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1/12 march 2003 s t p6 nk90 z - s tp 6nk90 zfp s t b6nk 90z n- channel 900 v - 1.5 6 w - 5 . 8a t o - 22 0/ t o - 22 0f p / d 2 pak ze n e r - pro t e c te d su p e rmesh? po w e r m o sf et n t ypic a l r ds (on ) = 1 . 5 6 w n ex t r em el y h i g h d v / d t c apabi l i t y n 100% a v a la nche t e s t e d n g a t e charg e m inim iz ed n ve r y l o w i n t r i n sic c apac i t a n c e s n v e r y g o o d m a nuf a c t uring r e p e a t ib il it y de s crip t io n t he s uperm e s h ? s eri es i s o bt ai ned t hrough an ex t r em e opti m i z a t i o n of s t s w e l l es t a bl i s hed s t ri p- bas ed p owe r m e s h ? l ay out . i n addi t i on t o pus hi ng on-res i s t anc e s i gni f i c an t l y dow n, s pec i a l c are i s t ak - en t o ens ur e a v e r y good dv / d t c a p ab ilit y f o r t h e m os t dem andi ng app l i c at i ons . s uc h s eri es c om pl e- m en t s s t f ul l r ange o f hi gh v ol t age m o s f e t s i n- c l udi ng rev o l u t i o nary m dm es h? produc t s . ap p l i cat i o ns n hig h curre nt , h ig h s p e e d s w i t ching n i d ea l f o r o f f - l i n e po w e r su p p l i e s, ad ap t o r s a n d pf c n li ght i ng o rde ring i n f o rm at io n type v ds s r d s ( on) i d pw s tp6n k90z s tp6n k90z fp s tb6n k90z 900 v 900 v 900 v <2 w <2 w <2 w 5. 8 a 5. 8 a 5. 8 a 14 0 w 30 w 14 0 w sa les type ma rkin g p acka ge p a cka ging s tp6n k90z p6 nk90 z to-2 20 tu be st p6nk 90zf p p6n k90z fp to-220 fp tu be st b6nk 90zt 4 b6 nk90 z d 2 pa k t a pe & ree l t o -220 t o - 2 20f p 1 2 3 1 3 d 2 pak internal s che m at i c d i a g ram http://
stp6NK90Z - stp6NK90Zfp - stb6NK90Z 2/12 abs o l ut e m ax i m um ra t i ng s ( ) p u l s e w i dt h l i m i t e d by s af e o per at i ng ar ea (1) i sd 5. 8a , d i / d t 2 00a / s , v dd v ( b r) ds s ,t j t j m ax. ( * ) l imit e d o n l y b y m a x imu m t e mp e r a t u r e a llo w e d t he rm al dat a av a l anche charact e r is t i cs ga t e - s ou r c e z e n e r d i o d e p ro t e ct i o n f e a t ure s o f g at e - t o -s o urce z e ne r dio d e s t he b ui l t -i n bac k - t o - b ac k z ener di odes hav e s pec i f i c al l y b een des i g ned t o enhan c e not o nl y t he dev i c e s e s d c apa bilit y , b u t a ls o t o m ak e t hem s a f e ly abs or b pos s i bl e v olt age t r ans ient s t ha t m ay oc c a s i onal ly be appl i ed f rom g at e t o s ourc e. i n t hi s r es pec t t he z ene r v ol t age i s appropri at e t o ac hi e v e an ef f i c i ent and c o s t -ef f ec t i v e i nt erv e nt i on t o prot e c t t he dev i c e s i nt egri t y . t h es e i nt eg rated z ener d i odes t hu s av oi d t he us age of ex t ernal c om p onent s . s ymb ol para mete r v al ue u nit st p6 n k 9 0 z / st b 6 n k 9 0 z st p6 n k 9 0 z f p v ds d rain-s ource v oltag e (v gs =0 ) 90 0 v v dg r d rain-g ate v oltage ( r gs =2 0k w ) 90 0 v v gs g ate- sourc e v ol t ag e 3 0 v i d d rain c urren t (co ntinuo us) a t t c = 25 c 5.8 5.8 (*) a i d d rain c urren t (co ntinuo us) a t t c = 100 c 3.65 3.6 5 (*) a i dm ( ) d rain c urren t (pu lsed) 23.2 23. 2 (*) a p to t t ot a l diss ip a tion at t c = 25 c 140 3 0 w d eratin g fa ctor 1.12 0. 24 w/ c v es d ( g - s) g ate s ource esd (hbm -c=1 00pf , r=1. 5k w) 40 00 v dv/dt ( 1) p eak d iode reco very voltage s lope 4. 5 v/ ns viso i nsula tion w ithstand v oltage (dc ) -- 25 00 v t j t st g o pera ting j unctio n t em pera ture s tora ge t e mper ature -55 to 150 c t o -220 d 2 pa k to-2 20fp unit r th j-cas e t herm al re sistance junc tion-c ase m ax 0.89 4.2 c/ w r t hj-pcb t herm al re sistance junc tion-p cb m ax (w h e n m oun t e d on m i ni m u m f oot pr i nt ) 60 c/w r th j-amb t herm al re sistance junc tion-a mbie nt ma x 62 .5 c/ w t l m axim um l ead t empe rature for solde ring p urpo se 30 0 c sy mbol par amet er max v alue unit i ar a v alanc he cu rrent , rep etitive or no t-rep etitiv e (puls e width limited by t j m ax) 5. 8 a e as sing le pu lse avala nche energ y (starting t j = 25 c, i d =i ar ,v dd =5 0 v ) 30 0 mj sy mbol p aram eter t es t con dition s min . t y p. m ax. unit bv gs o gate -sou rce br eakd own v oltage ig s= 1m a (o pen d rain) 30 v 3/12 s t p6 n k 90z - s t p 6n k 90z f p - s t b 6n k 90z e l e ct rical charact e ri s t i cs (t case = 2 5 c unle s s o t he rwis e s p e cif i e d) on / of f dynami c s w i t chi n g o n s w i t chi n g o f f s o urce dr a i n dio de no t e : 1 . p u l s e d: p u l s e d ura t i o n = 300 s , d ut y c y c l e 1. 5 % . 2 . p u ls e w id t h limit e d b y s a f e o p e r a t in g a r e a . 3. c os s e q. i s d ef i ne d a s a c on s t an t equ i v a l ent c ap ac i t a nc e g i v i ng t he s a m e c h arg i ng t i m e as c os s w hen v ds i nc r ea s e s f r om 0 t o 80% v ds s . sy mbol p aram eter t es t con dition s min . t y p. m ax. unit v ( b r) ds s drain -sour ce brea kdow n v ol t ag e i d = 1ma , v gs = 0 900 v i ds s zero gate v oltage drain curr ent (v gs =0 ) v ds = m ax r ating v ds = m ax r ating , t c = 125 c 1 50 a a i gs s gate -body lea kage curre nt (v ds =0 ) v gs = 20v 10 a v gs (t h ) gate thre shold v oltage v ds =v gs ,i d = 100 a 3 3.75 4 .5 v r d s ( on) s tatic drain -sour ce on resi st a nce v gs =1 0 v , i d = 2 .9 a 1.56 2 w sy mbol p aram eter t es t con dition s min . t y p. m ax. unit g fs (1) forw ard t ra nscon ductanc e v ds =1 5v , i d =2 . 9a 5 s c is s c os s c rs s inpu t capaci t an ce outp ut ca p a citance reve rse t ra nsfer capacitan ce v ds = 25v ,f= 1m h z,v gs = 0 1350 130 26 pf pf pf c os s eq . (3) equi valen t outp ut capacitan ce v gs =0 v , v ds = 0v to 720 v 70 pf sy mbol p aram eter t es t con dition s min . t y p. m ax. unit t d( on) t r t urn-o n del ay t ime rise t ime v dd =4 5 0v , i d =3 a r g = 4.7 w ,v gs =1 0v (r esist ive lo ad se e, fig ure 3 ) 17 20 ns ns q g q gs q gd t otal g ate c harge gate -sou rce ch arge gate -drain cha rge v dd =7 2 0v , i d = 5.8 a , v gs =1 0 v 46.5 8.5 25 nc nc nc sy mbol pa rame ter t es t con dition s min . t y p. m ax. unit t d( off) t f t u rn-off de lay t im e f all t im e v dd = 450 v , i d =3 a r g =4 .7 w ,v gs =1 0 v (re sistiv e loa d see , figu re 3) 45 20 ns ns t r(v o f f ) t f t c o f f- voltage r ise t im e f all t im e c ross -over t i me v dd = 720 v , i d = 5 .8 a, r g =4 .7 w , v gs =1 0 v (in ductiv e loa d see , fig ure 5) 11 12 20 ns ns ns sy mbol p aram eter t es t con dition s min . t y p. m ax. unit i sd i sd m (2) sour ce-dr ain cu rrent sour ce-dr ain cu rrent (puls ed) 5. 8 2 3.2 a a v sd (1) forw ard o n v o lt ag e i sd = 5 .8 a, v gs =0 1. 6 v t rr q rr i rrm reve rse r ecov ery t im e reve rse r ecov ery ch arge reve rse r ecov ery cu rrent i sd = 5 .8 a, di/dt = 1 00a/ s v dd =3 6 v , t j = 150 c (s ee te st circ uit, f igure 5) 840 5880 14 ns nc a stp6NK90Z - stp6NK90Zfp - stb6NK90Z 4/12 t h erm al i m p ed an c e f o r t o - 220/ d2p a k s a f e o p era t i n g a rea f o r t o -220f p s a f e o p era t i n g a rea f o r t o -220/ d2p a k t r an sfer ch a r acteri s ti c s o u tp u t c h arac t e ri s t i c s thermal impedance for to-220fp 5/12 s t p6 n k 90z - s t p 6n k 90z f p - s t b 6n k 90z normalized on resistance vs temperature n o rm a l i z e d ga t e th re s h ol d v ol t a ge v s te m p . cap a c i tan c e v ar i a ti o n s g a te ch ar g e vs g a te-so u r c e v o l tag e s t ati c drai n - so u r ce on resi s t a n ce tra n s c o nd uc t a n c e stp6NK90Z - stp6NK90Zfp - stb6NK90Z 6/12 maximum avalanche energy vs temperature source-drain diode forward characteristics normalized bvdss vs temperature 7/12 s t p6 n k 90z - s t p 6n k 90z f p - s t b 6n k 90z fig. 5: test circuit for inductive load switching and diode recovery times fi g. 4 : ga t e charge t e s t ci rc ui t fi g. 2 : unc l am ped i nduc t i v e w av ef o r m fi g. 1 : unc l am ped i nduc t i v e l oad t e s t ci rc ui t fig. 3: switching times test circuit for resistive load stp6NK90Z - stp6NK90Zfp - stb6NK90Z 8/12 dim. mm inch m i n. typ . max. m i n . ty p . m a x . a 4 . 4 0 4. 60 0. 173 0.1 8 1 c 1 . 2 3 1. 32 0. 048 0.0 5 1 d 2 . 4 0 2. 72 0. 094 0.1 0 7 d 1 1.27 0. 050 e 0 . 4 9 0. 70 0. 019 0.0 2 7 f 0 . 6 1 0. 88 0. 024 0.0 3 4 f 1 1. 14 1. 70 0. 044 0.0 6 7 f 2 1. 14 1. 70 0. 044 0.0 6 7 g 4 . 9 5 5. 15 0. 194 0.2 0 3 g 1 2.4 2.7 0 . 0 94 0.1 0 6 h 2 10. 0 1 0 .40 0 . 3 93 0.4 0 9 l2 16.4 0. 645 l4 13. 0 14. 0 0. 5 11 0.5 5 1 l5 2. 65 2. 95 0. 104 0.1 1 6 l6 15.2 5 1 5 .75 0 . 6 00 0.6 2 0 l7 6.2 6.6 0 . 2 44 0.2 6 0 l9 3.5 3. 93 0. 137 0.1 5 4 d i a . 3 . 7 5 3. 85 0. 147 0.1 5 1 l6 a c d e d1 f g l7 l2 dia. f1 l5 l4 h2 l9 f2 g1 to-220 mechanical data p011c 9/12 s t p6 n k 90z - s t p 6n k 90z f p - s t b 6n k 90z l2 a b d e h g l6 f l3 g1 123 f2 f1 l7 l4 l5 dim. mm. i nch min . typ max. min. t yp. m ax. a 4 .4 4.6 0.17 3 0.181 b 2 .5 2.7 0.09 8 0.106 d 2 .5 2.7 5 0.09 8 0.108 e 0. 45 0.7 0.01 7 0.027 f 0. 75 1 0.03 0 0.039 f1 1. 15 1.5 0.04 5 0.067 f2 1. 15 1.5 0.04 5 0.067 g 4. 95 5.2 0.19 5 0.204 g1 2 .4 2.7 0.09 4 0.106 h 1 0 10. 4 0.39 3 0.409 l2 1 6 0.63 0 l3 28 .6 30. 6 1.12 6 1.204 l4 9 .8 10. 6 .038 5 0.417 l5 2 .9 3.6 0.11 4 0.141 l6 15 .9 16. 4 0.62 6 0.645 l7 9 9.3 0.35 4 0.366 ? 3 3.2 0.11 8 0.126 to - 220f p m ec h a nical data stp6NK90Z - stp6NK90Zfp - stb6NK90Z 10/12 1 d im. m m. inc h m in. t yp ma x. min . typ . max . a 4.4 4.6 0 .173 0.1 81 a1 2.49 2.69 0 .098 0.1 06 a2 0.03 0.23 0 .001 0.0 09 b 0.7 0.93 0 .027 0.0 36 b2 1.14 1.7 0 .044 0.0 67 c 0.45 0.6 0 .017 0.0 23 c2 1.23 1.36 0 .048 0.0 53 d 8.95 9.35 0 .352 0.3 68 d1 8 0. 315 e 10 10.4 0 .393 e1 8.5 0. 334 g 4.88 5.28 0 .192 0.2 08 l 15 1 5.85 0 .590 0.6 25 l2 1.27 1.4 0 .050 0.0 55 l3 1.4 1.75 0 .055 0.0 68 m 2.4 3.2 0 .094 0.1 26 r 0.4 0. 015 v2 0o 4 o d 2 p a k m echanical data 3 11/12 s t p6 n k 90z - s t p 6n k 90z f p - s t b 6n k 90z tape and reel shipment (suffix t4)* tub e shipm e nt (no s uffix)* d 2 pak footprint * on sales type dim. mm inch min. max. min. ma x. a 330 12.992 b 1.5 0.059 c 12 . 8 13. 2 0 . 504 0. 520 d 20.2 07 95 g 2 4 . 4 26. 4 0 . 960 1. 039 n 100 3.937 t 30. 4 1 .197 base qty bu l k q t y 1000 1000 reel mechanical data di m . mm inch mi n . max. min. ma x. a 0 10 . 5 10. 7 0 . 413 0.421 b0 15.7 15. 9 0. 618 0 . 626 d 1 . 5 1. 6 0 . 059 0.063 d1 1. 59 1. 61 0. 062 0 . 063 e 1 . 65 1 . 85 0. 065 0 . 073 f 11.4 11.6 0. 449 0 . 456 k 0 4. 8 5. 0 0. 189 0 . 197 p0 3. 9 4.1 0. 153 0 . 161 p 1 1 1. 9 12. 1 0. 468 0 . 476 p2 1.9 2. 1 0.075 0 . 082 r 5 0 1 . 574 t 0 . 2 5 0. 3 5 0. 00 98 0. 0137 w 23 . 7 24.3 0.933 0.956 t a p e me cha ni ca l da t a stp6NK90Z - stp6NK90Zfp - stb6NK90Z 12/12 in f o r m at io n f u r n is h e d i s b e lie ved t o b e acc u r ate an d r e liab le . ho we ver , s t m i cr o e le ctr o n ics ass u m es n o r esp o n sib ility f o r t h e con seq uen ces of u se o f suc h inf orm a t ion n o r f o r an y in fr ing eme n t of p a ten ts or o th e r ri gh ts of th ird p a rt ies whic h may r esul t f ro m its u se . no li cen s e is g r an t e d b y i m p licat io n o r o t h e r wis e u n d e r a n y p a t e n t o r p a ten t r i g h ts o f s t mic r o elect r o n i c s . s p ec ifica ti ons men t io ne d in t h is pu b lica tio n a r e sub ject to c h an g e with ou t n o t i ce . thi s p ub l icati on su per sed es a n d r e plac es a ll in f o r m atio n pr e viousl y su pp lied . s t micr oel ectr on ics pr od uc ts ar e n o t au th or iz ed f o r use as cr iti cal com po ne nts in lif e sup po r t d e vices o r systems with ou t e x pr ess w r it ten app r o v al of s t micr oe lectr on ics. ? th e s t lo go is a r e g i st ered tr ad ema r k of s t micr oe lectr on ics ? 2 003 s t m i cr oelectr on ics - p r in ted in i t al y - a ll r i g h t s r eser ved s t mi cr o e lec tr o n i cs gr oup of companie s a ustr al i a - b r azi l - c an ada - c hi na - fi nl a nd - f r a nce - ger m an y - h ong k ong - in di a - i sr ael - ital y - j apan - m al aysi a - mal t a - mo roc co s i ngapore - s p ai n - s w ed en - s w i t z erl and - uni t ed k i ng dom - uni t ed s t a t es . ? h t tp : //www .s t.com |
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