Radio-1

JE

Jeffrey-Wood

·

Created Sep 20, 2026

·

Updated Sep 20, 2026

Schematic preview for Radio-1
Details

Components

5


Schematic

Yes


Simulation

Interactive


Copies

Not copied yet

Tags

No tags yet.

About this circuit

The author hasn't added a description yet.

Components used

Components used
5 components
NameManufacturerMPNCountType

AM Voltage Source

Generic

1

Official

Capacitor

Generic

1

Official

Coupled Inductors

Generic

1

Official

Diode

Generic

1

Official

Resistor

Generic

1

Official

SPICE netlist

* **************************************************
* Generated from CircuitSim Schematic
**************************************************
C_C1 N3 0 540p IC=0
X_D1 N3 0 DIODE_25d079d4 IS=1e-14 RS=1K N=1 BV=1e30 IBV=100p CJO=0 VJ=500m M=0.5 TT=0 EG=1.11 XTI=3 KF=0 AF=1 FC=0.5 ISR=0 NR=2 IKF=1e30 TNOM=27 IC=0 TEMP=27
R_R1 NC_1 NC_2 1
X_T1 N2 0 N3 0 TSIDEAL_73c021c2 Lprimary=100m Lsecondary=100m K=1
B_V1 N2 NC_3 V=5*sin(2*pi*200K*time)*(1+500m*sin(2*pi*20K*time))
E_VP1 VP1 0 N2 0 1
E_VP2 VP2 0 N3 0 1
E_VP3 VP3 0 0 0 1

**************************************************
* Models and supporting definitions follow
**************************************************
* Source-compatible two-terminal junction diode
.subckt DIODE_25d079d4 A K params: IS=1e-14 RS=0 N=1 BV=1e30 IBV=100p CJO=0 VJ=1 M=0.5 TT=0 EG=1.11 XTI=3 KF=0 AF=1 FC=0.5 ISR=0 NR=2 IKF=1e30 TNOM=27 IC=0 TEMP=27
    .model DIODE_25d079d4_CORE D(IS={IS} RS={RS} N={N} BV={BV} IBV={IBV} CJO={CJO} VJ={VJ} M={M} TT={TT} EG={EG} XTI={XTI} KF={KF} AF={AF} FC={FC} ISR={ISR} NR={NR} IKF={IKF} TNOM={TNOM})
    DCORE A K DIODE_25d079d4_CORE IC={IC} TEMP={TEMP}
.ends DIODE_25d079d4
.model Resistor_1d9c8cf9a r(tc1=0 tc2=0 tnom=27)
.subckt TSIDEAL_73c021c2 1 2 3 4 params: Lprimary=100m Lsecondary=100m K=1
    L1 1 2 {Lprimary}
    L2 3 4 {Lsecondary}
    K1 L1 L2 {K}
.ENDS

**************************************************
* Simulation settings
**************************************************
.tran 20n 1e12 0 20n
.save V(VP1) V(VP2) V(VP3)
.end

Try this circuit yourself

Free to get started. No download — runs in your browser with a full SPICE engine.