HMS4290 MOSFET. Datasheet. Equivalente. Reemplazo. Hoja de especificaciones. Principales características
Número de Parte: HMS4290
Tipo de FET: MOSFET
Polaridad de transistor: N
ESPECIFICACIONES MÁXIMAS
Máxima disipación de potencia (Pd): 3.5 W
Voltaje máximo drenador - fuente |Vds|: 100 V
Voltaje máximo fuente - puerta |Vgs|: 20 V
Corriente continua de drenaje |Id|: 16 A
Temperatura máxima de unión (Tj): 150 °C
CARACTERÍSTICAS ELÉCTRICAS
Tensión umbral entre puerta y fuente |Vgs(th)|: 2.2 V
Carga de la puerta (Qg): 63.8 nC
Tiempo de subida (tr): 9.9 nS
Conductancia de drenaje-sustrato (Cd): 389 pF
Resistencia entre drenaje y fuente RDS(on): 0.0095 Ohm
Paquete / Cubierta: SOP8
Búsqueda de reemplazo de MOSFET HMS4290
HMS4290 Datasheet (PDF)
hms4290.pdf
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HMS4290N-Channel Super Trench Power MOSFET Description The HMS4290 uses Super Trench technology that is uniquely optimized to provide the most efficient high frequency switching performance. Both conduction and switching power losses are minimized due to an extremely low combination of RDS(ON) and Qg. This device is ideal for high-frequency switching and synchronous rectificatio
hms4296.pdf
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HMS4296N-Channel Super Trench Power MOSFET Description The uses Super Trench technology that is uniquely optimized to provide the most efficient high frequency switching performance. Both conduction and switching power losses are minimized due to an extremely low combination of RDS(ON) and Qg. This device is ideal for high-frequency switching and synchronous rectificatio
hms4294.pdf
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N-Channel Super Trench Power MOSFET Description The HMS4294 uses Super Trench technology that is uniquely optimized to provide the most efficient high frequency switching performance. Both conduction and switching power losses are minimized due to an extremely low combination of RDS(ON) and Qg. This device is ideal for high-frequency switching and synchronous rectificatio
hms4296b.pdf
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N-Channel Super Trench Power MOSFET Description The uses Super Trench technology that is uniquely optimized to provide the most efficient high frequency switching performance. Both conduction and switching power losses are minimized due to an extremely low combination of RDS(ON) and Qg. This device is ideal for high-frequency switching and synchronous rectificat
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