onsemi QFET Type N-Channel MOSFET, 8 A, 900 V Enhancement, 3-Pin TO-220 FQP9N90C

Sous-total (1 paquet de 5 unités)*

23,30 €

(TVA exclue)

28,20 €

(TVA incluse)

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  • Expédition à partir du 13 mars 2026
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Unité
Prix par unité
le paquet*
5 +4,66 €23,30 €

*Prix donné à titre indicatif

Options de conditionnement :
N° de stock RS:
671-5206
Référence fabricant:
FQP9N90C
Fabricant:
onsemi
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Marque

onsemi

Product Type

MOSFET

Channel Type

Type N

Maximum Continuous Drain Current Id

8A

Maximum Drain Source Voltage Vds

900V

Package Type

TO-220

Series

QFET

Mount Type

Through Hole

Pin Count

3

Maximum Drain Source Resistance Rds

1.4Ω

Channel Mode

Enhancement

Forward Voltage Vf

1.4V

Maximum Gate Source Voltage Vgs

30 V

Typical Gate Charge Qg @ Vgs

45nC

Minimum Operating Temperature

-55°C

Maximum Power Dissipation Pd

205W

Maximum Operating Temperature

150°C

Length

10.1mm

Height

9.4mm

Width

4.7 mm

Standards/Approvals

No

Automotive Standard

No

QFET® N-Channel MOSFET, 6A to 10.9A, Fairchild Semiconductor


Fairchild Semiconductor’s new QFET® Planar MOSFETs use advanced, proprietary technology to offer best-in-class operating performance for a wide range of applications, including power supplies, PFC (Power Factor Correction), DC-DC Converters, Plasma Display Panels (PDP), lighting ballasts, and motion control.

They offer reduced on-state loss by lowering on-resistance (RDS(on)), and reduced switching loss by lowering gate charge (Qg) and output capacitance (Coss). By using Advanced QFET® process technology, Fairchild can offer an improved figure of merit (FOM) over competing Planar MOSFET devices.

MOSFET Transistors, ON Semi


ON Semi offers a substantial portfolio of MOSFET devices that includes high-voltage (>250V) and low-voltage (<250V) types. The Advanced silicon technology provides smaller die sizes, which it is incorporated into multiple industry-standard and thermally-enhanced packages.

ON Semi MOSFETs provide superior design reliability from reduced voltage spikes and overshoot, to lower junction capacitance and reverse recovery charge, to elimination of additional external components to keep systems up and running longer.

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