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! " #$ % $ ! ! & ! '() ! * ! % ! $ ! # + $ )(",-* & ! '()! . #* %$$ ' -% ! $ # ! /01#12 ' - ! $ &3'3+ ! " #$%&%''( )*+ ! , , - '!. - 4 5,673 3 8 3 %9 4":#69 ";#<= 4 5<;73 3 8 3 %9 4":#69 ";#>, + & 8 3 ":#? & 4 5,673 & ! 8 6:; @ a 8 :#- 9 " ") 9 b 1, 9 c & *8 c "6#; 9c d ) "66 e16; 73 'd " "+$ fff ,-; 73c@ micro3 tm s g 1 2 d 3 form quantity irlml6302trpbf micro3 ? 000 0 package type standard pack orderable part number base part number ! "# $% ! "# $% 9 8 " ") g * ! 9 ",; fff fff 9 9 5;9% 5",6;h+ g * ! 9 # 3 fff ":#? fff 9c73 ,673% 5"1+ fff fff ;#>; 9 5":#69% 5";#>1+ fff fff ;#?; 9 5",#<9% 5";#-1+ 9 9 ";#<; fff "1#6 9 9 59 % 5",6;h+ ! ;#6> fff fff ) 9 5"1;9% 5";#-1+ fff fff "1#; 9 5"1>9%9 5;9 fff fff ",6 9 5"1>9%9 5;9% 51,673 " ") ! a * fff fff "1;; 9 5"1,9 " " ) a * fff fff 1;; 9 51,9 i 3 fff ,#: -#> 5";#>1+ i " ") 3 fff ;#6> ;#=: 3 9 5 "1>9 i " "8 /j' j23 fff 1#; 1#6 9 5":#69%) #> ? "( 8 fff 1- fff 9 5"1;9 fff 1= fff 5";#>1+ "(8 fff ,, fff 5>#, fff ,, fff 51> , ) #1; 3 3 fff ?< fff 9 5;9 3 (3 fff 6- fff 9 5 "169 3 3 fff ,= fff k51#;'%) #6 h+ + 8 " ") a * 3 )8 " ") ( " ! "# l ! $ #m #/) #112 ";#>1+%c <>+ch%9 9 % 16;73 & ! -;;hl ,n# ) ":$ % 6 # parameter min. typ. max. units conditions i s continuous source current mosfet symbol (body diode) showing the i sm pulsed source current integral reverse (body diode) p-n junction diode. v sd diode forward voltage ??? ??? -1.2 v t j = 25c, i s = -0.61a, v gs = 0v t rr reverse recovery time ??? 35 53 ns t j = 25c, i f = -0.61a q rr reverse recovery charge ??? 26 39 nc di/dt = -100a/ s $ %& " + s d g fff fff ":#? fff fff ";#6: & ! "# $% ! /!/ ! " ! /!/ 0 '1, & '!/ 0.01 0.1 1 10 0.1 1 10 d ds 20 s pulse width t = 25c a -i , drain-to-source current (a) -v , drain-to-source voltage (v) j -1.5v vgs top - 7.5v - 5.0v - 4.0v - 3.5v - 3.0v - 2.5v - 2.0v bottom - 1.5v 0.01 0.1 1 10 0.1 1 10 d ds 20 s pulse width t = 150c a -i , drain-to-source current (a) -v , drain-to-source voltage (v) j vgs top - 7.5v - 5.0v - 4.0v - 3.5v - 3.0v - 2.5v - 2.0v bottom - 1.5v -1.5v 0.01 0.1 1 10 1.5 2.0 2.5 3.0 3.5 4.0 4.5 t = 25c t = 150c j j gs d a -i , drain-to-source current (a) -v , gate-to-source voltage (v) v = -10v 20 s pulse width ds 0.0 0.5 1.0 1.5 2.0 -60 -40 -20 0 20 40 60 80 100 120 140 160 j t , junction temperature (c) r , drain-to-source on resistance ds(on) (normalized) a i = -0.61a v = -4.5v d gs ! "# $% ! ! & 2 / ! / 2 2 , , 3'/' " ! ) ! & / 0 20 40 60 80 100 120 140 160 180 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 2 4 6 8 10 0.0 1.0 2.0 3.0 4.0 g gs a -v , gate-to-source voltage (v) q , total gate charge (nc) i = -0.61a v = -16v for test circuit see figure 9 d ds 0.01 0.1 1 10 0.4 0.6 0.8 1.0 1.2 1.4 t = 25c t = 150c j j v = 0v gs sd sd a -i , reverse drain current (a) -v , source-to-drain voltage (v) 0.1 1 10 1 10 100 operation in this area limited by r ds(on) t = 25c t = 150c single pulse a -i , drain current (a) -v , drain-to-source voltage (v) ds d a j 100 s 1ms 10ms ' ! "# $% + - 3'/' "" * ' 4'!, . 5/ )'+ v ds 90% 10% v gs t d(on) t r t d(off) t f ' / ' 6*" ' 9 1 !"#$ 0.1 % 9 9 8#o## 7 6*" ' q g q gs q gd v g charge / 8&9 d.u.t. v ds i d i g -3ma v gs .3 f 50k .2 f 12v current regulator same type as d.u.t. current sampling resistors + - ":#69 0.1 1 10 100 1000 0.00001 0.0001 0.001 0.01 0.1 1 10 100 notes: 1. duty factor d = t / t 2. peak t = p x z + t 1 2 j dm thja a p t t dm 1 2 t , rectangular pulse duration (sec) thermal response (z ) 1 thja 0.01 0.02 0.05 0.10 0.20 d = 0.50 single pulse (thermal response) ( ! "# $% p.w. period di/dt diode recovery dv/dt ripple 5% body diode forward drop re-applied voltage 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 + - + + + - - - 9 ? c $ ? $ 8 j8j ? 8#o##"8 o 3a 3 ? a !) ? & ? a !a * 3 : & &"3 ppo &"3 8 &"3 ' : 9 p :: ; < ::: 9 56#;9 a a -98 8 -= ) ! "# $% micro3 (sot-23 / to-236ab) part marking information !"#$% 0.08 0.88 0.01 0.89 0.95 bs c mil l ime t e r s mi n e e e1 d l a a1 a2 c m o b s y mi n max max .036 .0375 b s c dimens ions inches b0.30 bbb 0.15 .008 ccc .006 0.25 b s c l1 l 0.40 0.60 .0118 b s c aaa 0.20 .004 0 8 8 0 2.80 1.20 0 e1 e d 5 6 3 12 ccc c b a b 5 6 e e1 a2 a a1 bbb c a b 3x b aaa c 3 s urf 0 3x l l1 h 4 7 2.10 e1 1.90 bs c .075 b s c .0119 .0032 .111 .083 .048 .055 .119 .103 .0196 .0078 .0039 .044 .0004 .035 .040 .0236 .0158 1.02 0.20 0.50 2.64 3.04 1.40 1.12 0.10 0.10 1.90 [.075] 0.95 [.0375] 0.972 [.038] 2.742 [.1079] 0.802 [.031] r e comme nde d f oot p r int 3x 3x not es 1. dimens ioning and t olerancing per asme y14.5m-1994. 4 datum plane h is located at the mold parting line. 5 d at u m a and b t o b e de t e r mi n e d at dat u m p l an e h . 6 d i me ns i on s d and e 1 ar e me as u r e d at dat u m p l ane h . 2. dimensions are shown in millimeters and inches. 3. cont rolling dimension: millimet er. 7 dimension l is the lead length for soldering to a substrate. 8. out line conf orms t o je de c out line t o- 236ab . f = irlml6401 a 2001 a 27 notes: this part marking information applies to devices produced after 02/26/2001 assembly lot code lead-free date code e = irlml6402 x = part number code reference : d = irlml5103 c = irlml6302 b = irlml2803 a = irlml2402 w = (1-26) if preceded by last digit of calendar year w = (27-52) if preceded by a letter y 8 2008 3 2003 1 2001 year 2002 2 5 2005 2004 4 2007 2006 7 6 2010 0 2009 9 year y c 03 work week 01 02 a w b 04 d 24 26 25 x z y work week w h = irlml5203 g = irlml2502 k h g f e d c b 2006 2003 2002 2005 2004 2008 2007 2010 2009 j y 51 29 28 30 c b d 50 x i = irlml0030 j = irlml2030 l = irlml0060 m = irlml0040 k = irlml0100 n = irlml2060 p = irlml9301 r = irlml9303 cu wire halogen free part number 52 z date code example: yww = 432 = df yww = 503 = 5c 2018 2013 2011 2012 2015 2014 2017 2016 2020 2019 2018 2013 2011 2012 2015 2014 2017 2016 2020 2019 w = irfml8244 v = irlml6346 u = irlml6344 t = irlml6246 s = irlml6244 y = irlml2246 x = irlml2244 z = irfml9244 note: for the most current drawing please refer to ir website at http://www.irf.com/package $ ! "# $% ? 2.05 ( .080 ) 1.95 ( .077 ) tr feed direction 4.1 ( .161 ) 3.9 ( .154 ) 1.6 ( .062 ) 1.5 ( .060 ) 1.85 ( .072 ) 1.65 ( .065 ) 3.55 ( .139 ) 3.45 ( .136 ) 1.1 ( .043 ) 0.9 ( .036 ) 4.1 ( .161 ) 3.9 ( .154 ) 0.35 ( .013 ) 0.25 ( .010 ) 8.3 ( .326 ) 7.9 ( .312 ) 1.32 ( .051 ) 1.12 ( .045 ) 9.90 ( .390 ) 8.40 ( .331 ) 178.00 ( 7.008 ) max. notes: 1. controlling dimension : millimeter. 2. outline conforms to eia-481 & eia-541. note: for the most current drawing please refer to ir website at http://www.irf.com/package * ! "# $% ms l 1 (per je de c j-s t d-020d ?? ) rohs c ompliant yes qualification information ? qualification level cons umer (per jedec jesd47f ?? guidelines) moisture sensitivity level micro3 ? (sot-23) ? qualification standards can be found at international rectifier?s web site: http://www.irf.com/product-info/reliability ?? applicable version of jedec standard at the time of product release ir world headquarters: 101 n. sepulveda blvd., el segundo, california 90245, usa to contact international rectifier, please visit http://www.irf.com/whoto-call/ revision history date comment ? updated data sheet with new ir corporate template. ? updated package outline & part marking on page 8. ? 10. ? added bullet point in the benefits "rohs compliant, halogen -free" on page 1. 4/28/2014 |
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