MEE4294K2-G MOSFET. Datasheet. Equivalente. Reemplazo. Hoja de especificaciones. Principales características
Número de Parte: MEE4294K2-G
Tipo de FET: MOSFET
Polaridad de transistor: N
ESPECIFICACIONES MÁXIMAS
Pdⓘ - Máxima disipación de potencia: 48 W|Vds|ⓘ - Voltaje máximo drenador - fuente: 100 V
|Vgs|ⓘ - Voltaje máximo fuente - puerta: 20 V
|Id|ⓘ - Corriente continua de drenaje: 47 A
Tjⓘ - Temperatura máxima de unión: 150 °C
CARACTERÍSTICAS ELÉCTRICAS
trⓘ - Tiempo de subida: 69.5 nS
Cossⓘ - Capacitancia de salida: 868 pF
Rds(on)ⓘ - Resistencia estado encendido drenaje a fuente: 0.0105 Ohm
Paquete / Cubierta: TO252
Búsqueda de reemplazo de MOSFET MEE4294K2-G
MEE4294K2-G Datasheet (PDF)
mee4294k2 mee4294k2-g.pdf
MEE4294K2/MEE4294K2-G N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES The MEE4294K2-G is a N-Channel enhancement mode power field effect RDS(ON)10.5m@VGS=10Vtransistor, using Force-MOS patented Extended Trench Gate (ETG) RDS(ON)16.5m@VGS=4.5Vtechnology. This advanced technology is especially tailored to minimize Super high density cell design for extreme
mee4294k mee4294k-g.pdf
MEE4294K/MEE4294K-G N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES The MEE4294K-G is a N-Channel enhancement mode power field effect RDS(ON)10.5m@VGS=10Vtransistor, using Force-MOS patented Extended Trench Gate (ETG) RDS(ON)16.5m@VGS=4.5Vtechnology. This advanced technology is especially tailored to minimize Super high density cell design for extremely
mee4294-g.pdf
MEE4294-G N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES The MEE4294-G is a N-Channel enhancement mode power field effect RDS(ON)10.5m@VGS=10Vtransistor, using Force-MOS patented Extended Trench Gate (ETG) RDS(ON)16.5m@VGS=4.5Vtechnology. This advanced technology is especially tailored to minimize Super high density cell design for extremely low RDS(ON)
mee4294t2.pdf
MEE4294T2 N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES The MEE4294T2 is a N-Channel enhancement mode power field effect RDS(ON)11.5m@VGS=10Vtransistor, using Force-MOS patented Extended Trench Gate (ETG) RDS(ON)16.5m@VGS=4.5Vtechnology. This advanced technology is especially tailored to minimize Super high density cell design for extremely low RDS(ON)
mee4294p-g.pdf
MEE4294P-G N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES The MEE4294P-G is a N-Channel enhancement mode power field effect RDS(ON)10.5m@VGS=10Vtransistor, using Force-MOS patented Extended Trench Gate (ETG) RDS(ON)16.5m@VGS=4.5Vtechnology. This advanced technology is especially tailored to minimize Super high density cell design for extremely low RDS(O
mee4294ht.pdf
MEE4294HT N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES The MEE4294HT is a N-Channel enhancement mode power field effect RDS(ON)12m@VGS=10Vtransistor, using Force-MOS patented Extended Trench Gate (ETG) Super high density cell design for extremely low RDS(ON)technology. This advanced technology is especially tailored to minimize Exceptional on-resistance and
mee42942-g.pdf
MEE42942-G N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES The MEE42942-G is a N-Channel enhancement mode power field effect RDS(ON)10.5m@VGS=10Vtransistor, using Force-MOS patented Extended Trench Gate (ETG) RDS(ON)16.5m@VGS=4.5Vtechnology. This advanced technology is especially tailored to minimize Super high density cell design for extremely low RDS(O
mee4294p2-g.pdf
MEE4294P2-G N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES The MEE4294P2-G is a N-Channel enhancement mode power field effect RDS(ON)10.5m@VGS=10Vtransistor, using Force-MOS patented Extended Trench Gate (ETG) RDS(ON)16.5m@VGS=4.5Vtechnology. This advanced technology is especially tailored to minimize Super high density cell design for extremely low RDS
mee4294hp-g.pdf
MEE4294HP-G N-Channel 100V(D-S) MOSFETGENERAL DESCRIPTION FEATURES RDS(ON)10m@VGS=10VThe MEE4294HP-G is a N-Channel enhancement mode power field Super high density cell design for extremely low RDS(ON)effect transistor, using Force-MOS patented Extended Trench Gate Exceptional on-resistance and maximum DC current(ETG) technology. This advanced technology is esp
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