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  pc123/pc123f pc123/pc123f european safety standard approved type long creepage dstance photocou~r x iiin 1 de0884 appro\ ed t~ pe (pcl 23y/pcl 23fy) is also al adable as an option 1. 2. 3. 4. 5 ,. conform to european safetty standard (refer to page 38) internal isolation distance : 0.4mm or more high collector-emitter voltage (v,,,, : 70v) long creepage distance type recognized by ul, file no. e64380 approved by vde (din -1~de83601) approved by bsi ( bs415 no. 7087, bs7002 no, 7409) approved by semco (no. 9216212) appro\?ed by demco (no. 108954) approved by ei (no. 155030) creepage distance space distance pc123 6.4mm or more 6.4mm or more pc123f rmm or more ~ 8mm or more h applications 1. po\ver supplies 2. oa ec]uiprnent h absolute maximum ratings (ta = 25c ) parameter symbol ratings unit ~ f(~r~vard current 1[: jo mll * 1 peak forw,ard current i f\l 1 11 inpol rel,erse }o[tage vr 6 \; po~~,er ?diwipation p 70 m~~ collector emitter voltage vl?f() 70 \- emitter collector voltage \? eco 6 ~ otltpli[ _c(jllector current ir 50 ma i collector po!ver dissipation? pc 150 mlt: total po~rer dissipation r plot 2io ml!~? ? 5 kv,,,,. ( )perating lemperdture t<),), -311 to -luo .u stora~z temperatur~ t.,x ?i5 to -1?5 ?c *{soldering temperature t<), 260 ?c n -ne dimensbns (unit : mm) pcl 23 internal connection diagram m ? anode anoda mark ?1) $3 !. .2 cathode ~ ,, l q emitter ,~ collector :1. @ q ~i y, lo pc123 = % tt? ~!w i ? ~f, -! q 00. , +1 +1 - ~,5*03 j 3 ruo . . 4=*o3 7.62* d3 (=! ~ ?i 0.26+01 --05,01 -. pcl 23f internal connection diagram n i anode anode mark i 4 2 cathode 2 3 3 emitter 4 collector .,.!m~$: i 00 + +, m ?~ + :- + ~;;s $:, 0.2610 ~ ;-o.5~01 t016=05 - . in tie ab%nce of con f(matlon by dev[ce spwlficat(on sheets warp fakes no ~apnsibll!v for any deleck that recur n equipment ustng any of sharps dev[ces shown in caml~s data books, etc. contact sharp in order to obbln the latest versaon 01 he devtce spec!flcat(on shack befors uatng any sharps devtce i 293
fc123/pc123f 9 elactroel characta* (ta=25?c) parameter symbol conditions min typ. max unit forward voltage vf il:=20ma 1.2 1.4 v input reverse current ir vr=4v 10 ,ua terminal capacitance c, v=o, f=lkhz 30 250 pf collector dark current ?. iceo \?ce. = 50\?, if= ()_ i 00 na output collector -emitter breakdown voltage bvc~:() ic=o.lma, 1~=0 70 v emitter-collector breakdovn voltage bv e co i~=loy a, if=o ~ ? v collector current ic if=~ma, vc~=5v 2.5 ? 20 ma collector -emitter saturation voltage vce(wo i~=20ma, ic= lma ? 0,1 ().2 v isolation resistance uis() dc500v, 40 to 60~rh 5x ioj(j 10i1 q :;;;a$; floating capacitance cf v=o, f=lmhz ? 0.6 1.0 pf risitics cut -off frequency vcf = 5v, ic = ~ma f. ? rl=1ooq, ?3db 80 ? khz rise time t, response time vce=2v, ir=2ma ? 4 18 /s fall time tf rl=1ooq ? 3 18 ,us ~. 1 forward currant vs. ambient temperature 60 50 40 30 20 10 0 ? ? 20 0 ~~ 50 i d o .4mhient tvmperat[xre ?[a (?(: j ambient temperat[~re t,, (?c) ? ? ? ? ? r ? ? ? \ ? 100
pc1231pc123f ambient temperattlrc t,, (?c) z -? ().1 1 10 100 fom,ard current if (ma) fw. 4 power em vs. ambkmt tem~ 230 ?00 150 1 ()() 5(} o l, i i -30 0 25 50 ;~ i 00 125 ambier]t temperature t, (?c) 6 forward ~t vs. forward voitags 1(1[)() 1 500 i i / +25c 200? i t-75c 100 - , 50 i 50?c 20 - m 1() 5 m? 5; ) ml 1 ?() 0.5 1.0 1.5 2.() ~,j 30 ?o 1 ~ :345678 9 10 c{]llectc) r-emitter voltage \?c~ (1?)
pc123/pc123f i o- ? 30 () 25 .50 75 100 ambient temperature ta (?c) 10 10 ?5 .5 6 5 7 5 -8 5 y 5 10 5 11[ i i i i i i 1 i i i i i i ? 30 () 20 40 60 80 100 ambient temperature t, (?c) va. t .~ 0.04 ? ~ 0.02 : g 000 ? 30 0 20 40 60 80 100 ambient temperature t, (?c) 5. 1000 i 00 10 1 0.1 0.01 0.1 1 10 100 load resistance (kq) 50 4.5 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0 024 68101214161820 foward cument if (ma) l please refer to the chapter ?precautions for us? (page 78 to 93). 296


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