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  s e m i c o n d u c t o r r o h s r o h s n -c h a n n e l p o w e r m o s f e t nell high power products i r f 4 4 1 0 s e r i e s (9 7 a , 1 0 0 v o lt s ) t h e y a r e d e s i g n e d f o r u s e i n a p p l i c a t i o n s . s u c h a s s w i t c h e d m o d e p o w e r s u p p l i e s , d c t o d c c o n v e r t e r s , p w m m o t o r c o n t r o l s , b r i d g e c i r c u i t s , u p s a n d g e n e r a l p u r p o s e s w i t c h i n g a p p l i c a t i o n s . t h e n e l l i r f 4 4 1 0 i s a t h r e e - t e r m i n a l s i l i c o n d e v i c e w i t h c u r r e n t c o n d u c t i o n c a p a b i l i t y o f 9 7 a , f a s t s w i t c h i n g s p e e d , l o w o n - s t a t e r e s i s t a n c e , b r e a k d o w n v o l t a g e r a t i n g o f 1 0 0 v , a n d m a x . t h r e s h o l d v o l t a g e o f 4 v o l t s . descri ption l o w r e v e r s e t r a n s f e r c a p a c i t a n c e ( c = 1 7 0 p f t y p i c a l ) r s s r = 9.0m? @ v = 10v ds(on) gs u l t r a l o w g a t e c h a r g e ( 1 2 0 n c m a x . ) f a s t s w i t c h i n g c a p a b i l i t y 1 0 0 % a v a l a n c h e e n e r g y s p e c i f i e d i m p r o v e d d v / d t c a p a b i l i t y 1 7 5 c o p e r a t i o n t e m p e r a t u r e featur es pro duc t sum mar y i (a) d 9 7 v (v) dss 1 0 0 9 . 0 @ v = 1 0 v g s 1 2 0 r (m ) ds(on) q (nc) max. g d ( d r a i n ) g ( g a t e ) s ( s o u r c e ) t o -220 ab ( i r f 4 4 1 0 a ) d g d s 2 t o -263( d pak ) ( i r f 4 4 1 0 h ) unit v / n s v w a mj o c - 5 5 t o 1 7 5 v a l u e 9 7 6 9 1 0 0 2 0 3 9 0 1 0 0 1 6 2 4 2 absolute maximum ra tings (t = 25c unless otherwise specified) c t = 2 5 c t o 1 5 0 c j test conditions r = 2 0 k ? g s t = 2 5 c c t = 1 0 0 c c o p e r a t i o n j u n c t i o n t e m p e r a t u r e s t o r a g e t e m p e r a t u r e s i n g l e p u l s e a v a l a n c h e e n e r g y ( n o t e 2 ) p arameter p u l s e d d r a i n c u r r e n t ( n o t e 1 ) c o n t i n u o u s d r a i n c u r r e n t p e a k d i o d e r e c o v e r y d v / d t ( n o t e 3 ) g a t e t o s o u r c e v o l t a g e d r a i n t o g a t e v o l t a g e d r a i n t o s o u r c e v o l t a g e s y m b o l v d g r v dss d v / d t v g s i d m t s t g p d i d t j t l . . l b f i n ( n m ) 3 0 0 m a x i m u m s o l d e r i n g t e m p e r a t u r e , f o r 1 0 s e c o n d s m o u n t i n g t o r q u e , # 6 - 3 2 o r m 3 s c r e w - 5 5 t o 1 7 5 n o t e : 1 . . r e p e t i t i v e r a t i n g : p u l s e w i d t h l i m i t e d b y j u n c t i o n t e m p e r a t u r e . 1 0 ( 1 . 1 ) 1 . 6 m m f r o m c a s e i a r a v a l a n c h e c u r r e n t ( n o t e 1 ) 5 8 t = 2 5 c c 2 . i = 5 8 a , v = 5 0 v , l = 0 . 1 4 3 m h , r = 2 5 , s t a r t i n g t = 2 5 c . a s d d g s j 1 0 5 r e p e t i t i v e a v a l a n c h e e n e r g y ( n o t e 1 ) e a r 3 . i 5 8 a , d i / d t 6 1 0 a / s , v v , s t a r t i n g t 1 7 5 c . s d d d ( b r ) d s s j 2 3 0 t o t a l p o w e r d i s s i p a t i o n g s d i = 5 8 a , r = 5 0 ? , v = 1 0 v a r g s g s e a s i = 5 8 a , l = 0 . 1 4 3 m h a s w w w . n e l l s e m i . c o m p a g e 1 o f 9
s e m i c o n d u c t o r r o h s r o h s nell high power products unit m i n . 0 . 6 5 6 2 thermal resist ance p arameter t h e r m a l r e s i s t a n c e , j u n c t i o n t o c a s e s y m b o l r th(j-c) t y p . m a x . o c / w 4 0 t h e r m a l r e s i s t a n c e , j u n c t i o n t o a m b i e n t r th(j-a) unit v n s a pf n c 5 7 m a x . 1 4 0 1 0 0 1 0 0 7 . 2 - 1 0 0 1 0 0 0 . 1 2 4 8 2 0 1 7 0 1 6 5 2 4 3 3 4 0 electrical characteristics (t = 25c unless otherwise specified) c i = 2 5 0 a , d v = 0 v g s test conditions i = 5 m a , d v = v d s g s v = 1 0 0 v , v = 0 v d s g s t = 2 5 c c f a l l t i m e g a t e t o s o u r c e r e v e r s e l e a k a g e c u r r e n t i n p u t c a p a c i t a n c e t o t a l g a t e c h a r g e o u t p u t c a p a c i t a n c e p arameter r i s e t i m e g a t e t o s o u r c e f o r w a r d l e a k a g e c u r r e n t t u r n - o n d e l a y t i m e r e v e r s e t r a n s f e r c a p a c i t a n c e b r e a k d o w n v o l t a g e t e m p e r a t u r e c o e f f i c i e n t d r a i n t o s o u r c e b r e a k d o w n v o l t a g e t u r n - o f f d e l a y t i m e s y m b o l c i s s v / ( b r ) d s s t j v (br) dss i g s s q g t r t f q g s g a t e t o s o u r c e c h a r g e v = 5 0 v , v = 1 0 v , i = 5 8 a d d g s d ( n o t e 1 , 2 ) d r a i n t o s o u r c e l e a k a g e c u r r e n t i d s s c o s s c r s s t d ( o n ) t d ( o f f ) v/oc m s na t = 1 2 5 c c t y p . m i n . 9 . 0 1 0 1 2 0 v = 6 5 v , v d d ( n o t e 1 ) = 1 0 v , l = 5 8 a , g s d r = 2 . 7 g s , 2 v = 5 0 v , v = 0 v , f = 1 m h z d s g s v = - 2 0 v , v = 0 v g s d s v = 2 0 v , v = 0 v g s d s i = 5 8 a , v = 1 0 v d d s f o r w a r d t r a n s c o n d u c t a n c e s t a t i c d r a i n t o s o u r c e o n - s t a t e r e s i s t a n c e r d s ( o n ) g f s i = 5 8 a , v = 1 0 v d g s g a t e t o d r a i n c h a r g e ( m i l l e r c h a r g e ) q g d v = 8 0 v , v = 0 v d s g s 2 . 0 v 4 . 0 v = v , i = 1 5 0 a g s d s d g a t e t h r e s h o l d v o l t a g e v g s ( t h ) source t o drain d iode ra tings and characteristic s (t = 25c unless otherwise specified) c unit m a x . test conditions p arameter s y m b o l t y p . m i n . v i = 5 8 a , v = 0 v s d g s d i o d e f o r w a r d v o l t a g e v s d 1 . 3 i n t e g r a l r e v e r s e p - n j u n c t i o n d i o d e i n t h e m o s f e t c o n t i n u o u s s o u r c e t o d r a i n c u r r e n t i s ( i s d ) 9 7 d ( d r a i n ) g ( g a t e ) s ( s o u r c e ) a p u l s e d s o u r c e c u r r e n t i s m 3 9 0 i = 5 8 a , v = 8 5 v , s d r d i / d t = 1 0 0 a / s f r e v e r s e r e c o v e r y t i m e t r r ns 3 8 nc r e v e r s e r e c o v e r y c h a r g e q r r 5 3 n o t e : 1 . p u l s e t e s t : p u l s e w i d t h 4 0 0 s , d u t y c y c l e 2 % . 2 . e s s e n t i a l l y i n d e p e n d e n t o f o p e r a t i n g t e m p e r a t u r e . t o n f o r w a r d t u r n - o n t i m e 6 0 8 0 i n t r i n s i c t u r n - o n t i m e i s n e g l i g i b l e ( t u r n - o n i s d o m o n a t e d b y l s + l d ) t o - 2 2 0 a b 2 t o - 2 6 3 ( d p a k ) r g i n t e r n a l g a t e r e s i s t a n c e 0 . 7 1 9 2 7 8 3 i r f 4 4 1 0 s e r i e s w w w . n e l l s e m i . c o m p a g e 2 o f 9
s e m i c o n d u c t o r nell high power products r o h s r o h s orderin g inform a tion sch eme mosfet series current & v oltage rating, l d & v ds n-channel, ir series 97a / 100v i r f 4 4 1 0 a package type a = to-220ab 2 h = to-263 (d pak) f i g . 2 t y p i c a l o u t p u t c h a r a c t e r i s t i c s d r a i n - t o - s o u r c e c u r r e n t , l ( a ) d d r a i n - t o - s o u r c e v o l t a g e , ( v ) v d s d r a i n - t o - s o u r c e c u r r e n t , l ( a ) d g a t e - t o - s o u r c e v o l t a g e , v ( v ) g s f i g . 1 t y p i c a l o u t p u t c h a r a c t e r i s t i c s d r a i n - t o - s o u r c e c u r r e n t , l ( a ) d d r a i n - t o - s o u r c e v o l t a g e , v ( v ) d s f i g . 3 t y p i c a l t r a n s f e r c h a r a c t e r i s t i c s f i g . 4 n o r m a l i z e d o n - r e s i s t a n c e v s . j u n c t i o n t e m p e r a t u r e 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 ) ( n o r m a l i z e d ) j u n c t i o n t e m p e r a t u r e , t ( c ) j 1 1 1 0 3 1 0 1 0 1 0 0 . 1 2 1 0 2 1 0 v g s t o p : 1 5 v 1 0 v 8 v 6 v 5 . 5 v 5 v 4 . 8 v b o t t o r m : 4 . 5 v 1 1 1 0 3 1 0 2 1 0 1 0 1 0 0 . 1 2 1 0 4 . 5 v 4 . 5 v v g s t o p : 1 5 v 1 0 v 8 v 6 v 5 . 5 v 5 v 4 . 8 v b o t t o r m : 4 . 5 v 6 0 s p u l s e w i d t h t = 2 5 c j 6 0 s p u l s e w i d t h t = 1 7 5 c j 1 1 1 0 3 1 0 2 1 0 0 . 1 2 3 4 5 6 7 v = 5 0 v d s 6 0 s p u l s e w i d t h t = 1 7 5 c j t = 2 5 c j 2 . 5 2 . 0 1 . 5 1 . 0 0 . 5 - 6 0 - 4 0 - 2 0 0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 1 6 0 1 8 0 i r f 4 4 1 0 s e r i e s w w w . n e l l s e m i . c o m p a g e 3 o f 9
s e m i c o n d u c t o r nell high power products r o h s r o h s f i g . 5 t y p i c a l c a p a c i t a n c e v s . d r a i n - t o - s o u r c e v o l t a g e f i g . 8 m a x i m u m s a f e o p e r a t i n g a r e a d r a i n - t o - s o u r c e c u r r e n t , l ( a ) d d r a i n - t o - s o u r c e v o l t a g e , ( v ) v d s d r a i n c u r r e n t , l ( a ) d c a s e t e m p e r a t u r e , t ( c ) c f i g . 7 t y p i c a l s o u r c e - d r a i n d i o d e f o r w a r d v o l t a g e r e v e r s e d r a i n c u r r e n t , l ( a ) s d s o u r c e - t o - d r a i n v o l t a g e , v ( v ) s d f i g . 6 t y p i c a l g a t e c h a r g e v s . g a t e - t o - s o u r c e v o l t a g e f i g . 9 m a x i m u m d r a i n c u r r e n t v s . c a s e t e m p e r a t u r e f i g . 1 0 d r a i n - t o - s o u r c e b r e a k d o w n v o l t a g e v s . j u n c t i o n t e m p e r a t u r e j u n c t i o n t e m p e r a t u r e , t ( c ) j i r f 4 4 1 0 s e r i e s c a p a c i t a n c e , c ( p f ) d r a i n - t o - s o u r c e v o l t a g e , v ( v ) d s 3 1 0 5 1 0 4 1 0 2 1 0 1 1 0 1 0 0 1 2 1 0 8 6 4 2 0 0 2 0 4 0 6 0 8 0 1 0 0 v = 8 0 v d s v = 4 0 v d s v = 2 0 v d s g a t e - s o u r c e v o l t a g e , v ( v ) g s t o t a l g a t e c h a r g e , q ( n c ) g 1 1 0 3 1 0 2 1 0 1 0 . 1 0 . 0 0 . 5 1 . 0 1 . 5 2 . 0 2 . 5 t = 1 7 5 c j t = 2 5 c j v = 0 v g s 1 1 0 3 1 0 2 1 0 1 0 1 1 0 1 0 0 t = 2 5 c c t = 1 7 5 c j s i n g l e p u l s e o p e r a t i o n i n t h i s a r e a l i m i t e d b y r ( o n ) d s 1 0 0 s e c 1 m s e c 1 m s e c 1 0 m s e c d c d r a i n - t o - s o u r c e b r e a k d o w n v o l t a g e , v ( v ) ( b r ) d s s 0 2 0 4 0 6 0 8 0 1 0 0 2 5 5 0 7 5 1 0 0 1 2 5 1 5 0 1 2 5 1 2 0 1 1 5 1 1 0 1 0 5 1 0 0 9 5 9 0 - 6 0 - 4 0 - 2 0 0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 1 6 0 1 8 0 c i s s c o s s c r s s c = ( ) i s s c + c c = s h o r t e d g s g d d s c = c r s s g d c = c + c o s s d s g d v = 0 v , g s f = 1 m h z i = 5 m a d w w w . n e l l s e m i . c o m p a g e 4 o f 9
s e m i c o n d u c t o r nell high power products r o h s r o h s f i g . 1 2 m a x i m u m a v a l a n c h e e n e r g y v s . d r a i n c u r r e n t s i n g l e p u l s e a v a l a n c h e e n e r g y , e ( m j ) a s s t a r t i n g t , j u n c t i o n t e m p e r a t u r e ( c ) j f i g . 11 t y p i c a l c s t o r e d e n e r g y o s s e n e r g y ( j ) d r a i n - t o - s o u r c e v o l t a g e , v ( v ) d s i r f 4 4 1 0 s e r i e s 2 . 0 1 . 8 1 . 6 1 . 4 1 . 2 1 . 0 0 . 8 0 . 6 0 . 4 0 . 2 0 . 0 - 1 0 0 1 0 2 0 3 0 4 0 5 0 6 0 1 0 0 2 5 5 0 7 5 1 0 0 1 2 5 1 5 0 1 7 5 1 0 0 0 9 0 0 8 0 0 7 0 0 6 0 0 5 0 0 4 0 0 3 0 0 2 0 0 1 0 0 0 7 0 8 0 9 0 f i g . 1 3 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 l m p e d a n c e , j u n c t i o n - t o - c a s e f i g . 1 4 t y p i c a l a v a l a n c h e c u r r e n t v s . p u l s e w i d t h t h e r m a l r e s p o n s e , r ( c / w ) t h ( j - c ) a v a l a n c h e c u r r e n t ( a ) 1 0 . 1 0 . 0 1 0 . 0 0 1 1 e - 0 0 6 1 e - 0 0 5 0 . 0 0 0 1 0 . 0 0 1 0 . 0 1 0 . 1 d = 0.5 0.2 0.1 0.05 0.02 0.01 single pulse (thermal response) n o t e s : 1 . d u t y f a c t o r , d = t / t 1 2 2 . p e a k t = p * r + j d m t h ( j- c ) t c c = /r i i i r 1 r 2 r i ( c / w ) (sec) 0 . 2 3 7 0 . 4 1 3 0 . 0 0 0 1 7 8 0 . 0 0 3 7 7 2 allowed avalanche current vs avalanche p u l s e w i d t h , t a v , a s s u m i n g t =150 c and j t s t a r t = 2 5 c ( s i n g l e p u l s e ) d u t y c y c l e = s i n g l e p u l s e 0.05 0.01 0.10 a l l o w e d a v a l a n c h e c u r r e n t v s a v a l a n c h e p u l s e w i d t h , t a v , a s s u m i n g t j = 2 5 c a n d t s t a r t = 1 5 0 c 1 0 0 1 0 1 0 . 1 i = 5 8 a d i = 9 . 4 a d i = 6 . 4 a d j c 1 2 i - 6 1 0 - 5 1 0 - 4 1 0 - 3 1 0 - 2 1 0 - 1 1 0 w w w . n e l l s e m i . c o m p a g e 5 o f 9 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 . ) , t 1 t a v ( s e c . )
s e m i c o n d u c t o r nell high power products r o h s r o h s i r f 4 4 1 0 s e r i e s 1 5 0 1 0 0 5 0 0 2 5 5 0 7 5 1 0 0 1 2 5 1 5 0 1 7 5 f i g . 1 5 m a x i m u m a v a l a n c h e e n e r g y v s . j u n c t i o n t e m p e r a t u r e a v a l a n c h e e n e r g y , e ( m j ) a r s t a r t i n g t , j u n c t i o n t e m p e r a t u r e ( c ) j n o t e s o n r e p e t i t i v e a v a l a n c h e c u r v e s . f i g . 1 4 , 1 5 : 1 . a v a l a n c h e f a i l u r e s a s s u m p t i o n : p u r e l y a t h e r m a l p h e n o m e n o n a n d f a i l u r e o c c u r s a t a t e m p e r a t u r e f a r i n e x c e s s o f t t h i s i s v a l i d a t e d f o r e v e r y p a r t t y p e . j m a x . 2 . s a f e o p e r a t i o n i n a v a l a n c h e i s a l l o w e d a s l o n g a s t j m a x i s n o t e x c e e d e d . 3 . e q u a t i o n b e l o w b a s e d o n c i r c u i t a n d w a v e f o r m s s h o w n i n f i g u r e s 1 6 a , 1 6 b . 4 . p d ( a v e ) = a v e r a g e p o w e r d i s s i p a t i o n p e r s i n g l e a v a l a n c h e p u l s e . 5 . b v = r a t e d b r e a k d o w n v o l t a g e ( 1 . 3 f a c t o r a c c o u n t s f o r v o l t a g e i n c r e a s e d u r i n g a v a l a n c h e ) . 6 . l = a l l o w a b l e a v a l a n c h e c u r r e n t . a v 7 . t = a l l o w a b l e r i s e i n j u n c t i o n t e m p e r a t u r e , n o t t o e x c e e d t ( a s s u m e d m a x a s 2 5 c i n f i g . 1 4 , 1 5 ) . t = a v e r a g e t i m e i n a v a l a n c h e . a v d = d u t y c y c l e i n a v a l a n c h e = t f a v r ( d , t ) = t r a n s i e n t t h e r m a l r e s i s t a n c e , s e e f i g . 1 3 t h ( j - c ) a v p = ? ( 1 . 3 b v l ) = d ( a v e ) a v t / r t h ( j - c ) l = 2 a v t / [ 1 . 3 ] t h ( ) b v r j - c e = p t a s ( a r ) d ( a v e ) a v f i g . 1 7 t y p i c a l r e c o v e r y c u r r e n t v s . d i / d t f f i g . 1 6 t h r e s h o l d v o l t a g e v s . j u n c t i o n t e m p e r a t u r e f i g . 1 9 t y p i c a l s t o r e d c h a r g e v s . d i / d t f f i g . 1 8 t y p i c a l r e c o v e r y c u r r e n t v s . d i / d t f d i / d t ( a / s ) f j u n c t i o n t e m p e r a t u r e , ( c ) t j g a t e t h r e s h o l d v o l t a g e , v ( v ) g s ( t h ) 4 . 5 4 . 0 3 . 5 3 . 0 2 . 5 2 . 0 1 . 5 1 . 0 - 7 5 - 5 0 - 2 5 0 2 5 5 0 1 0 0 1 2 5 1 5 0 1 7 5 2 0 0 7 5 i = 1 5 0 a d i 2 5 0 a d = i = 1 . 0 m a d i d = 1 . 0 a 2 0 1 5 1 0 5 0 1 0 0 2 0 0 3 0 0 4 0 0 5 0 0 6 0 0 7 0 0 l ( a ) r r m i = 3 9 a f v = 8 5 v r t = 1 2 5 c j t = 2 5 c j 2 0 1 5 1 0 5 0 1 0 0 2 0 0 3 0 0 4 0 0 5 0 0 6 0 0 7 0 0 l ( a ) r r m d i / d t ( a / s ) f d i / d t ( a / s ) f q ( n c ) r r 4 0 0 3 5 0 3 0 0 2 5 0 2 0 0 1 5 0 1 0 0 5 0 0 1 0 0 2 0 0 3 0 0 4 0 0 5 0 0 6 0 0 7 0 0 i = 5 8 a f v = 8 5 v r i = 3 9 a f v = 8 5 v r t = 1 2 5 c j t = 2 5 c j t = 2 5 c j t = 1 2 5 c j t o p s i n g l e p u l s e l = 5 8 a d b o t t o m 1 . 0 % d u t y c y c l e w w w . n e l l s e m i . c o m p a g e 6 o f 9
s e m i c o n d u c t o r nell high power products r o h s r o h s i r f 4 4 1 0 s e r i e s f i g . 2 0 t y p i c a l s t o r e d c h a r g e v s . d i / d t f d i / d t ( a / s ) f q ( n c ) r r 1 0 0 2 0 0 3 0 0 4 0 0 5 0 0 6 0 0 7 0 0 4 5 0 4 0 0 3 5 0 3 0 0 2 5 0 2 0 0 1 5 0 1 0 0 5 0 0 ? ? ? p . w . period di / dt diode recovery dv / dt ripple 5% body diode forward drop re - applied v oltage reverse recovery current body diode forward current v gs =10 v v dd i sd driver gate drive d . u . t . i sd w aveform d . u . t . v ds w aveform inductor curent d = p . w . period * + - + + + - - - ? ? ? ? a f i g . 2 1 p e a k d i o d e r e c o v e r y d v / d t t e s t c i r c u i t f o r n - c h a n n e l c i r c u i t l a y o u t c o n s i d e r a t i o n s l o w s t r a y l n d u c t a n c e g r o u n d p l a n e l o w l e a k a g e l n d u c t a n c e c u r r e n t tr a n s f o r m e r d v / d t c o n t r o l l e d b y r g d r i v e r s a m e t y p e a s d . u . t . l c o n t r o l l e d b y d u t y f a c t o r d s d " " d . u . t . - d e v i c e u n d e r t e s t d . u . t . r g v d d * v = 5 v f o r l o g i c l e v e l d e v i c e s g s t p l a s + - 1 5 v d r i v e r v d d d . u . t . v d s r g 2 0 v t p l a s 0 . 0 1 l f i g . 2 2 a u n c l a m p e d l n d u c t i v e t e s t c i r c u i t f i g . 2 2 b u n c l a m p e d i n d u c t i v e w a v e f o r m s i = 5 8 a f v = 8 5 v r t = 1 2 5 c j t = 2 5 c j v ( b r ) d s s w w w . n e l l s e m i . c o m p a g e 7 o f 9
f i g . 2 3 b s w i t c h i n g t i m e w a v e f o r m s v d s v g s 9 0 % 1 0 % t d ( o n ) t r t d ( o f f ) t f s e m i c o n d u c t o r nell high power products r o h s r o h s i r f 4 4 1 0 s e r i e s 0 i d f i g . 2 3 a s w i t c h i n g t i m e t e s t c i r c u i t + - s e c o n d p u l s e w i d t h 1 s d u t y f a c t o r 0 . 1 % v d d v g s d . u . t . l d v d s + - d . u . t . l 2 0 k f i g . 2 4 b g a t e c h a r g e w a v e f o r m f i g . 2 4 a g a t e c h a r g e t e s t c i r c u i t v c c v gs v ds v gs (t h) q g o d r q g d q g s 2 q g s 1 w w w . n e l l s e m i . c o m p a g e 8 o f 9
s e m i c o n d u c t o r r o h s r o h s nell high power products a l l d i m e n s i o n s i n m i l l i m e t e r s ( i n c h e s ) d ( d r a i n ) g ( g a t e ) s ( s o u r c e ) i r f 4 4 1 0 s e r i e s c a s e s t y l e 2.87 (0.113) 2.62 (0.103) 9.40 (0.370) 9.14 (0.360) 10.54 (0.415) max . 16.13 (0.635) 15.87 (0.625) pin 5.20 (0.205) 4.95 (0.195) 0.90 (0.05) 0.70 (0.028) .91 (0.154) .74 (0.148) 1 2 4.70 (0.185) 4.44 0.1754 ( ) 1.9 (0.055) 1.14 (0.045) .8 (0.145) .4 (0.15) 8.89 (0.50) 8.8 (0.0) 29.1 (1.148) 28.40 (1.118) 14.22 (0.50) 1.4 (0.50) 0.5 (0.022) 0. (0.014) 2.79 (0.110) 2.54 (0.100) 15.2 (0.0) 14.55 (0.57) t o - 2 2 0 a b 2 t o - 2 6 3 ( d p a k ) 2.79 (0.110) 0.36 (0.014) 2.79 (0.110) 2.29 (0.090) 1.40 (0.055) 1.19 (0.047) 0 to 0.254 (0 to 0.01) 1.40 (0.055) 1.14 (0.045) 4.83 (0.190) 4.06 (0.160) 10.45 (0.411) 9.65 (0.380) 6.22 (0.245) 9.14 (0.360) 8.13 (0.320) 15.00 (0.591) 0.940 (0.037) 0.686 (0.027) 2.67 (0.105) 2.41 (0.095) 5.20 (0.205) 4.95 (0.195) 15.85 (0.624) 3.56 (0.140) 0.53 (0.021) w w w . n e l l s e m i . c o m p a g e 9 o f 9


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