NCEP85T14 Даташит. Основные параметры и характеристики. Поиск аналогов
Наименование прибора: NCEP85T14
Тип транзистора: MOSFET
Полярность: N
Pdⓘ - Максимальная рассеиваемая мощность: 200 W
|Vds|ⓘ - Предельно допустимое напряжение сток-исток: 85 V
|Vgs|ⓘ - Предельно допустимое напряжение затвор-исток: 20 V
|Vgs(th)|ⓘ - Пороговое напряжение включения: 4 V
|Id|ⓘ - Максимально допустимый постоянный ток стока: 140 A
Tjⓘ - Максимальная температура канала: 175 °C
Qgⓘ - Общий заряд затвора: 84 nC
trⓘ - Время нарастания: 10 ns
Cossⓘ - Выходная емкость: 850 pf
Rdsⓘ - Сопротивление сток-исток открытого транзистора: 0.0041 Ohm
Тип корпуса: TO220
- подбор MOSFET транзистора по параметрам
NCEP85T14 Datasheet (PDF)
ncep85t14.pdf

Pb Free Producthttp://www.ncepower.com NCEP85T14NCE N-Channel Super Trench Power MOSFET Description The NCEP85T14 uses Super Trench technology that is uniquely optimized to provide the most efficient high frequency switching performance. Both conduction and switching power losses are minimized due to an extremely low combination of RDS(ON) and Qg. This device is ideal for hi
ncep85t14d.pdf

Pb Free Producthttp://www.ncepower.com NCEP85T14DNCE N-Channel Super Trench Power MOSFET Description The NCEP85T14D uses Super Trench technology that is uniquely optimized to provide the most efficient high frequency switching performance. Both conduction and switching power losses are minimized due to an extremely low combination of RDS(ON) and Qg. This device is ideal for
ncep85t15d.pdf

http://www.ncepower.com NCEP85T15DNCE N-Channel Super Trench Power MOSFETDescriptionThe NCEP85T15D uses Super Trench technology that isuniquely optimized to provide the most efficient highfrequency switching performance. Both conduction andswitching power losses are minimized due to an extremelylow combination of R and Q . This device is ideal forDS(ON) ghigh-frequency switchi
ncep85t16d.pdf

Pb Free Producthttp://www.ncepower.com NCEP85T16DNCE N-Channel Super Trench Power MOSFET Description The NCEP85T16D uses Super Trench technology that is uniquely optimized to provide the most efficient high frequency switching performance. Both conduction and switching power losses are minimized due to an extremely low combination of RDS(ON) and Qg. This device is ideal for
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