Справочник MOSFET. GSM3415

 

GSM3415 MOSFET - описание производителя. Даташиты. Основные параметры и характеристики. Поиск аналога. Справочник


   Наименование прибора: GSM3415
   Тип транзистора: MOSFET
   Полярность: P
   Pdⓘ - Максимальная рассеиваемая мощность: 1.25 W
   |Vds|ⓘ - Предельно допустимое напряжение сток-исток: 20 V
   |Vgs|ⓘ - Предельно допустимое напряжение затвор-исток: 12 V
   |Id|ⓘ - Максимально допустимый постоянный ток стока: 4.9 A
   Tjⓘ - Максимальная температура канала: 150 °C
   trⓘ - Время нарастания: 25 ns
   Cossⓘ - Выходная емкость: 165 pf
   Rdsⓘ - Сопротивление сток-исток открытого транзистора: 0.045 Ohm
   Тип корпуса: SOT-23-3L

 Аналог (замена) для GSM3415

 

 

GSM3415 Datasheet (PDF)

 ..1. Size:920K  globaltech semi
gsm3415.pdf

GSM3415
GSM3415

GSM3415 20V P-Channel Enhancement Mode MOSFET Product Description Features GSM3415, P-Channel enhancement mode -20V/-4.9A,RDS(ON)=45m@VGS=-4.5V MOSFET, uses Advanced Trench Technology to -20V/-3.4A,RDS(ON)=58m@VGS=-2.5V provide excellent RDS(ON) ,low gate charge. -20V/-2.2A,RDS(ON)=85m@VGS=-1.8V Super high density cell design for extremely These devic

 8.1. Size:875K  globaltech semi
gsm3413.pdf

GSM3415
GSM3415

20V P-Channel Enhancement Mode MOSFET Product Description Features GSM3413, P-Channel enhancement mode -20V/-3.2A,RDS(ON)=100m@VGS=-4.5V MOSFET, uses Advanced Trench Technology to -20V/-2.6A,RDS(ON)=130m@VGS=-2.5V provide excellent RDS(ON), low gate charge. -20V/-1.5A,RDS(ON)=195m@VGS=-1.8V Super high density cell design for extremely These devices are particularly su

 8.2. Size:1106K  globaltech semi
gsm3416.pdf

GSM3415
GSM3415

20V N-Channel Enhancement Mode MOSFET Product Description Features 20V/4.0A,RDS(ON)=26m@VGS=4.5V GSM3416, N-Channel enhancement mode 20V/3.2A,RDS(ON)=30m@VGS=2.5V MOSFET, uses Advanced Trench Technology to 20V/2.8A,RDS(ON)=36m@VGS=1.8V provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly

 8.3. Size:820K  globaltech semi
gsm3413a.pdf

GSM3415
GSM3415

20V P-Channel Enhancement Mode MOSFET Product Description Features GSM3413A, P-Channel enhancement mode -20V/-2.6A,RDS(ON)=110m@VGS=-4.5V MOSFET, uses Advanced Trench Technology to -20V/-2.2A,RDS(ON)=150m@VGS=-2.5V provide excellent RDS(ON), low gate charge. -20V/-1.2A,RDS(ON)=205m@VGS=-1.8V Super high density cell design for extremely These devices are par

 8.4. Size:889K  globaltech semi
gsm3410.pdf

GSM3415
GSM3415

GSM3410 30V N-Channel Enhancement Mode MOSFET Product Description Features GSM3410, N-Channel enhancement mode 30V/6.0A,RDS(ON)=27m@VGS=10V MOSFET, uses Advanced Trench Technology to 30V/4.5A,RDS(ON)=30m@VGS=4.5V provide excellent RDS (ON), low gate charge. Super high density cell design for extremely low RDS (ON) These devices are particularly suited for low TSOP-6 p

 8.5. Size:1087K  globaltech semi
gsm3414s.pdf

GSM3415
GSM3415

20V N-Channel Enhancement Mode MOSFET Product Description Features GSM3414S, N-Channel enhancement mode 20V/4.0A,RDS(ON)=50m@VGS=4.5V MOSFET, uses Advanced Trench Technology to 20V/3.4A,RDS(ON)=60m@VGS=2.5V provide excellent RDS(ON), low gate charge. 20V/2.8A,RDS(ON)=105m@VGS=1.8V Super high density cell design for extremely These devices are particularly suited for l

 8.6. Size:733K  globaltech semi
gsm3411.pdf

GSM3415
GSM3415

GSM3411 30V P-Channel Enhancement Mode MOSFET Product Description Features GSM3411, P-Channel enhancement mode -30V/-6.0A,RDS(ON)=36m@VGS=10V MOSFET, uses Advanced Trench Technology to -30V/-4.5A,RDS(ON)=46m@VGS=4.5V provide excellent RDS(ON), low gate charge. Super high density cell design for extremely low RDS (ON) These devices are particularly suited for low

 8.7. Size:1310K  globaltech semi
gsm3414a.pdf

GSM3415
GSM3415

20V N-Channel Enhancement Mode MOSFET Product Description Features GSM3414A, N-Channel enhancement mode 20V/2.4A,RDS(ON)=70m@VGS=4.5V MOSFET, uses Advanced Trench Technology to 20V/2.0A,RDS(ON)=80m@VGS=2.5V provide excellent RDS(ON), low gate charge. 20V/1.8A,RDS(ON)=100m@VGS=1.8V Super high density cell design for extremely These devices are particularly suited for l

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