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1N5232 ADXRS450 C2412 136ES 1N5232 M7815 11A00 BU207
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  l o w i q , l o w d r o p o u t 9 0 0 m a f i x e d v o l t a g e r e g u l a t o r c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 a n p e c r e s e r v e s t h e r i g h t t o m a k e c h a n g e s t o i m p r o v e r e l i a b i l i t y o r m a n u f a c t u r a b i l i t y w i t h o u t n o t i c e , a n d a d v i s e c u s t o m e r s t o o b t a i n t h e l a t e s t v e r s i o n o f r e l e v a n t i n f o r m a t i o n t o v e r i f y b e f o r e p l a c i n g o r d e r s . f e a t u r e s a p p l i c a t i o n s n o t e b o o k c o m p u t e r p d a o r p o r t a b l e e q u i p m e n t s n o i s e - s e n s i t i v e i n s t r u m e n t a t i o n s y s t e m s l o w n o i s e : 5 0 m v r m s ( 1 0 0 h z t o 1 0 0 k h z ) l o w q u i e s c e n t c u r r e n t : 5 0 m a ( n o l o a d ) l o w d r o p o u t v o l t a g e : 2 1 0 m v ( @ 9 0 0 m a ) v e r y l o w s h u t d o w n c u r r e n t : < 1 m a f i x e d o u t p u t v o l t a g e : 1 . 3 v ~ 3 . 4 v s t a b l e w i t h 4 . 7 m f o u t p u t c a p a c i t o r s t a b l e w i t h a l u m i n u m , t a n t a l u m o r c e r a m i c c a p a c i t o r s . r e v e r s e c u r r e n t p r o t e c t i o n n o p r o t e c t i o n d i o d e s n e e d e d b u i l t i n t h e r m a l p r o t e c t i o n b u i l t i n c u r r e n t l i m i t p r o t e c t i o n c o n t r o l l e d s h o r t c i r c u i t c u r r e n t : 2 0 0 m a f a s t t r a n s i e n t r e s p o n s e s h o r t s e t t i n g t i m e s o t - 8 9 , s o t - 8 9 - 5 , s o t - 2 2 3 , s o - 8 , t o - 2 5 2 a n d t o - 2 5 2 - 5 p a c k a g e s l e a d f r e e a v a i l a b l e ( r o h s c o m p l i a n t ) p i n c o n f i g u r a t i o n s o t - 8 9 ( t o p v i e w ) v in gnd v out 1 2 3 tab is gnd s o - 8 ( t o p v i e w ) s o t - 2 2 3 ( t o p v i e w ) 1 2 3 4 5 6 7 8 in gnd gnd shdn byp gnd gnd out v out gnd v in 1 2 3 tab is gnd t o - 2 5 2 - 5 ( t o p v i e w ) tab is gnd 1 2 3 v out v in g e n e r a l d e s c r i p t i o n t h e a p l 5 9 0 1 / 2 i s m i c r o p o w e r , l o w n o i s e , l o w d r o p o u t l i n e a r r e g u l a t o r . o p e r a t e f r o m 2 . 7 v t o 6 v i n p u t v o l t a g e a n d d e l i v e r u p t o 9 0 0 m a . t y p i c a l o u t p u t n o i s e i s j u s t 5 0 m v r m s w i t h t h e a d d i t i o n o f a n e x t e r n a l 0 . 1 m f b y p a s s c a p a c i t o r i n b p p i n a n d t y p i c a l d r o p o u t v o l t a g e i s o n l y 2 1 0 m v a t 9 0 0 m a l o a d i n g . d e s i g n e d f o r u s e i n b a t - t e r y - p o w e r e d s y s t e m , t h e l o w 5 0 m a q u i e s c e n t c u r - r e n t m a k e s i t a n i d e a l c h o i c e . t o - 2 5 2 ( t o p v i e w ) a p l 5 9 0 1 bp v out gnd v in 1 2 3 4 5 tab is gnd shdn s o t - 8 9 - 5 ( t o p v i e w ) v in gnd v out 1 2 3 5 4 shdn bp gnd d e s i g n w i t h a n i n t e r n a l p - c h a n n e l m o s f e t p a s s t r a n s i s t o r , t h e a p l 5 9 0 1 / 2 m a i n t a i n s a l o w s u p p l y c u r r e n t , i n d e p e n d e n t o f t h e l o a d c u r r e n t a n d d r o p o u t v o l t a g e . o t h e r f e a t u r e s i n c l u d e r e v e r s e c u r r e n t p r o t e c t i o n , t h e r m a l - s h u t d o w n p r o t e c t i o n , c u r r e n t l i m i t p r o t e c t i o n t o e n s u r e s p e c i f i e d o u t p u t c u r r e n t a n d c o n - t r o l l e d s h o r t - c i r c u i t c u r r e n t . t h e a p l 5 9 0 1 / 2 r e g u l a t o r c o m e i n a m i n i a t u r e s o t - 8 9 , s o t - 8 9 - 5 , s o t - 2 2 3 , s o - 8 , t o - 2 5 2 a n d t o - 2 5 2 - 5 p a c k a g e s .
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 2 package code d : s ot-89 d5 : sot-89-5 u : to-252 u5 : to-252-5 v : sot-223 k : so-8 temp. range c : 0 to 70 c handling code tr : tape & reel voltage code : 13 : 1.3v ~ 34 : 3.4v lead free code l : lead free device blank : original device APL5901/2 - handling code temp. range package code voltage code APL5901/2 xxxxx13 APL5901/2 - 13 d/v/k : xxxxx - date code , 13 - 1.3v 13 APL5901/2 xxxxx APL5901/2 - 13 u : xxxxx - date code , 13 - 1.3v lead free code p i n d e s c r i p t i o n pin no. name i/o description 1 v in i supply voltage input. 2 gnd ground pins of the circuitry, and all ground pins must be soldered to pcb with proper power dissipation. 3 shdn (note1) i shutdown control pin, low = off , high = nor mal . don?t leave open. 4 bp (note1) o bypass signal pin in fixed output type device 5 v out o output pin of the regulator. o r d e r i n g a n d m a r k i n g i n f o r m a t i o n p i n c o n f i g u r a t i o n ( c o n t . ) s o t - 2 2 3 ( t o p v i e w ) v in v out gnd 1 2 3 tab is v out a p l 5 9 0 2 n o t e 1 : t h e s e p i n s d o n o t e x i s t i n 3 - p i n p a c k a g e . n o t e : a n p e c l e a d - f r e e p r o d u c t s c o n t a i n m o l d i n g c o m p o u n d s / d i e a t t a c h m a t e r i a l s a n d 1 0 0 % m a t t e i n p l a t e t e r m i n a - t i o n f i n i s h ; w h i c h a r e f u l l y c o m p l i a n t w i t h r o h s a n d c o m p a t i b l e w i t h b o t h s n p b a n d l e a d - f r e e s o l d i e r i n g o p e r a t i o n s . a n p e c l e a d - f r e e p r o d u c t s m e e t o r e x c e e d t h e l e a d - f r e e r e q u i r e m e n t s o f i p c / j e d e c j s t d - 0 2 0 c f o r m s l c l a s s i f i c a - t i o n a t l e a d - f r e e p e a k r e f l o w t e m p e r a t u r e .
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 3 symbol parameter rating unit v in , v out input voltage or out voltage 6 .5 v shdn shutdown control pin 6 .5 v r th,ja thermal resistance ? junction to ambient sot - 89 : 180 sot - 223 : 135 so - 8 : 150 to - 252 : 50 c/w r th,jc thermal resistance ? junction to case sot - 89 : 38 sot - 223 : 15 so - 8 : 20 to - 252 : 6 c/w p d power dissipation internally limited w t j operating junction temperature c control section 0 to 125 power transistor 0 to 150 t stg storage temperature r ange - 65 to +150 c t l lead temperature (soldering, 10 second) 260 c u n l e s s o t h e r w i s e n o t e d t h e s e s p e c i f i c a t i o n s a p p l y o v e r f u l l t e m p e r a t u r e , v i n = 3 . 6 v , c i n = 1 m f , c o u t = 4 . 7 m f , s h d n = v i n , t j = 0 t o 1 2 5 c . t y p i c a l v a l u e s r e f e r t o t j = 2 5 c . a b s o l u t e m a x i m u m r a t i n g s e l e c t r i c a l c h a r a c t e r i s t i c s APL5901/2 symbol parameter test conditions min. typ. max. unit v in input voltage 2.7 6 v v out output voltage v out +1.0v< v cc <6.0v, 0ma< i out < i max v out - 2 % v out v out + 2 % v i limit circuit current limit v in =4.3v 1.5 a i short short current v out =0v 200 ma i out load current 900 ma reg line line regulation v out +0.5v< v cc <6.0v, i = 1ma 4 10 mv reg load load regulation v in =v out +1.0v, 0ma< i out < i max 515x 1 0.1 6 mv % 1.3v v out <1.5v 1 10 0 1 300 1.5v v out <2v 900 1050 2v v out <2.5v 500 700 v drop dropout voltage (note2) i out =900ma 2.5v v out <3.4v 280 380 mv psrr ripple rejection f 1khz, 1vpp at v in = v out +1.0v c =10nf 55 65 db no load 50 100 i q quiescent current i out =9 00 ma 370 450 m a shutdown supply current (note3) shutdown = low i out =0, v cc =6.0v 0.01 1 m a
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 4 APL5901/2 symbol parameter test conditions min. typ. max. unit 100hzAPL5901 input 2.7v to 6v 0.01 m f c bp c out 4.7 m f e l e c t r i c a l c h a r a c t e r i s t i c s ( c o n t . ) n o t e 2 : d r o p o u t v o l t a g e d e f i n i t i o n : v i n - v o u t w h e n v o u t i s 2 % b e l o w t h e v a l u e o f v o u t f o r v i n = v o u t + 0 . 5 v n o t e 3 : f o r 5 - p i n d e v i c e s o n l y . u n l e s s o t h e r w i s e n o t e d t h e s e s p e c i f i c a t i o n s a p p l y o v e r f u l l t e m p e r a t u r e , v i n = 3 . 6 v , c i n = 1 m f , c o u t = 4 . 7 m f , s h d n = v i n , t j = 0 t o 1 2 5 c . t y p i c a l v a l u e s r e f e r t o t j = 2 5 c .
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 5 a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 0 0.5 1 1.5 2 2.5 3 3.5 0 1 2 3 4 5 6 0 50 100 150 200 250 300 350 0 1 2 3 4 5 6 0 50 100 150 200 250 300 350 400 0 150 300 450 600 750 900 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 6 t y p i c a l c h a r a c t e r i s t i c s c u r r e n t l i m i t v s . i n p u t v o l t a g e i n p u t v o l t a g e ( v ) current limit (ma) g r o u n d p i n c u r r e n t v s . o u t p u t c u r r e n t ground pin current vs. load current (ua) o u t p u t c u r r e n t ( m a ) g r o u n d p i n c u r r e n t v s . i n p u t v o l t a g e i n p u t v o l t a g e ( v ) ground pin current vs. load current (ua) i n p u t v o l t a g e v s . o u t p u t v o l t a g e i n p u t v o l t a g e ( v ) output voltage (v) a p l 5 9 0 1 / 2 - 3 3
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 6 0 100 200 300 400 500 600 700 800 900 1000 1100 1200 0 150 300 450 600 750 900 a p l 5 9 0 1 / 2 - 3 3 -100 +0 -90 -80 -70 -60 -50 -40 -30 -20 -10 20 200k 50 100 200 500 1k 2k 5k 10k 20k 50k 100k 0.4 0.5 0.6 0.7 0.8 0.9 1 3 3.5 4 4.5 5 5.5 6 -12 -10 -8 -6 -4 -2 0 0 0.5 1 1.5 2 2.5 3 t y p i c a l c h a r a c t e r i s t i c s s h d n t h r e s h o l d v o l t a g e v s . i n p u t v o l t a g e shdn threshold voltage (v) i n p u t v o l t a g e ( v ) p s r r v s . f r e q u e n c y f r e q u e n c y ( h z ) psrr (db) i o u t = 5 0 m a c o u t = 1 0 u f c b p = 0 . 1 u f o u t p u t c u r r e n t v s . o u t p u t v o l t a g e output current (ua) o u t p u t v o l t a g e ( v ) o u t p u t c u r r e n t ( m a ) dropout voltage (mv) v i n = 0 v v i n = 0 v v i n = 4 v v i n = 5 v a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 d r o p o u t v o l t a g e v s . o u t p u t c u r r e n t v o u t = 1 . 5 v v o u t = 1 . 8 v v o u t = 3 . 3 v v o u t = 2 . 5 v
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 7 0 50 100 150 200 250 300 350 400 450 500 0 0.1 0.2 0.3 0.4 -100u 100u -80u -60u -40u -20u 0 20u 40u 60u 80u 0 10m 2m 4m 6m 8m t y p i c a l c h a r a c t e r i s t i c s o u t p u t n o i s e t i m e ( s ) v out (50uv/div) v i n = 4 . 3 v i o u t = 0 m a c o u t = 1 0 u f c b p = 0 . 1 u f o u t p u t n o i s e v s . b y p a s s c a p a c i t o r output noise (uv) b y p a s s c a p a c i t o r ( u f ) l o a d - t r a n s i e n t r e s p o n s e output voltage (50mv/div) t i m e ( 1 0 m s / d i v ) v o u t i o u t = 1 m a ~ 9 0 0 m a t i m e ( 4 0 m s / d i v ) v o u t v i n l i n e - t r a n s i e n t r e s p o n s e v i n = v o u t + 1 v c o u t = 4 . 7 m f output voltage (20mv/div) a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 4 v 3 v
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 8 0.001 0.01 0.1 1 0 150 300 450 600 750 900 v o u t c o u t = 1 m f n o l o a d t y p i c a l c h a r a c t e r i s t i c s e n t e r i n g s h u t d o w n t i m e ( 1 m s / d i v ) v o u t v s h d n s h u t d o w n e x i t d e l a y t i m e ( 2 0 m s / d i v ) v o u t v s h d n c b p = 1 0 0 n f n o l o a d t i m e ( 2 0 0 m s / d i v ) v o u t = 3 . 3 v r e g i o n o f s t a b l e e s r v s . l o a d c u r r e n t l o a d c u r r e n t ( m a ) c out esr ( w ) s h u t d o w n e x i t d e l a y u n s t a b l e s t a b l e a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 a p l 5 9 0 1 / 2 - 3 3 3 . 3 v 4 v 3 . 3 v 4 v 0 v 0 v 0 v 0 v 3 . 3 v 4 v 0 v 0 v c b p = 1 0 n f n o l o a d
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 9 3.25 3.27 3.29 3.31 3.33 3.35 -40 0 40 80 120 t y p i c a l c h a r a c t e r i s t i c s o u t p u t v o l t a g e v s . t e m p e r a t u r e t e m p e r a t u r e ( c ) output voltage (v) a p l 5 9 0 1 / 2 - 3 3
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 0 t h e m i n i m u m i n p u t - o u t p u t v o l t a g e d i f f e r e n c e ( d r o p o u t ) d e t e r m i n e s t h e l o w e s t u s a b l e s u p p l y v o l t a g e . i n b a t - t e r y - p o w e r e d s y s t e m s , t h i s w i l l d e t e r m i n e t h e u s e f u l e n d - o f - l i f e b a t t e r y v o l t a g e . b e c a u s e t h e a p l 5 9 0 1 / 2 u s e a p - c h a n n e l m o s f e t p a s s t r a n s i s t o r , t h e d r o p - o u t v o l t a g e i s a f u n c t i o n o f d r a i n - t o - s o u r c e o n - r e s i s - t a n c e ( r d s ( o n ) ) m u l t i p l i e d b y t h e l o a d c u r r e n t . t h e a p l 5 9 0 1 / 2 l o a d - t r a n s i e n t r e s p o n s e g r a p h s i n t y p i - c a l c h a r a c t e r i s t i c s s h o w t h e t r a n s i e n t r e s p o n s e . a s t e p c h a n g e i n t h e l o a d c u r r e n t f r o m 1 0 m a t o 9 0 0 m a a t 1 0 m s w i l l c a u s e a 2 0 m v t r a n s i e n t s p i k e . l a r g e r o u t p u t c a p a c i t o r a n d l o w e r e s r c a n r e d u c e t r a n s i e n t s p i k e . a p p l i c a t i o n i n f o r m a t i o n c a p a c i t o r s e l e c t i o n a n d r e g u l a t o r s t a b i l i t y t h e a p l 5 9 0 1 / 2 u s e a t l e a s t a 1 m f c a p a c i t o r o n t h e i n p u t , a n d t h i s c a p a c i t o r c a n b e a l u m i n u m , t a n t a l u m o r c e r a m i c c a p a c i t o r . t h e i n p u t c a p a c i t o r w i t h l a r g e r v a l u e a n d l o w e r e s r p r o v i d e s b e t t e r p s r r a n d l i n e - t r a n s i e n t r e s p o n s e . t h e o u t p u t c a p a c i t o r a l s o c a n u s e a l u m i n u m , t a n t a l u m o r c e r a m i c c a p a c i t o r , a n d a m i n i - m u m v a l u e o f 4 . 7 m f a n d e s r a b o v e 0 . 0 2 w i s r e c o m m e n d e d . a l a r g e r o u t p u t c a p a c i t o r c a n r e d u c e n o i s e a n d i m p r o v e l o a d - t r a n s i e n t r e s p o n s e , s t a b i l i t y , a n d p s r r . n o t e t h a t s o m e c e r a m i c d i e l e c t r i c s e x - h i b i t l a r g e c a p a c i t a n c e a n d e s r v a r i a t i o n w i t h t e m p e r a t u r e . w h e n u s i n g t h i s c a p a c i t o r , a m i n i m u m 1 0 u f o r m o r e m a y b e r e q u i r e d t o e n s u r e t h e s t a b i l i t y a t l o w t e m p e r a t u r e o p e r a t i o n . u s e a b y p a s s c a p a c i - t o r a t b p p i n f o r l o w o u t p u t n v i s e . i n c r e a s i n g t h e c a - p a c i t a n c e w i l l s l i g h t l y d e c r e a s e t h e o u t p u t n o i s e , b u t i n c r e a s e t h e s t a r t - u p t i m e . l o a d - t r a n s i e n t c o n s i d e r a t i o n s i n p u t - o u t p u t ( d r o p o u t ) v o l t a g e r e v e r s e c u r r e n t p r o t e c t i o n t h e a p l 5 9 0 1 / 2 h a v e a n i n t e r n a l r e v e r s e p r o t e c t i o n , i t d o e s n o t n e e d a n e x t e r n a l s c h o t t k y d i o d e t o c o n n e c t t h e r e g u l a t o r i n p u t a n d o u t p u t . i f t h e o u t p u t v o l t a g e i s f o r c e d a b o v e t h e i n p u t v o l t a g e b y m o r e t h a n 1 1 m v , t h e i c w i l l b e s h u t d o w n a n d t h e g r o u n d p i n c u r r e n t i s b e l o w 0 . 1 u a . c u r r e n t l i m i t t h e a p l 5 9 0 1 / 2 h a v e a c u r r e n t l i m i t p r o t e c t i o n . t h e o u p t u t v o l t a g e w i l l d r o p c l o s e t o z e r o v o l t , w h e n l o a d c u r r e n t r e a c h e s t h e l i m i t , a n d t h e n t h e l o a d c u r r e n t w i l l b e l i m i t e d a t 2 0 0 m a a f t e r o u t p u t v o l t a g e i s b e l o w 0 . 7 v . w h e n t h e l o a d c u r r e n t b a c k t o t h e v a l u e w h e r e l i m i t i n g s t a r t e d , t h e o u t p u t v o l t a g e a n d c u r r e n t w i l l r e - t u r n t o n o r m a l v a l u e . w h e n o u t p u t i s s h o r t e d t o g r o u n d , t h e a p l 5 9 0 1 / 2 w i l l k e e p s h o r t c i r c u i t c u r r e n t a t 2 0 0 m a . s h u t d o w n / e n a b l e t h e a p l 5 9 0 1 / 2 h a v e a n a c t i v e h i g h e n a b l e f u n c t i o n . f o r c e e n h i g h ( > 1 . 6 v ) e n a b l e s t h e r e g u l a t o r , e n l o w ( < 0 . 4 v ) d i s a b l e s t h e r e g u l a t o r a n d e n t e r t h e s h u t d o w n m o d e . i n s h u t d o w n m o d e , t h e q u i e s c e n t c u r r e n t c a n r e d u c e b e l o w 1 u a . t h e e n p i n c a n n o t b e f l o a t i n g , a f l o a t i n g e n p i n m a y c a u s e a n i n d e t e r m i n a t e s t a t e o n t h e o u t p u t . i f i t i s n o u s e , c o n n e c t t o v i n f o r n o r m a l o p e r a t i o n .
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 1 t h e r m a l p r o t e c t i o n l i m i t s t o t a l p o w e r d i s s i p a t i o n i n t h e d e v i c e . w h e n t h e j u n c t i o n t e m p e r a t u r e e x c e e d s t j = + 1 5 0 j , t h e t h e r m a l s e n s o r g e n e r a t e s a l o g i c s i g - n a l t o t u r n o f f t h e p a s s t r a n s i s t o r a n d a l l o w s i c t o c o o l . w h e n t h e i c ? s j u n c t i o n t e m p e r a t u r e i s d o w n b y 1 0 j , t h e t h e r m a l s e n s o r w i l l t u r n t h e p a s s t r a n s i s t o r o n a g a i n , r e s u l t i n g i n a p u l s e d o u t p u t d u r i n g c o n t i n u - o u s t h e r m a l p r o t e c t i o n . t h e r m a l p r o t e c t i o n i s d e s i g n e d t o p r o t e c t t h e a p l 5 9 0 1 / 2 i n t h e e v e n t o f f a u l t c o n d i t i o n s . f o r c o n t i n u o u s o p e r a t i o n , d o n o t e x c e e d t h e a b s o l u t e m a x i m u m j u n c t i o n t e m p e r a t u r e o f t j = + 1 5 0 j . o p e r a t i n g r e g i o n a n d p o w e r d i s - s i p a t i o n t h e t h e r m a l r e s i s t a n c e o f t h e c a s e t o c i r c u i t b o a r d , a n d t h e r a t e o f a i r f l o w a l l c o n t r o l t h e a p l 5 9 0 1 / 2 ? s m a x i m u m p o w e r d i s s i p a t i o n . t h e p o w e r d i s s i p a t i o n a c r o s s t h e d e v i c e i s p d = i o u t ( v i n - v o u t ) a n d t h e m a x i - m u m p o w e r d i s s i p a t i o n i s : p d m a x = ( t j - t a ) / ( c j c + c c a ) w h e r e t j - t a i s t h e t e m p e r a t u r e d i f f e r e n c e b e t w e e n t h e j u n c t i o n a n d a m b i e n t a i r , c j c i s t h e t h e r m a l r e s i s - t a n c e o f t h e p a c k a g e , a n d c c a i s t h e t h e r m a l r e s i s - t a n c e t h r o u g h t h e p r i n t e d c i r c u i t b o a r d , c o p p e r t r a c e s , a n d o t h e r m a t e r i a l s t o t h e a m b i e n t a i r . t h e g n d p i n o f t h e a p l 5 9 0 1 p r o v i d e a n e l e c t r i c a l c o n - n e c t i o n t o g r o u n d a n d c h a n n e l i n g h e a t a w a y . i f p o w e r d i s s i p a t i o n i s l a r g e , c o n n e c t t h e g n d p i n t o g r o u n d u s i n g a l a r g e p a d o r g r o u n d p l a n e , c a n i m p r o v e t h e p r o b l e m o f o v e r h e a t o f i c . t h e r m a l p r o t e c t i o n
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 2 p a c k a g i n g i n f o r m a t i o n millimeters inches dim min. max. min. max. a 1.35 1.75 0.053 0.069 a1 0.10 0.25 0.004 0.010 d 4.80 5.00 0.189 0.197 e 3.80 4.00 0.150 0.157 h 5.80 6.20 0.228 0.244 l 0.40 1.27 0.016 0.050 e1 0.33 0.51 0.013 0.020 e2 1.27bsc 0.50bsc f 1 8 8 h e e1 e2 0.015x45 d a a1 0.004max. 1 l s o p - 8 p i n ( r e f e r e n c e j e d e c r e g i s t r a t i o n m s - 0 1 2 )
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 3 s o t - 2 2 3 ( r e f e r e n c e j e d e c r e g i s t r a t i o n s o t - 2 2 3 ) b1 d h e k e e1 a c l a1 a b b millimeters inches dim min. max. min. max. a 1.50 1.80 0.06 0.07 a1 0.02 0.08 b 0.60 0.80 0.02 0.03 b1 2.90 3.10 0.11 0.12 c 0.28 0.32 0.01 0.01 d 6.30 6.70 0.25 0.26 e 3.30 3.70 0.13 0.15 e 2.3 bsc 0.09 bsc e1 4.6 bsc 0.18 bsc h 6.70 7.30 0.26 0.29 l 0.91 1.10 0.04 0.04 k 1.50 2.00 0.06 0.08 a 0 1 0 0 10 b 1 3 13 p a c k a g i n g i n f o r m a t i o n
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 4 p a c k a g i n g i n f o r m a t i o n d d1 e b1 e1 b 1 2 3 l h e c a a a s o t - 8 9 ( r e f e r e n c e e i a j e d - 7 5 0 0 a r e g s t r a t i o n s c - 6 2 ) millimeters inches dim min. max. min. max. a 1.40 1.60 0.055 0.063 b 0.40 0.56 0.016 0.022 b1 0.35 0.48 0.014 0.019 c 0.35 0.44 0.014 0.017 d 4.40 4.60 0.173 0.181 d1 1.35 1.83 0.053 0.072 e 1.50 bsc 0.059 bsc e1 3.00 bsc 0.118 bsc e 2.29 2.60 0.090 0.102 h 3.75 4.25 0.148 0.167 l 0.80 1.20 0.031 0.047 a 10 10
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 5 p a c k a g i n g i n f o r m a t i o n s o t - 8 9 - 5 millimeters inches dim min. max. min. max. a 4.40 4.60 0.17 0.18 b 4.05 4.25 0.16 0.17 c 1.50 1.70 0.06 0.07 d 1.30 1.50 0.05 0.06 e 2.40 2.60 0.09 0.1 f 0.80 - 0.03 - g 3.00 ref 0.12 ref h 1.50 ref 0.06 ref i 0.40 0.52 0.01 0.02 j 1.40 1.60 0.05 0.06 k 0.35 0.41 0.01 0.02 l 5 typ 0.2 typ
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 6 p a c k a g i n g i n f o r m a t i o n t o - 2 5 2 - 5 millimeters inches dim min. max. min. max. a 6.40 6.80 0.25 0.26 b 5.20 5.50 0.20 0.21 c 6.80 7.20 0.26 0.27 d 2.20 2.80 0.08 0.11 p 1.27 ref 0.05 ref s 0.50 0.80 0.02 0.03 h 2.20 2.40 0.08 0.09 j 0.45 0.55 0.01 0.02 k 0 0.15 0 0.006 l 0.90 1.50 0.03 0.06 m 5.40 5.80 0.21 0.22 l k j h b a c m d p s
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 7 t o - 2 5 2 ( r e f e r e n c e j e d e c r e g i s t r a t i o n t o - 2 5 2 ) p a c k a g i n g i n f o r m a t i o n millimeters inches dim min. max. min. max. a 2.18 2.39 0.086 0.094 a1 0.89 1.27 0.035 0.050 b 0.508 0.89 0.020 0.035 b2 5.207 5.461 0.205 0.215 c 0.46 0.58 0.018 0.023 c1 0.46 0.58 0.018 0.023 d 5.334 6.22 0.210 0.245 e 6.35 6.73 0.250 0.265 e1 3.96 5.18 0.156 0.204 h 9.398 10.41 0.370 0.410 l 0.51 0.020 l1 0.64 1.02 0.025 0.040 l2 0.89 2.032 0.035 0.080 l2 d l1 b b2 e c1 a h l c a1 e1
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 8 p h y s i c a l s p e c i f i c a t i o n s t 25 c to peak tp ramp-up t l ramp-down ts preheat tsmax tsmin t l t p 25 temperature time critical zone t l to t p terminal material solder - plated copper (solder material : 90/10 or 63/37 snpb) , 100%sn lead solderability meets eia specification rsi86 - 91, ansi/j - std - 002 category 3. r e f l o w c o n d i t i o n ( i r / c o n v e c t i o n o r v p r r e f l o w ) c l a s s i f i c a t i n r e f l o w p r o f i l e s ( m m ) profile feature sn - pb eutectic assembly pb - free assembly average ramp - up rate (t l to t p ) 3 c/second max. 3 c/second max. preheat - temperature min (tsmin) - temperature max (tsmax) - time (min to max) (ts) 100 c 150 c 60 - 120 seconds 150 c 200 c 60 - 180 seconds time maintained above: - temperature (t l ) - time (t l ) 183 c 60 - 150 seconds 217 c 60 - 150 seconds peak /classificatioon temperature (tp) see table 1 see table 2 time within 5 c of actual peak temperature (tp) 10 - 30 seconds 20 - 40 seconds ramp - down rate 6 c/se cond max. 6 c/second max. time 25 c to peak temperature 6 minutes max. 8 minutes max. notes: all temperatures refer to topside of the package .measured on the body surface.
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 1 9 c a r r i e r t a p e & r e e l d i m e n s i o n s t ao e w po p ko bo d1 d f p1 test item method description solderability mil - std - 883d - 2003 245 c, 5 sec holt mil - std - 883d - 1005.7 1000 hrs bias @125 c pct jesd - 22 - b,a102 168 hrs, 100 % rh, 121 c tst mil - std - 883d - 1011.9 - 65 c~150 c, 200 cycles esd mil - std - 883d - 3015.7 vhbm > 2kv, vmm > 200v latch - up jesd 78 10ms, 1 tr > 100ma r e l i a b i l i t y t e s t p r o g r a m table 1. snpb entectic process ? package peak reflow temperature s package thickness volume mm 3 <350 volume mm 3 3 350 <2.5 mm 240 +0/ - 5 c 225 +0/ - 5 c 3 2.5 mm 225 +0/ - 5 c 225 +0/ - 5 c table 2. pb - free process ? package classification reflow temperatures package thickness volume mm 3 <350 volume mm 3 350 - 2000 volume mm 3 >2000 <1.6 mm 260 +0 c* 260 +0 c* 260 +0 c* 1.6 mm ? 2.5 mm 260 +0 c* 250 +0 c* 245 +0 c* 3 2.5 mm 250 +0 c* 245 +0 c* 245 +0 c* *tolerance: the device manufacturer/supplier shall assure process compatibility up to and including the stated classification temperature (this means peak reflow temperature +0 c. for example 260 c+0 c) at the rated msl level. c l a s s i f i c a t i o n r e f l o w p r o f i l e s ( c o n t . )
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 2 0 r e e l d i m e n s i o n s application a b c j t1 t2 w p e 330 1 62 +1.5 12.75+ 0.15 2 0.5 12.4 0.2 2 0.2 12 0. 3 8 0.1 1.75 0.1 f d d1 po p1 ao bo ko t sop- 8 5.5 1 1.55 +0.1 1.55+ 0.25 4.0 0.1 2.0 0.1 6.4 0.1 5.2 0. 1 2.1 0.1 0.3 0.013 application a b c j t1 t2 w p e 178 1 70 2 13.5 0.15 3 0.15 14 2 1.3 0.3 12 + 0.3 12 - 0.1 8 0.1 1.75 0.1 f d d1 po p1 ao bo ko t sot-89 5.5 0.05 1.5 0.1 1.5 0.1 4.0 0.1 2.0 0.1 4.8 0.1 4.5 0.1 1.80 0.1 0.3 0.013 application a b c j t1 t2 w p e 330 1 62 1.5 12.75 0.15 2 0.6 12.4 +0.2 2 0.2 12 0.3 8 0.1 1.75 0.1 f d d1 po p1 ao bo ko t sot-223 5.5 0.05 1.5+ 0.1 1.5+ 0.1 4.0 0.1 2.0 0.05 6.9 0.1 7.5 0.1 2.1 0.1 0.3 0.05 application a b c j t1 t2 w p e 330 3 100 2 13 0. 5 2 0.5 16.4 + 0.3 -0.2 2.5 0.5 16+ 0.3 - 0.1 8 0.1 1.75 0.1 f d d1 po p1 ao bo ko t to-252 7.5 0.1 1.5 +0.1 1.5 0.25 4.0 0.1 2.0 0.1 6.8 0.1 10.4 0.1 2.5 0.1 0.3 0.05 ( m m ) c a r r i e r t a p e & r e e l d i m e n s i o n s ( c o n t . ) a j b t2 t1 c c o v e r t a p e d i m e n s i o n s application carrier width cover tape width devices per reel sop- 8 12 9.3 2500 sot- 89 12 9.3 1000 sot- 223 12 9.3 2500 to- 252 16 13.3 2500
c o p y r i g h t ? a n p e c e l e c t r o n i c s c o r p . r e v . b . 2 - m a y . , 2 0 0 5 a p l 5 9 0 1 / 2 w w w . a n p e c . c o m . t w 2 1 a n p e c e l e c t r o n i c s c o r p . h e a d o f f i c e : 5 f , n o . 2 l i - h s i n r o a d , s b i p , h s i n - c h u , t a i w a n , r . o . c . t e l : 8 8 6 - 3 - 5 6 4 2 0 0 0 f a x : 8 8 6 - 3 - 5 6 4 2 0 5 0 t a i p e i b r a n c h : 7 f , n o . 1 3 7 , l a n e 2 3 5 , p a c c h i a o r d . , h s i n t i e n c i t y , t a i p e i h s i e n , t a i w a n , r . o . c . t e l : 8 8 6 - 2 - 8 9 1 9 1 3 6 8 f a x : 8 8 6 - 2 - 8 9 1 9 1 3 6 9 c u s t o m e r s e r v i c e


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