IPI076N12N3 G IPP076N12N3 G TM OptiMOS 3 Power-Transistor Product Summary Features V 120 V DS N-channel, normal level R 7.6 mW DS(on)max Excellent gate charge x R product (FOM) DS(on) I 100 A D Very low on-resistance R DS(on) 175 C operating temperature Pb-free lead plating RoHS compliant halogen free 1) Qualified according to JEDEC for target application Ideal for high-frequency switching and synchronous rectification Type IPI076N12N3 G IPP076N12N3 G Package PG-TO262-3 PG-TO220-3 Marking 076N12N 076N12N Maximum ratings, at T =25 C, unless otherwise specified j Parameter Symbol Conditions Value Unit I T =25C Continuous drain current 100 A D C T =100C 76 C 2) I T =25C 400 Pulsed drain current D,pulse C E Avalanche energy, single pulse I =100A, R =25W 230 mJ AS D GS 3) V 20 V Gate source voltage GS Power dissipation P T =25C 188 W tot C Operating and storage temperature T , T -55 ... 175 C j stg IEC climatic category DIN IEC 68-1 55/175/56 Rev. 2.4 page 1 2013-09-25IPI076N12N3 G IPP076N12N3 G Values Parameter Symbol Conditions Unit min. typ. max. Thermal characteristics R Thermal resistance, junction - case - - 0.8 K/W thJC R minimal footprint - - 62 4) thJA Thermal resistance, junction - ambient 5) - - 40 6 cm2 cooling area Electrical characteristics, at T =25 C, unless otherwise specified j Static characteristics Drain-source breakdown voltage V V =0V, I =1mA 120 - - V (BR)DSS GS D Gate threshold voltage V V =V , I =130A 2 3 4 GS(th) DS GS D V =100V, V =0V, DS GS Zero gate voltage drain current I - 0.1 1 A DSS T =25C j V =100V, V =0V, DS GS - 10 100 T =125C j Gate-source leakage current I V =20V, V =0V - 1 100 nA GSS GS DS Drain-source on-state resistance R V =10V, I =100A - 6.5 7.6 m DS(on) GS D R Gate resistance - 1.5 - W G V >2 I R , DS D DS(on)max g Transconductance 58 116 - S fs I =100A D 1) J-STD20 and JESD22 2) See figure 3 3) T =150 C and duty cycle D=0.01 for V <-5V jmax gs 4) 2 Device on 40 mm x 40 mm x 1.5 mm epoxy PCB FR4 with 6 cm (one layer, 70 m thick) copper area for drain connection. PCB is vertical in still air. Rev. 2.4 page 2 2013-09-25