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U1INPUT34U2U3U40LOAD_SHIFTU51INPUT2INPUT3INPUT4U141514LED10185V1kHzV10LOAD_SHIFTABCDCLKOUTPUTU7U152657U6U8U1689U9U10U171011121316171920 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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SPICE
VHDL
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.

** PISO CIRCUIT DIAGRAM in Multisim: **
*
* Multisim Live SPICE netlist
*
*

* --- Circuit Topology ---

* Component: INPUT
aINPUT 3 Digital_Source_INPUT

* Component: INPUT2
aINPUT2 7 Digital_Source_INPUT2

* Component: INPUT3
aINPUT3 17 Digital_Source_INPUT3

* Component: INPUT4
aINPUT4 16 Digital_Source_INPUT4

* Component: LED1
xLED1 18 0 LED_VIRTUAL_LED1

* Component: LOAD_SHIFT
aLOAD_SHIFT 14 Digital_Source_LOAD_SHIFT

* Component: U1
aU1 3 bridgeU1!CLK U1_NC_SET bridgeU1!RESET 6 U1_NC_~Q Digital_DFlipFlopPOSSR_U1

xbridgeU1!CLK bridgeU1!CLK 4 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

xbridgeU1!RESET bridgeU1!RESET 0 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

* Component: U10
aU10 [19 14] 10 Digital_AND2_U10

* Component: U14
aU14 14 15 Digital_Inverter_U14

* Component: U15
aU15 [7 15] 5 Digital_AND2_U15

* Component: U16
aU16 [17 15] 9 Digital_AND2_U16

* Component: U17
aU17 [16 15] 11 Digital_AND2_U17

* Component: U2
aU2 1 bridgeU2!CLK U2_NC_SET bridgeU2!RESET 20 U2_NC_~Q Digital_DFlipFlopPOSSR_U2

xbridgeU2!CLK bridgeU2!CLK 4 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

xbridgeU2!RESET bridgeU2!RESET 0 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

* Component: U3
aU3 12 bridgeU3!CLK U3_NC_SET bridgeU3!RESET 19 U3_NC_~Q Digital_DFlipFlopPOSSR_U3

xbridgeU3!CLK bridgeU3!CLK 4 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

xbridgeU3!RESET bridgeU3!RESET 0 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

* Component: U4
aU4 13 bridgeU4!CLK U4_NC_SET bridgeU4!RESET bridgeU4!Q U4_NC_~Q Digital_DFlipFlopPOSSR_U4

xbridgeU4!CLK bridgeU4!CLK 4 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

xbridgeU4!RESET bridgeU4!RESET 0 REAL_CUSTOM_ADC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

xbridgeU4!Q bridgeU4!Q 18 REAL_CUSTOM_DAC PARAMS: lowV=0 maxLowV=0.8 unknownV=1 minHighV=2 highV=5 riseT=0 fallT=0

* Component: U5
aU5 [5 2] 1 Digital_OR2_U5

* Component: U6
aU6 [9 8] 12 Digital_OR2_U6

* Component: U7
aU7 [6 14] 2 Digital_AND2_U7

* Component: U8
aU8 [20 14] 8 Digital_AND2_U8

* Component: U9
aU9 [11 10] 13 Digital_OR2_U9

* Component: V1
vV1 4 0
+ pulse( 0 5 0 1e-9 1e-9
+ { 50 * 0.01 / 1000 }
+ { 1/1000 } )


* --- Circuit Models ---

* INPUT model
.model Digital_Source_INPUT d_constsource(State=1)

* INPUT2 model
.model Digital_Source_INPUT2 d_constsource(State=1)

* INPUT3 model
.model Digital_Source_INPUT3 d_constsource(State=0)

* INPUT4 model
.model Digital_Source_INPUT4 d_constsource(State=1)

* LOAD_SHIFT model
.model Digital_Source_LOAD_SHIFT d_constsource(State=1)

* U1 model
.model Digital_DFlipFlopPOSSR_U1 d_dff (rise_delay=1e-9 fall_delay=1e-9 clk_delay=1e-9 set_delay=1e-9 reset_delay=1e-9 ic=0)

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

* U14 model
.model Digital_Inverter_U14 d_inverter (rise_delay=1e-9 fall_delay=1e-9)

* U15 model
.model Digital_AND2_U15 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U16 model
.model Digital_AND2_U16 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U17 model
.model Digital_AND2_U17 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U2 model
.model Digital_DFlipFlopPOSSR_U2 d_dff (rise_delay=1e-9 fall_delay=1e-9 clk_delay=1e-9 set_delay=1e-9 reset_delay=1e-9 ic=0)

* U3 model
.model Digital_DFlipFlopPOSSR_U3 d_dff (rise_delay=1e-9 fall_delay=1e-9 clk_delay=1e-9 set_delay=1e-9 reset_delay=1e-9 ic=0)

* U4 model
.model Digital_DFlipFlopPOSSR_U4 d_dff (rise_delay=1e-9 fall_delay=1e-9 clk_delay=1e-9 set_delay=1e-9 reset_delay=1e-9 ic=0)

* U5 model
.model Digital_OR2_U5 d_or (rise_delay=1e-9 fall_delay=1e-9)

* U6 model
.model Digital_OR2_U6 d_or (rise_delay=1e-9 fall_delay=1e-9)

* U7 model
.model Digital_AND2_U7 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U8 model
.model Digital_AND2_U8 d_and (rise_delay=1e-9 fall_delay=1e-9)

* U9 model
.model Digital_OR2_U9 d_or (rise_delay=1e-9 fall_delay=1e-9)


* --- Subcircuits ---

* LED1 subcircuit
.subckt LED_VIRTUAL_LED1 A K

dd1 A 0vNode ledDiodeModel
.model ledDiodeModel D( IS=1e-14 N=1 RS=0 IBV=1e-10 BV=1e+30 CJO=0 M=0.5 VJ=1 )

V_Isense 0vNode K DC 0

* Interactive sense node
b1 lit 0 v = { if (i(V_Isense) < 0, 0, if( i(V_Isense) > 0.005, 1, { i(V_Isense) / 0.005 })) }

.ends


* --- Pin bridge models

.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

.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
VHDL Netlist

This is a text-based representation of a digital circuit.
The -- symbols indicates a comment.
Probes and analog components do not appear in VHDL netlists.

-- This is a VHDL representation of the -- digital circuit described in the schematic. -- If the circuit described is not valid or is incomplete, -- it may result in an invalid VHDL representation. library IEEE; use IEEE.STD_LOGIC_1164.ALL; USE WORK.ALL; entity top_design is Port ( ); end top_design; architecture BEHAVIORAL of top_design is signal \1\,\15\,\2\,\6\,\5\,\8\,\9\,\10\,\11\,\12\,\13\,\19\,\20\ : STD_LOGIC; begin end BEHAVIORAL;
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PISO CIRCUIT DIAGRAM in Multisim:
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

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Net Labels

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Component Labels

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