MHQ0402PSA2N5ST000

TDK
810-MHQ0402PSA2N5ST0
MHQ0402PSA2N5ST000

Produc.:

Opis:
RF Inductors - SMD 01005, 2.5nH +-0.3nH S-HQ SMD RF IND

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

Dostępność

Stany magazynowe:
Niedostępne na stanie
Średni czas produkcji:
12 tygodni Oczekiwany czas produkcji w fabryce.
Minimum: 1   Wielokrotności: 1
Cena jednostkowa:
-,-- zł
wewn. Cena:
-,-- zł
Szac. taryfa:

Cennik (PLN)

Il. Cena jednostkowa
wewn. Cena
0,443 zł 0,44 zł
0,151 zł 1,51 zł
0,142 zł 3,55 zł
0,112 zł 11,20 zł
0,103 zł 25,75 zł
0,09 zł 90,00 zł
0,077 zł 192,50 zł
0,06 zł 300,00 zł
Komplet Opakowanie zbiorcze (zamówienie w wielokrotności 20000)
0,06 zł 1 200,00 zł

Podobne produkty

Atrybuty produktu Wartość atrybutu Wybierz atrybut
TDK
Kategoria produktów: Cewki indukcyjne RF – SMD
RoHS:  
Multilayer
2.5 nH
0.3 nH
300 mA
400 mOhms
- 55 C
+ 125 C
10.92 GHz
Standard
0.4 mm
0.2 mm
0.22 mm
MHQ-PSA
Reel
Cut Tape
Marka: TDK
Kraj montażu: Not Available
Kraj wytworzenia: Not Available
Kraj pochodzenia: JP
Styl mocowania: PCB Mount
Produkt: RF Inductors
Rodzaj produktu: RF Inductors - Leaded
Wielkość opakowania producenta: 20000
Podkategoria: Inductors, Chokes & Coils
Styl styku: SMD/SMT
Nazwy umowne nr części: MHQ0402PSA2N5ST000 -
Znalezione produkty:
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Wybrane atrybuty: 0

CNHTS:
8504500000
CAHTS:
8504500000
USHTS:
8504508000
JPHTS:
8504500001
KRHTS:
8504502090
MXHTS:
8504509102
BRHTS:
85045000
ECCN:
EAR99

MHQ-P High-Frequency Circuit Ceramic Inductors

TDK MHQ-P High-Frequency Circuit Ceramic Inductors use unique ceramic material and configuration to realize high Q characteristics equivalent to that of air core wound inductors. The multilayer method allows for a lineup with fine increments of inductance. The TDK MHQ-P High-Frequency Circuit Ceramic Inductors are used in general electronic equipment, including AV equipment, telecommunications equipment, home appliances, amusement equipment, computer equipment, personal equipment, office equipment, measurement equipment, and industrial robots.

Automotive Inductors

TDK Automotive Inductors are designed for a wide range of applications. These automotive applications include tire pressure monitoring systems, BLUETOOTH® connectivity systems, car navigation, power steering, in-vehicle electronic control units, advanced driver assistance systems, and more. AEC-Q200-qualified inductors are available.

High-Frequency Inductors

TDK High-Frequency Inductors use unique ceramic material and configuration to realize high Q characteristics that are equivalent to that of air core wound inductors. The multilayer method allows for a lineup with fine increments of inductance. These characteristics make TDK High-Frequency Inductors ideal for impedance matching circuits and mobile communication applications as well as the removal of noise in high frequency situations.

Inductors

TDK Inductors are manufactured using state-of-the-art multilayer processing technologies, wire-winding technology, or thin-film technologies. TDK's unique multilayer processing technology provides higher inductance and Q characteristics as well as further miniaturization. The portfolio includes a wide spectrum of filters, SMT inductors, power inductors, transponder coils, and line reactors. These components are designed for use in high frequency, signal, and power circuits. TDK Inductors are ideal for a range of applications, including mobile devices, consumer electronics, solar power inverters, power supplies, onboard chargers, and automobile systems. AEC-Q200-qualified inductors are available.

MHQ0402PSA Multilayer Ceramic Inductors

TDK MHQ0402PSA Multilayer Ceramic Inductors come in a reduced package size at IEC 0402 and measure just 0.4 x 0.2 x 0.2mm. These inductors feature a Q factor of 21 at 1GHz and are suitable for RF applications in smartphones, tablets, and other mobile devices. The unique ceramic material and configuration of the MHQ0402PSA inductors allow for the realization of high Q characteristics, and the multilayer method allows for a lineup with fine increments of inductance. Typical applications include smartphones, tablets terminals, high-frequency modules, and more.