OST75N65HMF - IGBT. Datasheet. Equivalente. Reemplazo. Hoja de especificaciones. Principales características
Número de Parte: OST75N65HMF
Tipo de transistor: IGBT + Diode
Polaridad de transistor: N
ESPECIFICACIONES TECNICAS
Pcⓘ - Máxima potencia disipada: 395 W
|Vce|ⓘ - Tensión máxima colector-emisor: 650 V
|Vge|ⓘ - Tensión máxima puerta-emisor: 20 V
|Ic|ⓘ - Colector de Corriente Continua a 25℃: 90 A
|VCEsat|ⓘ - Voltaje de saturación colector-emisor, typ: 1.6 V @25℃
|VGEth|ⓘ - Tensión máxima de puerta-umbral: 6 V
Tjⓘ - Temperatura máxima de unión: 175 ℃
trⓘ - Tiempo de subida, typ: 135 nS
Coesⓘ - Capacitancia de salida, typ: 225 pF
Qgⓘ - Carga total de la puerta, typ: 180 nC
Paquete / Cubierta: TO247
Búsqueda de reemplazo de OST75N65HMF - IGBT
OST75N65HMF Datasheet (PDF)
ost75n65hmf.pdf
OST75N65HMF Enhancement Mode N-Channel Power IGBT General Description OST75N65HMF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technolog
ost75n65hm2f.pdf
OST75N65HM2F Enhancement Mode N-Channel Power IGBT General Description OST75N65HM2F uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
ost75n65hnf.pdf
OST75N65HNF Enhancement Mode N-Channel Power IGBT General Description OST75N65HNF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technolog
ost75n65htnf.pdf
OST75N65HTNF Enhancement Mode N-Channel Power IGBT General Description OST75N65HTNF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching performance. CEThis device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
ost75n65hsxf.pdf
OST75N65HSXF Enhancement Mode N-Channel Power IGBT General Description OST75N65HSXF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
ost75n65hemf.pdf
OST75N65HEMF Enhancement Mode N-Channel Power IGBT General Description OST75N65HEMF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
ost75n65hsvf.pdf
OST75N65HSVF Enhancement Mode N-Channel Power IGBT General Description OST75N65HSVF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
ost75n65hszf.pdf
OST75N65HSZF Enhancement Mode N-Channel Power IGBT General Description OST75N65HSZF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
ost75n65hem2f.pdf
OST75N65HEM2F Enhancement Mode N-Channel Power IGBT General Description OST75N65HEM2F uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM techn
ost75n65hzf.pdf
OST75N65HZF Enhancement Mode N-Channel Power IGBT General Description OST75N65HZF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technolog
ost75n65hsnf.pdf
OST75N65HSNF Enhancement Mode N-Channel Power IGBT General Description OST75N65HSNF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
ost75n65hsmf.pdf
OST75N65HSMF Enhancement Mode N-Channel Power IGBT General Description OST75N65HSMF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching CEperformance. This device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
ost75n65hlmf.pdf
OST75N65HLMF Enhancement Mode N-Channel Power IGBT General Description OST75N65HLMF uses advanced Oriental-Semis patented Trident-Gate Bipolar Transistor (TGBTTM) technology to provide extremely low V (sat), low gate charge, and excellent switching performance. CEThis device is suitable for mid to high range switching frequency converters. Features Advanced TGBTTM technol
Otros transistores... OST60N65HSXF , OST60N65HSZF , OST60N65HXF , OST75N120HM2F , OST75N65HEM2F , OST75N65HEMF , OST75N65HLMF , OST75N65HM2F , IRGP4063 , OST75N65HNF , OST75N65HSMF , OST75N65HSNF , OST75N65HSVF , OST75N65HSXF , OST75N65HSZF , OST75N65HTNF , OST75N65HZF .
Liste
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