IRFR9220PBF

이미지는 참조용만

IRFR9220PBF

MOSFET P-CH 200V 3.6A DPAK

  • 제조업체
  • Mfr.부분 #IRFR9220PBF
  • 패키지
  • 데이터시트
  • 재고 있음4523

100% 원래 &새로운

배송 준비 24 시간

365 일 보장

RFQ 및더 많은 할인

사양

Supplier Vishay Siliconix
Package Tube
ProductStatus Active
FETType P-Channel
Technology MOSFET (Metal Oxide)
DraintoSourceVoltage(Vdss) 200 V
Current-ContinuousDrain(Id)@25°C 3.6A (Tc)
DriveVoltage(MaxRdsOnMinRdsOn) 10V
RdsOn(Max)@IdVgs 1.5Ohm @ 2.2A, 10V
Vgs(th)(Max)@Id 4V @ 250µA
GateCharge(Qg)(Max)@Vgs 20 nC @ 10 V
Vgs(Max) ±20V
InputCapacitance(Ciss)(Max)@Vds 340 pF @ 25 V
PowerDissipation(Max) 2.5W (Ta), 42W (Tc)
OperatingTemperature -55°C ~ 150°C (TJ)
MountingType Surface Mount
SupplierDevicePackage D-Pak

개요

Description

IRFR9220PBF is a Pb-free N-channel power MOSFET from International Rectifier (now Infineon). It’s an enhancement-mode device used for switching in power electronics.
Key points:
- Purpose: high-side/low-side switching in DC-DC converters, motor drivers, power supplies, LED drivers, etc.
- Features: capable Vds and Id for power switching, low on-resistance for efficiency, fast switching, and rugged electrical characteristics (avalanche protection in many designs).
- Packaging: PBF suffix indicates Pb-free packaging; available in common surface-mount power MOSFET packages (e.g., DPAK/D2PAK variants) depending on supplier.
- Design note: Gate drive must respect the device’s Vgs rating; use appropriate gate voltage for full conduction and manage thermal performance with proper heatsinking.
For exact electrical specs (Vds, Id, Rds(on), Qg, thermal resistance, and package type), refer to the latest datasheet from Infineon/IR or your distributor.

Features

IRFR9220PBF is an N-channel enhancement-mode power MOSFET in Pb-free packaging. Key features:
- High current capability
- Low on-resistance for reduced conduction losses
- Fast switching with low gate charge
- Logic-level drive compatibility
- Avalanche rugged for inductive-load protection
- Good dv/dt and di/dt tolerance
- RoHS-compliant (Pb-free)
Suitable for switch-mode power supplies, DC-DC converters, motor drives, and other high-speed switching applications.

Package

Pb-free, surface-mount N-channel MOSFET in a D2PAK (TO-263) package.

Pinout

IRFR9220PBF is a 3-pin power MOSFET. Pin count: 3 (Gate, Drain, Source). In typical packages the tab is connected to Drain. Function: Gate controls the channel between Drain and Source; used as a switching/linear device in power circuits.

Manufacturer

- Manufacturer: International Rectifier (IR), now part of Infineon Technologies.
- What kind of company: A global semiconductor company specializing in power electronics and power management devices (MOSFETs, IGBTs, etc.).

Application

IRFR9220PBF is an N-channel enhancement MOSFET designed for high-current, low-Rds(on) switching. Common application areas:
- Switching power supplies and DC-DC converters (buck/boost stages)
- Motor drive and fast-switching in DC/BLDC applications
- Automotive and industrial power switches (load switches, inverters)
- Power-management circuits requiring a fast, efficient N-MOSFET
- General-purpose high-current switching in consumer electronics

Equivalent

Exact equivalents depend on Vds, Id, Rds(on) and package. Please share the IRFR9220PBF datasheet or key specs (e.g., Vds, Id, Rds(on), package). I’ll provide precise cross-references from Infineon, ST, Vishay, On Semi, etc. Without specs, I can only suggest generic 60V N-channel MOSFETs in similar packages, which may not be direct substitutes.

배송

배송 방법We

DHL, FedEx, TNT, UPS 또는 선택한 다른 운송업체를 통해 글로벌 배송 서비스를 제공합니다.


배송 요금 참조 (DHL/FedEx):

DHL은: 배송 비용은 $25-$45 (0.5kg)에서 2-5 영업일의 추정적 배달 시간이 있습니다.

FedEx는: 배송 비용은 $25-$40 (0.5kg)에서 3-7 영업일의 추정적 배달 시간을 가지고 있습니다.

UPS는: 배송 비용은 $25-$45 (0.5kg)에서 3-7 영업일의 추정적 배달 시간을 가지고 있습니다.

TNT는: 배송 비용은 $25-$65 (0.5kg)에서 3-7 영업일의 추정적 배달 시간을 가지고 있습니다.

EMS는: 배송 비용은 $30-$50 (0.5kg)에서 7-15 영업일의 추정적 배달 시간을 제공합니다.

등록된 항공우편: 배송 비용은 $2-$4 (0.1kg), 예상 배달 시간 5-20 영업일.

지불

Payment Methods

지불 기간은 100% 사전 지불입니다.

현재, 우리는 아래 지불 방법만 받아들입니다.:

1. PayPal

2. 신용/직불 카드

3. 전선 전송