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? !" d-pak t o-252aa i-pak to-251aa !" #"$"%!& ! &#$ " # $% & ! '( (( )* $* # $% &! '( (( )* $* + # ,-'( (( $% & ! .( ' / 00 " 1 ('( 23( "! * 45 ( *,2 6 * 7 5 2, ,8, 97 (2: # 8, 9 (( + 7 / 8 8, 9 7 (2: 0 -8- ;' -8(:-8- * % ( 2 - = % 5(2%/( ( 2 5,-( 2%/( ()>( - 0>( ! ! " #$ % & ' ( ) ( % % ! !! ! *% +, % -% ) ! % #$ ( % $ ' &*- ! ! ! ) ) % ! "' ! . !& ! ' *% /'0 % ( $ ' s d g www.irf.com 1 " 2 www.irf.com # 5 ( (( ?<537%:, -:' - 9. 29 ,-5 ( (( 2(,(8( -:' - / @ - - * ' - 3(.(- *,2 0 * % & !)# &a+)* &* 8(8(:% % & !)# &+ b 8( 8(: 9(2 0 a - -& c 3(.(- % ( < % # ( ( 2, 2 , ( - -:1 =1 " 9 - de (3(4?( , 3( ( -->/( -,-( 29 e (>(//, fg %9 //, ->(#h)1 >'h (-. ,- - (>- 5( 2% & !)1&0i & ? )# &a+53 2 ( / 8( 2j/ ,. -9, -: k@ /( (5> 2 i sd a+)- - c)* * ) % ! ,. -9 cj- ::, l s d g * '( 5 ( (;-. *,2 * * &*)# & c ? ? (;-. *,2 %/ >> *! >( !)# & 5 '( 5 ( < ? * &*)# &a+ * 4%9(9,-*,2 * * &* )# & c 2 3(.(- %( - 5 * & *)# &a+ c * &*)* &* * &+*)* &*)% & ! 45 ( 3(.(- 1;2 * &* 45 ( 8( 1;2 * &* b %,49(2 + # &+ b 45 ( 9(2 + * & +* b 4'( d? ,,(d9(2 * &*)53 20 - % ( < ',:% * & * % + # &+ % ( <>>',:% & ? 3,,% 0 &0 ?, 53 2 . ,-) 0 >( /;2 - ( > - # / / a0 * &* < / / 0 /3 * & * 8( %( >( / a m&?in)53 2 i !" # $% 1 # ( ,'( # - 1 # ( ,5 (# - # a # '( 5 (1;2 (( s d g o#3 g- - - www.irf.com 3 !" !" # !" 0.01 0.1 1 10 100 0.1 1 10 100 20s pulse width t = 25 c j top bottom vgs -15v -10v -8.0v -7.0v -6.0v -5.5v -5.0v -4.5v -v , drain-to-source voltage (v) -i , drain-to-source current (a) ds d -4.5v 0.1 1 10 100 0.1 1 10 100 20s pulse width t = 150 c j top bottom vgs -15v -10v -8.0v -7.0v -6.0v -5.5v -5.0v -4.5v -v , drain-to-source voltage (v) -i , drain-to-source current (a) ds d -4.5v 0.1 1 10 100 4 5 6 7 8 9 10 v = 10v 20s pulse width ds -v , gate-to-source voltage (v) -i , drain-to-source current (a) gs d t = 25 c j t = 150 c j -60 -40 -20 0 20 40 60 80 100 120 140 160 0.0 0.5 1.0 1.5 2.0 2.5 t , junction temperature ( c) r , drain-to-source on resistance (normalized) j ds(on) v = i = gs d -10v -14a 4 www.irf.com $%&# ' (!" ' (& ' ! & ' & ) * ' 0.1 1 10 100 0.2 0.8 1.4 2.0 2.6 -v ,source-to-drain voltage (v) -i , reverse drain current (a) sd sd v = 0 v gs t = 25 c j t = 150 c j 0 400 800 1200 1600 2000 1 10 100 c, capacitance (pf) a ds -v , drain-to-source voltage (v) 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 10 20 30 40 50 60 0 5 10 15 20 q , total gate charge (nc) -v , gate-to-source voltage (v) g gs for test circuit see figure i = d 13 -8.4a v = -20v ds v = -50v ds v = -80v ds 1 10 100 1000 1 10 100 100 0 operation in this area limited by r ds(on) single pulse t t = 150 c = 25 c j c -v , drain-to-source voltage (v) -i , drain current (a) i , drain current (a) ds d 10us 100us 1ms 10ms www.irf.com 5 $%+##, " -./! $% ! ! &*"'! &*"'0,# * * 1 ! 0.1 % * * 'o% + - v ds 9 0% 1 0% v gs t d(on) t r t d(off) t f 25 50 75 100 125 150 0 3 6 9 12 15 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 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) 6 www.irf.com (!" '! 1(!" '0,# $% ,"+ ' ! q g q gs q gd v g charge 2 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 + - 3-,0,# 3-,! t p v (br)dss i as r g i as 0.01 ? t p d.u.t l v ds v dd driver a 15v -20v = * 25 50 75 100 125 150 0 100 200 300 400 500 starting t , junction temperature ( c) e , single pulse avalanche energy (mj) j as i d top bottom -3.5a -4.9a -7.8a www.irf.com 7 p.w. period di/dt diode recovery dv/dt ripple 5% body diode forward drop r e-applied v oltage reverse recovery 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 + - + + + - - - * ? -8- (,,-: ? # (,,-:' :3(d'd ? 'o%'8 o -(% 4 ( 1: -( ? 1.5(:# - ? 4( -, ? 1.1;2# - (( %( >(( 4 8(,( :>'o%>(9 , * '( 56 444 * & *>(12 18, -*'( 8'8 '())) ) !"7+8)+& 8 www.irf.com !" % 12 in the assembly line "a" as sembled on ww 16, 1999 example: wi t h as s e mb l y this is an irfr120 lot code 1234 year 9 = 199 9 dat e code we e k 1 6 part number logo international rectifier as s e mb l y lot code 916a irfu120 34 year 9 = 1999 dat e code or p = de s i gnat e s l e ad- f r e e product (optional) note: "p" in as s embly line pos ition i ndi cates "l ead- f r ee" 12 34 we e k 1 6 a = as s e mb l y s i t e code part number irfu120 line a logo lot code as s e mb l y int ernat ional rectifier www.irf.com 9 !" % as s e mb l y example: with assembly this is an irfu120 ye ar 9 = 199 9 dat e code line a we ek 19 in the assembly line "a" as s emble d on ww 19, 1999 lot code 5678 part number 56 irf u120 international logo rect ifier lot code 919a 78 note: "p" in as s embly line pos i ti on i ndi cates "l ead-f r ee" 56 78 assembly lot code rectif ier logo internat ional irfu120 part number week 19 dat e code year 9 = 1999 a = assembly site code p = designates lead-free product (optional) 10 www.irf.com 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 . 12/04 # $ " % tr 16.3 ( .641 ) 15.7 ( .619 ) 8.1 ( .318 ) 7.9 ( .312 ) 12.1 ( .476 ) 11.9 ( .469 ) feed direction feed direction 16.3 ( .641 ) 15.7 ( .619 ) trr trl n otes : 1 . controlling dimension : millimeter. 2 . all dimensions are shown in millimeters ( inches ). 3 . outline conforms to eia-481 & eia-541. notes : 1. outline conforms to eia-481. 16 mm 13 inch note: for the most current drawings please refer to the ir website at: http://www.irf.com/package/ |
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