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GL3PR41 MSJ200 S7812 F12C05 BTA44 MIC2566 OH10007 04304
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fig. 1 - current ratings characteristic s fig. 2 - forward voltage drop characteristics fig. 3 - total power loss characteristics fig. 4 - maximum non-repetitive surge current fig. 5 - maximum non-repetitive surge current 60 80 100 120 140 160 0 5 10 15 20 25 30 120 (rect) m t 25 s e r i es total output current (a) maximum allowable case temperatur e ( c) 1 10 100 1000 00.511.522.533.54 instantaneous forward voltage (v) i n s t an t a n e o u s f o r w ar d c u r r en t ( a) m t 25 s e r i e s per junction t = 15o c t = 25c j j 0 25 5 0 75 100 125 150 maximum allowable ambient temperature ( c) 1 0 k / w 7 k / w 5 k / w 4 k / w 3 k / w 2 k / w 1 k / w r = 0 . 7 k / w - d e l t a r t h s a 0 5 10 15 20 25 30 35 40 45 50 55 0 5 10 15 20 25 120 (rect) total output current (a) ma xi mu m t o t a l p o w e r l o s s ( w) m t 2 5 s e r i e s t = 150c j 80 100 120 140 160 180 200 220 240 260 280 300 320 1 10 100 peak half sine wave forward curr ent (a) number of equal amplitude half cycle current pulses (n) m t 25 s e r i es initial t = 150 c @ 60 hz 0.0083 s @ 50 hz 0.0100 s at any rated load condition and with rated v applied following surge. rrm j 80 120 160 200 240 280 320 360 400 0.01 0.1 1 peak half sine wav e fo rward cur rent (a) pulse train duration (s) maximum non repetitive surge current m t 2 5 s e r i e s initial t = 150 c no voltage reapplied rated v reapplied rrm versus pulse train duration. j   
    

  
 
 


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fig. 6 - current ratings characteristics fig. 7 - forward voltage drop characteristics fig. 8 - total power loss characteristics fig. 9 - maximum non-repetitive surge current fig. 10 - maximum non-repetitive surge current 50 70 90 110 130 150 0 5 10 15 20 25 30 35 40 120 (rect) m t 35 s e r i es max i mum all o w abl e c a se temperat ure ( c) total output current (a) 1 10 100 1000 00.511.522.533.54 instantaneous forward voltage (v) in stan taneou s forw ard c urren t (a) m t 35 s e r i e s t = 15o c t = 25c j j per juncti on 0 25 50 75 100 125 150 maximum allowable ambi ent temperature ( c) r = 0 .7 k /w - d e l t a r t h s a 1 0 k / w 7 k / w 5 k / w 4 k / w 3 k / w 2 k / w 1 k / w 0 10 20 30 40 50 60 70 80 0 5 10 15 20 25 30 35 120 (rect) total output current (a) ma x i mu m t o t a l p o w e r l o s s ( w) m t 35 s e r i es t = 150c j 100 150 200 250 300 350 400 450 1 1 0 100 peak half sine wave forward current (a) number of equal amplitude half cycle current pulses (n) m t 35 s e r i e s initial t = 150 c @ 60 hz 0.0083 s @ 50 hz 0.0100 s at any rated load condition and with rated v applied following surge. rrm j 100 150 200 250 300 350 400 450 500 0.01 0.1 1 peak half sin e wave for ward curr ent ( a) pulse train duration (s) maximum non repetitive surge current initial t = 150 c no voltage reapplied rated v reapplied rrm versus pulse train duration. j m t 35 s e r i e s   
    

  
 
 


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fig. 11 - thermal impedance z thjc characteristics fig. 12 - thermal impedance z thjc characteristics 0.001 0.01 0.1 1 10 0.001 0.01 0.1 1 10 1 00 square wave pulse duration (s) m t 35 s e r i es pe r bridge trans i ent thermal impedanc e z (k/w) thjc steady state value: r = 1.16 k/w (dc operation) thjc 0.001 0.01 0.1 1 10 0.001 0.01 0.1 1 1 0 100 square wave pulse duration (s) m t 25 s e r i es per bridge trans i ent thermal impedan ce z (k/w) thjc steady state value: r = 1.42 k/w (dc operation) thjc   
    

  
 
 


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