TPC6004 Todos los transistores

 

TPC6004 MOSFET. Datasheet. Equivalente. Reemplazo. Hoja de especificaciones. Principales características


   Número de Parte: TPC6004
   Código: S2C
   Tipo de FET: MOSFET
   Polaridad de transistor: N

ESPECIFICACIONES MÁXIMAS

   Pdⓘ - Máxima disipación de potencia: 2.2 W
   |Vds|ⓘ - Voltaje máximo drenador - fuente: 20 V
   |Vgs|ⓘ - Voltaje máximo fuente - puerta: 12 V
   |Id|ⓘ - Corriente continua de drenaje: 6 A
   Tjⓘ - Temperatura máxima de unión: 150 °C

CARACTERÍSTICAS ELÉCTRICAS

   |Vgs(th)|ⓘ - Tensión umbral entre puerta y fuente: 1.2 V
   Qgⓘ - Carga de la puerta: 17 nC
   trⓘ - Tiempo de subida: 5 nS
   Cossⓘ - Capacitancia de salida: 180 pF
   Rds(on)ⓘ - Resistencia estado encendido drenaje a fuente: 0.024 Ohm
   Paquete / Cubierta: VS6

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TPC6004 Datasheet (PDF)

 ..1. Size:230K  toshiba
tpc6004.pdf

TPC6004
TPC6004

TPC6004 TOSHIBA Field Effect Transistor Silicon N Channel MOS Type (U-MOSIII) TPC6004 Notebook PC Applications Unit: mmPortable Equipment Applications Low drain-source ON resistance: RDS (ON) = 19 m (typ.) High forward transfer admittance: |Yfs| = 11 S (typ.) Low leakage current: IDSS = 10 A (max) (VDS = 20 V) Enhancement mode: Vth = 0.5 to 1.2 V (VDS = 1

 8.1. Size:195K  toshiba
tpc6007-h.pdf

TPC6004
TPC6004

TPC6007-H TOSHIBA Field Effect Transistor Silicon N Channel MOS Type (Ultra-High-Speed U-MOSIII) TPC6007-H High-Efficiency DC/DC Converter Applications Unit: mm Small footprint due to small and thin package High-speed switching Small gate charge: Qsw = 1.8 nC (typ.) Low drain-source ON-resistance: RDS (ON) = 40 m (typ.) High forward transfer admittance: |

 8.2. Size:225K  toshiba
tpc6008-h.pdf

TPC6004
TPC6004

TPC6008-HMOSFETs Silicon N-Channel MOS (U-MOS-H)TPC6008-HTPC6008-HTPC6008-HTPC6008-H1. Applications1. Applications1. Applications1. Applications High-Efficiency DC-DC Converters Notebook PCs Mobile Handsets2. Features2. Features2. Features2. Features(1) Small, thin package(2) High-speed switching(3) Small gate charge: QSW = 0.9 nC (typ.)(4) Lo

 8.3. Size:198K  toshiba
tpc6006-h.pdf

TPC6004
TPC6004

TPC6006-H TOSHIBA Field Effect Transistor Silicon N Channel MOS Type (Ultra-High-Speed U-MOSIII) TPC6006-H Notebook PC Applications Unit: mmPortable Equipment Applications Small footprint due to small and thin package High-speed switching Small gate charge: Qsw = 2.4 nC (typ.) Low drain-source ON-resistance: RDS (ON) = 59 m (typ.) High forward transfer

 8.4. Size:225K  toshiba
tpc6009-h.pdf

TPC6004
TPC6004

TPC6009-HMOSFETs Silicon N-Channel MOS (U-MOS-H)TPC6009-HTPC6009-HTPC6009-HTPC6009-H1. Applications1. Applications1. Applications1. Applications High-Efficiency DC-DC Converters Notebook PCs Mobile Handsets2. Features2. Features2. Features2. Features(1) Small, thin package(2) High-speed switching(3) Small gate charge: QSW = 1.0 nC (typ.)(4) Lo

 8.5. Size:253K  toshiba
tpc6005.pdf

TPC6004
TPC6004

TPC6005 TOSHIBA Field Effect Transistor Silicon N Channel MOS Type (U-MOSIII) TPC6005 Notebook PC Applications Unit: mmPortable Equipment Applications Low drain-source ON resistance: R = 21 m (typ.) DS (ON) High forward transfer admittance: |Yfs| = 10 S (typ.) Low leakage current: IDSS = 10 A (max) (VDS = 30 V) Enhancementmode: Vth = 0.5 to 1.2 V (VDS =

 8.6. Size:200K  toshiba
tpc6001.pdf

TPC6004
TPC6004

TPC6001 TOSHIBA Field Effect Transistor Silicon N Channel MOS Type (U-MOSII) TPC6001 Notebook PC Applications Unit: mmPortable Equipment Applications Low drain-source ON resistance: RDS (ON) = 22 m (typ.) High forward transfer admittance: |Yfs| = 15 S (typ.) Low leakage current: IDSS = 10 A (max) (VDS = 20 V) Enhancement mode: Vth = 0.5 to 1.2 V (VDS = 10

 8.7. Size:230K  toshiba
tpc6003.pdf

TPC6004
TPC6004

TPC6003 TOSHIBA Field Effect Transistor Silicon N Channel MOS Type (U-MOSIII) TPC6003 Notebook PC Applications Unit: mmPortable Equipment Applications Low drain-source ON resistance: RDS (ON) = 19 m (typ.) High forward transfer admittance: |Yfs| = 7 S (typ.) Low leakage current: IDSS = 10 A (max) (VDS = 30 V) Enhancement mode: Vth = 1.3 to 2.5 V (VDS = 10

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