HMS60N04EQ Todos los transistores

 

HMS60N04EQ MOSFET. Datasheet. Equivalente. Reemplazo. Hoja de especificaciones. Principales características


   Número de Parte: HMS60N04EQ
   Tipo de FET: MOSFET
   Polaridad de transistor: N

ESPECIFICACIONES MÁXIMAS

   Pdⓘ - Máxima disipación de potencia: 48 W
   |Vds|ⓘ - Voltaje máximo drenador - fuente: 40 V
   |Vgs|ⓘ - Voltaje máximo fuente - puerta: 20 V
   |Id|ⓘ - Corriente continua de drenaje: 60 A
   Tjⓘ - Temperatura máxima de unión: 150 °C

CARACTERÍSTICAS ELÉCTRICAS

   |Vgs(th)|ⓘ - Tensión umbral entre puerta y fuente: 2.2 V
   Qgⓘ - Carga de la puerta: 34.3 nC
   trⓘ - Tiempo de subida: 4 nS
   Cossⓘ - Capacitancia de salida: 639 pF
   Rds(on)ⓘ - Resistencia estado encendido drenaje a fuente: 0.0045 Ohm
   Paquete / Cubierta: DFN3.3X3.3-8L

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HMS60N04EQ Datasheet (PDF)

 ..1. Size:590K  cn hmsemi
hms60n04eq.pdf

HMS60N04EQ
HMS60N04EQ

HMS60N04EQ N-Channel Super Trench Power MOSFET Description The HMS60N04EQ 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 recti

 7.1. Size:832K  cn hmsemi
hms60n06d.pdf

HMS60N04EQ
HMS60N04EQ

HMS60N06D N-Channel Super Trench Power MOSFET Description The HMS60N06D 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 R and Q . This device is ideal for DS(ON) ghigh-frequency switching and synchronous re

 8.1. Size:550K  cn hmsemi
hms60n10d.pdf

HMS60N04EQ
HMS60N04EQ

HMS60N10DN-Channel Super Trench Power MOSFET Primary Version Description The HMS60N10D 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 an

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