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IRKU105/08AS90 датащи(PDF) 2 Page - International Rectifier |
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IRKU105/08AS90 датащи(HTML) 2 Page - International Rectifier |
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2 / 8 page ![]() IRKU/V105 Series 2 Bulletin I27136 rev. E 10/02 www.irf.com V RRM , maximum V RSM , maximum V DRM , max. repetitive I RRM Voltage repetitive non-repetitive peak off-state voltage, IDRM Code peak reverse voltage peak reverse voltage gate open circuit 130°C - VVV mA 04 400 500 400 IRKU/V105 08 800 900 800 20 12 1200 1300 1200 16 1600 1700 1600 I T(AV) Max. average on-state 180o conduction, half sine wave, current T C = 85oC I T(RMS ) Max. RMS on-state DC current. @ TC 77 °C I TSM Max. peak, one cycle 1785 t=10ms No voltage non-repetitive on-state 1870 t=8.3ms reapplied current 1500 t=10ms 100% V RRM 1570 t=8.3ms reapplied 2000 t=10ms T J = 25oC, 2100 t=8.3ms no voltage reapplied I 2t Max. I 2t for fusing 15.91 t=10ms No voltage 14.52 t=8.3ms reapplied 11.25 t=10ms 100% V RRM 10.27 t=8.3ms reapplied 20.00 t=10ms T J = 25oC, 18.30 t=8.3ms no voltage reapplied I 2 √t Max. I 2 √t for fusing (1) 159.1 KA 2 √s t=0.1to10ms,no voltage reappl.,TJ=TJ max. V T(TO) Max. value of threshold 0.80 Low level (3) voltage (2) 0.85 High level (4) r t Max. value of on-state 2.37 Low level (3) slope resistance (2) 2.25 High level (4) V TM Max. peak on-state I TM = πxI T(AV) voltage I FM = πxI F(AV) di/dt Max. non-repetitive rate T J = 25oC, from 0.67 V DRM , of rise of turned on 150 A/µs I TM = π x I T(AV), I g = 500mA, current tr < 0.5 µs, tp > 6 µs I H Max. holding current 200 T J = 25oC, anode supply = 6V, resistive load, gate open circuit IL Max. latching current 400 TJ = 25 oC, anode supply = 6V,resistive load Initial T J = T J max. V m Ω 1.64 V ELECTRICAL SPECIFICATIONS Voltage Ratings Type number Sinusoidal half wave, Initial T J = T J max. 105 Parameters IRKU/V105 Units Conditions On-state Conduction A A 165 mA KA 2s T J = T J max TJ = TJ max TJ = 25°C (1) I2t for time t x = I2 √t x √t x . (2) Average power = V T(TO) x I T(AV) + r t x (I T(RMS)) 2 (3) 16.7% x π x I AV < I < π x I AV (4) I > π x I AV |
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