Справочник MOSFET. FQAF13N80

 

FQAF13N80 MOSFET - описание производителя. Даташиты. Основные параметры и характеристики. Поиск аналога. Справочник


   Наименование прибора: FQAF13N80
   Тип транзистора: MOSFET
   Полярность: N
   Pdⓘ - Максимальная рассеиваемая мощность: 120 W
   |Vds|ⓘ - Предельно допустимое напряжение сток-исток: 800 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: 68 nC
   Rdsⓘ - Сопротивление сток-исток открытого транзистора: 0.75 Ohm
   Тип корпуса: TO247 TO3P TO3PF

 Аналог (замена) для FQAF13N80

 

 

FQAF13N80 Datasheet (PDF)

 ..1. Size:716K  fairchild semi
fqaf13n80.pdf

FQAF13N80
FQAF13N80

March 2001TMQFETFQAF13N80800V N-Channel MOSFETGeneral Description FeaturesThese N-Channel enhancement mode power field effect 8.0A, 800V, RDS(on) = 0.75 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 68 nC)planar stripe, DMOS technology. Low Crss ( typical 30 pF)This advanced technology has been especially tailore

 9.1. Size:633K  fairchild semi
fqaf11n90c.pdf

FQAF13N80
FQAF13N80

QFETFQAF11N90C900V N-Channel MOSFETGeneral Description FeaturesThese N-Channel enhancement mode power field effect 7.0A, 900V, RDS(on) = 1.1 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 60 nC)planar stripe, DMOS technology. Low Crss ( typical 23 pF)This advanced technology has been especially tailored to Fa

 9.2. Size:525K  fairchild semi
fqaf19n60.pdf

FQAF13N80
FQAF13N80

April 2000TMQFETQFETQFETQFETFQAF19N60600V N-Channel MOSFETGeneral Description FeaturesThese N-Channel enhancement mode power field effect 11.2A, 600V, RDS(on) = 0.38 @ VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 70 nC)planar stripe, DMOS technology. Low Crss ( typical 35 pF)This advanced technology has be

 9.3. Size:695K  fairchild semi
fqaf11n40.pdf

FQAF13N80
FQAF13N80

April 2000TMQFETQFETQFETQFET 400V N-ChanneI MOSFETGeneraI Description FeaturesThese N-Channel enhancement mode power field effect 8.8A, 400V, RDS(on) = 0.48 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 27 nC)planar stripe, DMOS technology. Low Crss ( typical 20 pF)This advanced technology has bee

 9.4. Size:743K  fairchild semi
fqaf15n70.pdf

FQAF13N80
FQAF13N80

April 2000TMQFETQFETQFETQFET 700V N-ChanneI MOSFETGeneraI Description FeaturesThese N-Channel enhancement mode power field effect 9.5A, 700V, RDS(on) = 0.56 @ VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 70 nC)planar stripe, DMOS technology. Low Crss ( typical 27 pF)This advanced technology has b

 9.5. Size:537K  fairchild semi
fqaf12n60.pdf

FQAF13N80
FQAF13N80

April 2000TMQFETQFETQFETQFETFQAF12N60600V N-Channel MOSFETGeneral Description FeaturesThese N-Channel enhancement mode power field effect 7.8A, 600V, RDS(on) = 0.7 @ VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 42 nC)planar stripe, DMOS technology. Low Crss ( typical 25 pF)This advanced technology has been

 9.6. Size:666K  fairchild semi
fqaf17p10.pdf

FQAF13N80
FQAF13N80

TMQFETFQAF17P10100V P-Channel MOSFETGeneral Description FeaturesThese P-Channel enhancement mode power field effect -12.4A, -100V, RDS(on) = 0.19 @VGS = -10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 30 nC)planar stripe, DMOS technology. Low Crss ( typical 100 pF)This advanced technology has been especially tailored to

 9.7. Size:707K  fairchild semi
fqaf14n30.pdf

FQAF13N80
FQAF13N80

April 2000TMQFETQFETQFETQFET 300V N-ChanneI MOSFETGeneraI Description FeaturesThese N-Channel enhancement mode power field effect 11.4A, 300V, RDS(on) = 0.29 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 30 nC)planar stripe, DMOS technology. Low Crss ( typical 23 pF)This advanced technology has bee

 9.8. Size:854K  fairchild semi
fqaf16n25c.pdf

FQAF13N80
FQAF13N80

QFETFQAF16N25C250V N-Channel MOSFETGeneral Description FeaturesThese N-Channel enhancement mode power field effect 11.4A, 250V, RDS(on) = 0.27 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 41 nC)planar stripe, DMOS technology. Low Crss ( typical 68 pF)This advanced technology has been especially tailored to

 9.9. Size:662K  fairchild semi
fqaf11n90.pdf

FQAF13N80
FQAF13N80

September 2000TMQFETQFETQFETQFETFQAF11N90900V N-Channel MOSFETGeneral Description FeaturesThese N-Channel enhancement mode power field effect 7.2A, 900V, RDS(on) = 0.96 @ VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 72 nC)planar stripe, DMOS technology. Low Crss ( typical 30 pF)This advanced technology has

 9.10. Size:719K  fairchild semi
fqaf16n50.pdf

FQAF13N80
FQAF13N80

April 2000TMQFETQFETQFETQFET 500V N-ChanneI MOSFETGeneraI Description FeaturesThese N-Channel enhancement mode power field effect 11.3A, 500V, RDS(on) = 0.32 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 60 nC)planar stripe, DMOS technology. Low Crss ( typical 35 pF)This advanced technology has be

 9.11. Size:712K  fairchild semi
fqaf19n20l.pdf

FQAF13N80
FQAF13N80

May 2000TMQFETQFETQFETQFET 200V LOGIC N-ChanneI MOSFETGeneraI Description FeaturesThese N-Channel enhancement mode power field effect 16A, 200V, RDS(on) = 0.14 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 27 nC)planar stripe, DMOS technology. Low Crss ( typical 30 pF)This advanced technology has

 9.12. Size:700K  fairchild semi
fqaf10n80.pdf

FQAF13N80
FQAF13N80

TMQFETFQAF10N80800V N-Channel MOSFETGeneral Description FeaturesThese N-Channel enhancement mode power field effect 6.7A, 800V, RDS(on) = 1.05 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 55 nC)planar stripe, DMOS technology. Low Crss ( typical 24 pF)This advanced technology has been especially tailored to Fa

 9.13. Size:710K  fairchild semi
fqaf16n25.pdf

FQAF13N80
FQAF13N80

May 2000TMQFETQFETQFETQFET 250V N-ChanneI MOSFETGeneraI Description FeaturesThese N-Channel enhancement mode power field effect 12.4A, 250V, RDS(on) = 0.23 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 27 nC)planar stripe, DMOS technology. Low Crss ( typical 23 pF)This advanced technology has been

 9.14. Size:702K  fairchild semi
fqaf17n40.pdf

FQAF13N80
FQAF13N80

April 2000TMQFETQFETQFETQFET 400V N-ChanneI MOSFETGeneraI Description FeaturesThese N-Channel enhancement mode power field effect 12.2A, 400V, RDS(on) = 0.27 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 45 nC)planar stripe, DMOS technology. Low Crss ( typical 30 pF)This advanced technology has be

 9.15. Size:688K  fairchild semi
fqaf19n20.pdf

FQAF13N80
FQAF13N80

April 2000TMQFETQFETQFETQFET 200V N-ChanneI MOSFETGeneraI Description FeaturesThese N-Channel enhancement mode power field effect 15A, 200V, RDS(on) = 0.15 @VGS = 10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 31 nC)planar stripe, DMOS technology. Low Crss ( typical 30 pF)This advanced technology has been

 9.16. Size:615K  fairchild semi
fqaf12p20.pdf

FQAF13N80
FQAF13N80

May 2000TMQFETQFETQFETQFETFQAF12P20200V P-Channel MOSFETGeneral Description FeaturesThese P-Channel enhancement mode power field effect -11.5A, -200V, RDS(on) = 0.47 @VGS = -10 Vtransistors are produced using Fairchilds proprietary, Low gate charge ( typical 31 nC)planar stripe, DMOS technology. Low Crss ( typical 30 pF)This advanced technology has bee

 9.17. Size:993K  onsemi
fqaf16n50.pdf

FQAF13N80
FQAF13N80

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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