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  2007. 7. 12 1/2 semiconductor technical data revision no : 1 switching type power supply application. converter & chopper application. features average output rectified current : i o =5a (tc=117 ). repetitive peak reverse voltage : v rrm =60v. fast reverse recovery time : t rr =35ns. low peak forward voltage : 0.50v(typ.) maximum rating (ta=25 ) dim millimeters to-220is 0.76+0.09/-0.05 a b c d e f g 0.5+0.1/-0.05 h 1.2+0.25/-0.1 1.5+0.25/-0.1 j k l m n p q r f q 1 2 3 l p n b g j m d n h e r k l s 0.5 typ s d a c 2.70 0.3 + _ 12.0 0.3 + _ 13.6 0.5 + _ 3.7 0.2 + _ 3.2 0.2 + _ 10.0 0.3 + _ 15.0 0.3 + _ 3.0 0.3 + _ 4.5 0.2 + _ 2.54 0.1 + _ + 2.6 0.2 _ 6.8 0.1 + _ 1. anode 2. cathode 3. anode electrical characteristics (ta=25 ) b5a60vic schottky barrier type diode (low vf type) characteristic symbol test condition min. typ. max. unit peak forward voltage (note) v fm i fm =2.5a - 0.50 0.55 v repetitive peak reverse current (note) i rrm v rrm =rated - - 150 reverse recovery time (note) t rr i f =1.0a, di/dt=-20a/ - - 35 ns thermal resistance (note) r th(j-c) juction to case - - 4.0 /w characteristic symbol rating unit repetitive peak reverse voltage v rrm 60 v average output rectified current (tc=117 ) (note) i o 5 a peak one cycle surge forward current (non-repetitive 60hz) i fsm 70 a junction temperature t j -40 150 storage temperature range t stg -55 150 note : average forward current of centertap full wave connection. note : a value of one cell 3 1 2
2007. 7. 12 2/2 b5a60vic revision no : 1 f(av) average forward current i (a) average forward current i (a) f(av) ambient temperature t ( c) a current derating (ambient) case temperature tc ( c) current derating (case) p (w) f(av) average forward current i (a) f(av) f(av) f(av) p - i average forward power dissipation reverse current i (ma) r reverse voltage v (v) r i - v i - v f forward voltage v (v) f forward current i (a) ff rr 0 0 0 0 0 0.001 0 80 10 0.01 0.1 1.0 10 100 100 1.0 rated voltage r =4.0 c/w th(j-c) dc 150 square wave applied 40 80 120 160 rated voltage applied r =60 c/w th(j-a) (no heat sink) dc 180 square wave 2.0 4.0 6.0 8.0 2.0 4.0 10 180 square wave dc i av = 20 pk i 6.0 8.0 0 0.1 0.3 0.5 1.0 3.0 5.0 1.0 0.2 0.4 0.6 0.8 1.0 tc=150 c tc=25 c 20 30 40 50 60 110 120 130 140 150 90 2.0 3.0 4.0 5.0 6.0 7.0 8.0 0.5 20 60 100 140 1.0 1.5 2.0 2.5 3.0 3.5 4.0 sine w a ve 10 5 t j =25 c t j =150 c t j =100 c


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