PDC3907Z MOSFET. Datasheet. Equivalente. Reemplazo. Hoja de especificaciones. Principales características
Número de Parte: PDC3907Z
Tipo de FET: MOSFET
Polaridad de transistor: P
ESPECIFICACIONES MÁXIMAS
Pdⓘ - Máxima disipación de potencia: 27 W|Vds|ⓘ - Voltaje máximo drenador - fuente: 30 V
|Vgs|ⓘ - Voltaje máximo fuente - puerta: 20 V
|Id|ⓘ - Corriente continua de drenaje: 30 A
Tjⓘ - Temperatura máxima de unión: 150 °C
CARACTERÍSTICAS ELÉCTRICAS
trⓘ - Tiempo de subida: 18.8 nS
Cossⓘ - Capacitancia de salida: 160 pF
Rds(on)ⓘ - Resistencia estado encendido drenaje a fuente: 0.018 Ohm
Paquete / Cubierta: PPAK3X3
Búsqueda de reemplazo de MOSFET PDC3907Z
PDC3907Z Datasheet (PDF)
pdc3907z.pdf
30V P-Channel MOSFETs PDC3907Z General Description BVDSS RDSON ID These P-Channel enhancement mode power field effect transistors are using trench DMOS technology. This -30V 18m -30A advanced technology has been especially tailored to Features minimize on-state resistance, provide superior switching -30V,-30A, RDS(ON) =18m@VGS = -10V performance, and withstand high
pdc3908x.pdf
30V N-Channel MOSFETs PDC3908X General Description BVDSS RDSON ID These N-Channel enhancement mode power field effect transistors are using trench DMOS technology. This 30V 8.5m 60A advanced technology has been especially tailored to Features minimize on-state resistance, provide superior switching 30V,60A, RDS(ON) =8.5m@VGS = 10V performance, and withstand high ene
pdc3904z.pdf
30V N-Channel MOSFETs PDC3904Z General Description BVDSS RDSON ID These N-Channel enhancement mode power field effect transistors are using trench DMOS technology. This 30V 3.8m 80A advanced technology has been especially tailored to minimize on-state resistance, provide superior switching Features 30V,80A, RDS(ON) =3.8m@VGS = 10V performance, and withstand high energ
pdc3903z.pdf
30V P-Channel MOSFETs PDC3903Z General Description BVDSS RDSON ID These P-Channel enhancement mode power field effect transistors are using trench DMOS technology. This -30V 8.5m -50A advanced technology has been especially tailored to Features minimize on-state resistance, provide superior switching -30V,-50A, RDS(ON) =8.5m@VGS = -10V performance, and withstand hig
pdc3906z.pdf
30V N-Channel MOSFETs PDC3906Z General Description BVDSS RDSON ID These N-Channel enhancement mode power field effect transistors are using trench DMOS technology. This 30V 6m 60A advanced technology has been especially tailored to Features minimize on-state resistance, provide superior switching 30V,60A, RDS(ON) =6m@VGS = 10V performance, and withstand high energy
pdc3905z.pdf
30V P-Channel MOSFETs PDC3905Z General Description BVDSS RDSON ID These P-Channel enhancement mode power field effect transistors are using trench DMOS technology. This -30V 15m -30A advanced technology has been especially tailored to Features minimize on-state resistance, provide superior switching -30V,-30A, RDS(ON) =18m@VGS = -10V performance, and withstand high
pdc3902x.pdf
30V N-Channel MOSFETs PDC3902X General Description BVDSS RDSON ID These N-Channel enhancement mode power field effect transistors are using trench DMOS technology. This 30V 1.6m 130A advanced technology has been especially tailored to Features minimize on-state resistance, provide superior switching 30V, 130A, RDS(ON) =1.6m@VGS = 10V performance, and withstand high
pdc3908z.pdf
30V N-Channel MOSFETs PDC3908Z General Description BVDSS RDSON ID These N-Channel enhancement mode power field effect transistors are using trench DMOS technology. This 30V 8.5m 48A advanced technology has been especially tailored to Features minimize on-state resistance, provide superior switching 30V,48A, RDS(ON) =8.5m@VGS = 10V performance, and withstand high ene
pdc3903x.pdf
30V P-Channel MOSFETs PDC3903X General Description BVDSS RDSON ID These P-Channel enhancement mode power field effect transistors are using trench DMOS technology. This -30V 8.5m -60A advanced technology has been especially tailored to Features minimize on-state resistance, provide superior switching -30V,-60A, RDS(ON) =8.5m@VGS = -10V performance, and withstand hig
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