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7MBP200VDA060-50 Datasheet

Part Number 7MBP200VDA060-50
Manufacturers Fuji Electric
Logo Fuji Electric
Description IGBT
Datasheet 7MBP200VDA060-50 Datasheet7MBP200VDA060-50 Datasheet (PDF)

http://www.fujielectric.com/products/semiconductor/ 7MBP200VDA060-50 IGBT Modules IGBT MODULE (V series) 600V / 200A / IPM Features • Temperature protection provided by directly detecting the junction temperature of the IGBTs • Low power loss and soft switching • High performance and high reliability IGBT with overheating protection • Higher reliability because of a big decrease in number of parts in built-in control circuit Maximum Ratings and Characteristics Absolute Maximum Ratings (.

  7MBP200VDA060-50   7MBP200VDA060-50






IGBT

http://www.fujielectric.com/products/semiconductor/ 7MBP200VDA060-50 IGBT Modules IGBT MODULE (V series) 600V / 200A / IPM Features • Temperature protection provided by directly detecting the junction temperature of the IGBTs • Low power loss and soft switching • High performance and high reliability IGBT with overheating protection • Higher reliability because of a big decrease in number of parts in built-in control circuit Maximum Ratings and Characteristics Absolute Maximum Ratings (TC=25ºC, VCC=15V unless otherwise specified) Items Symbol Min. Collector-Emitter Voltage (*1) VCES 0 Short Circuit Voltage VSC 200 DC IC - Inverter Collector Current 1ms Icp - Duty=50.3% (*2) -IC - Collector Power Dissipation 1 device (*3) PC - Brake Collector Current DC 1ms IC Icp - Forward Current of Diode IF - Collector Power Dissipation 1 device (*3) PC - Supply Voltage of Pre-Driver (*4) VCC -0.5 Input Signal Voltage (*5) Vin -0.5 Alarm Signal Voltage (*6) VALM -0.5 Alarm Signal Current (*7) IALM - Junction Temperature Tj - Operating Case Temperature Topr -20 Storage Temperature Tstg -40 Solder Temperature (*8) Tsol - Isolating Voltage (*9) Viso - Screw Torque Terminal (M4) Mounting (M4) - - Note *1: VCES shall be applied to the input voltage between terminal P-(U,V, W) and (U,V, W, B)-N. Note *2: Duty=125ºC/Rth(j-c)D /(IF×VF Max.)×100 Note *3: PC=125ºC/Rth(j-c)Q (Inverter & Brake) Note *4: VCC shall be applied to the input .


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