TSM2302CX
MOSFET - описание производителя. Даташиты. Основные параметры и характеристики. Поиск аналога. Справочник
Наименование прибора: TSM2302CX
Маркировка: 02*
Тип транзистора: MOSFET
Полярность: N
Pdⓘ - Максимальная рассеиваемая мощность: 1.25
W
|Vds|ⓘ - Предельно допустимое напряжение сток-исток: 20
V
|Vgs|ⓘ - Предельно допустимое напряжение затвор-исток: 8
V
|Vgs(th)|ⓘ - Пороговое напряжение включения: 1.2
V
|Id|ⓘ - Максимально
допустимый постоянный ток стока: 2.8
A
Tjⓘ - Максимальная температура канала: 150
°C
Qgⓘ -
Общий заряд затвора: 5.4
nC
trⓘ -
Время нарастания: 36
ns
Cossⓘ - Выходная емкость: 115
pf
Rdsⓘ - Сопротивление сток-исток открытого транзистора: 0.065
Ohm
Тип корпуса:
SOT-23
Аналог (замена) для TSM2302CX
TSM2302CX
Datasheet (PDF)
..1. Size:315K taiwansemi
tsm2302cx.pdf TSM2302 20V N-Channel MOSFET SOT-23 Pin Definition: PRODUCT SUMMARY 1. Gate VDS (V) RDS(on)(m) ID (A) 2. Source 3. Drain 65 @ VGS = 4.5V 2.8 20 95 @ VGS = 2.5V 2.0 Features Block Diagram Advance Trench Process Technology High Density Cell Design for Ultra Low On-resistance Application Load Switch PA Switch Ordering Information Part No.
7.1. Size:346K taiwansemi
tsm2302 a07.pdf TSM2302 20V N-Channel MOSFET PRODUCT SUMMARY SOT-23 Pin Definition: VDS (V) RDS(on)(m) ID (A) 1. Gate 2. Source 65 @ VGS = 4.5V 2.8 3. Drain 20 95 @ VGS = 2.5V 2.0 Features Block Diagram Advance Trench Process Technology High Density Cell Design for Ultra Low On-resistance Application Load Switch PA Switch Ordering Information Part No.
8.2. Size:249K taiwansemi
tsm2301a.pdf TSM2301A Taiwan Semiconductor P-Channel Power MOSFET -20V, -2.8A, 130m KEY PERFORMANCE PARAMETERS Features PARAMETER VALUE UNIT Advance Trench Process Technology VDS -20 V High Density Cell Design for Ultra Low On-resistance VGS = -4.5V 130 RDS(on) (max) m VGS = -2.5V 190 Application Qg 7.2 nC Telecom power Consumer Electronics SOT-23
8.3. Size:238K taiwansemi
tsm2306cx.pdf TSM2306 30V N-Channel MOSFET PRODUCT SUMMARY SOT-23 Pin Definition: VDS (V) RDS(on)(m) ID (A) 1. Gate 2. Source 57 @ VGS =10V 3.5 3. Drain 30 94 @ VGS =4.5V 2.8 Features Block Diagram Advance Trench Process Technology High Density Cell Design for Ultra Low On-resistance Application Load Switch PA Switch Ordering Information Part No. Pa
8.4. Size:186K taiwansemi
tsm2307cx.pdf TSM2307 30V P-Channel MOSFET SOT-23 PRODUCT SUMMARY Pin Definition: 1. Gate VDS (V) RDS(on)(m) ID (A) 2. Source 3. Drain 95 @ VGS = -10V -3 -30 140 @ VGS = -4.5V -2 Features Block Diagram Advance Trench Process Technology High Density Cell Design for Ultra Low On-resistance Application Load Switch PA Switch Ordering Information Part No
8.5. Size:370K taiwansemi
tsm2308cx.pdf TSM2308 60V N-Channel MOSFET SOT-23 PRODUCT SUMMARY Pin Definition: 1. Gate VDS (V) RDS(on)(m) ID (A) 2. Source 3. Drain 156 @ VGS = 10V 3 60 192 @ VGS = 4.5V 2.1 Block Diagram Features Advance Trench Process Technology High Density Cell Design for Ultra Low On-resistance Application DC-DC Power System Load Switch Ordering Information
8.6. Size:357K taiwansemi
tsm2303cx.pdf TSM2303 30V P-Channel MOSFET SOT-23 PRODUCT SUMMARY Pin Definition: 1. Gate VDS (V) RDS(on)(m) ID (A) 2. Source 3. Drain 180 @ VGS =-10V -1.3 -30 300 @ VGS =-4.5V -1.1 Block Diagram Features Advance Trench Process Technology High Density Cell Design for Ultra Low On-resistance Application Portable Devices High Speed Switch Ordering Info
8.7. Size:340K taiwansemi
tsm2301acx tsm2301cx.pdf TSM2301 20V P-Channel MOSFET PRODUCT SUMMARY SOT-23 Pin Definition: VDS (V) RDS(on)(m) ID (A) 1. Gate 130 @ VGS = -4.5V -2.8 2. Source -20 3. Drain 190 @ VGS = -2.5V -2.0 Features Block Diagram Advance Trench Process Technology High Density Cell Design for Ultra Low On-resistance Application Load Switch PA Switch P-Channel MOSFET Orderi
8.8. Size:378K taiwansemi
tsm2305cx.pdf TSM2305 20V P-Channel MOSFET SOT-23 PRODUCT SUMMARY Pin Definition: 1. Gate VDS (V) RDS(on)(m) ID (A) 2. Source 3. Drain 55 @ VGS =-4.5V -3.2 80 @ VGS =-2.5V -2.7 -20 130 @ VGS =-1.8V -2.0 Block Diagram Features Advance Trench Process Technology High Density Cell Design for Ultra Low On-resistance Application Battery Management High Spe
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