STU309DH SAMHOP | Alldatasheet

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D ua l E nha nc e me nt Mode F ie ld E ffe c t T ra ns is t or ( N a nd P C ha nne l) A pr 20 2007 A B S O L U T E MA X IMU M R AT IN G S (TA =25 C unle s s ot he rwis e not e d) P a ra me t e r S ymbol N -C ha nne lP -C ha nne l U nit D ra in-S ourc e V olt a ge V D S V G a t e -S ourc e V olt a ge V G S V D ra in C urre nt -C ont inuous @ T c -P uls e d ID A A A W ID M D ra in-S ourc e D iode F orwa rd C urre nt IS Ma ximum P owe r D is s ipa t ion P D O pe ra t ing J unc t ion a nd S t ora ge Te mpe ra t ure R a nge T J , T S T G -55 t o 175 C a -30 -14 P R O DU C T S U MMAR Y V D S S ID R D S (O N ) ( m Ω ) Ma x 30V 18A 22 @ V G S = 10V 34 @ V G S = 4. 5V (N -C ha nne l) P R O DU C T S U MMAR Y V D S S ID -30V -14A 34 @ V G S = -10V 54 @ V G S = -4. 5V (P -C ha nne l) S a mH op Mic roe le c t ronic s C orp. -50 S T U 309D H R D S (O N ) ( m Ω ) Ma x 25 C 70 C T c = 25 C T c = 70 C 7. 7 15 -12 A T H E R MA L C H A R A C T E R IS T IC S T he rma l R e s is t a nc e , J unc t ion-t o-C a s e T he rma l R e s is t a nc e , J unc t ion-t o-A mbie nt R J C 13. 6 120R J A / WC / WC N -c h P -c hT O -252-4L D 1/ D 2 S 1 G 1 S 2 G 2 G 1 D 1 S 1 G 2 D 2 S 2 Green Product

P a ra me t e r S ymbol C ondit ion Min Typ Ma x U nit O F F C H A R A C T E R IS T IC S D ra in-S ourc e B re a kdown V olt a ge B VD S S =V G S 0V, I D 250uA= 30 V Z e ro G a t e V olt a ge D ra in C urre nt ID S S V D S 24V, V G S 0V= = 1 G a t e -B ody L e a ka ge IG S S V G S 20V, V D S 0V= = 10 uA O N C H A R A C T E R IS T IC Sa G a t e T hre s hold V olt a ge V G S (t h) V D S V G S , I D = 250uA= V D ra in-S ourc e O n-S t a t e R e s is t a nc e R D S (O N ) V G S 10V, I D 10A 16 V G S 4. 5V, I D 8A 34 O n-S t a t e D ra in C urre nt ID (O N ) V D S = 5V, V G S = 4. 5V A SF orwa rd T ra ns c onduc t a nc e F Sg V D S 10V, I D 10A D Y N A MIC C H A R A C T E R IS T IC Sb Input C a pa c it a nc e C IS S C R S S C O S SO ut put C a pa c it a nc e R e ve rs e T ra ns fe r C a pa c it a nc e V D S =15V, V G S = 0V f =1. 0MH Z P F P F P F S W IT C H IN G C H A R A C T E R IS T IC S b T urn-O n D e la y T ime R is e T ime T urn-O ff D e la y T ime t D (O N ) tr tD (O F F ) tf V D D = 15V ID = 1 A V G S = 10V R G E N = 6 ohm ns ns ns ns Tot a l G a t e C ha rge G a t e -S ourc e C ha rge G a t e -D ra in C ha rge Q g Q gs Q gd V D S =15V, I D = 20 A V G S =10V nC nC nC C F a ll T ime = = uA m ohm m ohm N-C hannel E L E C T R IC A L C HA R A C T E R IS T IC S (T A 25 C unles s otherwis e noted) V D S =15V, I D =20A , VG S =10V nC V DS =15V, I D =20A, VG S =4. 5V 110 180 640 3. 5 1. 5 6. 8 ohmR gG a t e re s is t a nc e V G S =0V, V D S = 0V , f=1. 0MH Z 0. 5 1 31. 8

P a ra me t e r S ymbol C ondit ion Min Typ Ma x U nit O F F C H A R A C T E R IS T IC S D ra in-S ourc e B re a kdown V olt a ge B VD S S =V G S 0V, I D -250uA= -30 V Z e ro G a t e V olt a ge D ra in C urre nt ID S S V D S -24V, V G S 0V= = -1 G a t e -B ody L e a ka ge IG S S V G S 20V, V D S 0V= = 10 uA O N C H A R A C T E R IS T IC Sa G a t e T hre s hold V olt a ge V G S (t h) V D S V G S , I D = -250uA= V D ra in-S ourc e O n-S t a t e R e s is t a nc e R D S (O N ) V G S -10V, I D -6A V G S -4. 5V, I D -4A 54 O n-S t a t e D ra in C urre nt ID (O N ) V D S = -5V, V G S = -10V A SF orwa rd T ra ns c onduc t a nc e F Sg V D S -10V, I D -6A D Y N A MIC C H A R A C T E R IS T IC Sb Input C a pa c it a nc e C IS S C R S S C O S SO ut put C a pa c it a nc e R e ve rs e T ra ns fe r C a pa c it a nc e V D S =-15V, V G S = 0V f =1. 0MH Z P F P F P F S W IT C H IN G C H A R A C T E R IS T IC S b T urn-O n D e la y T ime R is e T ime T urn-O ff D e la y T ime t D (O N ) tr tD (O F F ) tf V D D = -15V ID = -1A V G S = -10V R G E N = 6 ohm ns ns ns ns Tot a l G a t e C ha rge G a t e -S ourc e C ha rge G a t e -D ra in C ha rge Q g Q gs Q gd V D S =-15V, I D = -20 A V G S =-10V nC nC nC C F a ll T ime = = uA m ohm m ohm P -C hannel E L E C T R IC A L C HA R A C T E R IS T IC S (T A 25 C unles s otherwis e noted) V DS =-15V,ID =-20A,V G S =-10V nC V DS =-15V,I D =-20A,V G S =-4.5V -20 130 220 850 4. 7 1. 6 ohmR gG a t e re s is t a nc e V G S =0V, V D S = 0V , f=1. 0MH Z 4 -1 -3-1. 9

F igure 2. Tra ns fe r C ha ra c t e ris t ic s F igure 4. O n-R e s is t a nc e Va ria t ion wit hD ra in C urre nt a nd Te mpe ra t ure ID , D ra in C urre nt (A ) V G S , G a t e -t o-S ourc e V olt a ge (V ) R D S (on) (m Ω ) O n-R e s is t a nc e ID , D ra in C urre nt (A ) R D S (O N ), N orma liz e d -55 C 25 C 1. 5 1. 4 1. 3 1. 2 1. 1 1. 0 0. 0 0 25 50 75 T j( C ) 100 125 V G S =10V ID =10A T j, J unc tion T e mpe ra ture ( C ) F igure 1. O ut put C ha ra c t e ris t ic s V D S, D ra in-t o-S ourc e V olt a ge (V ) ID , D ra in C urre nt( A ) 0 0. 5 1 1. 5 2 2. 5 3 V G S =3V V G S =3. 5V T j=125 C V G S =10V F igure 3. O n-R e s is t a nc e vs . D ra in C urre nta nd G a t e V olt a ge 6 12 18 24 301 V G S =10V V G S =4. 5V V G S =4. 5V ID =8A V G S =8V Parameter Symbol Condition Min Typ Max Unit ELECTRICAL CHARACTERISTICS ( T A=25 C unless otherwise noted) DRAIN-SOURCE DIODE CHARACTERISTICS Diode Forward Voltage VSD VGS = 0V , Is =10A N-Ch 0.9 1.3 -0.9 -1.3VGS = 0V , Is =-6A P-Ch V b C Notes b.Guaranteed by design, not subject to production testing. a.Pulse T est:Pulse Width 300–s, Duty Cycle 2%.㙌 㙌 N-Channel V G S =4. 5V 150 S T U 309D H

F igure 6 . B re a k down V olta ge V a ria tion with T e mpe ra ture V th, N orma liz e d G a te -S ourc e T hre s hold V olta ge B V D S S, N orma liz e d D ra in-S ourc e B re a k down V olta geI s , S ourc e -dra in c urre nt ( A ) F igure 8 . B ody D iode F orwa rd V olta ge V a ria tion with S ourc e C urre nt V S D , B ody D iode F orwa rd V olta ge ( V ) T j, J unc tion T e mpe ra ture ( C ) T j, J unc tion T e mpe ra ture ( C ) 2 0 . 0 1 0 . 0 1 . 0 1 . 2 1 . 1 1 . 0 0 . 9 0 . 8 0 . 7 0 . 6 0 . 5 -5 0 -2 5 0 2 5 5 0 7 5 1 0 0 1 2 5 1 5 0 V D S =V G S I D =2 5 0 uA -5 0 -2 5 0 2 5 5 0 7 5 1 0 0 1 2 5 1 5 0 1 . 2 0 1 . 1 5 1 . 1 0 1 . 0 5 1 . 0 0 0 . 9 5 0 . 9 0 I D =2 5 0 uA V G S , G a t e - S ourc e V olt a ge (V ) R D S (on) (m Ω ) F igure 7. O n-R e s is t a nc e vs .G a t e -S ourc e V olt a ge 2 4 6 8 100 F igure 5 . G a te T hre s hold V a ria tion with T e mpe ra ture 25 C 125 C

75 C 25 C

I D =1 0 A S T U 309D H

F igure 1 3 . Ma x imum S a fe O pe ra ting A re a V D S , D ra in-S ourc e V olta ge ( V ) I D , D ra in C urre nt ( A ) 1 0 0 1 0 0 . 5 0 . 1 1 1 0 3 0 6 0 V G S =1 0 V S ingle P uls e T c =2 5 C RDS( O N ) Limit D C 10 0 m s 10ms 1 ms 8 0 V G S , G a te to S ourc e V olta ge ( V ) F igure 1 1 . G a te C ha rge Q g, T ota l G a te C ha rge ( nC ) 1 0 0 2 4 6 8 1 0 1 2 1 4 1 6 V D S =1 5 V I D =2 0 A F igure 10. C a pa c it a nc e V D S, D ra in-t o S ourc e V olt a ge (V ) C , C a pa c it a nc e (pF ) 0 5 10 15 20 25 30 900 750 600 450 300 150 C is s C os s C rs s F igure 1 2 . s witc hing c ha ra c te ris tic s R g, G a te R e s is ta nc e (Ω ) S witc hing T ime ( ns ) 1 0 0 1 0 6 1 0 6 0 1 0 0 6 0 6 0 03 0 0 3 0 0 T D (on) T D (off) T r T f V D S =1 5 V , I D =1 A V G S =1 0 V S T U 309D H T ra ns ie nt T he rma l Impe da nc e S qua re W a ve P uls e D ura t ion (s e c ) F igure 14. N orma liz e d T he rma l T ra ns ie nt Impe da nc e C urve r(t ), N orma liz e d E ffe c t ive 0. 1 0. 01 1 10 D =0. 5 0. 2 0. 1 0. 05 0. 02 0. 01 P D M 1. R ’J A (t )=r (t ) * R’J A 2. R ’J A=S e e D a t a s he e t 3. T J M-T A = P D M* R ’J A (t ) 4. D ut y C yc le , D =t1/ t2 S IN G L E P U L S E

F igure 2. Tra ns fe r C ha ra c t e ris t ic s F igure 4. O n-R e s is t a nc e Va ria t ion wit hD ra in C urre nt a nd Te mpe ra t ure -I D , D ra in C urre nt (A ) -V G S , G a t e -t o-S ourc e V olt a ge (V ) R D S (on) (m Ω ) O n-R e s is t a nc e -I D , D ra in C urre nt (A )R D S (O N ), N orma liz e d 120 100 1. 5 1. 4 1. 3 1. 2 1. 1 1. 0 0. 0 0 25 50 75 T j( C ) 150100 125 V G S =-4. 5V ID =-4A T j, J unc tion T e mpe ra ture ( C ) F igure 1. O ut put C ha ra c t e ris t ic s -V D S, D ra in-t o-S ourc e V olt a ge (V ) -I D , D ra in C urre nt( A ) 0 0. 5 1 1. 5 2 2. 5 V G S =-3. 5V V G S =-8V T j=125 C F igure 3. O n-R e s is t a nc e vs . D ra in C urre nta nd G a t e V olt a ge 4 8 12 16 201 V G S =-10V V G S =-4. 5V V G S =-10V ID =-6A V G S =-4. 5V V G S =-10V 25 C V G S =-3V

F igure 6 . B re a k down V olta ge V a ria tion with T e mpe ra ture V th, N orma liz e d G a te -S ourc e T hre s hold V olta ge B V D S S, N orma liz e d D ra in-S ourc e B re a k down V olta ge-I s , S ourc e -dra in c urre nt ( A ) F igure 8 . B ody D iode F orwa rd V olta ge V a ria tion with S ourc e C urre nt -V S D , B ody D iode F orwa rd V olta ge ( V ) T j, J unc tion T e mpe ra ture ( C ) T j, J unc tion T e mpe ra ture ( C ) 2 0 . 0 1 0 . 0 1 . 0 1 . 3 1 . 2 1 . 1 1 . 0 0 . 9 0 . 8 0 . 7 0 . 6 -5 0 -2 5 0 2 5 5 0 7 5 1 0 0 1 2 5 1 5 0 V D S =V G S I D =-2 5 0 uA -5 0 -2 5 0 2 5 5 0 7 5 1 0 0 1 2 5 1 5 0 1 . 1 5 1 . 1 0 1 . 0 5 1 . 0 0 0 . 9 5 0 . 9 0 0 . 8 5 I D =-2 5 0 uA -V G S , G a t e - S ourc e V olt a ge (V ) R D S (on) (m Ω ) 120 100 F igure 7. O n-R e s is t a nc e vs .G a t e -S ourc e V olt a ge 2 4 6 8 100 F igure 5 . G a te T hre s hold V a ria tion with T e mpe ra ture 25 C 125 C I D =-6 A S T U 309D H

-V G S , G a te to S ourc e V olta ge ( V ) F igure 1 1 . G a te C ha rge Q g, T ota l G a te C ha rge ( nC ) 1 0 0 2 4 6 8 1 0 1 2 1 4 1 6 V D S =-1 5 V I D =-6 A F igure 10. C a pa c it a nc e -V D S, D ra in-t o S ourc e V olt a ge (V ) C , C a pa c it a nc e (pF ) 0 5 10 15 20 25 30 1200 1000 800 600 400 200 C is s C os s C rs s F igure 1 3 . Ma x imum S a fe O pe ra ting A re a -V D S , D ra in-S ourc e V olta ge ( V ) -I D , D ra in C urre nt ( A ) 7 0 5 0 1 0 0 . 0 3 0 . 1 1 1 0 3 0 6 0 R D S ( O N )Limit V G S =-1 0 V S ingle P uls e T c =2 5 C 1 0ms 10 0ms1sDC S T U 309D H T ra ns ie nt T he rma l Impe da nc e S qua re W a ve P uls e D ura t ion (s e c ) F igure 14. N orma liz e d T he rma l T ra ns ie nt Impe da nc e C urve r(t ), N orma liz e d E ffe c t ive 0. 1 0. 01 1 10 D =0. 5 0. 2 0. 1 0. 05 0. 02 0. 01 P D M 1. R ’J A (t )=r (t ) * R’J A 2. R ’J A=S e e D a t a s he e t 3. T J M-T A = P D M* R ’J A (t ) 4. D ut y C yc le , D =t1/ t2 S IN G L E P U L S E F igure 1 2 . s witc hing c ha ra c te ris tic s R g, G a te R e s is ta nc e (Ω ) S witc hing T ime ( ns ) 1 0 0 1 0 6 1 0 6 0 1 0 0 6 0 6 0 03 0 0 3 0 0 T D (on) T D (off) T r T f V D S =1 5 V , I D =1 A V G S =1 0 V

A B C M D GS P H J K L Millimeters MIN MAX A 6.40 6.80 B 5.2 5.50 C 6.80 10.20 D 2.20 3.00 P S 0.50 0.80 G 0.40 0.60 H 2.20 2.40 J 0.45 0.60 K 0 0.15 L 0.90 1.50 M 5.40 5.80 REF . 1.27 REF. T O -252-4L P A C K A G E O U T L IN E D IME N S IO N S

UNIT:р STU309DH ˇ ˉ