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VoutADJVin D4D615kΩR52PR2T1230V50Hz0°V264047µFC4C30.1µFLM317HU19100µFC50PR500PR322kΩR92.2kΩR107080.1µFC610µFC730.2AU31D7D8000 V V V
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ID:

ID:

x10
x0.1
Sheet:1
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SPICE
SPICE Netlist

This is a text-based representation of the circuit.
The * symbol indicates a comment.
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Probes do not appear in netlists.

** transformer with Full wave bridge rectifier with 4 diodes only **
*
* Multisim Live SPICE netlist
*
*

* --- Circuit Topology ---

* Component: C3
cC3 2 0 1e-7

* Component: C4
cC4 2 0 0.000047

* Component: C5
cC5 2 0 0.0001

* Component: C6
cC6 8 0 1e-7

* Component: C7
cC7 8 0 0.00001

* Component: D4
dD4 1 2 DIODE_D4 AREA=1

* Component: D6
dD6 4 2 DIODE_D6 AREA=1

* Component: D7
dD7 0 1 DIODE_D7 AREA=1

* Component: D8
dD8 0 4 DIODE_D8 AREA=1

* Component: R10
rR10 7 0 2200 VIRTUAL_RESISTANCE_R10

* Component: R5
rR5 2 0 15000 VIRTUAL_RESISTANCE_R5

* Component: R9
rR9 8 7 22000 VIRTUAL_RESISTANCE_R9

* Component: T1
xT1 6 3 1 4 0 1P1S_TAPPED_T1

* Component: U1
xU1 9 8 7 LM317H_U1

* Component: U3
xU3 9 2 FUSE_VIRTUAL_U3

* Component: V2
vV2 6 3 dc 0 ac 1 0
+ distof1 0 0
+ distof2 0 0
+ sin ( 0 230 50 0 0 0 )


* --- Circuit Models ---

* D4 model
.model DIODE_D4 D( IS=1e-14 RS=0 N=1 BV=1e+30
+ TT=0 CJO=0 VJ=1 M=0.5 EG=1.11 XTI=3 KF=0 AF=1 FC=0.5 IBV=1e-10
+ IBVL=0 IKF=1e+30 ISR=0 NBV=1 NBVL=1 NR=2 TBV1=0 TBV2=0 TIKF=0
+ TRS1=0 TRS2=0
+ )

* D6 model
.model DIODE_D6 D( IS=1e-14 RS=0 N=1 BV=1e+30
+ TT=0 CJO=0 VJ=1 M=0.5 EG=1.11 XTI=3 KF=0 AF=1 FC=0.5 IBV=1e-10
+ IBVL=0 IKF=1e+30 ISR=0 NBV=1 NBVL=1 NR=2 TBV1=0 TBV2=0 TIKF=0
+ TRS1=0 TRS2=0
+ )

* D7 model
.model DIODE_D7 D( IS=1e-14 RS=0 N=1 BV=1e+30
+ TT=0 CJO=0 VJ=1 M=0.5 EG=1.11 XTI=3 KF=0 AF=1 FC=0.5 IBV=1e-10
+ IBVL=0 IKF=1e+30 ISR=0 NBV=1 NBVL=1 NR=2 TBV1=0 TBV2=0 TIKF=0
+ TRS1=0 TRS2=0
+ )

* D8 model
.model DIODE_D8 D( IS=1e-14 RS=0 N=1 BV=1e+30
+ TT=0 CJO=0 VJ=1 M=0.5 EG=1.11 XTI=3 KF=0 AF=1 FC=0.5 IBV=1e-10
+ IBVL=0 IKF=1e+30 ISR=0 NBV=1 NBVL=1 NR=2 TBV1=0 TBV2=0 TIKF=0
+ TRS1=0 TRS2=0
+ )

* R10 model
.model VIRTUAL_RESISTANCE_R10 r( )

* R5 model
.model VIRTUAL_RESISTANCE_R5 r( )

* R9 model
.model VIRTUAL_RESISTANCE_R9 r( )


* --- Subcircuits ---

* T1 subcircuit
.SUBCKT 1P1S_TAPPED_T1 p1pos p1neg s1pos s1neg s1tap
.param PTurns = {4.5 * IF(PNegativePolarity < 0.5, 1, -1)}
.param PNegativePolarity = 0
.param STurns = {1 * IF(SNegativePolarity < 0.5, 1, -1)}
.param SNegativePolarity = 0
.param turns_per_coil = {STurns/2}
G1 p1pos p1neg value={-1/PTurns*(turns_per_coil*I(Es1) + turns_per_coil*I(Es2))}
Es1 s1pos s1tap value={V(p1pos,p1neg)*turns_per_coil/PTurns}
Es2 s1tap s1neg value={V(p1pos,p1neg)*turns_per_coil/PTurns}
.ENDS

* U1 subcircuit
.subckt LM317H_U1 3 1 2
* Model Generated by MODPEX *
*Copyright(c) Symmetry Design Systems*
* All Rights Reserved *
* UNPUBLISHED LICENSED SOFTWARE *
* Contains Proprietary Information *
* Which is The Property of *
* SYMMETRY OR ITS LICENSORS *
*Commercial Use or Resale Restricted *
* by Symmetry License Agreement *
* Model generated on Sep 8, 97
* MODEL FORMAT: SPICE3
*Rev. Date: Dec. 20, 1994
*Positive Adjustable Regulator
*External Node Designations
*node 1: VREF (OUTPUT)
*node 2: Ground (Common)
*node 3: Line Voltage
ECCX 131 2 135 2 1.0
VXX 133 2 DC 0
FSET6 2 135 VSENS2 1
FPP 3 2 VXX 1.0
R_YY 31 2 1e6
R_XX 15 2 1e8
R_ZZ 36 2 1e6
R_QQ 65 2 1e8
RXX 1 2 1e8
VSENS1 10 1 DC 0
ISET 2 15 DC 1e-3
DON1 15 16 DMOD1
VSENS2 16 19 DC 0
DON2 15 17 DMOD1
EON2 18 2 3 2 1
FYY 3 2 VSENS1 1
DON3 15 27 DMOD1
VDROP3 28 27 DC 2
EON3 28 2 3 2 4
ELINE 13 42 66 2 1
FSET2 2 36 VSENS2 1
DSC1 36 35 DMOD1
RCL1 36 37 10
DSC2 37 38 DMOD1
ESCCON 38 39 30 2 1
VSCCON 39 40 DC 0
FSC 19 2 VSCCON 1
FSET3 2 31 VSENS2 1
DOV1 31 32 DMOD1
EOV1 32 2 3 1 1
DOV2 31 33 DMOD1
ISET4 2 30 DC 1e-3
ELOAD 41 2 77 2 -1
ERIPPLE 42 41 72 2 1
EREF 12 13 19 2 1
E3 52 2 3 2 1
CBYPS 54 2 0.001
VORB 54 60 DC 0
RB 60 2 1e3
RBR 72 2 1000
CBS2 52 71 1
RSTEP 77 2 1
FRB 2 65 VORB 1
DRB2 65 67 DMOD1
VXRB 67 68 DC -1
EXRB 68 2 1 2 1
DRB1 65 66 DMOD1
RB1 66 2 1000
.MODEL DMOD1 D
*-- DMOD1 DEFAULT PARAMETERS
*IS=1e-14 RS=0 N=1 TT=0 CJO=0
*VJ=1 M=0.5 EG=1.11 XTI=3 FC=0.5
*KF=0 AF=1 BV=inf IBV=1e-3 TNOM=27
EXX 132 131 3 131 0.009
RST6 135 2 15000
RIQX 133 132 RQIX 300000
.MODEL RQIX R TC1=-0.001
RSET 19 2 RSET 1250
.MODEL RSET R TC1=1e-05 TC2=-8.01e-07
RS1 10 12 0.0006
VDROPX 18 17 1.26
HSENSE1 35 2 VSENS1 10
RISC 30 2 RISC 10000
.MODEL RISC R TC1=-0.0006
ROV 34 2 35000
VOV 33 34 15
EOV2 2 40 34 2 0.142857
FIQD 3 2 VSENS1 1e-07
RY 52 54 8e+06
RA 72 73 2163.02
RYR 71 72 6.30857e+06
CRA 52 73 8.40657e-11
HSTEP 76 2 VSENS1 0.2
CSTEP 76 77 1e-05
.ENDS lm317h

* U3 subcircuit
.subckt FUSE_VIRTUAL_U3 port1 port2

** Maximum current as defined by the user
.param Imax = 0.2

** resistance of the fuse when conducting current
.param fuseResistance = 1e-4

** resistance of the fuse after burning out
.param blownResistance = 10e6

** blown signal appears on node blown. 5V = blown, 0 = not
Rdummy blown 0 1000000

** Constant digital high to feed as input to latch
aU2 dU1.DATA d_constsource_U2
.model d_constsource_U2 d_constsource(state=1)

**D-latch to latch state
aU1 dU1.DATA
+ dU1.EN
+ U1_OPEN_SET
+ U1_OPEN_RESET
+ dU1.Q
+ U1_OPEN_notQ D_LATCH

** Output of latch onto node `blown` through DAC
xU1.Q dU1.Q blown TIL_DRV

** Input node `trigger` to latch ENABLE through ADC
xU1.CLK trigger dU1.EN TIL_RCV

** If over blown voltage, trigger DLATCH U1 enable
E2 trigger 0 Value = { if( abs(I(V_Isense)) > Imax & Time > 0, 5, 0) }

** Current sensor
V_Isense port1 lampSense 0

** model of the fuse as a G source so we can change the resistance on the fly
G_Lamp lampSense port2 value = { if( V(blown) < 2.5, V(port1, port2) / fuseResistance, V(port1, port2) / blownResistance )}

.subckt TIL_DRV 1 2
* TIL Driver Model 1= D/A input, 2 = out
aDACin1 [1] [2] aDAC
.model aDAC dac_bridge (out_low = 0 out_high = 5 out_undef = 2.5)
.ends

.subckt TIL_RCV 1 2
* TIL Receiver Model 1 = input, 2 = A/D out
aADCin1 [1] [2] ADC
.model ADC adc_bridge (in_low = 2.5 in_high = 2.5)
.ends

.model D_LATCH d_dlatch (data_delay = 1n enable_delay = 1n
+ set_delay = 1n reset_delay = 1n
+ ic = 0 rise_delay = 1n fall_delay = 1n)

.ends

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transformer with Full wave bridge rectifier with 4 diodes only
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