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10kΩR10.01μFC110kΩR20.01μFC247kΩR34.7kΩR91kΩR1210.0kΩR82.2kΩR10680ΩR41μFC347kΩR7150A/AQ110kΩR62.2kΩR11150A/AQ2680ΩR51μFC415VV1123406708910PR1 V
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ID:

ID:

x10
x0.1
Sheet:1
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Netlist
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SPICE
SPICE Netlist

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** Wein Bridge Oscillator using transistor **
*
* Multisim Live SPICE netlist
*
*

* --- Circuit Topology ---

* Component: C1
cC1 1 2 1e-8

* Component: C2
cC2 2 0 1e-8

* Component: C3
cC3 3 8 0.000001

* Component: C4
cC4 9 6 0.000001

* Component: Q1
qQ1 3 2 4 NPN_Q1 AREA=1

* Component: Q2
qQ2 9 8 10 NPN_Q2 AREA=1

* Component: R1
rR1 6 1 10000 VIRTUAL_RESISTANCE_R1

* Component: R10
rR10 7 3 2200 VIRTUAL_RESISTANCE_R10

* Component: R11
rR11 7 9 2200 VIRTUAL_RESISTANCE_R11

* Component: R12
rR12 4 0 1000 VIRTUAL_RESISTANCE_R12

* Component: R2
rR2 2 0 10000 VIRTUAL_RESISTANCE_R2

* Component: R3
rR3 7 2 47000 VIRTUAL_RESISTANCE_R3

* Component: R4
rR4 4 0 680 VIRTUAL_RESISTANCE_R4

* Component: R5
rR5 10 0 680 VIRTUAL_RESISTANCE_R5

* Component: R6
rR6 8 0 10000 VIRTUAL_RESISTANCE_R6

* Component: R7
rR7 7 8 47000 VIRTUAL_RESISTANCE_R7

* Component: R8
rR8 2 0 10000 VIRTUAL_RESISTANCE_R8

* Component: R9
rR9 6 4 4700 VIRTUAL_RESISTANCE_R9

* Component: V1
vV1 7 0 dc 15 ac 0 0
+ distof1 0 0
+ distof2 0 0


* --- Circuit Models ---

* Q1 model
.model NPN_Q1 NPN( Level=1
+ IS=1e-16 BF=150 NF=1 VAF=1e+30
+ IKF=1e+30 ISE=0 NE=1.5 BR=1 NR=1 VAR=1e+30 IKR=1e+30 ISC=0 NC=2 RB=0
+ IRB=1e+30 RE=0 RC=0 CJE=0 VJE=0.75 MJE=0.33 TF=0 XTF=0 VTF=1e+30
+ ITF=0 PTF=0 CJC=0 VJC=0.75 MJC=0.33 XCJC=1 TR=0 CJS=0 VJS=0.75 MJS=0
+ XTB=0 EG=1.11 XTI=3 KF=0 AF=1 FC=0.5 NS=1
+ XCJC2=1 XCJS=1 TRB1=0 TRB2=0 TRC1=0 TRC2=0 TRE1=0 TRE2=0 TRM1=0 TRM2=0
+ CN=2.2 D=0.52 GAMMA=1e-11 QCO=0 QUASIMOD=0 RCO=0 VG=1.206 VO=10
+
+ )

* Q2 model
.model NPN_Q2 NPN( Level=1
+ IS=1e-16 BF=150 NF=1 VAF=1e+30
+ IKF=1e+30 ISE=0 NE=1.5 BR=1 NR=1 VAR=1e+30 IKR=1e+30 ISC=0 NC=2 RB=0
+ IRB=1e+30 RE=0 RC=0 CJE=0 VJE=0.75 MJE=0.33 TF=0 XTF=0 VTF=1e+30
+ ITF=0 PTF=0 CJC=0 VJC=0.75 MJC=0.33 XCJC=1 TR=0 CJS=0 VJS=0.75 MJS=0
+ XTB=0 EG=1.11 XTI=3 KF=0 AF=1 FC=0.5 NS=1
+ XCJC2=1 XCJS=1 TRB1=0 TRB2=0 TRC1=0 TRC2=0 TRE1=0 TRE2=0 TRM1=0 TRM2=0
+ CN=2.2 D=0.52 GAMMA=1e-11 QCO=0 QUASIMOD=0 RCO=0 VG=1.206 VO=10
+
+ )

* R1 model
.model VIRTUAL_RESISTANCE_R1 r( )

* R10 model
.model VIRTUAL_RESISTANCE_R10 r( )

* R11 model
.model VIRTUAL_RESISTANCE_R11 r( )

* R12 model
.model VIRTUAL_RESISTANCE_R12 r( )

* R2 model
.model VIRTUAL_RESISTANCE_R2 r( )

* R3 model
.model VIRTUAL_RESISTANCE_R3 r( )

* R4 model
.model VIRTUAL_RESISTANCE_R4 r( )

* R5 model
.model VIRTUAL_RESISTANCE_R5 r( )

* R6 model
.model VIRTUAL_RESISTANCE_R6 r( )

* R7 model
.model VIRTUAL_RESISTANCE_R7 r( )

* R8 model
.model VIRTUAL_RESISTANCE_R8 r( )

* R9 model
.model VIRTUAL_RESISTANCE_R9 r( )

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Wein Bridge Oscillator using transistor
Schematic

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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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