TSM1NB60CW MOSFET - описание производителя. Даташиты. Основные параметры и характеристики. Поиск аналога. Справочник
Наименование прибора: TSM1NB60CW
Тип транзистора: MOSFET
Полярность: N
Pdⓘ - Максимальная рассеиваемая мощность: 2.1 W
|Vds|ⓘ - Предельно допустимое напряжение сток-исток: 600 V
|Vgs|ⓘ - Предельно допустимое напряжение затвор-исток: 30 V
|Vgs(th)|ⓘ - Пороговое напряжение включения: 4.5 V
|Id|ⓘ - Максимально допустимый постоянный ток стока: 1 A
Tjⓘ - Максимальная температура канала: 150 °C
Qgⓘ - Общий заряд затвора: 6.1 nC
trⓘ - Время нарастания: 6.8 ns
Cossⓘ - Выходная емкость: 17.1 pf
Rdsⓘ - Сопротивление сток-исток открытого транзистора: 10 Ohm
Тип корпуса: SOT-223
Аналог (замена) для TSM1NB60CW
TSM1NB60CW Datasheet (PDF)
tsm1nb60ch tsm1nb60cp tsm1nb60cw.pdf
TSM1NB60 600V N-Channel Power MOSFET TO-251 TO-252 SOT-223 PRODUCT SUMMARY Pin Definition: (IPAK) (DPAK) 1. Gate VDS (V) RDS(on)() ID (A) 2. Drain 3. Source 600 10 @ VGS =10V 0.5 General Description The TSM1NB60 N-Channel Power MOSFET is produced by new advance planar process. This advanced technology has been especially tailored to minimize on-state resistance, p
tsm1nb60sct.pdf
TSM1NB60S 600V N-Channel Power MOSFET TO-92 PRODUCT SUMMARY Pin Definition: 1. Gate VDS (V) RDS(on)() ID (A) 2. Drain 3. Source 600 10 @ VGS =10V 0.25 General Description The TSM1NB60S N-Channel Power MOSFET is produced by new advance planar process. This advanced technology has been especially tailored to minimize on-state resistance, provide superior switching per
tsm1n80cw tsm1n80sct.pdf
TSM1N80 800V N-Channel MOSFET TO-92 SOT-223 PRODUCT SUMMARY Pin Definition: 1. Gate VDS (V) RDS(on)() ID (A) 2. Drain 3. Source 21.6 @ VGS =10V 0.15 800 General Description The TSM1N80 is used an advanced termination scheme to provide enhanced voltage-blocking capability without degrading performance over time. In addition, this advanced MOSFET is designed to with
tsm1n45dcs.pdf
Preliminary TSM1N45D 450V N-Channel Power MOSFET SOP-8 PRODUCT SUMMARY Pin Definition: 1. Source 1 8. Drain 1 VDS (V) RDS(on)() ID (A) 2. Gate 1 7. Drain 1 3. Source 2 6. Drain 2 450 4.25 @ VGS =10V 0.25 4. Gate 2 5. Drain 2 General Description The TSM1N45 is N-Channel enhancement mode power field effect transistors are produced using planar DMOS technology process
tsm1n60s a07.pdf
TSM1N60S 600V N-Channel Power MOSFET TO-92 Pin Definition: PRODUCT SUMMARY 1. Gate VDS (V) RDS(on)() ID (A) 2. Drain 3. Source 600 11 @ VGS =10V 0.3 General Description The TSM1N60S is used an advanced termination scheme to provide enhanced voltage-blocking capability without degrading performance over time. In addition, this advanced MOSFET is designed to withstand
tsm1n60l a07.pdf
TSM1N60L 600V N-Channel Power MOSFET PRODUCT SUMMARY TO-252 TO-251 VDS (V) RDS(on)() ID (A) Pin Definition: 1. Gate 600 12 @ VGS =10V 1 2. Drain 3. Source General Description The TSM1N60L is used an advanced termination scheme to provide enhanced voltage-blocking capability without degrading performance over time. In addition, this advanced MOSFET is designed to withs
tsm1n45ct tsm1n45cw.pdf
TSM1N45 450V N-Channel Power MOSFET TO-92 SOT-223 PRODUCT SUMMARY Pin Definition: 1. Gate VDS (V) RDS(on)() ID (A) 2. Drain 3. Source 450 4.25 @ VGS =10V 0.25 General Description The TSM1N45 is N-Channel enhancement mode power field effect transistors are produced using planar DMOS technology process. This advanced technology has been especially tailored to minimize
tsm1n60lch tsm1n60lcp.pdf
TSM1N60L 600V N-Channel Power MOSFET TO-252 TO-251 Pin Definition: PRODUCT SUMMARY 1. Gate 2. Drain VDS (V) RDS(on)() ID (A) 3. Source 600 12 @ VGS =10V 1 General Description The TSM1N60L is used an advanced termination scheme to provide enhanced voltage-blocking capability without degrading performance over time. In addition, this advanced MOSFET is designed to wit
tsm1n60sct.pdf
TSM1N60S 600V N-Channel Power MOSFET TO-92 Pin Definition: PRODUCT SUMMARY 1. Gate VDS (V) RDS(on)() ID (A) 2. Drain 3. Source 600 11 @ VGS =10V 0.3 General Description The TSM1N60S is used an advanced termination scheme to provide enhanced voltage-blocking capability without degrading performance over time. In addition, this advanced MOSFET is designed to withstand
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