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MAX823Z 90KS200C FJ256 P1935 C12034AD TB0609A 2N60B A104K
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  npn silicon epitaxial transistors features maximum ratings symbol rating rating unit v ceo collector-emitter voltage 50 v v cbo collector-base voltage 60 v v ebo emitter-base voltage 7 v i c collector current 150 ma p c collector power dissipation 200 mw t j junction temperature 150 : t stg storage temperature -55 to +150 : electrical characteristics @ 25 : unless otherwise specified symbol parameter min typ max units off characteristics i cbo collector cutoff current (v cb =-60vdc) --- --- 100 nadc i ebo emitter cutoff current (v eb =-6.0vdc) --- --- 100 nadc on characteristics bv cbo collector-base breakdown voltage (i c =-50adc ) 60 --- --- vdc bv ceo collector-emitter breakdown voltage (i c =-1adc) 50 --- --- vdc bv ebo emitter-base breakdown voltage (i e =-50adc) 6 --- --- vdc h fe dc current gain (i c =-1madc, v ce =-6.0vdc) 120 --- 560 --- v ce(sat) collector saturation voltage* (i c =-50madc, i b =-5.0madc) --- --- 0.4 vdc c ob output capacitance (v cb =-12.0vdc, i e =0, f=1.0mhz) --- 2.0 3.5 pf f t gain bandwidth product (v ce =-12vdc, i e =2madc,f=30mhz) --- 180 --- mhz h fe classification rank h f e 120~27 0 180~39 0 270~56 0  
 omp onents 20736 marilla street chatsworth       
     m cc revision: c 20 1 3 /0 9/24 sot-323 suggested solder pad layout inches mm dim min max min max note a .071 .087 1.80 2.20 b .045 .053 1.15 1.35 d .026 nominal 0.65nominal e .047 .055 1.20 1.40 f .012 .016 .30 .40 g .000 .004 .000 .100 h .035 .039 .90 1.00 j .004 .010 .100 .250 a c b d e f g h j 1.90 0 .7 0 0.90 0 . 65 0.65 dimensions k tm micro commercial components e b c ab c w w w. m c c se m i .c om 1 of 4 marking bq br bs low cob . cob=2.0pf(typ) complementary to 2sc1576a lead free finish/rohs compliant ("p" suffix designates rohs compliant. see ordering information) epoxy meets ul 94 v-0 flammability rating moisure sensitivity level 1 2sc4081-a2SC4081-B 2sc4081-c mm h alogen free available upon request by adding suffix "-hf" c .0 83 .0 96 2. 1 0 2. 45 k .0 06 .016 . 15 .40 downloaded from: http:///
fig.1 grounded emitter propagation characteristics 0 0.1 0.2 0.5 2 20 50 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1 5 10 ta = 100 c v ce =6v collector current : i c (ma) base to emitter voltage : v be (v) 25 c ? 55 c fig.2 grounded emitter output characteristics ( ) 0 20 40 60 80 100 0.4 0.8 1.2 1.6 2.0 0 collector current : i c (ma) collector to emitter voltage : v ce (v) 0.05ma 0.10ma 0.15ma 0.25ma 0.30ma 0.35ma 0.20ma ta=25 c i b =0a 0.40ma 0.50ma 0.45ma 0 0 2 8 10 4 8 12 16 4 6 20 i b =0a ta=25 c collector current : i c (ma) collector to emitter voltage : v ce (v) 3 a 6 a 9 a 12 a 15 a 18 a 21 a 24 a 27 a 30 a fig.3 grounded emitter output characteristics ( ? ) 0.2 2010 0.5 1 2 5 10 20 50 100 200 50 100 200 500 v ce =5v 3v 1v ta=25 c fig.4 dc current gain vs. collector current ( ) dc current gain : h fe collector current : i c (ma) 0.2 0.5 1 2 5 10 20 50 100 200 2010 50 100 200 500 25 c ? 55 c ta=100 c v ce = 5v fig.5 dc current gain vs. collector current ( ? ) dc current gain : h fe collector current : i c (ma) fig. 6 collector-emitter saturation voltage vs. collector current 0.2 collector saturation voltage : v ce(sat) (v) collector current : i c (ma) 0.01 0.02 0.05 0.1 0.2 0.5 0.5 1 2 5 10 20 50 100 200 i c /i b =50 20 10 ta=25 c fig.7 collector-emitter saturation voltage vs. collector current ( ) 0.2 collector saturation voltage : v ce(sat) (v) collector current : i c (ma) 0.01 0.02 0.05 0.1 0.2 0.5 0.5 1 2 5 10 20 50 100 200 i c /i b =10 ta=100 c 25 c ? 55 c fig.8 collector-emitter saturation voltage vs. collector current ( ? ) collector saturation voltage : v ce(sat) (v) collector current : i c (ma) 0.2 0.01 0.02 0.05 0.1 0.2 0.5 0.5 1 2 5 10 20 50 100 i c /i b =50 ta=100 c 25 c ? 55 c fig.9 gain bandwidth product vs. emitter current 50 ? 0.5 ? 1 ? 2 ? 5 ? 10 ? 20 ? 50 ? 100 100 200 500 ta=25 c v ce =6v emitter current : i e (ma) transition frequency : f t (mhz) 4081 m cc revision: c 201 3 /0 9/24 tm micro commercial components w w w. m c c se m i .c om 2 of 4 downloaded from: http:///
fig.10 collector output capacitance vs. collector-base voltageemitter input capacitance vs. emitter-base voltage collector to base voltage : v cb (v) emitter to base voltage : v eb (v) collector output capacitance : cob ( pf) emitter input capacitance : cib ( pf) 0.2 0.5 1 2 5 10 20 50 1 2 5 10 20 cob ta=25 c f = 1mhz i e =0a i c =0a cib fig.11 base-collector time constant vs. emitter current ? 0.2 ? 0.5 ? 1 ? 2 ? 5 ? 10 base collector time constant : ccr bb' (ps) emitter current : i e (ma) 10 20 50 100 200 ta=25 c f=32mh z v cb =6v 4081 m cc revision: c 201 3 /0 9/24 tm micro commercial components w w w. m c c se m i .c om 3 of 4 downloaded from: http:///
m cc revision: c 201 3 /0 9/24 tm micro commercial components w w w. m c c se m i .c om 4 of 4 3 o r de r i n g i n f or m a ti on : *** i m p o r t a n t n o t ic e * ** m i c r o c o m m e r c i a l c o m p on e n ts c o r p . r e s e rve s t h e r i g h t t o m a k e c h a n g e s w i t ho u t f u r t h e r no t i c e t o a n y p r o d u c t h e r e i n t o m a k e c o rr e c t i o n s , m o d i f i c a t i o n s , e n h a n c e m e n t s , i m pr o v e m e n t s , o r o t h e r ch a n g e s . m i c r o c o m m e r c i a l c o mp o n e n ts c o r p . d o e s n o t a s s u m e a n y l i a b i l i t y a r i s i n g ou t o f t h e a p p l i c a t i on o r u s e o f a n y p r o d uc t d e sc r i be d h e r e i n ; n e i t h e r d o e s i t c o n v e y a n y li c e n s e un der i t s p a t e n t r i g h t s , n o r t h e r i g h t s o f o t h e r s . t h e u s e r o f pr o d uc t s i n s u c h a p p l i c a t i o n s sh a l l a ss u m e a l l r i s k s o f su c h u s e a n d w ill a g r ee t o h o l d m i c r o c o mm er c i a l c o m p o n e n t s c o r p . a n d a ll t h e c o m p a n i e s w ho s e p r o d u c t s a r e r e p r e s e n t ed o n ou r w e b s i t e , h a r m l e s s a g a i n s t a l l d a m a g e s. * * * l i f e s u p p o r t *** m c c ' s pr o d uc t s a r e n o t a u t h o r iz ed f o r u s e a s c r i t i c a l c o m p o n e n t s i n l i f e s u pp o r t d e v i c e s o r s y s t e m s w i t h ou t t h e e x pre ss wr i tt e n a p p r o v a l o f m i c r o c o mm e r c i a l c o m p o n e n t s c o rp o r a t i o n. * * * c u s t o m e r a w a r e n e ss*** c o un t e r f e i t i n g o f s e m i c o n d u c t o r p a r t s i s a gr o w i n g p r o b l e m i n t h e i n d u s t ry . m i c r o c o mm e r c i a l c o m p o n e n t s ( m cc ) i s t a k i n g s t r o n g m e a su r e s t o p r o t e c t ou r s e l v e s a n d o u r cu s t o m e r s f r o m t h e pr o l i f e r a t i on o f c o u n t e r f e i t p a r t s . m c c s t r o n g l y e nc o u r a g e s c u s t o m e r s t o p u r c h a s e m c c p a r t s e i t h e r d i r e c t l y f r o m m c c o r f r o m a u t ho r i z e d m c c d i s t r i b u t o r s w ho a r e l i s t e d b y c o u n t r y o n o u r w e b p a g e c i t ed below . p r o d uc t s c us t o m e r s b u y e i t h e r f r o m m c c d i r e c t l y o r f r o m a u t ho r i z e d m cc d i s t r i b u t o r s a r e g e n u i n e p a r t s , h a v e f ul l t r a c e a b il i t y , m e e t m c c ' s q u a l i t y s t a n d a r d s f o r h a n d li n g a n d s t o r a g e . m c c wi l l n o t p r o v i d e a n y w a rr a n ty c o v e r a g e o r o t h e r a s s i s t a n c e f o r p a r ts b o u g h t f r o m u n a u t h o r i z e d s o u r c e s. m c c i s c o m m i t t e d t o c o m b a t t h i s g l o b a l pr o b l e m a n d e n c ou r a g e o u r c u s t o m e r s t o d o t h e i r p a r t in s t o p p i n g t h i s p r a c t i c e b y b u y i n g d i r e c t o r f r o m a u t h o r i z ed d i s t r i b u t o r s. d e vi c e p ac k i n g p a r t n u m b e r- t p ta p e &re e l; 3 kp cs / re e l note : adding "-hf" suffix for halogen free, eg. part number-tp-hf downloaded from: http:///


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