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FDPF18N50T MOSFET - описание производителя. Даташиты. Основные параметры и характеристики. Поиск аналога. Справочник


   Наименование прибора: FDPF18N50T
   Тип транзистора: MOSFET
   Полярность: N
   Pdⓘ - Максимальная рассеиваемая мощность: 38.5 W
   |Vds|ⓘ - Предельно допустимое напряжение сток-исток: 500 V
   |Vgs|ⓘ - Предельно допустимое напряжение затвор-исток: 30 V
   |Vgs(th)|ⓘ - Пороговое напряжение включения: 5 V
   |Id|ⓘ - Максимально допустимый постоянный ток стока: 8 A
   Tjⓘ - Максимальная температура канала: 150 °C
   Qgⓘ - Общий заряд затвора: 45 nC
   Rdsⓘ - Сопротивление сток-исток открытого транзистора: 0.265 Ohm
   Тип корпуса: TO220F

 Аналог (замена) для FDPF18N50T

 

 

FDPF18N50T Datasheet (PDF)

 ..1. Size:870K  fairchild semi
fdp18n50 fdpf18n50 fdpf18n50t.pdf

FDPF18N50T FDPF18N50T

November 2013FDP18N50 / FDPF18N50 / FDPF18N50TN-Channel UniFETTM MOSFET500 V, 18 A, 265 mFeatures Description RDS(on) = 220 m (Typ.) @ VGS = 10 V, ID = 9 A UniFETTM MOSFET is Fairchild Semiconductors high voltageMOSFET family based on planar stripe and DMOS technology. Low Gate Charge (Typ. 45 nC)This MOSFET is tailored to reduce on-state resistance, and to Low

 ..2. Size:1572K  onsemi
fdp18n50 fdpf18n50 fdpf18n50t.pdf

FDPF18N50T FDPF18N50T

FDP18N50 / FDPF18N50 / FDPF18N50TN-Channel UniFETTM MOSFET500 V, 18 A, 265 mFeatures RDS(on) = 220 m (Typ.) @ VGS = 10 V, ID = 9 ADescription Low Gate Charge (Typ. 45 nC)UniFETTM MOSFET is ON Semiconductors high voltage MOSFET family based on planar stripe and DMOS technology. Low Crss (Typ. 25 pF)This MOSFET is tailored to reduce on-state resistance, and to

 5.1. Size:466K  fairchild semi
fdp18n50 fdpf18n50.pdf

FDPF18N50T FDPF18N50T

April 2007TMUniFETFDP18N50 / FDPF18N50500V N-Channel MOSFETFeatures Description 18A, 500V, RDS(on) = 0.265 @VGS = 10 V These N-Channel enhancement mode power field effect transistors are produced using Fairchilds proprietary, planar Low gate charge ( typical 45 nC)stripe, DMOS technology. Low Crss ( typical 25 pF)This advanced technology has been especially

 5.2. Size:1033K  onsemi
fdp18n50 fdpf18n50.pdf

FDPF18N50T FDPF18N50T

October 2006TMUniFETFDP18N50 / FDPF18N50500V N-Channel MOSFETFeatures Description 18A, 500V, RDS(on) = 0.265 @VGS = 10 V These N-Channel enhancement mode power field effecttransistors are produced using Fairchilds proprietary, planar Low gate charge ( typical 45 nC)stripe, DMOS technology. Low Crss ( typical 25 pF)This advanced technology has been especially

 7.1. Size:601K  fairchild semi
fdpf18n20ft g.pdf

FDPF18N50T FDPF18N50T

April 2013FDPF18N20FT_G N-Channel UniFETTM FRFET MOSFET 200 V, 18 A, 140 m Features DescriptionUniFETTM MOSFET is Fairchild Semiconductors high voltage RDS(on) = 129 m (Typ.) @ VGS = 10 V, ID = 9 AMOSFET family based on planar stripe and DMOS technology. This Low Gate Charge (Typ. 20 nC)MOSFET is tailored to reduce on-state resistance, and to provide bette

 7.2. Size:658K  fairchild semi
fdpf18n20f.pdf

FDPF18N50T FDPF18N50T

September 2009UniFETTMFDP18N20F / FDPF18N20FTtmN-Channel MOSFET200V, 18A, 0.14Features Description RDS(on) = 0.12 ( Typ.)@ VGS = 10V, ID = 9A These N-Channel enhancement mode power field effecttransistors are produced using Fairchilds proprietary, planar Low gate charge ( Typ. 20nC)stripe, DMOS technology. Low Crss ( Typ. 24pF)This advanced technology h

 7.3. Size:685K  fairchild semi
fdp18n20f fdpf18n20f.pdf

FDPF18N50T FDPF18N50T

September 2009UniFETTMFDP18N20F / FDPF18N20FTtmN-Channel MOSFET200V, 18A, 0.14Features Description RDS(on) = 0.12 ( Typ.)@ VGS = 10V, ID = 9A These N-Channel enhancement mode power field effecttransistors are produced using Fairchilds proprietary, planar Low gate charge ( Typ. 20nC)stripe, DMOS technology. Low Crss ( Typ. 24pF)This advanced technology h

 7.4. Size:938K  onsemi
fdp18n20f fdpf18n20ft.pdf

FDPF18N50T FDPF18N50T

Is Now Part ofTo learn more about ON Semiconductor, please visit our website at www.onsemi.comPlease note: As part of the Fairchild Semiconductor integration, some of the Fairchild orderable part numbers will need to change in order to meet ON Semiconductors system requirements. Since the ON Semiconductor product management systems do not have the ability to manage part nomenclatur

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