NCP51561DADWR2G

onsemi
863-NCP51561DADWR2G
NCP51561DADWR2G

Produc.:

Opis:
Galvanically Isolated Gate Drivers 5 kVrms Isolated Dual Channel 4.5/9 A Gate Driver

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

Na stanie magazynowym: 589

Stany magazynowe:
589 Wysylamy natychmiast
Średni czas produkcji:
24 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
13,59 zł 13,59 zł
10,23 zł 102,30 zł
9,37 zł 234,25 zł
8,51 zł 851,00 zł
8,30 zł 2 075,00 zł
7,35 zł 3 675,00 zł
Komplet Opakowanie zbiorcze (zamówienie w wielokrotności 1000)
7,22 zł 7 220,00 zł
7,01 zł 14 020,00 zł

Atrybuty produktu Wartość atrybutu Wybierz atrybut
onsemi
Kategoria produktów: Galwanicznie izolowane sterowniki bramek
RoHS:  
NCP51561
SMD/SMT
SOIC-16
2 Channel
5 kVrms
- 40 C
+ 125 C
58 ns
11 ns
10 ns
Reel
Cut Tape
Marka: onsemi
Konfiguracja: Dual
Napięcie wejściowe – maks.: 5 V
Napięcie wejściowe – min.: 3 V
Maksymalny czas opóźnienia wyłączenia: 58 ns
Maksymalny czas opóźnienia włączenia: 58 ns
Liczba sterowników: 2 Driver
Liczba wyjść: 2 Output
Prąd wyjścia: 4.5 A, 9 A
Napięcie wyjścia: 18.5 V to 30 V
Produkt: Gate Driver
Rodzaj produktu: Galvanically Isolated Gate Drivers
Wielkość opakowania producenta: 1000
Podkategoria: PMIC - Power Management ICs
Napięcie zasilania – max.: 5 V
Napięcie zasilania – min.: 3 V
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Wybrane atrybuty: 0

CNHTS:
8542399000
CAHTS:
8542310000
USHTS:
8542310030
ECCN:
EAR99

NCP51561 5kVRMS Isolated Dual-Channel Gate Drivers

onsemi NCP51561 5kVRMS Isolated Dual-Channel Gate Drivers are designed for fast switching to drive power MOSFETs and SiC MOSFET power switches. The 4.5A/9.0A NCP51561 Gate Drivers offer short and matched propagation delays. Two independent and 5kVRMS (UL1577 rating) galvanically isolated gate driver channels can be used in any possible configurations of two low-side, two high-side switches, or a half-bridge driver with programmable dead time. An enable pin shutdown both outputs simultaneously when it is set low. The NCP51561 Gate Drivers integrate other important protection functions such as independent under-voltage lockout for gate drivers and enable functions.

Industrial Motor Drives

onsemi Industrial Motor Drives are designed for global sustainability, supplying efficient, renewable technologies and intelligent power. According to the 2020 Motor System Market Analysis (MSMA), published by the US Department of Energy (DOE), industrial pumps and drives annually consume almost 15% of the total US grid. The 2020 MSMA also estimates that 32.3 million metric tons of CO2 emissions can be saved annually using VFDs. onsemi manufactures a broad range of VFD semiconductor components, including gate drivers, MOSFETs, IGBTs, and EliteSiC.

Cloud Power Management Solutions

onsemi Cloud Power Management Solutions offers computing and connectivity essential for infrastructure. onsemi Cloud Power Management Solutions' power is critical for processors, memory banks, and wireless base stations. As operations shift to the Cloud, the importance of efficiency and reliability grows. AI servers, in particular, require a reliable power source to ensure optimal performance and efficiency, making solutions crucial for maintaining the integrity and functionality of AI-driven operations. onsemi provides diverse solutions for AC-DC conversion, multiphase conversion, point-of-load supplies, and hot-swap protection to support various power needs in cloud infrastructure. Cutting-edge technology, dependable performance, and deep application expertise make onsemi an ideal partner for powering data in today’s environment, whether in base stations, servers, or data centers.

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.