Initializing Multisim Live ...

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U18DG1DCBA1U1U2U3U4U5U6U7U8U9U10U11U12_A_B_C_D_E_F_G23456781214109171116181913202122232415PR1PR2PR3PR4PR5PR6PR7 0/1 0/1 0/1 0/1 0/1 0/1 0/1
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ID:

ID:

x10
x0.1
Sheet:1
V
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Details
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SPICE
SPICE Netlist

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

** Common anode 7-Segment Display indicator **
*
* Multisim Live SPICE netlist
*
*

* --- Circuit Topology ---

* Component: A
aA 12 Digital_Source_A

* Component: B
aB 11 Digital_Source_B

* Component: C
aC 10 Digital_Source_C

* Component: D
aD 15 Digital_Source_D

* Component: DG1
aDG1 bridgeDG1!OUT Digital_Source_DG1

xbridgeDG1!OUT bridgeDG1!OUT 1 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

* Component: U1
aU1 15 13 Digital_Inverter_U1

* Component: U10
aU10 [10 15] 22 Digital_AND2_U10

* Component: U11
aU11 [17 9 15] 23 Digital_AND3_U11

* Component: U12
aU12 [14 9 17] 24 Digital_AND3_U12

* Component: U18
xU18 2 3 4 5 6 7 8 1 7_SEGMENT_CA_U18

* Component: U2
aU2 10 14 Digital_Inverter_U2

* Component: U3
aU3 11 9 Digital_Inverter_U3

* Component: U4
aU4 12 17 Digital_Inverter_U4

* Component: U5
aU5 [17 9 14 15] 16 Digital_AND4_U5

* Component: U6
aU6 [11 14 13] 18 Digital_AND3_U6

* Component: U7
aU7 [10 15] 19 Digital_XOR2_U7

* Component: U8
aU8 [11 10 15] 20 Digital_AND3_U8

* Component: U9
aU9 [14 11] 21 Digital_AND2_U9

* Component: _A
a_A [16 18] bridge_A!Y Digital_OR2__A

xbridge_A!Y bridge_A!Y 2 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

* Component: _B
a_B [11 19] bridge_B!Y Digital_AND2__B

xbridge_B!Y bridge_B!Y 3 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

* Component: _C
a_C [9 10 13] bridge_C!Y Digital_AND3__C

xbridge_C!Y bridge_C!Y 4 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

* Component: _D
a_D [bridge_D!A 20] bridge_D!Y Digital_OR2__D

xbridge_D!A bridge_D!A 2 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

xbridge_D!Y bridge_D!Y 5 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

* Component: _E
a_E [15 21] bridge_E!Y Digital_OR2__E

xbridge_E!Y bridge_E!Y 6 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

* Component: _F
a_F [22 23 bridge_F!C] bridge_F!Y Digital_OR3__F

xbridge_F!C bridge_F!C 4 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

xbridge_F!Y bridge_F!Y 7 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0

* Component: _G
a_G [20 24] bridge_G!Y Digital_OR2__G

xbridge_G!Y bridge_G!Y 8 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=3.3 riseT=0 fallT=0


* --- Circuit Models ---

* A model
.model Digital_Source_A d_constsource(State=0)

* B model
.model Digital_Source_B d_constsource(State=1)

* C model
.model Digital_Source_C d_constsource(State=0)

* D model
.model Digital_Source_D d_constsource(State=0)

* DG1 model
.model Digital_Source_DG1 d_constsource(State=1)

* U1 model
.model Digital_Inverter_U1 d_inverter (rise_delay=1e-9 fall_delay=1e-9)

* U10 model
.model Digital_AND2_U10 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U11 model
.model Digital_AND3_U11 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U12 model
.model Digital_AND3_U12 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U2 model
.model Digital_Inverter_U2 d_inverter (rise_delay=1e-9 fall_delay=1e-9)

* U3 model
.model Digital_Inverter_U3 d_inverter (rise_delay=1e-9 fall_delay=1e-9)

* U4 model
.model Digital_Inverter_U4 d_inverter (rise_delay=1e-9 fall_delay=1e-9)

* U5 model
.model Digital_AND4_U5 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U6 model
.model Digital_AND3_U6 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U7 model
.model Digital_XOR2_U7 d_xor (rise_delay=1e-9 fall_delay=1e-9)

* U8 model
.model Digital_AND3_U8 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U9 model
.model Digital_AND2_U9 d_and (rise_delay=1e-9 fall_delay=1e-9)

* _A model
.model Digital_OR2__A d_or (rise_delay=1e-9 fall_delay=1e-9)

* _B model
.model Digital_AND2__B d_and (rise_delay=1e-9 fall_delay=1e-9)

* _C model
.model Digital_AND3__C d_and (rise_delay=1e-9 fall_delay=1e-9)

* _D model
.model Digital_OR2__D d_or (rise_delay=1e-9 fall_delay=1e-9)

* _E model
.model Digital_OR2__E d_or (rise_delay=1e-9 fall_delay=1e-9)

* _F model
.model Digital_OR3__F d_or (rise_delay=1e-9 fall_delay=1e-9)

* _G model
.model Digital_OR2__G d_or (rise_delay=1e-9 fall_delay=1e-9)


* --- Subcircuits ---

* U18 subcircuit
.subckt 7_SEGMENT_CA_U18 K1 K2 K3 K4 K5 K6 K7 A

dd1 A 0vNode1 ledDiodeModel
Vsense1 0vNode1 K1 DC 0
* Interactive sense node
b1 lit1 0 v = { if (i(Vsense1) < 0, 0, if( i(Vsense1) > 0.02, 1, { i(Vsense1) / 0.02 })) }

dd2 A 0vNode2 ledDiodeModel
Vsense2 0vNode2 K2 DC 0
* Interactive sense node
b2 lit2 0 v = { if (i(Vsense2) < 0, 0, if( i(Vsense2) > 0.02, 1, { i(Vsense2) / 0.02 })) }

dd3 A 0vNode3 ledDiodeModel
Vsense3 0vNode3 K3 DC 0
* Interactive sense node
b3 lit3 0 v = { if (i(Vsense3) < 0, 0, if( i(Vsense3) > 0.02, 1, { i(Vsense3) / 0.02 })) }

dd4 A 0vNode4 ledDiodeModel
Vsense4 0vNode4 K4 DC 0
* Interactive sense node
b4 lit4 0 v = { if (i(Vsense4) < 0, 0, if( i(Vsense4) > 0.02, 1, { i(Vsense4) / 0.02 })) }

dd5 A 0vNode5 ledDiodeModel
Vsense5 0vNode5 K5 DC 0
* Interactive sense node
b5 lit5 0 v = { if (i(Vsense5) < 0, 0, if( i(Vsense5) > 0.02, 1, { i(Vsense5) / 0.02 })) }

dd6 A 0vNode6 ledDiodeModel
Vsense6 0vNode6 K6 DC 0
* Interactive sense node
b6 lit6 0 v = { if (i(Vsense6) < 0, 0, if( i(Vsense6) > 0.02, 1, { i(Vsense6) / 0.02 })) }

dd7 A 0vNode7 ledDiodeModel
Vsense7 0vNode7 K7 DC 0
* Interactive sense node
b7 lit7 0 v = { if (i(Vsense7) < 0, 0, if( i(Vsense7) > 0.02, 1, { i(Vsense7) / 0.02 })) }

.model ledDiodeModel D( IS=1e-14 N=1 RS=0 IBV=1e-10 BV=1e+30 CJO=0 M=0.5 VJ=1 )
.ends


* --- Pin bridge models

.SUBCKT REAL_CUSTOM_DAC 1 2 PARAMS: lowV=0 maxLowV=0.8 unknownV=1.0 minHighV=2.0 highV=5.0 riseT=0 fallT=0
* Ideal Driver Model 1 = A/D out, 2 = input
aDACin1 [1] [2] aDAC
.MODEL aDAC dac_bridge (out_low = {lowV} out_high = {highV} out_undef = {unknownV} t_rise = {max(riseT,1e-9)} t_fall = {max(fallT,1e-9)})
.ENDS

.SUBCKT REAL_CUSTOM_ADC 1 2 PARAMS: lowV=0 maxLowV=0.8 unknownV=1.0 minHighV=2.0 highV=5.0 riseT=0 fallT=0
* Ideal Receiver Model 1 = input, 2 = A/D out
aADCin1 [2] [1] ADC
.MODEL ADC adc_bridge (in_low = {maxLowV} in_high = {minHighV})
.ENDS
Errors and Warnings

Any error, warning or information messages appear below.

Item
Document
No items selected.
Common anode 7-Segment Display indicator
Schematic

The simulation to run. See Simulation types for more information.

Name

Title of graph. Edit as desired.

End time

s

Time at which the simulation stops. Does not include pauses. Simulation does not occur in real time.

Start simulation

Mode

Threshold voltage levels.

Threshold voltage values used in the logic evaluation. See Digital Simulation for more information.

Output low

V

Output low voltage.

Maximum output voltage level to produce a low signal.

Input low threshold

V

Input low threshold voltage.

Maximum input voltage level for the signal to be considered low.

Input high threshold

V

Input high threshold voltage.

Minimum input voltage level for the signal to be considered high.

Output high

V

Output high voltage.

Minimum output voltage level to produce a high signal.

Width

Sheet width in grid squares.

Height

Sheet height in grid squares.

Grid

Toggles grid display.

Net Labels

Toggles all net labels.

Component Labels

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