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!"# $ " %&'()*# $ +# !$$ " ! " # $ # % &'( ) $ # " * %) )# !+" # # ! )" * %)# # ,"-. " ! /01+234# ! " ? 2 d pak to-262 s d g ! "# $% %% &' (' ) ! "( $% %% &' (' * +$% %% ( ! "# , % $ - ./ ! "# , % $- 0/ 1 %$ %23% # ' 4 5% '*2 6 ' 7 52* * 8*9 7 %2: (. 8*9 %% (0 7 - 8 8*9 7 %2: #0 +8+ ;$+ 8 %:+8+ # ' ! <- %2+ ##=(># ! 5%2 ! - %% 2 5*+ %2! - %% &?%( + .(0?% ,,,%? ( downloaded from: http:/// ,,,%? 9 +(@a% 3 %4 (b %* 3%% + +?-%+*+ %2 9a % ? %--* cd )) ! "# ' $% 5% % ;+, '*2 ## ' ' "'& "#e ? ? % ;+, '*2 ! - ?? # ' ? % # & "( 5 $% 5% < ? ' "('& "(0 ' 4 !9% 9*+'*2 ' ' "' & "#e 2 3%,%+ !%+ 0# 5 ' "#'& "(0 # ' "##'&' "' # ' "'&' "'&! "(# 4 5% 3%,%+ 1 ;2 ( ' "' 4 5% 8 % 1 ;2 ( ' " ' f !*4 9%2 . "(0 f 4 5% 9%2 0/ ' "' f 4 $%@b** %@ 9%2 ( ' "('&5 320+(. !% <$ *:! > ' "/' ! ) "(0 !% ?$ *:! .( "(/ ? 3**! "(/ ?, 5 32( , * +& + % ? + - - > ' "' <- - -3 ' "#' 8 % !%? % - ( g"(bhi&5 32# $% 5% 1 ;2 %% e h 1 %*5% + ># - 8 %2j-* ,+9* +: kl - %% 5 ?2(( i sd (0&++ e&' ' & ! 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"# &1"0(eh "# ? & "(05 32% ( * ,+9 .ej+::* m uses irfz34n data and test conditions downloaded from: http:/// ,,,%? . 1 10 100 1000 0.1 1 10 10 0 i , drain-to-source current (a) d v , drain-to-source voltage (v) ds vgs top 15v 10v 8.0v 7.0v 6.0v 5.5v 5.0v bottom 4.5v 20s pulse width t = 25c c a 4.5v 1 10 100 1000 0.1 1 10 100 i , drain-to-source current (a) d v , drain-to-source voltage (v) ds vgs top 15v 10v 8.0v 7.0v 6.0v 5.5v 5.0v bottom 4.5v a 4.5v 20s pulse width t = 175c c 1 10 100 4567891 0 t = 25c j gs v , gate-to-source voltage (v) d i , drain-to-source current (a) a v = 25v 20s pulse width t = 175c j ds 0.0 0.4 0.8 1.2 1.6 2.0 2.4 -60 -40 -20 0 20 40 60 80 100 120 140 160 180 j t , junction temperature (c) r , drain-to-source on resistance ds(on) (normalized) v = 10v gs a i = 26a d ! ! "# ! "(># downloaded from: http:/// ,,,%? " #$ % &'"%( ! " % )% ! )" % 0 200 400 600 800 1000 1200 1 10 100 c, capacitance (pf) ds v , drain-to-source voltage (v) a v = 0v, f = 1mhz c = c + c , c shorted c = c c = c + c gs iss gs gd ds rss gd oss ds gd c iss c oss c rss 0 4 8 12 16 20 0 1 02 03 04 0 q , total gate charge (nc) g v , gate-to-source voltage (v) gs a for test circuit see figure 13 v = 44v v = 28v dsds i = 16a d 1 10 100 1000 0.4 0.8 1.2 1.6 2.0 t = 25c j v = 0v gs v , source-to-drain voltage (v) i , reverse drain current (a) sd sd a t = 175c j 1 10 100 1000 1 10 100 v , drain-to-source voltage (v) ds i , drain current (a) operation in this area limited by r d ds(on) 10s 100s 1ms 10ms a t = 25c t = 175c single pulse cj downloaded from: http:/// ,,,%? # "$ % + - v ds 9 0% 1 0% v gs t d(on) t r t d(off) t f ' ( ' 1 !"# 0.1 % &' ! "$ % *+ ' ' $n! &', + - ./ 25 50 75 100 125 150 175 0 5 10 15 20 25 30 t , case temperature ( c) i , drain current (a) c d 0.01 0.1 1 10 0.00001 0.0001 0.001 0.01 0.1 notes: 1. duty factor d = t / t 2. peak t = p x z + t 1 2 j dm thjc c p t t dm 1 2 t , rectangular pulse duration (sec) thermal response (z ) 1 thjc 0.01 0.02 0.05 0.10 0.20 d = 0.50 single pulse (thermal response) downloaded from: http:/// 0 ,,,%? 0 - + 0 - +*+ 1 )%*+ t p v ds i as v dd v (br)dss d.u.t. v d s i d i g 3ma v gs .3 f 50k ? .2 f 12v current regulator same type as d.u.t. current sampling resistors + - q g q gs q gd v g charge 2 0 50 100 150 200 250 25 50 75 100 125 150 17 5 j e , single pulse avalanche energy (mj) as a starting t , junction temperature (c) v = 25v i top 6.5a 11a bottom 16a dd d v ds l d.u.t. v d d i as t p 0.01 ? r g + - $%& )% &'(+ ,% ! downloaded from: http:/// ,,,%? > p.w. period di/dt diode recovery dv/dt ripple 5% body diode forward drop r e-applied v oltage reverserecovery current body diode forward current v gs =10v v dd i sd driver gate drive d.u.t. i sd waveform d.u.t. v ds waveform inductor curent d = p. w . period + - + + + - - - #3,4#, " 5 ' "#'?%121 8 *$ 8 ' ? +8+%** +: ? $%8 % :- $n! ? %** +:$:3%@$@ ? $n! $ 8 n+ %! %1: + % ? 1,5%:+ ? 4%+* ? 1,1 ;2 + %% !%?% % 5 downloaded from: http:/// / ,,,%? dimensions are shown in millimeters (inches) note: "p" in as s embly line pos ition indicates "l ead-f ree" f530s t his is an irf530s with lot code 8024 as s embl ed on ww 02, 2000 in the assembly line "l" assembly lot code inte rnational rect ifie r logo part number dat e code year 0 = 2000 week 02 line l f 530s a = as s e mb l y s i t e code wee k 02 p = de s i gnat e s l e ad- f r e e product (opt ional) rectifier int ernational logo lot code as s e mb l y ye ar 0 = 2000 dat e code part number downloaded from: http:/// ,,,%? ) to-262 part marking information to-262 package outlinedimensions are shown in millimeters (inches) as s e mb l y lot code re ct if ie r int ernational as s e mb l e d on ww 19, 199 7 note: "p" in assembly line position indicates "lead-free" in the assembly line "c" logo this is an irl3103l lot code 1789 example: line c dat e code we e k 19 ye ar 7 = 1997 part number part number logo lot code as s e mb l y internat ional rectifier product (optional) p = designat es lead-f ree a = as s e mb l y s it e code week 19 year 7 = 1997 dat e code or downloaded from: http:/// ( ,,,%? dimensions are shown in millimeters (inches) 3 4 4 trr f eed direction 1.85 (.073) 1.65 (.065) 1.60 (.063) 1.50 (.059) 4.10 (.161) 3.90 (.153) trl f eed direction 10.90 (.429) 10.70 (.421) 16.10 (.634) 15.90 (.626) 1.75 (.069) 1.25 (.049) 11.60 (.457) 11.40 (.449) 15.42 (.609) 15.22 (.601) 4.72 (.136) 4.52 (.178) 24.30 (.957 ) 23.90 (.941 ) 0.368 (.0145) 0.342 (.0135) 1.60 (.063) 1.50 (.059) 13.50 (.532) 12.80 (.504) 330.00 (14.173) max. 27.40 (1.079) 23.90 (.941) 60.00 (2.362 ) min. 30.40 (1.197) max. 26.40 (1.039) 24.40 (.961) notes : 1. comforms to eia-418. 2. controlling dimension: millimeter. 3. dimension measured @ hub. 4. includes flange distortion @ outer edge. data and specifications subject to change without notice. ir world headquarters: 233 kansas st., el segundo, california 90245, usa tel: (310) 252-7105 tac fax: (310) 252-7903 visit us at www.irf.com for sales contact information . 07/04 downloaded from: http:/// note: for the most current drawings please refer to the ir website at: http://www.irf.com/package/ downloaded from: http:/// |
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