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!"!#$%& %'%( )!"$ "!#$%& '%"# *"%**#!+ ,-./##'* 0!1&$*1%2*' 0!1&$*1%,34 5"%% / '5 /6 !" # $ ! "!%&'(! )("*" $) + !" , # $ ! "!%&'(! -$) *.% !/ 0 ' % # "- ( 1'" !!/*"" ( !" "- ( **' "- ( 2 3 "- ( **' +!(' &' % " " (! # ( "-( 1'" !"' - "- ( **' "- ( 2 3 "- ( **' " "(! # ( "-"(%!'"**' 3 4'''"&(&''" 3 52 66 7% - 3 8&'''"&(&''" 59 7% - 4'''('*(("! ? 52 66 7% - 8&'''('*(("! 59 7% - 3 '" * , 3 - #% -$)%" -((!*'( !"" # 3 +('"!'" 3 "-( *.(!/("" # - %"3 **' '. !" !"" # 5"%% / '5 /6 !"" # :! "!*"!"*"! /," $) (""*"! /," "&'(("! %:! "! " ;< = :! "!%)*"! ( "&'(("! % (" ;< &"(!. !"!">?2+#="&"(!. / 1 @(@"+#= / " #**"&" )(("0' +a=b#c1/#/*. +"'!"@' $ % & ' ( () *% (+$""* ,-. / ! ? 5&''!"@'(&("&! !""&'(("! &! (*""!" ! "!!'("&!)7 ( - ( ( ( ( ( # $ $ $ , ;< - $ $ + - ~ 1 2 3 " 5"%% / '5 /6 ! %%*22%%27! 8 d/)!""!()& "(" ( d/)!""!()& "(" ( 80 90 100 110 120 130 140 150 0 100 200 300 400 500 600 7 00 30 60 90 120 180 maximum allowable case temperature (c ) conduction angle average forward current (a) irkd600.. series r (dc) = 0.065 k/w thjc 80 90 100 110 120 130 140 150 0 200 400 600 800 10 00 dc 30 60 90 120 180 maximum allowable case temperature (c ) conduction period average forward current (a) irkd600.. series r (dc) = 0.065 k/w thjc # 5"%% / '5 /6 d,/d=4(()& "(" ( d /d=4(()& "(" ( d/1!/*""+)!" d/1!/*""+)!" d/d=4(()& "(" ( 0 100 200 300 400 500 600 700 0 100 200 300 400 500 6 00 average forward current (a) rms limit maximum average forward power loss (w ) conduction angle 180 120 90 60 30 irkd600.. series per junction t = 150c j 0 100 200 300 400 500 600 700 800 900 1000 0 200 400 600 800 10 00 dc 180 120 90 60 30 average forward current (a) rms limit maximum average forward power loss (w ) conduction period irkd600.. series per junction t = 150c j 4000 6000 8000 10000 12000 14000 16000 18000 1 10 100 peak half sine wave forward current (a ) number of equal amplitude half cycle current pulses (n ) irkd600.. series per junction initial t = 150c @ 60 hz 0.0083 s @ 50 hz 0.0100 s at any rated load condition and with rated v applied following surge. rrm j 0 25 50 75 100 125 150 maximum allowable ambient temperature (c ) r = 0 . 0 2 k / w - d e l t a r t h s a 0 . 0 4 k / w 0. 06 k /w 0 . 0 8 k / w 0 . 1 2 k / w 0. 16 k / w 0 . 2 5 k / w 0 . 3 5 k / w 0 . 5 k / w 0 200 400 600 800 1000 0 200 400 600 800 1000 total rms output current (a) maximum total forward power loss (w ) irkd600.. series per junction t = 150c j 180 (sine) dc 4000 6000 8000 10000 12000 14000 16000 18000 20000 0.01 0.1 1 peak half sine wave forward current (a ) pulse train duration (s) maximum non repetitive surge curren t initial t = 150c no voltage reapplied rated v reapplied rrm versus pulse train duration . j irkd600.. series per junction $ 5"%% / '5 /6 d/&'*! e )& "(" d /d=4(()& "(" ( d /d=4(()& "(" ( 0 25 50 75 100 125 150 maximum allowable ambient temperature (c ) r = 0 . 0 1 k / w - d e l t a r t h s a 0 . 0 2 k / w 0 .0 3 k / w 0 . 0 4 k / w 0 . 0 5 k / w 0 . 0 8 k / w 0 . 1 2 k / w 0 . 2 k / w 0 500 1000 1500 2000 2500 3000 0 200 400 600 800 1000 1200 total output current (a) maximum total power loss (w) 180 (sine) 180 (rect) 2 x irkd600.. series single phase bridge connected t = 150c j 0 25 50 75 100 125 150 maximum allowable ambient temperature (c ) r = 0 . 0 1 k / w - d e l t a r 0 . 0 2 k / w 0 . 0 3 k / w 0 . 0 5 k / w 0 . 0 8 k / w 0 . 1 2 k / w 0 . 2 k / w t h s a 0 500 1000 1500 2000 2500 3000 3500 4000 4500 0 300 600 900 1200 1500 1800 total output current (a) maximum total power loss (w) 120 (rect) 3 x irkd600.. series three phase bridge connected t = 150c j 0.001 0.01 0.1 0.001 0.01 0.1 1 10 1 00 square wave pulse duration (s) thjc transient thermal impedance z (k/w ) irkd600.. series per junction steady state value: r = 0.065 k/w (dc operation) thjc |
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