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2N5429 MSK0002 NTRPB D223I SVC353 180CA IRF370 A330S
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  fea tures a c -dc encl osed swit ching power suppl y ' universal input 88~264v a c ' short circuit protection ' internal input fil ter ' 3 years w arranty ' high efficiency up to 89% ' high a verage efficiency meet erp (except 5v model) ' l ow st andb y power consumption ' buil t in a ctive pfc m o d e l n o . i n p u t v o l t a g e o u t p u t w a t t a g e o u t p u t v o l t a g e o u t p u t c u r r e n t + 5 v d c + 1 2 v d c + 1 5 v d c s i n g l e o u t p u t m o d e l s 8 8 ~ 2 6 4 v a c 8 8 ~ 2 6 4 v a c 8 8 ~ 2 6 4 v a c 8 8 ~ 2 6 4 v a c 1 6 0 0 0 m a 8 5 0 0 m a 7 0 0 0 m a 4 5 0 0 m a e f f . ( t y p . ) 7 8 % 8 5 % 8 6 % 8 7 % e f f . ( m i n . ) 8 0 % 8 7 % 8 8 % 8 9 % 8 0 w a t t s 1 0 2 w a t t s 1 0 5 w a t t s 1 0 8 w a t t s e d a 1 0 0 - 0 5 e d a 1 0 0 - 1 2 e d a 1 0 0 - 1 5 e d a 1 0 0 - 2 4 + 2 4 v d c m o d e l l i s t ed a100 series switching frequency v i n o m , i o n o m khz characteristics conditions min. typ. max. unit isolation resistance ambient temperature i n p u t - o u t p u t , @ 5 0 0 v d c o p e r a t i n g a t v i n o m m ? 100 -40 o c o a l l s p e c i f i c a t i o n s t y p i c a l a t n o m i n a l l i n e , f u l l l o a d , 2 5 c u n l e s s o t h e r w i s e n o t i c e d s p e c i f i c a t i o n storage temperature n o n o p e r a t i o n a l o c -40 95 r elative humidity v i n o m , i o n o m v i n o m , i o m i n o b e l l c o r e i s s u e 6 @ 4 0 c , g b % rh 20 t emperature coefficient mtbf altitude during operation o % / c hours m 0.0 3 75 5v 12v & 15v 24v hours hours conditions min. typ. max. unit isolation voltage i n p u t - o u t p u t 3,000 / 4,242 1,500 / 2,121 v a c / vdc i n p u t - f g v a c / vdc derating (see derating curve) o % / c 2.5 o o v i n o m , f r o m 5 6 c t o + 7 1 c 4,850 sales@chinfa.com www .chinfa.com 2014.09.01 + 71 + 85 dimension mm cooling general e f f . ( a v g . ) 8 0 % 8 7 % 8 7 % 8 8 % 60 f ree air convection p1 h r u l 6 0 9 5 0 - 1 e n 6 0 9 5 0 - 1 a 470,000 521,000 545,000 l158 x w97 x h38 iec 60068-2-13 500 / 710 o u t p u t - f g v a c / vdc
characteristics conditions min. unit typ. max. r a t e d o v e r l o a d p r o t e c t i o n 1 3 0 1 6 0 % v i n o m ( s e e t y p c u r r e n t l i m i t e d c u r v e ) vi nom, io max % minimum load vi nom % output voltage accuracy (adjusted before shipment) 0 line regulation % io nom, vi min ...vi max vi nom, 0.8 io nom 4.75 v oltage trim range vdc + 1 0.5 13.2 characteristics conditions min. unit typ. max. t urn on time ms ms 1,500 2,000 0 load regulation % vi nom, io min ...io nom 1 10.8 13.5 21.6 vdc vdc vdc 16.5 27.6 5.5 hold up time 10 / 70 ms vi : 115 / 230 v a c , io nom ms ms 150 500 15v 24v 5v 12v rise time 24v model : with 3500 f cap ? with 7000 f cap ? vi nom, io nom 5v , 12v &15v models : vi nom, io nom 5v , 12v &15v models : vi nom, io nom vi nom, io nom with 7000 f cap ? 24v model : with 3500 f cap ? ripple & noise mv 100 vi nom, io nom, b w = 20mhz fall time t ransient recovery time ms ms vi nom, io nom vi nom, 1~0.5 io nom capacitor load vi nom, io nom 150 2 15v 24v 5v 12v 7.5 18 22 35 7,000 3,500 p ower back immunity vi nom, io nom 1 second vdc vdc vdc vdc 5v , 12v &15v 24v ? f ? f ed a100 series sales@chinfa.com www .chinfa.com line frequency vi nom, io nom 63 hz 47 inrush current p ower dissipation leakage current 35 / 60 a w w w w vi : 115 / 230 v a c , io nom vi : 230 v a c, io nom input- output input-fg ma ma o a l l s p e c i f i c a t i o n s t y p i c a l a t n o m i n a l l i n e , f u l l l o a d , 2 5 c u n l e s s o t h e r w i s e n o t i c e d s p e c i f i c a t i o n characteristics conditions min. typ. max. unit 15v 24v 5v 12v 0.25 3.5 vi : 88 v a c, io nom r ated input current io nom r ated input voltage v a c 240 100 264 v a c 88 a c in dc in 375 120 vdc ma ma 20 15 12 10 w w 0.8 0.5 standby power consumption vi nom, io=0a 5v 12v , 15v & 24v p2 absolute input max. range 0.99 / 0.96 p ower factor (active) vi : 115/230v a c, io nom 1,500 input current 1,060/ 530 vi : 115 / 230 v a c , io nom r ated continuous loading 15v 24v 5v 12v 16 a @ 5vdc / 1.4 a @ 5.5 vdc 8.5 a @ 12vdc / 7.6 a @ 13.2 vdc 7.0 a @ 15vdc / 6.0 a @ 16.5 vdc 4.5 a @ 24vdc / 3.6 a @ 27.6 vdc vi nom efficiency vi nom, io nom, p o / pi up to 89%, see model list and typ efficiency curve i n p u t f u s e t 3 . 1 5 a / 2 5 0 v a c i n t e r n a l i n t e r n a l s u r g e v o l t a g e p r o t e c t i o n v a r i s t o r i e c 6 1 0 0 0 - 4 - 5 c o n t r o l a n d p r o t e c t i o n output specifica tions input specifica tions 2014.09.01
w w w . c h i n f a . c o m s a l e s @ c h i n f a . c o m o a l l s p e c i f i c a t i o n s t y p i c a l a t n o m i n a l l i n e , f u l l l o a d , 2 5 c u n l e s s o t h e r w i s e n o t i c e d s p e c i f i c a t i o n o v e r v o l t a g e p r o t e c t i o n v i n o m , 0 . 8 i o n o m ( a u t o r e c o v e r y ) v d c v d c v d c v d c 5 . 7 5 6 . 7 5 characteristics conditions min. typ. max. unit 15v 24v 5v 12v 1 3 . 8 1 6 . 2 1 7 . 2 5 2 0 . 2 5 2 8 . 8 3 2 . 4 m e c h a n i s m & p i n c o n f i g u r a t i o n m m [ i n c h ] c a s e s i z e m e t a l c a s e m a t e r i a l w e i g h t o u t p u t s h o r t c i r c u i t h i c c u p m o d e c o n t r o l a n d p r o t e c t i o n u l / c u l t u v e n 6 0 9 5 0 - 1 c e e n 6 1 0 0 0 - 6 - 2 , e n 5 5 0 2 4 e n 6 1 0 0 0 - 6 - 3 , e n 5 5 0 2 2 c l a s s b , e n 6 1 0 0 0 - 3 - 2 , e n 6 1 0 0 0 - 3 - 3 , e n 6 1 0 0 0 - 4 - 2 , e n 6 1 0 0 0 - 4 - 3 , e n 6 1 0 0 0 - 4 - 4 , e n 6 1 0 0 0 - 4 - 5 , e n 6 1 0 0 0 - 4 - 6 , e n 6 1 0 0 0 - 4 - 8 e n 6 1 0 0 0 - 4 - 1 1 , e n v 5 0 2 0 4 , e n 6 1 2 0 4 - 3 v i b r a t i o n r e s i s t a n c e s h o c k r e s i s t a n c e a p p r o v a l s a n d s t a n d a r d s u l 6 0 9 5 0 - 1 r e c o g n i z e d m e e t i e c 6 0 0 6 8 - 2 - 6 ( 1 0 - 5 0 0 h z , 2 g , a l o n g x , y, z e a c h a x i s , 6 0 m i n f o r e a c h a x i s ) m e e t i e c 6 0 0 6 8 - 2 - 2 7 ( 1 5 g , 1 1 m s , 3 a x i s , 6 f a c e s , 3 t i m e s f o r e a c h f a c e ) p3 1 5 8 x 9 7 x 3 8 m m ( 6 . 2 2 x 3 . 8 2 x 1 . 5 0 n c h e s ) i 5 2 0 g ed a100 series p h y s i c a l c h a r a c t e r i s t i c s general tolerance 0.00[0.00] - 30.00[1.18] 30.00[1.18] - 120.00[4.72] 120.00[4.72] - 400.00[15.75] 0.30[0.01] 0.50[0.02] 0.80[0.03] 2 3 . 0 0 [ 0 . 9 1 ] 6 4 . 0 0 [ 2 . 5 2 ] 1 5 8 . 0 0 [ 6 . 2 2 ] 5 - m 3 l = m a x 4 m m 9 . 5 0 [ 0 . 3 8 ] d c o n v o u t a d j . 6 5 . 0 0 [ 2 . 5 6 ] 9 7 . 0 0 [ 3 . 8 2 ] 1 5 4 . 5 0 [ 6 . 0 8 ] 7 . 0 0 [ 0 . 2 8 ] vo u t a d l n ( a c ) + v 3 8 . 0 0 [ 1 . 5 0 ] 9 7 . 0 0 [ 3 . 8 2 ] 1 2 3 4 5 6 + v + v v v 7 i n s t a l l a t i o n v entilation / cooling normal convectionconnector size range 2 a wg22-14 (0.2~2mm ) flexible / solid cable, connector can withstand torque at maximum 12 pound-inches. 3 . 5 0 [ 0 . 1 4 ] 1 5 2 . 5 0 [ 6 . 0 0 ] 5 . 5 0 [ 0 . 2 2 ] 1 9 . 3 0 [ 0 . 7 6 ] 2 8 . 8 0 [ 1 . 1 3 ] 2 1 . 0 0 [ 0 . 8 3 ] 1 1 7 . 0 0 [ 4 . 6 1 ] 3 8 . 0 0 [ 1 . 5 0 ] 1 8 . 0 0 [ 0 . 7 1 ] 1 0 . 8 0 [ 0 . 4 3 ] 2 8 . 5 0 [ 1 . 1 2 ] 3 - m 3 l = m a x 5 m m ? 3 . 5 ? 3 . 5 2014.09.01 p a c k i n g 0 . 5 7 k g ; 2 4 / 1 4 . 5 k g / 1 . 0 1 c u f t 9 1 . 5 0 [ 3 . 6 0 ] 3 8 . 0 0 [ 1 . 5 0 ] 7 3 . 0 0 [ 2 . 8 7 ] 9 9 . 0 0 [ 3 . 9 0 ] 1 0 1 . 0 0 [ 3 . 9 8 ]
o t e m p e r a t u r e [ c ] 0 1 0 0 7 1 - 4 0 p o w e r o u t [ % ] 6 2 . 5 5 6 - 2 5 2 3 0 v a c 1 1 5 v a c p i n a s s i g n m e n t c i r c u i t s c h e m a t i c t y p . e f f i c i e n c y c u r v e w w w . c h i n f a . c o m s a l e s @ c h i n f a . c o m 2014.09.01 i n o t h e r o u t p i n n o . d e s i g n a t i o n d e s c r i p t i o n e d a 1 0 0 h i c c u p m o d e o u t p u t v o l t a g e [ % ] 5 0 1 0 0 t t i m e v 1 2 3 4 , 5 6 , 7 n i n p u t t e r m i n a l s ( n e u t r a l c o n d u c t o r , n o p o l a r i t y a t d c i n p u t ) l i n p u t t e r m i n a l s ( p h a s e c o n d u c t o r , n o p o l a r i t y a t d c i n p u t ) g r o u n d t h i s t e r m i n a l t o m i n i m i z e h i g h - f r e q u e n c y e m i s s i o n s v o u t a d j . d c o n o p e r a t i o n i n d i c a t o r l e d t r i m m e r - p o t e n t i o m e t e r f o r v o u t a d j u s t m e n t p o s i t i v e o u t p u t t e r m i n a l n e g a t i v e o u t p u t t e r m i n a l v + v - p4 ' b l o c k d i a g r a m f o r e d a 1 0 0 s e r i e s v o - v o + s w i t c h i n g d e v i c e r e f e r e n c e & e r r o r a m p . l n f u s e l i n e f i l t e r r e c t i f i e r o p t o - i s o l a t i o n c o n t r o l c i r c u i t i n r u s h c u r r e n t l i m i t e r a n d r e c t i f i e r v o u t a d f g j . y a c t i v e p f c c i r c u i t e d a 1 0 0 - 2 4 p o w e r o u t [ % ] 1 0 1 0 0 2 5 e f f i c i e n c y [ % ] 7 5 5 0 8 0 8 2 8 4 8 6 2 3 0 v a c 1 1 5 v a c 8 8 9 0 ed a100 series d e r a t i n g c u r v e t y p . c u r r e n t l i m i t e d c u r v e i n p u t v o l t a g e [ v a c ] 1 0 0 2 6 4 8 8 p o w e r o u t [ % ] 8 8 1 0 0 5 0 5 1 f o r e d a 1 0 0 - 1 2 / 1 5 / 2 4 f o r e d a 1 0 0 - 0 5 o t a = 5 5 c f o r e d a 1 0 0 - 1 2 / 1 5 / 2 4 o t a = 5 0 c f o r e d a 1 0 0 - 0 5 s a f e o p e r a t i n g a r e a s a f e o p e r a t i n g a r e a


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