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> >y>>?>?>?>>y>>?>>t>>>>t>t>?> h>>?>h  >g >e >@ >r  0 r g x o h    >/ >. >.>?>->4>3>.>t  >n >a >d >k >@ >/ >. >. >u >4  "i "i ? w >8 >a >f >? >p >? >a >r >c >p >g >q >r >g >a >q  >a >s >p >t >c >q                                                    > 012345 0 20 40 60 80 100 120 140 160 180 200 collector to emitter voltage v ce (v) collector current i c (a) fig.1 - output characteristics (typical) tj=25c 11v 10v v ge =20v 9v 8v 12v 13v 15v 01234 0 20 40 60 80 100 120 140 160 180 200 collector to emitter voltage v ce (v) collector current i c (a) fig.2 - saturation voltage characteristics (typical) tj=25c tj=125c v ge =15v tj=150c 4681 01 2 0 20 40 60 80 100 120 140 160 180 200 gate to emitter voltage v ge (v) collector current i c (a) fig.3 - transfer characteristics (typical) tj=25c tj=125c v ce =20v tj=150c >>a>> >>>> >>t>> > >t>> >>> >a>> >?>> > >> >y>> >y>> >t>> >t>> >?>> >?>> >>> ??? ? ?>>? ? ?>>??? ???>>y?>>>??>?>? >??????? ??>? ?>>???? ? ??>???? ? ??>? >>?>? >>>??>? >? ? ?>? ?>>???? ? ??>???? ? ??>? >>? >>>??>? >>t> >>y> >>y> >> > > >y> >y> >t> fig.4 - gate charge vs. collector to emitter voltage (typical) >? >? >>y>>> ??>>t>b] ???>>y>>? ???>>t>>? ???>>?>>? 0 20 40 60 80 100 3 10 30 100 300 1000 3000 10000 collector current i c (a) switching time t (ns) fig.5 - collector current vs. switching time (typical) td off t f t r(ic) td on v cc =300v r g =8.2  v ge =15v tj=125c tj=150c inductive load 3 10 30 100 30 100 300 1000 3000 10000 series gate impedance r g (  ) switching time t (ns) fig.6 - series gate impedance vs. switching time (typical) v cc =300v i c =100a v ge =15v tj=125c tj=150c inductive load tf tr (i c ) td on td off  
> >>>y>>?>?>?>>y>>?>>t>>>>t>t>?> h>>?>h  >g >e >@ >r  0 r g x o h    >/ >. >.>?>->4>3>.>t  >n >a >d >k >@ >/ >. >. >u >4  "i "i ? w >8 >a >f >? >p >? >a >r >c >p >g >q >r >g >a >q  >a >s >p >t >c >q                                                     0 2 04 06 08 01 0 0 0 1 2 3 4 5 6 collector current i c (a) switching loss e sw (mj/pulse) fig.7 - collector current vs. switching loss (typical) e off e on v cc =300v r g =8.2  v ge =15v tj=125c tj=150c inductive load e rr 3 10 30 100 0.1 0.3 1 3 10 30 100 series gate impedance r g (  ) switching loss e sw (mj/pulse) fig.8 - series gate impedance vs. switching loss (typical) e off e on v cc =300v i c =100a v ge =15v tj=125c tj=150c inductive load e rr 01234 0 20 40 60 80 100 120 140 160 180 200 forward voltage v f (v) forward current i f (a) fig.9 - forward characteristics of free wheeling diode (typical) tj=25c tj=125c tj=150c 0 200 400 600 800 0.1 0.3 1 3 10 30 100 300 1000 collector to emitter voltage v ce (v) reverse voltage v r (v) collector current i c (a) reverse recovery current i rr (a) fig.11 - reverse bias safe operating area r g =8.2  , v ge =15v, tj< 150c (chip level) igbt fwd 0 2 04 06 08 01 0 0 10 20 30 40 50 60 70 80 90 100 200 300 forward current i f (a) peak reverse recovery current i rrm (a) reverse recovery time trr (ns) fig.10 - fwd reverse recovery characteristics (typical) i rrm trr v cc =300v, v ge =15v, r g =8.2  tj=125c tj=150c 10 -5 10 -4 10 -3 10 -2 10 -1 11 0 1 3x10 -3 1x10 -2 3x10 -2 1x10 -1 3x10 -1 1 3 time t (s) transient thermal impedance rth (j-c) (c/w) fig.12 - transient thermal impedance t c =25c 1 shot pulse fwd igbt  


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