NVH4L015N065SC1

onsemi
863-NVH4L015N065SC1
NVH4L015N065SC1

Fabricante:

Descripción:
MOSFETs de SiC Silicon Carbide (SiC) MOSFET, N-Channel - EliteSiC, 12 mohm, 650V, M2, TO247-4L

Modelo ECAD:
Descargue Library Loader gratis para convertir este archivo para su herramienta ECAD. Conozca más sobre el modelo ECAD.

En existencias: 384

Existencias:
384 Se puede enviar inmediatamente
Plazo de entrega de fábrica:
8 Semanas Tiempo estimado de producción de fábrica para cantidades superiores a las que se muestran.
Mínimo: 1   Múltiples: 1
Precio unitario:
S/-.--
Precio ext.:
S/-.--
Est. Tarifa:

Precio (PEN)

Cantidad Precio unitario
Precio ext.
S/122.73 S/122.73
S/109.61 S/1,096.10

Atributo del producto Valor de atributo Seleccionar atributo
onsemi
Categoría de producto: MOSFETs de SiC
RoHS:  
TO-247-4
EliteSiC
Marca: onsemi
Empaquetado: Tube
Tipo de producto: SiC MOSFETS
Serie: NVH4L015N065SC1
Cantidad de empaque de fábrica: 30
Subcategoría: Transistors
Tecnología: SiC
Productos encontrados:
Para mostrar productos similares, seleccione al menos una casilla de verificación
Seleccione al menos una de las casillas de verificación anteriores para mostrar productos similares en esta categoría.
Atributos seleccionados: 0

CNHTS:
8541290000
CAHTS:
8541290000
USHTS:
8541290065
JPHTS:
854129000
TARIC:
8541290000
MXHTS:
8541299900
ECCN:
EAR99

M2 EliteSiC MOSFETs

onsemi M2 EliteSiC MOSFETs feature voltage options of 650V, 750V, and 1200V. The onsemi M2 MOSFETs come in various packages, including D2PAK7, H-PSOF8L, TDFN4 8x8, TO-247-3LD, and TO-247-4LD. The MOSFETs provide flexibility in design and implementation. Additionally, the M2 EliteSiC MOSFETs boast a maximum gate-to-source voltage of +22V/-8V, low RDS(on), and high short circuit withstand time (SCWT).

650V Silicon Carbide (SiC) MOSFETs

onsemi 650V Silicon Carbide (SiC) MOSFETs provide superior switching performance and higher reliability compared to Silicon (Si). These 650V SiC MOSFETs have low ON resistance and a compact chip size to ensure low capacitance and gate charge. Benefits include high efficiency, fast operation frequency, increased power density, reduced EMI, and reduced system size.

Pairing Gate Drivers with EliteSiC MOSFETs

Energy Infrastructure applications like EV charging, energy storage, Uninterruptible Power Systems (UPS), and solar are pushing system power levels to hundreds of kilowatts and even megawatts. These high-power applications employ half bridge, full bridge, and 3-phase topologies duty cycling up to six switches for inverters and BLDC. Depending on the power level and switching speeds, system designers look to various switch technologies, including silicon, IGBTs, and SiC, to best fit application requirements.

NVH4L015N065SC1 Silicon Carbide (SiC) MOSFETs

onsemi NVH4L015N065SC1 Silicon Carbide (SiC) MOSFETs provide superior switching performance and higher reliability than Silicon. The onsemi NVH4L015N065SC1 features low ON resistance, and the compact chip size ensures low capacitance and gate charge. System benefits include high efficiency, fast operation frequency, increased power density, reduced EMI, and reduced system size.