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P400 Series Vishay High Power Products Passivated Assembled Circuit Elements, 40 A FEATURES • Glass passivated junctions for greater reliability • Electrically isolated base plate • Available up to 1200 VRRM/VDRM • High dynamic characteristics • Wide choice of circuit configurations • Simplified mechanical design and assembly • UL E78996 approved PACE-PAK (D-19) • Compliant to RoHS directive 2002/95/EC DESCRIPTION PRODUCT SUMMARY IO 40 A The P400 series of integrated power circuits consists of power th
P400 Series Vishay High Power Products Passivated Assembled Circuit Elements, 40 A ON-STATE CONDUCTION PARAMETER SYMBOL Maximum DC output current at case temperature IO TEST CONDITIONS ITSM, IFSM t = 8.3 ms t = 10 ms I2t t = 8.3 ms t = 10 ms t = 8.3 ms Maximum I2√t for fusing I2√t 40 A 80 °C No voltage reapplied 385 100 % VRRM reapplied 325 400 A t = 10 ms t = 8.
P400 Series Passivated Assembled Circuit Elements, 40 A Vishay High Power Products TRIGGERING PARAMETER SYMBOL Maximum peak gate power Maximum average gate power Maximum peak gate current Maximum peak negative gate voltage Maximum gate voltage required to trigger TEST CONDITIONS 8 PG(AV) 2 UNITS W IGM 2 A -VGM 10 V VGT TJ = - 40 °C 3 TJ = 25 °C 2 TJ = 125 °C IGT Maximum gate voltage that will not trigger VGD Maximum gate current that will not trigger IGD V 1 Anode supply = 6 V re
P400 Series Vishay High Power Products Passivated Assembled Circuit Elements, 40 A 120 + Maximum Total Power Loss (W) Maximum Total Power Loss (W) 120 ~ 100 80 180° (sine) 60 40 TJ = 125 °C 20 100 = /W 1.5 60 0. 7 K/ W K/W 2K -Δ R /W 3 K/W 40 5 K/W 20 10 K/W 0 0 5 10 15 20 25 30 35 0 40 25 50 75 100 125 Maximum Allowable Ambient Temperature (°C) Fig.
P400 Series Passivated Assembled Circuit Elements, 40 A 350 400 Peak Half Sine Wave On-State Current (A) 300 Peak Half Sine Wave On-State Current (A) At any rated load condition and with rated VRRM applied following surge. Initial TJ = 125 °C at 60 Hz 0.0083 s at 50 Hz 0.0100 s 325 275 250 225 200 175 Maximum non-repetitive surge current versus pulse train duration. Control of conduction may not be maintained.
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