.MODEL RdrainMOD RES (TC1=0.09 TC2=3e-4)
.MODEL RSLCMOD RES (TC1=3.5e-3 TC2=0)
.MODEL RsourceMOD RES (TC1=0 TC2=0)
.MODEL RvthresMOD RES (TC1=-4.25e-3 TC2=-7.5e-6)
.MODEL RvtempMOD RES (TC1=-3e-3 TC2=0)
.MODEL S1AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-11 VOFF=-6)
.MODEL S1BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=-6 VOFF=-11)
.MODEL S2AMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=2 VOFF=9)
.MODEL S2BMOD VSWITCH (RON=1e-5 ROFF=0.1 VON=9 VOFF=2)
.ENDS
*
*

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