GT30J122A Todos los transistores

 

GT30J122A IGBT Equivalente. Reemplazo. Hoja de especificaciones. Principales características

Número de Parte: GT30J122A

Tipo de transistor: IGBT

Polaridad de transistor: N

ESPECIFICACIONES TECNICAS

Pcⓘ - Máxima potencia disipada: 120 W

|Vce|ⓘ - Tensión máxima colector-emisor: 600 V

|Vge|ⓘ - Tensión máxima puerta-emisor: 25 V

|Ic|ⓘ - Colector de Corriente Continua a 25℃: 30 A

Tjⓘ - Temperatura máxima de unión: 150 ℃

CARACTERÍSTICAS ELÉCTRICAS

|VCEsat|ⓘ - Voltaje de saturación colector-emisor, typ: 1.7 V @25℃

trⓘ - Tiempo de subida, typ: 200 nS

Encapsulados: TO3PN

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GT30J122A datasheet

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GT30J122A

GT30J122A Discrete IGBTs Silicon N-Channel IGBT GT30J122A GT30J122A GT30J122A GT30J122A 1. Applications 1. Applications 1. Applications 1. Applications Dedicated to Current-Resonant Inverter Switching Applications Dedicated to Partial-Switching Power Factor Correction (PFC) Applications Note The product(s) described herein should not be used for any other application. 2. F

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GT30J122A

GT30J122 TOSHIBA Insulated Gate Bipolar Transistor Silicon N Channel IGBT GT30J122 4TH GENERATION IGBT Unit mm CURRENT RESONANCE INVERTER SWITCHING APPLICATIONS Enhancement mode type High speed tf = 0.25 s (Typ.) (IC = 50A) Low saturation voltage VCE (sat) = 2.1V (Typ.) (IC = 50A) ABSOLUTE MAXIMUM RATINGS (Ta = 25 C) Characteristic Symbol Rating Unit Coll

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GT30J122A

GT30J121 TOSHIBA Insulated Gate Bipolar Transistor Silicon N Channel IGBT GT30J121 High Power Switching Applications Unit mm Fast Switching Applications Fourth-generation IGBT Enhancement mode type Fast switching (FS) Operating frequency up to 50 kHz (reference) High speed tf = 0.05 s (typ.) Low switching loss Eon = 1.00 mJ (typ.) Eoff = 0.80 mJ (typ

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gt30j126.pdf pdf_icon

GT30J122A

GT30J126 TOSHIBA Insulated Gate Bipolar Transistor Silicon N Channel IGBT GT30J126 High Power Switching Applications Unit mm Fast Switching Applications Fourth-generation IGBT Enhancement mode type Fast switching (FS) High speed tf = 0.05 s (typ.) Low switching loss Eon = 1.00 mJ (typ.) Eoff = 0.80 mJ (typ.) Low saturation voltage VCE (sat) =

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