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82K68A 2604HR2 NUV102E 1N5249C 608689 3225K35 HV513 NJU3501D
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  f red ultr afast s oft reco ver y diode, 30 a fe atures ultrafast recovery ultrasoft recovery complian t to rohs designed and qualified for industrial level benef its reduced rfi and emi reduced power loss in diode and switch ing transistor higher frequency operation reduced snubbing reduced parts count descri p t ion pro duct sum mar y v r 600 v v f at 30 a at 25 c i f ( av ) 30 a t rr ( typical ) t j ( maximum ) q rr 55 nc di ( rec ) m / dt anode 1 3 cathode base cathode t o -220 a c N-30ETU06 absol ute maxim um ra tings p arameter symbol test condi tions v alues unit s cathod e to anode voltage v r v maximum continuous forw ard current i = 116 t oc c a single pulse forward current i fsm 300 maximum repetitive forward current i frm 110 maximum powe r dissipation = 25 t oc c w operating junct ion and storage tempe rature range t j , t stg oc s e m i c o n d u c t o r n - 3 0 e t u 0 6 r o h s r o h s a v a i l a b l e r o h s * c o m p l i a n t 5 7 f n e l l h i g h p o w e r p r o d u c t s 1.8 v 600 30 145 - 55 to 150 23 ns 150 c 260 a / s 3 0 e t u 0 6 i s a s t a t e o f t h e a r t u l t r a f a s t d i o d e . e m p l o y i n g t h e l a t e s t i n e p i t a x i a l c o n s t r u c t i o n a n d a d v a n c e d p r o c e s s i n g t e c h n i q u e s i t f e a t u r e s a s u p e r b c o m b i n a t i o n o f c h a r a c t e r i s t i c s w h i c h r e s u l t i n p e r f o r m a n c e w h i c h i s u n s u r p a s s e d b y a n y r e c t i f i e r p r e v i o u s l y a v a i l a b l e . w i t h b a s i c r a t i n g s o f 6 0 0 v a n d 3 0 a c o n t i n u o u s c u r r e n t , t h e i s e s p e c i a l l y w e l l s u i t e d f o r u s e a s t h e c o m p a n i o n d i o d e f o r i g b t s a n d m o s f e t s . i n a d d i t i o n t o u l t r a f a s t r e c o v e r y t i m e , t h e f r e d p r o d u c t l i n e f e a t u r e s e x t r e m e l y l o w v a l u e s o f p e a k r e c o v e r y c u r r e n t ( i ) r r m a n d d o e s n o t e x h i b i t a n y t e n d e n c y t o s n a p - o f f d u r i n g t h e t p o r t i o n o f r e c o v e r y . t h e f r e d f e a t u r e s c o m b i n e b t o o f f e r d e s i g n e r s a r e c t i f i e r w i t h l o w e r n o i s e a n d s i g n i f i c a n t l y l o w e r s w i t c h i n g l o s s e s i n b o t h t h e d i o d e a n d t h e s w i t c h i n g t r a n s i s t o r. t h e s e f r e d a d v a n t a g e s c a n h e l p t o s i g n i f i c a n t l y r e d u c e s n u b b i n g , c o m p o n e n t c o u n t a n d h e a t s i n k s i z e s . t h e f r e d i s i d e a l l y s u i t e d f o r a p p l i c a t i o n s i n p o w e r s u p p l i e s a n d c o n v e r s i o n s y s t e m s ( s u c h a s i n v e r t e r s ) , m o t o r d r i v e s , a n d m a n y o t h e r s i m i l a r a p p l i c a t i o n s w h e r e h i g h s p e e d , h i g h e f f i c i e n c y i s n e e d e d . r e c o v e r y 3 0 e t u 0 6 3 0 e t u 0 6 n-30a tu06 anode 1 3 anode base cathode 2 t o -220 a b 2 v er low l rrm v er low q rr = 25 t oc c = 100 t oc c p d w w w . n e l l s e m i . c o m p a g e 1 o f 6
therma l - mec han ical spe cif ica tio ns p ara meter symbol test conditi ons min . typ . max . units lead temperature t lead 0.063" from case (1.6 mm ) for 10 s thermal resistance , junction to case r thjc - k / w therma l resistance , junction to ambie nt r thja typical socket mount therma l resistance , case to heatsin k r thcs mountin g surface , flat , smooth and gerased weight - - mounting torque 6 (5) - 12 (10) kgf . cm ( lbf . in ) marking device case style to -220 ac s e m i c o n d u c t o r r o h s r o h s n e l l h i g h p o w e r p r o d u c t s g - 2 c 300 - - 80 - - - 0.4 - oz . - 0.07 oc unless otherw ise spec ified ) = 25 p ar ameter symbol tes t condition s v - = 60 a i f - - a - - 600 1.10 10 - - - pf 35 e lectri cal specif ica t ions ( t j cathode to anode breakdown volta ge v br = 100 a i r maximum forwa rd voltage = 30 a i f = 30 a , t i = 125 oc f j maximum reverse leakage curre nt i rm junction capacitance 1.40 1.80 - - oc unless otherw ise spec ified ) = 25 p ar ameter symbol tes t conditions ns - - 30 175 dynami c recove r y charac terist ics perleg ( t j reverse recov ery time i f = 1.0 a, di /dt = -100 a/s, v =30 v, t = 25 c f r j 23 - a - 6 3 - nc - 485 55 - peak recovery c urrent reverse recov ery charge t rr t rr1 t rr2 i rrm1 i rrm2 q rr1 q rr2 t = 125 oc j t = 125 oc j t = 125 oc j t = 25 oc j t = 25 oc j t = 25 oc j i = 30 a f di /dt = -200 a/s f v = 400 v r - v fm c t v = 2 0 0 v r t = 1 5 0 c , v = v r a t e d j r r v = v r a t e d r r i = 0 . 5 a , i = 1 . 0 a , i = 2 5 0 m a ( r g # 1 c k t ) f r r r 30 - 1.70 units max . typ . min . units max . typ . min . a/ s - 160 260 - dl /dt2 (rec)m t = 125 oc j t = 25 oc j - - nh 8 series inductance l s 1 0 0 0 - - measured lead to lead 5 mm from pack age body peak rate of fall of recovery dl /dt1 (rec)m 125 6.0 60 35 10 600 180 1.35 2.0 n - 3 0 e t u 0 6 - current during t b 0.8 0.5 case style to -220 ab 30etu06 30atu06 w w w . n e l l s e m i . c o m p a g e 2 o f 6
s e m i c o n d u c t o r r o h s r o h s n e l l h i g h p o w e r p r o d u c t s n - 3 0 e t u 0 6 f i g . 1 t y p i c a l f o r w a r d v o l t a g e d r o p c h a r a c t e r i s t i c s f i g . 2 t y p i c a l v a l u e s o f r e v e r s e c u r r e n t v s . r e v e r s e v o l t a g e 1 0 0 0 1 0 0 1 0 1 0 0 . 5 1 1 . 5 2 2 . 5 3 f o r w a r d v o l t a g e d r o p - v ( v ) f l n s t a n t a n e o u s f o r w a r d c u r r e n t - i ( a ) f r e v e r s e c u r r e n t - l ( a ) r r e v e r s e v o l t a g e - v ( v ) r 1 0 0 0 1 0 0 1 0 1 0 . 1 0 . 0 1 0 . 0 0 1 0 1 0 0 2 0 0 3 0 0 4 0 0 5 0 0 6 0 0 f i g . 3 t y p i c a l j u n c t i o n c a p a c i t a n c e v s . r e v e r s e v o l t a g e r e v e r s e v o l t a g e - v ( v ) r j u n c t i o n c a p a c t i a n c e - c ( p f ) t 1 0 0 0 1 0 0 1 0 0 1 0 0 2 0 0 3 0 0 4 0 0 5 0 0 6 0 0 t = 1 7 5 j t = 1 2 5 j t = 2 5 j 3 . 5 0 . 0 0 0 1 t = 1 7 5 j t = 1 2 5 j t = 2 5 j t = 1 5 0 j t = 1 0 0 j t = 2 5 j ( p f ) 1 10 100 200 f i g . 4 j u n c t i o n c a p a c i t a n c e v s . r e v e r s e v o l t a g e r e v e r s e v o l t a g e ( v ) , v r j u n c t i o n c a p a c i t a n c e , c j 0 20 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 1 6 0 1 8 0 2 0 0 10 -5 10 -4 10 -3 10 -2 10 -1 1.0 0 t 2 f i g . 5 m a x i m u m e f f e c t i v e t r a n s i e n t t h e r m a l i m p e d a n c e , j u n c t i o n - t o - c a s e v s . p u l s e d u r a t i o n r e c t a n g u l a r p u l s e d u r a t i o n ( s e c o n d s ) t h e r m a l i m p e d a n c e ( c / w ) , z j c single pulse p d m n o t e : d = 0 . 1 0 0 . 2 0 0 . 3 0 0 . 4 0 0 . 5 0 0 . 6 0 0 . 7 0 0 . 8 0 0 . 9 0 0 . 5 0 . 7 0 . 3 0 . 1 0 . 0 5 0 . 9 t 1 d u t y f a c t o r d = t / t 1 2 p e a k t = p x z + t dm j j c c w w w . n e l l s e m i . c o m p a g e 3 o f 6
s e m i c o n d u c t o r r o h s r o h s n e l l h i g h p o w e r p r o d u c t s n - 3 0 e t u 0 6 5 1 2 n 3 0 e t u 0 6 1 nell 2 - 3 - current rating (30 = 30 a ) 4 - to -220 ac or to -220 ab 5 voltage r a t ing (06 = 600 v ) 6 ultrafast recovery s i n g l e d i o d e - - - ordering information t abel device code e = 2 p i n s a = 3 p i n s 4 3 - see note (1) dc square wave (d = 0.5) rated v applied r f i g . 6 m a x . a l l o w a b l e c a s e t e m p e r a t u r e v s . a v e r a g e f o r w a r d c u r r e n t a l l o w a b l e c a s e t e m p e r a t u r e ( c ) a v erage forw ard c urrent i (a) f(a v) fig.7 reverse recovery time vs. current rate of change ( n s ) 0 200 400 600 800 1000 1200 c u r r e n t r a t e o f c h a n g e ( a / s ) , - d i / d t f r e v e r s e r e c o v e r y t i m e , t r r 15 a 30 a 60 a 1 8 0 1 6 0 1 4 0 1 2 0 1 0 0 8 0 0 5 1 0 1 5 2 0 2 5 3 0 3 5 4 0 4 5 t = 1 2 5 c j v = 4 0 0 v r 6 0 4 0 2 0 2 0 0 0 1 6 0 1 8 0 1 0 0 1 2 0 8 0 1 4 0 60 50 40 30 20 10 0 fig.8 maximum average forward current vs. case temperature 25 50 75 100 125 150 175 c a s e t e m p e r a t u r e ( c ) l ( a ) f ( a v ) duty cycle = 0.5 t = 1 7 5 c j fig.9 reverse recovery charge vs. current rate of change ( n c ) 0 200 400 600 800 1000 1200 c u r r e n t r a t e o f c h a n g e ( a / s ) , - d i / d t f r e v e r s e r e c o v e r y c h a r g e , q r r 60 a 15 a 30 a 1200 1000 800 600 400 200 0 t = 1 2 5 c j v = 4 0 0 v r w w w . n e l l s e m i . c o m p a g e 4 o f 6
f i g . 9 r e v e r s e r e c o v e r y p a r a m e t e r t e s t c i r c u i t f i g . 1 0 r e v e r s e r e c o v e r y w a v e f o r m a n d d e f i n i t i o n s s e m i c o n d u c t o r r o h s r o h s n e l l h i g h p o w e r p r o d u c t s n - 3 0 e t u 0 6 w w w . n e l l s e m i . c o m p a g e 5 o f 6
s e m i c o n d u c t o r r o h s r o h s n e l l h i g h p o w e r p r o d u c t s n - 3 0 e t u 0 6 t o - 2 2 0 a c p a c k a g e o u t l i n e a n o d e c a t h o d e 1 0 .2 6 0 .4 0 4 [ ] 9 .9 8 0 .3 9 3 [ ] ? [0 .1 5 3 ] 3 .8 9 ? [0 .1 4 9 ] 3 .7 8 2 .9 0 0 .1 1 4 [ ] 2 .5 9 0 .1 0 2 [ ] 1 2 .9 0 0 .5 0 8 [ ] 1 2 .5 0 0 .4 9 2 [ ] 3 .9 1 0 .1 5 4 [ ] 3 .4 0 0 .1 3 4 [ ] 1 3 .4 9 0 .5 3 1 [ ] 1 3 .0 8 0 .5 1 5 [ ] 2 .5 4 0 .1 0 0 [ ] t y p 5 .1 8 0 .2 0 4 [ ] 4 .9 8 0 .1 9 6 [ ] 0 .0 5 7 [1 .4 5 ] 0 .0 4 7 [1 .1 9 ] 0 .0 3 4 [0 .8 6 ] 0 .0 3 0 [0 .7 6 ] c a t h o d e 4 .7 2 0 .1 8 6 [ ] 4 .4 2 0 .1 7 4 [ ] 1 .4 7 0 .0 5 8 [ ] 1 .1 9 0 .0 4 7 [ ] 9 .1 9 0 .3 6 2 [ ] 8 .9 9 0 .3 5 4 [ ] 2 .7 9 0 .1 1 0 [ ] 2 .5 1 0 .0 9 9 [ ] 0 .4 6 0 .0 1 8 [ ] 0 .3 6 0 .0 1 4 [ ] n - 3 0 e t u 0 6 2 p i n s anode 1 3 cathode base cathode 2 w w w . n e l l s e m i . c o m p a g e 6 o f 6 t o - 2 2 0 a b p a c k a g e o u t l i n e a n o d e 1 0 .2 6 0 .4 0 4 [ ] 9 .9 8 0 .3 9 3 [ ] ? [0 .1 5 3 ] 3 .8 9 ? [0 .1 4 9 ] 3 .7 8 2 .9 0 0 .1 1 4 [ ] 2 .5 9 0 .1 0 2 [ ] 1 2 .9 0 0 .5 0 8 [ ] 1 2 .5 0 0 .4 9 2 [ ] 3 .9 1 0 .1 5 4 [ ] 3 .4 0 0 .1 3 4 [ ] 1 3 .4 9 0 .5 3 1 [ ] 1 3 .0 8 0 .5 1 5 [ ] 2 .5 4 0 .1 0 0 [ ] t y p 5 .1 8 0 .2 0 4 [ ] 4 .9 8 0 .1 9 6 [ ] 0 .0 5 7 [1 .4 5 ] 0 .0 4 7 [1 .1 9 ] 0 .0 3 4 [0 .8 6 ] 0 .0 3 0 [0 .7 6 ] c a t h o d e 4 .7 2 0 .1 8 6 [ ] 4 .4 2 0 .1 7 4 [ ] 1 .4 7 0 .0 5 8 [ ] 1 .1 9 0 .0 4 7 [ ] 9 .1 9 0 .3 6 2 [ ] 8 .9 9 0 .3 5 4 [ ] 2 .7 9 0 .1 1 0 [ ] 2 .5 1 0 .0 9 9 [ ] 0 .4 6 0 .0 1 8 [ ] 0 .3 6 0 .0 1 4 [ ] n - 3 0 a t u 0 6 3 p i n s anode 1 3 anode base cathode 2 c a t h o d e


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