NTHL060N065SC1

onsemi
863-NTHL060N065SC1
NTHL060N065SC1

Produc.:

Opis:
SiC MOSFETs Silicon Carbide (SiC) MOSFET - EliteSiC, 44 mohm, 650 V, M2, TO-247-3L

Model ECAD:
Pobierz bezpłatną aplikację Library Loader, aby skonwertować ten plik do narzędzia ECAD Tool. Dowiedz się więcej o modelu ECAD.

Na stanie magazynowym: 569

Stany magazynowe:
569 Wysylamy natychmiast
Średni czas produkcji:
17 tygodni Oczekiwany czas produkcji w fabryce dotyczący ilości większych niż pokazane.
Minimum: 1   Wielokrotności: 1
Cena jednostkowa:
-,-- zł
wewn. Cena:
-,-- zł
Szac. taryfa:

Cennik (PLN)

Il. Cena jednostkowa
wewn. Cena
34,92 zł 34,92 zł
23,65 zł 236,50 zł
21,07 zł 2 107,00 zł

Atrybuty produktu Wartość atrybutu Wybierz atrybut
onsemi
Kategoria produktów: Moduły MOSFET SIC
RoHS:  
REACH - SVHC:
Through Hole
TO-247-3
N-Channel
1 Channel
650 V
47 A
70 mOhms
- 8 V, + 22 V
4.3 V
74 nC
- 55 C
+ 175 C
176 W
Enhancement
EliteSiC
Marka: onsemi
Konfiguracja: Single
Czas zanikania: 8 ns
Transkonduktancja przewodzenia – min.: 12 S
Opakowanie: Tube
Rodzaj produktu: SiC MOSFETS
Czas narastania: 32 ns
Seria: NTHL060N065SC1
Wielkość opakowania producenta: 450
Podkategoria: Transistors
Technologia: SiC
Typowy czas opóźnienia wyłączenia: 23 ns
Typowy czas opóźnienia włączenia: 12 ns
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Wybrane atrybuty: 0

TARIC:
8541290000
CNHTS:
8541290000
CAHTS:
8541290000
USHTS:
8541290065
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.

NTHL060N065SC1 Silicon Carbide (SiC) MOSFET

onsemi NTHL060N065SC1 Silicon Carbide (SiC) MOSFET provides superior switching performance and higher reliability. The MOSFET has low ON resistance and its compact chip size ensures low capacitance and gate charge. Consequently, system benefits include the highest efficiency, faster 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.

Heat Pumps

The heat pump stands as a cornerstone of the global shift towards secure and sustainable heating, harnessing low-emissions electricity to provide reliable warmth. While its primary function is heating, innovative reverse cycle models also offer cooling capabilities. Moreover, by efficiently recovering waste heat and elevating its temperature to practical levels, heat pumps hold immense potential for energy conservation. As businesses pivot towards a low-carbon future, there's a growing demand for more efficient power semiconductors. Balancing cost, footprint, and efficiency is paramount in this pursuit. onsemi Intelligent Power Modules (IPMs) emerge as a noteworthy solution within the heat pump market, offering compact design, high power density, and advanced control features.