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IGBT Module FF300R12KT4
Kollektor-Emitter-Sättigungsspannung Collector-emittersaturationvoltage IC = 300 A, VGE = 15 V IC = 300 A, VGE = 15 V IC = 300 A, VGE = 15 V VCE sat 1,75 2,05 2,10 2,15 V V V Tvj = 25°C Tvj = 125°C Tvj = 150°C Gate-Schwellenspannung Gatethresholdvoltage IC = 11,5 mA, VCE = VGE, Tvj = 25°C VGEth 5,2 5,8 6,4 V Gateladung Gatecharge VGE = -15 V ... +15 V QG 2,40 µC InternerGatewiderstand Internalgateresistor Tvj = 25°C RGint 2,5 Ω Eingangskapazität Inputcapacitance f = 1 MHz, Tvj = 25°C, VCE = 25 V, VGE = 0 V Cies 19,0 nF Rückwirkungskapazität Reversetransfercapacitance f = 1 MHz, Tvj = 25°C, VCE = 25 V, VGE = 0 V Cres 0,81 nF Kollektor-Emitter-Reststrom Collector-emittercut-offcurrent VCE = 1200 V, VGE = 0 V, Tvj = 25°C ICES 5,0 mA Gate-Emitter-Reststrom Gate-emitterleakagecurrent VCE = 0 V, VGE = 20 V, Tvj = 25°C IGES 400 nA Einschaltverzögerungszeit,induktiveLast Turn-ondelaytime,inductiveload IC = 300 A, VCE = 600 V VGE = ±15 V RGon = 1,8 Ω td on 0,16 0,17 0,18 µs µs µs Tvj = 25°C Tvj = 125°C Tvj = 150°C Anstiegszeit,induktivAnstiegszeit,induktiveLast Risetime,inductiveload IC = 300 A, VCE = 600 V VGE = ±15 V RGon = 1,8 Ω tr 0,04 0,045 0,05 µs µs µs Tvj = 25°C Tvj = 125°C Tvj = 150°C Abschaltverzögerungszeit,induktiveLast Turn-offdelaytime,inductiveload IC = 300 A, VCE = 600 V VGE = ±15 V RGoff = 1,8 Ω td off 0,45 0,52 0,54 µs µs µs Tvj = 25°C Tvj = 125°C Tvj = 150°C Fallzeit,induktiveLast Falltime,inductiveload IC = 300 A, VCE = 600 V VGE = ±15 V RGoff = 1,8 Ω tf 0,10 0,16 0,18 µs µs µs Tvj = 25°C Tvj = 125°C Tvj = 150°C EinschaltverlustenergieproPuls Turn-onenergylossperpulse IC = 300 A, VCE = 600 V, LS = 30 nH VGE = ±15 V, di/dt = 6000 A/µs (Tvj = 150°C) RGon = 1,8 Ω Eon 16,5 25,0 30,0 mJ mJ mJ Tvj = 25°C Tvj = 125°C Tvj = 150°C AbschaltverlustenergieproPuls Turn-offenergylossperpulse IC = 300 A, VCE = 600 V, LS = 30 nH VGE = ±15 V, du/dt = 4500 V/µs (Tvj = 150°C) RGoff = 1,8 Ω Eoff 19,5 29,5 32,5 mJ mJ mJ Tvj = 25°C Tvj = 125°C Tvj = 150°C Kurzschlußverhalten SCdata VGE ≤ 15 V, VCC = 900 V VCEmax = VCES -LsCE ·di/dt ISC tP ≤ 10 µs, Tvj = 125°C 1200 A Wärmewiderstand,ChipbisGehäu
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