********************************
* Copyright:                   *
* Vishay Intertechnology, Inc. *
********************************
*27-Aug-2018
*ECN S18-0891, Rev. A
*File Name: SiHH180N60E_PS_RC.txt and SiHH180N60E_PS_RC.lib
*This document is intended as a SPICE modeling guideline and does not
*constitute a commercial product datasheet. Designers should refer to the
*appropriate datasheet of the same number for guaranteed specification
*limits.
.SUBCKT SiHH180N60E D G S 
M1 3 GX S S NMOS W= 1780000u L= 2u 
M2 S GX S D PMOS W= 1780000u L= 0.13u 
M2B S GX S 3 PMOS2 W= 1780000u L= 1.15u 
R1 4 3 1.235e-01 TC=4.623e-03,-1.189e-05
J1 D S 4 JD 1780000u 
.MODEL JD NJF (VTO = -1.264e+01 BETA = 5.896e-01 LAMBDA = 1.000e-05 
+BETATCE = -1.865e+00 VTOTC = -0.0781 IS = 1e-18 N = 10 )
CGS GX S 1.000e-13 
CGD GX D 3.603e-12 
RG G GY 0.6 
RTCV 100 S 1e6 TC=8.018e-03,0
ETCV GX GY 100 200 1 
ITCV S 100 1u 
VTCV 200 S 1 
DBD S D DBD 1780000u 
**************************************************************** 
.MODEL NMOS NMOS ( LEVEL = 3 TOX = 10e-8 
+ RS = 0 KP = 7.619e-06 NSUB = 8.858e+16 
+ KAPPA = 9.705e-01 NFS = 1.000e+11 
+ LD = 0 IS = 0 TPG = 1    )
*************************************************************** 
.MODEL PMOS PMOS ( LEVEL = 3 TOX = 10e-8 
+NSUB = 2.328e+15 IS = 0 TPG = -1    )
.MODEL PMOS2 PMOS ( LEVEL = 3 TOX = 10e-8 
+NSUB = 3e13 IS = 0 TPG = -1    )
**************************************************************** 
.MODEL DBD D ( 
+FC = 0.1 TT = 5.880e-07 T_measured = 25 BV = 601
+RS = 1.295e-02 N = 1.403e+00 IS = 8.520e-10 
+EG = 1.215e+00 XTI = 4.978e-01 TRS1 = 3.366e-03
+CJO = 5.381e-09 VJ = 7.445e-01 M = 1.000e+00 ) 
.ENDS 

* source COMPONENT GENERATOR_JAJC
.SUBCKT SiHH180N60E_PS_RC D G S PARAMS: C2=1000 R1=1M C3=1000 R2=1M C4=1000
+  R3=1M C5=1000 R4=1M R5=1M C1=1000
C_CT6         N11708 N11712  1.1703m  TC=0,0 
C_CF2         0 N16364  87.8504m  TC=0,0 
R_RT1         j-a-Temp-Tank N11404  1.9287 TC=0,0 
C_CF7         0 N18737  1.8502m  TC=0,0 
R_RT7         N11712 N11716  274.5636m TC=0,0 
C_CF4         0 N16388  5.3730  TC=0,0 
G_G7         0 JUNCTION-TEMPERATURE-1RC VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
C_C10         N94536 N94151  {C4}  TC=0,0 
C_C12         N95722 N95798  {C2}  TC=0,0 
C_C5         N92368 N92773  {C2}  TC=0,0 
V_V_Gate         G GATE 0VDC
R_RT3         N11408 N11412  26.8123 TC=0,0 
C_C8         N94061 N94123  {C2}  TC=0,0 
R_RF3         N16384 N16388  26.8394 TC=0,0 
V_V4         N11732 0 {TEMP}
R_R10         N94536 N94151  {R4} TC=0,0 
R_R5         N92368 N92773  {R2} TC=0,0 
C_C3         N91434 N91125  {C2}  TC=0,0 
R_R12         N95722 N95798  {R2} TC=0,0 
R_R8         N94061 N94123  {R2} TC=0,0 
R_RT8         N11716 N11732  267.5551m TC=0,0 
R_RT6         N11708 N11712  376.6000m TC=0,0 
R_R3         N91434 N91125  {R2} TC=0,0 
G_DissipationPower         0 J-A-TEMP-FILTER VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
C_CT2         N11404 N11408  98.2082m  TC=0,0 
R_RT5         j-c-Temp-Tank N11708  181.2813m TC=0,0 
C_C1         JUNCTION-TEMPERATURE-1RC N89014  {C1}  TC=0,0 
C_C13         N95798 N95860  {C3}  TC=0,0 
R_RF2         N16364 N16384  7.4663 TC=0,0 
V_V3         N11450 0 {TEMP}
C_C9         N94123 N94536  {C3}  TC=0,0 
R_R13         N95798 N95860  {R3} TC=0,0 
R_RF8         N18741 N18767  77.5938m TC=0,0 
C_CT1         j-a-Temp-Tank N11404  3.2878m  TC=0,0 
R_RF1         J-A-TEMP-FILTER N16364  2.2390 TC=0,0 
R_RT2         N11404 N11408  6.2888 TC=0,0 
R_R9         N94123 N94536  {R3} TC=0,0 
C_CT4         N11412 N11450  1.0223  TC=0,0 
R_RF5         J-C-TEMP-FILTER N18733  245.6013m TC=0,0 
V_V5         N16436 0 {TEMP}
C_CT3         N11408 N11412  4.5873  TC=0,0 
G_G5         0 j-a-Temp-Tank VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
C_C4         JUNCTION-TEMPERATURE-3RC N92368  {C1}  TC=0,0 
R_RF7         N18737 N18741  248.3842m TC=0,0 
C_C14         N95860 N96370  {C4}  TC=0,0 
C_C11         JUNCTION-TEMPERATURE-5RC N95722  {C1}  TC=0,0 
R_RT4         N11412 N11450  19.9702 TC=0,0 
C_CF8         0 N18741  323.3921u  TC=0,0 
C_C7         JUNCTION-TEMPERATURE-4RC N94061  {C1}  TC=0,0 
R_R1         JUNCTION-TEMPERATURE-1RC N89014  {R1} TC=0,0 
C_C2         JUNCTION-TEMPERATURE-2RC N91434  {C1}  TC=0,0 
R_R4         JUNCTION-TEMPERATURE-3RC N92368  {R1} TC=0,0 
R_R14         N95860 N96370  {R4} TC=0,0 
R_R11         JUNCTION-TEMPERATURE-5RC N95722  {R1} TC=0,0 
C_CF5         0 J-C-TEMP-FILTER  149.8094u  TC=0,0 
C_CF1         0 J-A-TEMP-FILTER  4.0708m  TC=0,0 
R_R7         JUNCTION-TEMPERATURE-4RC N94061  {R1} TC=0,0 
R_R2         JUNCTION-TEMPERATURE-2RC N91434  {R1} TC=0,0 
C_CT5         j-c-Temp-Tank N11708  232.3778u  TC=0,0 
C_C15         N96370 N95888  {C5}  TC=0,0 
V_V9         N92392 0 {TEMP}
V_V_Source         SOURCE S 0VDC
V_V11         N95888 0 {TEMP}
R_RF4         N16388 N16436  18.4553 TC=0,0 
X_U1         DRAIN GATE SOURCE SIHH180N60E 
C_CT8         N11716 N11732  6.2823m  TC=0,0 
V_V10         N94151 0 {TEMP}
R_R15         N96370 N95888  {R5} TC=0,0 
G_G4         0 J-C-TEMP-FILTER VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
V_V8         N91125 0 {TEMP}
C_C6         N92773 N92392  {C3}  TC=0,0 
C_CT7         N11712 N11716  2.4221m  TC=0,0 
G_G9         0 JUNCTION-TEMPERATURE-3RC VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
C_CF6         0 N18733  493.0816u  TC=0,0 
R_R6         N92773 N92392  {R3} TC=0,0 
G_G11         0 JUNCTION-TEMPERATURE-5RC VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
V_V7         N89014 0 {TEMP}
C_CF3         0 N16384  764.3636m  TC=0,0 
G_G10         0 JUNCTION-TEMPERATURE-4RC VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
G_G8         0 JUNCTION-TEMPERATURE-2RC VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
R_RF6         N18733 N18737  528.4207m TC=0,0 
V_V_Drain         D DRAIN 0VDC
G_G6         0 j-c-Temp-Tank VALUE {
+  (V(Drain)*I(V_V_Drain)+V(Gate)*I(V_V_Gate)+V(Source)*I(V_V_Source)) }
V_V6         N18767 0 {TEMP}
.ENDS
