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!" # $%! & '" ("% )% $" % $**+$(+&, ( +- *%.% /0 / 1 ) )$(2 %! 3 !" ! !! " #$ %! & !! ' #$ (! ) ) *$ ) ( +, ! (! ) ) + - . $/0 #1*$ * ) (! 2!-! !! % $34 -(0 " 5 . . , ##6 * $34 -(0 " 5 . . , 77 /7 +, ! 2!-! !! 2 $34 -(0 8"! ( # , (0 ' 6$ ( +, ! (! +-! + + - . #$ 0 ! 0 ' #6$ 5 9 ! !. ) ! 0 # ,) !: % !: $/8; $/< 8; =! .!! 2!-! ) ) 2 2 0 + !0 ! /$/ ) (! !! ) ) 0 + !0 ! / & ' # 340 )#$)0 ! ! >+ ? 2 ' ' 5 . . , // .! ' ' 5 . . , /6 15 ' ' 5 . . , /*$ forward voltage 0 0.2 0.4 0.6 0.8 1 1.2 0.1 1 10 D4SBS4 tc=150 c [max] tc=25 c [max] pulse measurement per diode tc=150 c [typ] tc=25 c [typ] forward voltage v f [v] forward current i f [a] junction capacitance 10 100 1000 D4SBS4 0.1 1 10 0.05 0.5 0.2 20 50 5 2 200 500 2000 5000 0.02 0.05 0.5 0.2 20 5 2 0.005 0.002 reverse voltage v r [v] junction capacitance cj [pf] f=1mhz tc=25 c typ per diode reverse current 0.01 0.1 1 10 100 1000 0 5 10 15 20 25 30 35 40 D4SBS4 tc=150 c [max] tc=150 c [typ] pulse measurement per diode tc=125 c [typ] tc=100 c [typ] tc=75 c [typ] reverse voltage v r [v] reverse current i r [ma] 0 1 2 3 4 5 6 7 8 0 10 20 30 40 50 D4SBS4 0.3 reverse power dissipation tj = 150 c sin 0.2 0.5 d=0.05 dc 0.1 0.8 reverse voltage v r [v] reverse power dissipation p r [w] 0 t p v r t d=t p /t 0 t p i o t d=t p /t 0 1 2 3 4 5 6 7 8 0 1 2 3 4 5 6 7 D4SBS4 0.3 forward power dissipation tj = 150 c sin 0.2 0.1 d=0.8 dc 0.5 0.05 average rectified forward current i o [a] forward power dissipation p f [w] 0 t p i o t d=t p /t 0 20 40 60 80 100 120 140 160 0 1 2 3 4 5 6 7 8 D4SBS4 0.3 derating curve v r = 20v sin 0.2 0.1 d=0.8 dc 0.5 0.05 0 v r case temperature tc [ c] average rectified forward current i o [a] 0 t p i o t d=t p /t 0 20 40 60 80 100 120 140 160 0 0.5 1 1.5 2 2.5 3 3.5 4 D4SBS4 0.3 derating curve v r = 20v sin 0.2 0.1 d=0.8 dc 0.5 0.05 0 v r ambient temperature ta [ c] average rectified forward current i o [a] peak surge forward capability 0 20 40 60 80 100 1 10 100 D4SBS4 2 5 20 50 i fsm 10ms 10ms 1 cycle number of cycles [cycles] peak surge forward current i fsm [a] non-repetitive, sine wave, tj=25 c before surge current is applied t p i rp 0 v r 0.5i rp v rp i r p rrsm = i rp v rp 0 20 40 60 80 100 120 0 50 100 150 sbd repetitive surge reverse power derating curve junction temperature tj [ c] p rrsm derating [%] 0.1 1 10 1 10 100 sbd repetitive surge reverse power capability pulse width t p [ m s] p rrsm (t p ) / p rrsm (t p =10 m s) ratio t p i rp 0 v r 0.5i rp v rp i r p rrsm = i rp v rp |
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