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www.irf.com 3    ! " #  7<=(  %  $  %    & %   0.1 1 10 100 0.0 0.4 0.8 1.2 1.6 f, frequency (khz) load current (a) for both: duty cycle: 50% t = 125c t = 90c gate drive as specified sink j power dissipation = w   1 10 100 5 6 7 8 9 10 11 12 13 14 v , gate-to-emitter voltage (v) i , collector-to-emitter current (a) ge c v = 50v 5s pulse width cc t = 25 c j o t = 150 c j o 60% of rated voltage i ideal diodes square wave: 0.1 1 10 100 1 10 v , collector-to-emitter voltage (v) i , collector-to-emitter current (a) ce c v = 15v 20s pulse width ge t = 25 c j o t = 150 c j o


4 www.irf.com  '())*&&  !   % ))  +   
   *)  , ! +  )    '())    !   )   -60 -40 -20 0 20 40 60 80 100 120 140 160 1.0 2.0 3.0 4.0 5.0 t , junction temperature ( c) v , collector-to-emitter voltage(v) j ce v = 15v 80 us pulse width ge i = a 2.5 c i = a 5 c i = a 10 c 25 50 75 100 125 150 0 2 4 6 8 10 t , case temperature ( c) maximum dc collector current(a) c
  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)

www.irf.com 5 50 60 70 80 90 100 0.20 0.25 0.30 r , gate resistance (ohm) total switching losses (mj) g v = 480v v = 15v t = 25 c i = 5.0a cc ge j c  -. %, ! / 0    -. %, ! +  )   -60 -40 -20 0 20 40 60 80 100 120 140 160 0.01 0.1 1 10 t , junction temperature ( c ) total switching losses (mj) j r = ohm v = 15v v = 480v g ge cc i = a 10 c i = a 5 c i = a 2.5 c  ? 2  3,2 5 ?)    !    *)  ,  / %, ! /  *)  , 0 4 8 12 16 0 4 8 12 16 20 q , total gate charge (nc) v , gate-to-emitter voltage (v) g ge v = 400v i = 5.0a cc c 1 10 100 0 100 200 300 400 500 v , collector-to-emitter voltage (v) c, capacitance (pf) ce v c c c = = = = 0v, c c c f = 1mhz + c + c c shorted ge ies ge gc , ce res gc oes ce gc c ies c oes c res


6 www.irf.com  '())". , 1!    ".   -. %, !    *)    $&&-$ 0 2 4 6 8 10 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 i , collector-to-emitter current (a) total switching losses (mj) c r = ohm t = 150 c v = 480v v = 15v g j cc ge   ? 1 10 100 1 10 100 1000 v = 20v t = 125 c ge j o v , collector-to-emitter voltage (v) i , collector-to-emitter current (a) ce c safe operating area 0.1 1 10 100 0.0 1.0 2.0 3.0 4.0 5.0 6.0 fm forward voltage drop - v (v) t = 150c t = 125c t = 25c j j j !>1 >  >%

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 56 20 25 30 35 40 45 50 100 1000 f di /dt - (a/s) i = 8.0a i = 4.0a f f v = 200v t = 125c t = 25c r j j 0 2 4 6 8 10 12 14 100 1000 f i = 8.0a i = 4.0a v = 200v t = 125c t = 25c r j j di /dt - (a/s) f f 0 40 80 120 160 200 100 1000 f di /dt - (a/s) i = 8.0a i = 4.0a v = 200v t = 125c t = 25c r j j f f 100 1000 100 1000 f di /dt - (a/s) a i = 8.0a i = 4.0a v = 200v t = 125c t = 25c r j j f f

8 www.irf.com same type device as d.u.t. d.u.t. 430f 80% of vce   * <  5  (  ".  ". 
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  " t1 ic vce t1 t2 90% ic 10% vce td(off) tf ic 5% ic t1+5s vce ic dt 90% vge +vge eoff =   * @+ <   &a"1   .  "
  " vce ie dt t2 t1 5% vce ic ipk vcc 10% ic vce t1 t2 dut voltage and current gate voltage d.u.t. +vg 10% +vg 90% ic tr td(on) diode reverse recovery energy tx eon = erec = t4 t3 vd id dt t4 t3 diode recovery waveforms ic vpk 10% vcc irr 10% irr vcc trr qrr = trr tx id dt   * @+ <   &a" 1  .  "
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www.irf.com 9  

   1     !         % 6.73 (.265) 6.35 (.250) - a - 4 1 2 3 6.22 (.245) 5.97 (.235) - b - 3x 0.89 (.035) 0.64 (.025) 0.25 (.010) m a m b 4.57 (.180) 2.28 (.090) 2x 1.14 (.045) 0.76 (.030) 1.52 (.060) 1.15 (.045) 1.02 (.040) 1.64 (.025) 5.46 (.215) 5.21 (.205) 1.27 (.050) 0.88 (.035) 2.38 (.094) 2.19 (.086) 1.14 (.045) 0.89 (.035) 0.58 (.023) 0.46 (.018) 6.45 (.245) 5.68 (.224) 0.51 (.020) min. 0.58 (.023) 0.46 (.018) lead assignments 1 - gate 2 - drain 3 - source 4 - drain 10.42 (.410) 9.40 (.370) notes: 1 dimensioning & tolerancing per ansi y14.5m, 1982. 2 controlling dimension : inch. 3 conforms to jedec outline to-252aa. 4 dimensions shown are before solder dip, solder dip max. +0.16 (.006).  

 internat ional logo rectifier 34 12 irfr120 916a lot code as s e mb l y example: with assembly t his is an irfr120 year 9 = 1999 dat e code line a week 16 in the assembly line "a" ass embled on ww 16, 1999 lot code 1234 part number note: "p" in assembly line position indicates "lead-free"  p916a irf r120 lot code assembly international rectifier logo 12 part number we e k 16 a = as s e mb l y s i t e code dat e code ye ar 9 = 1999 34 p = de s i gnat e s l e ad- f r e e product (opt ional)

10 www.irf.com notes:  0   + 
>  =$>b  !    ,-c d   $%  >  = %( >  %">  =$>"7=ae"0  =a ?  a:%  9 !  e b- &af .  9  !   2&e "  & 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 . data and specifications subject to change without notice. 6/04   

  !  1     !         % 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 notes : 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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