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Datasheet File OCR Text: |
? ! " #$ % & ' ( ) ( % % ! !! ! *% +, % -% ) ! % #$ ( % $ ' . ( ,&/0 -! *% +, % $1 ' -!) (( + 0) % ( ' % 23'3 + 0 % $ #$ ( *4+4. ' ! "#$%$&&' ()* + s d g micro3 !"# ! !$ % &' ()*+ ,-+ ") . / #0# !1#2+03#0# 4+#-) &%2) 5/ 2 67&&4+ &8 999 ' -+:1#$") 999 999 ; ? ? :1#$") &%<<+ 999 999 & 2<+ /& 999 999 / 999 999 / , =="#") 999 999 ; ) *$# +#++ 999 999 - / / 999 999 / / 999 999 / / ,-+ *$# (1) 999 999 / / , -+20(1) 999 999 / / > ",=) 999 / > ,-+=) 999 / > ,?@6""@a=) 999 / / -*)# b"3 & 999 / 999 / 2 & 999 / 999 / b<<"3 & 999 999 2 ? *"" & 999 999 2 / ?, -*)/ %%++ 999 999 b%%++ 999 999 %* / 20 <%++ 999 999 c/6de-*) ? ; -+(1) 2 -+-+b2+ !"# -+ 6b-*f 3&8" ?:#3#a =$)= !"#-+ )"0 ?:#3#a %g+## #*$#") 999 999 / / 202+03 & 999 / > 20 2+03=) 999 # #/ ; $ % " s d g 999 999 999 999 2%0)h%"$#="S &7g+&%?-<)//a i sd / ## ; / !"$#= ;h#3+3+" i -<+&#*28# + 0.01 0.1 1 10 0.1 1 10 d ds 20s 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 20s 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 20s 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 !" # $ $ 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 100s 1ms 10ms + - !" %& '() #* v ds 90% 10% v gs t d(on) t r t d(off) t f +& 1 !"# 0.1 % 2 2 j ,$ +& q g q gs q gd v g charge $ -. 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 + - 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 + - + + + - - - 2 ? #0#+""#832 ? +""#833*+@@ ? j 0+j# +(3# ? ($-3#++ ? ,#!" ? ($(1)#++ <& / 20!"3<!=" kkj!="0<!="6& / k // , - 01 /// <()+(0"#00+ , - ... 2 3%4% % lead assignments 1 - gate 2 - source 3 - drain l 3x 3x c a1 - c - b 3x a e e1 0.008 (.003) 3 1 2 e - a - - b - d h 0.20 ( .008 ) m a m dim inches millimeters min max min max a .032 .044 0.82 1.11 a1 .001 .004 0.02 0.10 b .015 .021 0.38 0.54 c .004 .006 0.10 0.15 d .105 .120 2.67 3.05 e .0750 basic 1.90 basic e1 .0375 basic 0.95 basic e .047 .055 1.20 1.40 h .083 .098 2.10 2.50 l .005 .010 0.13 0.25 0 8 0 8 0.10 (.004) m c a s b s minimum recommended footprint 0.80 ( .031 ) 3x 2.00 ( .079 ) 0.95 ( .037 ) 2x 0.90 ( .035 ) 3x 3 3 3 notes: 1. dimensioning & tolerancing per ansi y14.5m-1982. 2. controlling dimension : inch. dimensions do not include mold flash. 6 1996 26 24 25 30 28 we e k 27 wor k 29 2002 2003 1995 1994 2001 year b d e c y a 2000 1997 1999 1998 0 8 9 7 d c w b a x z y 04 we e k wor k 02 01 03 2002 2003 1995 1994 year 2001 2 4 5 3 y 1 w d c b a example: t his is an irlml6302 dat e code e xample s : yww = 9532 = ef yww = 9503 = 5c ww = (1-26) if preceded by las t digit of calendar year notes : t his part markin g information applies to devices produced before 02/26/2001 f 1996 52 51 50 2000 1997 1999 1998 k h j g x z y part number part number code reference: ww = (27-52) if preceded by a lett er dat e 1c = irlml6302 1d = irlml5103 1f = irlml6401 1g = irlml2502 1h = irlml5203 1e = irlml6402 1a = irlml2402 1b = irlml2803 code 29 30 50 w year a 2001 a b 2002 b c 2003 c d 1994 d x j 1995 1996 1997 1998 1999 2000 e f g h k y 1995 1996 1997 1998 2000 9 8 7 6 5 part number y = year w = week wor k week wor k a = irlml 2402 b = irlml2803 c = irlml 6302 d = irlml 5103 part number code reference: 25 y 51 y 26 z 52 z g = irlml2502 f = irlml6401 e = irlml6402 h = irlml5203 lot code notes : t his part marking information applies to devices produced after 02/26/2001 w = (1-26) if prece ded by last digit of calendar year 01 02 03 04 24 w year y a 2001 1 b 2002 2 c 2003 3 d 1994 4 x 1999 0 w = (27-52) if preceded by a letter week 27 28 % 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. 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 . 04/03 |
Price & Availability of IRLML6302TR
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