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" # $ %&'( )! # * & " (* ! + ( , - ! & ak80a economy series 132 - 240w output power !" # " #./0 11 " % 2! ........................................................................................ 3 + ( .................................................................................. 3 0! 2 ........................................................................... + .................................................................................................. # $$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$ % 4 %* " 5 ! ............................................. 6 7 ! ............................................................... 2 ! ......................................................................... + 839 2 %! :4;/4 /83 ***(< ... 1 + 39 2 %! :4;/4 /3 ***(< . $/ + =//9 2 %! :4;/4 =// ***(< ... ...................................................................................................... $$ & $$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$ '( " + :>+?+@ +?+< ...................................................... $= :?4'<................................................................... $= 0 9 4!a :9 4-b< .................................................. $= 7 c!2! :7c2-< .................................................... $3 +:+4"<................................................................ $3 d+:;2?@;0e&< ....................................................... $3 & %:&%7%0?< ................................................ $ 4!a : 2% 4-b< .............................................. $ 7"2 4ef ............................................................................................ $ $$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$ ') 2 'd ........................................................................ $ " ! ................................................................................... $ 2 ( ...................................................................................... $ 7 ! .................................................... $ ' d" ............................................................................... $ ! !%2 .................................................................................. $ 0# 7 ............................................................. $ & - .................................................................................... $ %&'( ................................................................................................. $1 0" !? .................................................................... $1 " #./0 11 " % #* $$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$ +" 42- ................................................................................ 8/ 7 - ................................................................ 8/ , $$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$+' - ....................................................................................... 8$ " ! ! 7' ............................................................... 88 d % 2 ......................................................... 8= !" # " #./0 11 " % !"# , & 4;/4 !@ -- # ! @#!83/) * ! : * 4;/4 =// 83/($/<.& 4;/4 !a # @ !a! . & //;g* ! , ! ! * " # $%&'( )! # 7 & 0# ! 4!a # ! current sensing and control pwm control and gating osc +in -in cshare enable clk in clk out temp mon v adj pg/id -sense +sense -out +out 21 24 26 29 1 4 2 31 32 9 8 7 11 internal temperature sensor id resistor 6 3 primary side secondary side c lim adj 10 output detection over- voltage protection voltage sensing and control 300vmodules only mosfet switcher 5 s com pri aux 12 pri aux pg/id 2 +sense 1 3 v adj 4 - sense clk in 8 clk out 7 c share 6 s com 5 9 enable 10 c lim adj 11 temp mon 12 pri aux + output - + input - 31 32 21 22 23 24 26 27 28 29 ampss tm power module " #./0 11 " % model number in p u t voltage output voltage output c u rren t output pow er AK80A-300L-033F50 300v 3.3v 50a 165w ak80a-300l-050f40 300v 5v 40a 200w ak80a-300l-120f18 300v 12v 18a 216w ak80a-300l-150f16 300v 15v 16a 240w ak80a-300l-240f10 300v 24v 10a 240w ak80a-048l-033f50 48v 3.3v 50a 165w ak80a-048l-050f40 48v 5v 40a 200w ak80a-048l-120f18 48v 12v 18a 216w ak80a-048l-150f16 48v 15v 16a 240w ak80a-048l-240f10 48v 24v 10a 240w ak80a-024l-033f40 24v 3.3v 40a 132w ak80a-024l-050f30 24v 5v 30a 150w ak80a-024l-120f14 24v 12v 14a 168w ak80a-024l-150f12 24v 15v 12a 180w ak80a-024l-240f08 24v 24v 8a 192w 4! ! ! h &+=// $=8 8 &+=// =6 $ :$< ?/88 4 :$< ?/88 ' :$< ?3$//= 26$// 33 :$< 26$// 3 :$< 21/ 9-/$ 4 :$< 9-/ 4 :$< '&?"8$$:< :i< :$< " , !! * .7 . - , 7 4 # @ ! . eh e$1/ +4h +488.8?.1/ 9-h 9-/ / :39j=/ / 9< ? 6 / 1 / : 3 9 j = / / 9 < h %d:39j=//9< 7 4 ! #. !" # " #./0 11 " % !# :/<! # :9 2 <! ! :/2 0 !<.* ! !@ >+?+! +?+ ! @?4' ! + 0 % . 4 . 9 2 @9 0 ! 2 0 !@9 2 @9 0 ! 2 0 ! . primary control pins temp m o n -0.5 to 7 vd c c shar e -0.5 to 7 vd c clk o u t -10 to 10 vdc clk in -10 to 10 vdc c lim adj -0.5 to 7 vd c pri aux -0.5 to 14vdc en a ble -0.5 to 2 0 v d c note: relative to -input/ s com secondary control pins +sense v o - 0.5 to v o + 0.5 vdc -sense -0.5 to 0.5 vd c v adj -0.5 to 7 vd c pg /id -0.5 to v o + 0.5vdc note : v o = module output voltage note: relative to -o ut put g e ne ra l 3 00 v inp ut 4 8v inp ut 2 4v inp ut co ntinuous input volta g e 400v 72v 36v inp ut surg e volta g e (1 se c) 425v 75v (co ntinuo us) 38v iso la tion, inp ut to output* 2700vd c 2100vd c 1500vd c iso la tion inp ut to ba se pla te * 2121vd c 2100vd c 1500vd c iso la tion, output to ba se p late* 500vd c 500vd c 500vd c operating temperature (baseplate)/ case 0 to 85c storage temperature -40 to 105c operating relative humidity (non-condensing 10% to 95% storage relative humidity (non-condensing) 95% max a ltitud e (o p e ra ting ) < 3 000 m a ltitud e (s to ra g e ) < 9 000 m le a d t e m p erature (so ld ering 5 se co nd s) 235c # . * / * ! ! * # ! ! .& ! !! !! ! ! ! ! !" # $ "%&'' ( )*(+ ",, , , -./00!",!" "100 # / $ $ ./00 .20( "100# ./00!",!" ' $' $ (' $$ $+ 3,/'40" 5& 6"7 89*2)! " #./0 11 " % input pins pin no pin name type description recommended connections 31 +input input power input - positive a 220 f electrolytic capacitor connected between the +input and -input pins is recommended 32 -input input power input - negative (return) see + input for recommendations output pins pin no pin name type description recommended connections 21-24 +output output power output - positive ensure good electrical connection and sufficient copper on pcb layouts 26-29 -output output power output - negative see +output for recommendations control pins pin no pin name type description recommended c onnections 1 +sense input used for remote sense function to compensate for load bus resistance if remote sensing is not required connect to +o utput pins 21-24 of the module 2 pg/id output high level output (v pg/id = v o ) indicates module converter is running. can also be used to identify the nominal output voltage of the module by measuring resistance between pg/id and +sense id resistance = [v o(nom) ]k ? . leave unconnected if not used 3 v adj input used to adjust module output voltage leave unconnected if not used 4 -sense input used for remote sense function to compensate for load bus resistance if remote sensing is not required connect to -output pins 26-29 of the module 5 s co m reference negative reference for all primary side signals connect to negative side of primary control and monitoring circuitry 6 c share input/output allows modules connected in parallel to accurately share current connect to c share pins of other modules. leave unconnected if not used 7 clk o ut output provides a 1mhz clock output for synchronization with other modules capacitor coupled output. leave unconnected if not used 8 clk in input accepts a 1mhz clock input for synchronization with other modules capacitor coupled input. leave unconnected if not used 9 enable input enables or disables the output of the module must be connected to s co m pin or driven to <0.8v to enable the output of the module 10 c lim adj input used to adjust the current limit set point leave unconnected if not used 11 temp mon output provides a voltage signal proportional to the internal absolute temperature of the module leave unconnected if not used 12 pri aux input primary auxiliary supply. allows external capacitance or external auxiliary supply to be connected to the module to allow start-up into high capacitance loads normal unused. leave unconnected. w hen required, connect capacitor to s- com or connect external 12v auxiliary supply pg/id 2 +sense 1 3 v adj 4 - sense clk in 8 clk out 7 c share 6 s com 5 9 enable 10 c lim adj 11 temp mon 12 pri aux + output - + input - 31 32 21 22 23 24 26 27 28 29 ampss tm power module !" # " #./0 11 " % , control signals control function conditions parameter min typ max units pg/id power good converter running : v pg/ id 100 %v o / identification function i orated >i o > 1a converter not running v pg/ id 1.0 v 3.3 v output resistance, pg/id 3.23 3.3 3.37 k ? 5v output to +output 5.00 5.1 5.20 k ? 12v output 11.76 12 12.24 k ? 15v output 14.70 15 15.30 k ? 24v output 23.52 24 24.48 k ? v adj - voltage adjust a resistor of r connected between v adj and +sense where : v o 90 %v onom ak80a-xxxl-033fyy r=1.2k ? ak80a-xxxl-050fyy r=2.4k ? ak80a-xxxl-120fyy r=27k ? ak80a-xxxl-150fyy r=39k ? ak80a-xxxl-240fyy r=82k ? v adj connected to -sense v o 110 %v onom c share - current share c share pins of modules in c share accuracy 5 15 %i o rated function* parallel connected max no. of units 5 clk out - clock output v clk ou t 4.4 5 vp-p clk in open clock freq. 0.98 1 1.02 mhz max fan out 2 clk in - clock input v clk in 4.4 5.5 vp-p clock freq 0.9 1 1.1 mhz pri aux external capacitor external capacitiance 0 tbd f capacitor voltage rating 25 v external aux vcc 10 12.0 14 v i aux current drawn from external supply 0.2 0.3 a enable - module enable module enabled v enable 00.8v module disabled v enable 210v c lim adj - current limit adjust c lim adj connected to s com c lim set point 20 %i orated c lim adj open c lim set point 115 %i orated temp mon - temperature v t mon sensitivity 9.8 10 10.2 mv/ c monitor signal source impedence 1 k ? notes : each module must supply min 5% of rated current to ensure the module and the c-share signal are in operation when operating in parallel. insulation parameter conditions min typ max units input-output insulation resistance 500vdc 10 m ? input-baseplate insulation resistance 500vdc 10 m ? output-baseplate insulation resistance 500vdc 10 m ? " #./0 11 " % # +01 , input characteristics parameter conditions min typ max units input voltage 18 24 36 v input surge voltage (1 second) 38 v input low line power on voltage module power on 15 17.5 v input low line power off voltage module shutdown 50 80 %v io n no load input power v i = v inom 15 w input capacitance 12 ? transient characteristics parameter conditions min typ max units turn-on time 100 1000 msec transient response (25% to 75% load change @ 0.1a/ s, recovery to 1% v o ) step-load excursion 10 %v o step-load response 300 ? output characteristics parameter conditions min typ max units nominal (factory set) output voltage ak80a-024l-033f40 3.3 v ak80a-024l-050f30 5.0 v ak80a-024l-120f14 12.0 v ak80a-024l-150f12 15.0 v ak80a-024l-240f08 24.0 v output voltage set point accuracy t c = +25 c, v i = v in o m , i o = i orated -1 1 %v onom remote sense compensation 1 v i = v im in 0.5 v output voltage adjust 90 110 %v onom nominal (factory set) output all models : 120 130 140 %v onom overvoltage protection trip point except ak80a-024l-033f40 130 145 160 %v onom line regulation v im in to v im a x 0.2 %v onom load regulation 0 to i omax all models 0.5 %v onom except ak80a-024l-033f40 150 mv noise and ripple 20mhz bandwidth 3 %v onom output current ak80a-024l-033f40 0 40 a ak80a-024l-050f30 0 30 a ak80a-024l-120f14 0 14 a ak80a-024l-150f12 0 12 a ak80a-024l-240f08 0 8 a output current limit v o dropped to 90% of v onom 105 115 125 %i orated short circuit current (average current) 85 %i orated maximum load capacitance resistive load start up (pri aux left open) ak80a-024l-033f40 200000 f ak80a-024l-050f30 150000 f ak80a-024l-120f14 85000 ? ak80a-024l-150f12 80000 ? ak80a-024l-240f08 9000 ? temperature coefficient per c baseplate temperature 0.02 %v o / c overtemperature shutdown baseplate temperature 87 110 c efficiency v o = v onom , v i = v in o m , i o = i orated ak80a-024l-033f40 73 74 % ak80a-024l-050f30 80 81 % ak80a-024l-120f14 85 86 % ak80a-024l-150f12 85 86 % ak80a-024l-240f08 85 86 % !" # " #./0 11 " % # 0!1, transient characteristics parameter conditions min typ max units turn-on time 100 1000 msec transient response (25% to 75% load change @ 0.1a/ s, recovery to 1% v o ) step-load excursion 10 %v o step-load response 300 ? output characteristics parameter conditions min typ max units nominal (factory set) output voltage ak80a-048l-033f50 3.3 v ak80a-048l-050f40 5.0 v ak80a-048l-120f18 12.0 v ak80a-048l-150f16 15.0 v ak80a-048l-240f10 24.0 v output voltage set point accuracy t c = +25 c, v i = v inom , i o = i orated -1 1 % v onom remote sense compensation 1 v i = v im in 0.5 v output voltage adjust 90 110 % v onom nominal (factory set) output all models : 120 130 140 %v onom overvoltage protection trip point except ak80a-048l-033f50 130 145 160 %v onom line regulation v im in to v im a x 0.2 % v onom load regulation 0 to i omax all modules 0.5 % v onom except ak80a-048l-033f50 150 mv noise and ripple 20mhz bandwidth 3 % v onom output current ak80a-048l-033f50 0 50 a ak80a-048l-050f40 0 40 a ak80a-048l-120f18 0 18 a ak80a-048l-150f16 0 16 a ak80a-048l-240f10 0 10 a output current limit v o dropped to 90% of v onom 105 115 125 % i orated short circuit current (average current) 40 % i orated maximum load capacitance resistive load start up (pri aux left open) ak80a-048l-033f50 6800 ? ak80a-048l-050f40 3300 ? ak80a-048l-120f18 500 ? ak80a-048l-150f16 470 ? ak80a-048l-240f10 330 ? temperature coefficient per c baseplate temperature 0.02 % v o / c overtemperature shutdown baseplate temperature 87 110 c efficiency v o = v onom , v i = v inom , i o = i orated ak80a-048l-033f50 71 72 % ak80a-048l-050f40 80 82 % ak80a-048l-120f18 85 87 % ak80a-048l-150f16 84 85 % ak80a-048l-240f10 85 86 % input characteristics parameter conditions min typ max units input voltage 36 48 72 v input surge voltage continuous 75 v input low line power on voltage module power on 27 35 v input low line power off voltage module shutdown 50 80 %v io n no load input power v i = v in om 10 w input capacitance 5.0 f " #./0 11 " % # (""1, input characteristics parameter conditions min typ max units input voltage 180 300 400 v input surge voltage (1 second) 425 v input low line power on voltage module power on 140 175 v input low line power off voltage module shutdown 50 80 %v io n no load input power v i = v in o m 10 w input capacitance 0.5 f transient characteristics parameter conditions min typ max units turn-on time 100 1000 msec transient response (25% to 75% load change @ 0.1a/ s, recovery to 1% v o ) step-load excursion 10 %v o step-load response 300 ? !" # " #./0 11 " % + =//92%! : ": < output characteristics parameter conditions min typ max units nominal (factory set) output voltage AK80A-300L-033F50 3.3 v ak80a-300l-050f40 5.0 v ak80a-300l-120f18 12.0 v ak80a-300l-150f16 15.0 v ak80a-300l-240f10 24.0 v o utput voltage set point accuracy t c = +25 c, v i = v inom , i o = i orated -1 1 % v onom remote sense compensation 1 v i = v imin 0.5 v output voltage adjust 90 110 %v onom nominal (factory set) output all models : 120 130 140 %v onom overvoltage protection trip point except AK80A-300L-033F50 130 145 160 %v onom line regulation v imin to v ima x 0.2 %v onom load regulation 0 to i omax all module 0.5 %v onom except AK80A-300L-033F50 150 mv noise and ripple 20mhz bandwidth 3 %v onom output current AK80A-300L-033F50 0 50 a ak80a-300l-050f40 0 40 a ak80a-300l-120f18 0 18 a ak80a-300l-150f16 0 16 a ak80a-300l-240f10 1 010a output current limit v o dropped to 90% of v onom 105 115 125 %i orated short circuit current 40 %i orated maximum load capacitance resistive lo ad start up (pri aux left open) AK80A-300L-033F50 6800 ? ak80a-300l-050f40 5600 ? ak80a-300l-120f18 1500 ? ak80a-300l-150f16 1500 ? ak80a-300l-240f10 470 f temperature coefficient per c baseplate temperature 0.02 %v o / c overtemperature shutdown baseplate temperature 87 110 c efficiency v o = v onom ,v i = v in o m , i o = i orated AK80A-300L-033F50 76 78 % ak80a-300l-050f40 81 83 % ak80a-300l-120f18 85 87 % ak80a-300l-150f16 85 87 % ak80a-300l-240f10 83 84 % notes : 1. ak80a-300l-240f10: the de-rating of output current is -0.123a/ c for baseplate temperatures higher than 55 c. maximum output current at 85 c baseplate is 6.3a " #./0 11 " % & & * ! 4;/4 . 23#4#5#4#6 >+?+! +?+! ! ! # ! ! ! .2 , !: * ! ! < ! !! ! k . ' ' ; ' $ - 1 7 2186 & # ! !a !l$/ .4!a ! ! !a 2 $ ! 2 8 . load +sense -sense +o/p -o/p 1 4 3 2 0.5v max voltage at load module output voltage load current volts +i/p -i/p 9 8 12 5 +i/p -i/p 9 8 12 5 #. 2#49:#6 & && ! ! .& ! ! ?4' !+0%!# m/.9 : # < +0%. & ! ! !# n89 +0%. 2 4 ; / 4 ! @ ? 4 ' ! ! ! . - sense + sense 1 4 +o/p -o/p 3 2 r adj-down - sense + sense 1 4 +o/p -o/p 3 2 r adj-up circuit configuration to increase output voltage circuit configuration to decrease output voltage model vs r1 r2 r3 r4 r5 vo = (90% to 100%) vonom 5.0v 2.5 v open 2k7 300 2k4 8k2 12.0v 2.5 v open 6k2 0 1k6 10k 24.0v 2.5 v open 12k 0 1k5 11k note: radj tolerance must be => 1% to achieve a 3% set accuracy 15.0v 2.5 v open 8k2 0 1k6 11k i 1 = i 2 = vs r1 vo - vs r2 = r adj-up 1 - r5 v0 = (100% - 110%) vonom 1 vs i 1 + i 2 - r3 1 r4 - i 1 = i 2 = vs r1 vo - vs r2 = r adj-down vo - vs + ( i 1 + i 2 ) x r3 x r4 - r5 vs - (i 1 + i 2 ) x (r3 + r4) 3.3v 2.5v open 1k8 2k4 3k3 2k4 !" # " #./0 11 " % ; <, 2;< ,6 &#! ! ! o # d@! ! ! # ! . & 7c2- # # :9 0 <! ! !! # .& # ! # # # !.& 7c 2- ! ! !# ?4'. & 7c2-! ># ! !! # ! ! ! h output voltage (v) resistance (k ? ) 3.3 3.3 55.1 12 12 15 15 24 24 2#6 & ! @ +4"!+0% ! ! ! . & ?4' ! ! ! ! +0% ! ! .0 ! ! +4" # .0 =2: ,45: ->6 & ! o d ! # ! g , !@ ! ! . d ! : ;0e& ! ;2? * < ! g ! ! .4 # @ * d9d d$%gl$/ ! ;2? ! . 2 d! @ ! d d! .& ;2?! ;0e& 4 !@! d ! ! . +4" # ! # ! !. 1 12 pg 1.0v vo converter not running converter running +v o -v o output to load v 24v, 48v, 300v (nom) models +sense -sense +o/p -o/p 1 4 3 2 +sense -sense +o/p -o/p 1 4 3 2 +i/p -i/p 9 8 12 5 to c share of next module +i/p -i/p 9 8 12 5 to enable of next module to s com of next module from c share of previous module fromenableof previousmodule from s com of previous module +i/p -i/p 9 8 12 5 to clk in of next module +i/p -i/p 9 8 12 5 from clk out of previous module " #./0 11 " % 2#-46 & &%7%0?#! ! ! o .& # &%7%0? ! $/9 @ h %! :<p:9 &%7%0? *$//< 8= & ! : .. # !<.2 ! # ! ! # ! d. , >? & 4;/ # ! * ! !!! * !! * *. +i/p -i/p 9 8 12 5 v 100 ?c 50 ?c 0?c module internal temperature 2.73v 3.23v 3.73v v temp mon 2.98v 3.48v -20 ?c 2.53v : 7 2:,86 4o ! o ! ! # ! !. ) 2 % 4 - b ! $$ ! o ! @ !a ! 8/$// +i/p -i/p 9 8 12 5 layer11 4 +o/p o/p 3 2 5 6 8 7 c aux + - +i/p -i/p 9 10 11 12 !" # " #./0 11 " % %*! layer11 4 3 2 5 6 8 7 external aux +12v common +i/p -o/p 91011 12 model c aux none 100f 470f 1000f 2200f ak80a-024l-033f40 >200000 ak80a-024l-050f30 150000 ak80a-024l-120f14 85000 ak80a-024l-150f12 80000 ak80a-024l-240f08 9000 ak80a-048l-033f50 6800 tbd tbd tbd tbd ak80a-048l-050f40 3300 tbd tbd tbd tbd ak80a-048l-120f18 500 tbd tbd tbd tbd ak80a-048l-150f16 470 tbd tbd tbd tbd ak80a-048l-240f10 330 tbd tbd tbd tbd AK80A-300L-033F50 6800 tbd tbd tbd tbd ak80a-300l-050f40 5600 tbd tbd tbd tbd ak80a-300l-120f18 1500 tbd tbd tbd tbd ak80a-300l-150f16 1500 tbd tbd tbd tbd ak80a-300l-240f10 470 tbd tbd tbd tbd 4 # * * !. ) * *@ 4;/4 ! # ! " #./0 11 " % : 2 !! ! ! @ ! o# 097 ! ! ! ! . (! ! ! . 2! !! ! @ 4%7++ &% ! ! !@ g . , 9 = d # ! ! ! ! ! ! ! .( 4;/4 + ! # 88/q($//939! @ 88/q(3/9=//9! !88/q(/9 839! . 4 # , ! 4%7++ &% ! .4;/4! ! . !" 2 ! ! @! lr: < ! ! ! +4" ! ! .& >+?+ ! +?+ ! ! ! !. ?0&h 4 ! ! +4" # .0 +4" # ! # ! !.( 4;/4+ !! . # !$ ! %! g ! ; 0e& ! ;2? *. # !! @ ! ! ! .2 d! @ # d! . , & 4%7++! !# ! .2! +4@9-!e ! ! ! ! o. input fuse rating 300v 5a / 250v 48v 10a / 250v 24v 15a/250v + +i/p -i/p 220 f v i +sense -sense 1 4 3 2 +o/p -o/p load load +sense -sense c share 8 1 4 +sense -sense c share clk out 5 clk in +o/p -o/p 3 2 9 12 1 4 5 3 2 12 8 9 s com s com enable enable common enable !" # " #./0 11 " % 9 = 4;/4 + ! ! ! ! # ! /.9# 9 0 !# . #, 44%7++ &% ! ! !! ! %2 @ ! , !!%2 #%2!!. 4;/4! # # ! : < //(.&! ! *%2stk ! d . ? # ! 4;/4 d d* 3 ). 4!!g d# 4 : 474/$ / //8< $$ ! @ ! ! ! $) ! 8/ (% ! !:4+&7? 474/8 / //$< d!! . - 2 ! o * !1@ ! 0((.& ! !! @ ! ! ! . 0# ! ! &%7%0? ?4' . 0 0.2 0.4 0.6 0.8 1 1.2 0 200 400 600 800 1000 vair (l f m) thermal resistance baseplate to ambient (c/w) f orced convection for ap a501-80-002 at 200w output 90% 100% 110% 36 40 72 %v onom +0.5v v i (48v input modules) 90% 100% 110% 180 200 400 %v onom +0.5v v i (300v input modules) typical typical 90% 100% 110% 18 20 36 %v onom +0.5v v i (24v input modules) typical 9 8 12 5 +i/p -i/p + - protective earth baseplate " #./0 11 " % 9& 7 ! !%&'( 4;/4 + $@///@/// * ! !/ . - 4 4;/4 + ! ! ! # ! .) ! !@ * @ ! #! ! ! ! 2@!!!! , !. !" # " #./0 11 " % #* , load +sense -sense +o/p -o/p +i/p -i/p 9 8 1 4 current limit adjust output voltage adjust enable (close to enable) 3 2 12 5 l n e 220vac + protective earth + + vdc in + - +sense -sense +o/p -o/p +i/p -i/p 9 8 1 4 3 2 12 5 +sense -sense +o/p -o/p +i/p -i/p 9 8 1 4 3 2 12 5 load clk out clk in c share c share s com s com enable input enable enable " #./0 11 " % baseplate (connect to protective earth) 4 control pins ? 0.64,2.54grid 0.05 ( ? 0.025,0.1grid0.002) 8 control pins ? 0.64,2.54grid0.05 ( ? 0.025,0.1grid0.002) 2 input pins ? 1.52(0.060) 0.05(0.002) 8 output pins ? 1.52(0.060) 0.05(0.002) 116.8(4.60) 61.0(2.40) 29 28 27 26 24 23 22 21 32 31 12.7 (0.50) 106.68(4.200) 50.80 (2.000) 22.86 (0.900) 3.81(0.150) typ 7.62 (0.300) 15.24 (0.600) 7.5(0.30) typ 5.1(0.20) typ 4.1(0.16) typ notes: 1. all dimensions in mm and (inches) 2. baseplate must be connected to protective earth 3. general tolerance: .x 0.5(0.02) .xx 0.25(0.010) 4. surface flatness: concave 0.12mm max convex 0.38mm max ? 3.81(0.150) r3.8(0.15) typ 10.16 (0.400) 4 1 2 3 5 8 912 , & ! # : <.? ! # ! ! . !" # " #./0 11 " % 9 : & 4;/4 + ! !! ! d . % h ! g . 2! ! . hole size for pcb direct soldering hole size for spring socket mounting* hole size for m3.5 machine screw * spring sockets are available from astec in packs of 20 control pin sockets and 15 power pin sockets, partno. apa504-00-001. sockets are not suitable for output current greater than10a per pin. a ? 2.00+0.15/-0 ( ? 0.079+0.006/-0) ? 4.5+0.08/-0 ( ? 0.177+0.0031/-0) for m3.5 b ? 2.00+0.15/-0 ( ? 0.079+0.006/-0) ? 2.670.05 ( ? 0.1050.002) c ? 1.00+0.15/-0 ( ? 0.039+0.006/-0) ? 1.370.05 ( ? 0.0540.002) recommended hole size table:- 21 4 1 29 2 3 32 31 50.80 (2.000) 22.86 (0.900) 106.68(4.200) 15.24 (0.600) 3.81(0.150) typ 7.62 (0.300) 2.54 (0.100) c a b 2.54grid 0.05 (0.10grid0.002) view from pcb component side notes: 1. pcb component side view is shown. 2. all dimensions in mm and (inches). 3. general tolerance: .xx 0.1(0.006). 5 8 912 10.16 (0.400) " #./0 11 " % = , d4%7++ &% ! # # g ! .%d! ! # .& # 4;/4 + . 4 dd#! # d ! ! ! 4%7++ &% ! ! !@ * ! ! ! !! #! ! d.2 !#! ! ! ! 7' . 574 - 7. '; ' + description model number dimensions free air thermal inches mm resistance heatsink, "80" size, vertical fin. apa501-80-001 4.53x2.32x0.6 115x59x15 2.7 c/w heatsink, "80" size, horizontal fin apa501-80-002 4.53x2.32x0.6 115x59x15 2.4 c/w heatsink, "80" size, vertical fin. apa501-80-003 4.53x2.32x0.9 115x59x22.5 2.2 c/w heatsink, "80" size, horizontal fin apa501-80-004 4.53x2.32x0.9 115x59x22.5 2.0 c/w heatsink, "80" size, vertical fin. apa501-80-005 4.53x2.32x1.5 115x59x37 2.0 c/w heatsink, "80" size, horizontal fin apa501-80-006 4.53x2.32x1.5 115x59x37 1.7 c/w heatsink, "80" size, low profile apa501-80-007 4.55x3.50x0.5 115.6x89x12 2.2 c/w thermal pad, "80" size apa502-80-001 mounting kit, tapped studs apa503-00-001 mounting kit, solder studs apa503-00-002 mounting kit, tapped studs apa503-00-007 for low profile heatsink mounting kit, solder studs apa503-00-008 for low profile heatsink spring sockets (20 cont. 15pwr) apa504-00-001 &#! d!! @ ! ! d!# /.$.& ! ! !. & ! !, 4%7++d! dh screw size torque m3 4-6kg-cm (3.5-5.2 lb-in) m3.5 6-8kg-cm (5.2-6.9 lb-in) &, , h 2 ! , ! . 0 ! * ! * ! !. heatsink torquing sequence 1 2 4 3 #>-# 4+&e"07&-. 4 @e1 ) ' 7d % @-! ) %!!@ -t$f e.;. & h/$=3 388$$ (*h/$=3 3== 4-#, 4+&4%"24@2?@. $/94 )@ !418//@ e+4. & h6/ 1=/ 36// (*h6/ 1=/ /61 '' , 4+&4c?2+2%2&- 6(@-)'!@ =8 =18 7 d"!@ & )@ ?.&. ; & h883= 1668 (*h883/8 3386 /<5,=>9.%% |
Price & Availability of AK80A-300L-033F50
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