APT25GN120B2DQ2G Todos los transistores

 

APT25GN120B2DQ2G - IGBT. Datasheet. Equivalente. Reemplazo. Hoja de especificaciones. Principales características


   Número de Parte: APT25GN120B2DQ2G
   Tipo de transistor: IGBT + Diode
   Polaridad de transistor: N

ESPECIFICACIONES TECNICAS


   Pcⓘ - Máxima potencia disipada: 272 W
   |Vce|ⓘ - Tensión máxima colector-emisor: 1200 V
   |Vge|ⓘ - Tensión máxima puerta-emisor: 30 V
   |Ic|ⓘ - Colector de Corriente Continua a 25℃: 33 A
   |VCEsat|ⓘ - Voltaje de saturación colector-emisor, typ: 1.9 V @25℃
   |VGEth|ⓘ - Tensión máxima de puerta-umbral: 6.5 V
   Tjⓘ - Temperatura máxima de unión: 150 ℃
   trⓘ - Tiempo de subida, typ: 17 nS
   Coesⓘ - Capacitancia de salida, typ: 105 pF
   Qgⓘ - Carga total de la puerta, typ: 155 nC
   Paquete / Cubierta: TO247
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APT25GN120B2DQ2G Datasheet (PDF)

 0.1. Size:220K  apt
apt25gn120b2dq2g.pdf pdf_icon

APT25GN120B2DQ2G

TYPICAL PERFORMANCE CURVES APT25GN120B2DQ2(G) 1200V APT25GN120B2DQ2 APT25GN120B2DQ2G**G Denotes RoHS Compliant, Pb Free Terminal Finish.Utilizing the latest Non-Punch Through (NPT) Field Stop technology, these IGBTs (B2)have a very short, low amplitude tail current and low Eoff. The Trench Gate design T-Maxresults in superior VCE(on) performance. Easy paralleling resu

 3.1. Size:195K  apt
apt25gn120bg.pdf pdf_icon

APT25GN120B2DQ2G

TYPICAL PERFORMANCE CURVES APT25GN120B_S(G) 1200V APT25GN120B APT25GN120S APT25GN120BG* APT25GN120SG**G Denotes RoHS Compliant, Pb Free Terminal Finish.Utilizing the latest Field Stop and Trench Gate technologies, these IGBT's have ultra (B)low VCE(ON) and are ideal for low frequency applications that require absolute minimum D3PAKconduction loss. Easy paralleling is a re

 3.2. Size:184K  apt
apt25gn120b.pdf pdf_icon

APT25GN120B2DQ2G

TYPICAL PERFORMANCE CURVES APT25GN120BAPT25GN120B1200VUtilizing the latest Field Stop technology, these IGBTs have a very short, low amplitude tail current and low Eoff. The Trench Gate design results in superior VCE(on) performance. Easy paralleling results from very tight parameter distribution and slightly positive VCE(on) temperature coefficient. Built-in gate resistance en

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