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! " # $ # %& ' ( ) *+!, +-! " .# /( #( 01 # %/ 2& / 1$ ### 1 1 0 $ #34 /&/ +" *# 05% #) *+!, 6) $( .+787" 6) $( .+787287-" 2 $( ,+-" 9:; $( 9*<," .:; $( 4,+" 3.:; $( +,-!*" 2.:; $( 8-+=*7" 3. $( 8,-" >/& (& 1 ? 1%1( / % 4 % 0 ## 4 ) *+!, 4% 8 *(% ( 0 ( 90 /( 0 51##& 5(@'a1#(b1" +51##& 1## & 5( 4 ) *+!, 4% 8 ! " # 4 ) *+!, 4% + 8 ! " ! !$% & ' &() $*+ ,- , , + *$,- , ., $$% & ' /)) $ 0 &,- , 1 , /- % *23 $ 4- % *23 $ 0 4- % . $ 9 >,c< # $ # %1##& (% 1 ## '% 1 ( "21 & ' ((0 1 ( 1 /((& '0 ##0 ( 10 ( /( "1 # $ # % ' 1d *0 0 0 1##&( +"1'$ #($ # %1##&'$ 9 20 ( 4 ) *+!, 4% , 8 ! " " " #" ! $ !,- , 5 , & 6 ' &() $ $ 5 ! ,616 789 $$% & 5 5 ' , 6,1& 6 $*+ :,- :, 55, & 6 ' & 6 /)) + *$ :,- :, . 55, & 6 ' & 6 $$% & 5 ' 0 $%; $; 5 < & 6 ' , 6, $*+ 4%,- , 5 , & 6 ' & 6 ' &; ; 5 ? $, 2.<; 8 !-$ $ 5 . ! ,616 =89 ; ; 5 # ;'(4!+; $8';'$+;&4&$4 ; ! 5 # , 6,1& 6 ' ; 6 ? = 4 ) *+!, 4% ! 8 !c! ) *+!, 5 c, ! ! 4 ) *+!, 4% < 8 -55 0 50 25 75 100 125 125 25 05075100 -55 fig.2 collector power dissipation vs. ambient temperature fig.4 forward current vs. fig.6 collector current vs. collector-emitter voltage forward voltage collecotr-emitter voltage v ce (v) i f = 30ma ta= 25 c 5ma 10ma 1ma 20ma pc(max.) o 0.5 0.1 0.2 1 2 5 10 20 50 100 0 20 40 60 80 100 120 140 1 010 23456789 0 10 20 30 40 50 00 fig.3 collector-emitter saturation voltage fig.5 current transfer ratio vs. forward current vs. forward current ambient temperature ta ( c) forward current i f (ma) forward current i f (ma) v ce =5v ta= 25 c o current transfer ratio ctr (%) collector-emitter saturation voltage v ce (sat) (v) 1 0 0 2 2.5 3 4 5 6 collector current ic (ma) 10.0 7.5 5.0 15.0 12.5 ta= 25 c ic= 0.5ma 3ma 7ma 5ma 1ma o o 20 forward current i f (ma) 1 2 0 5 10 100 200 500 50 fig.1 forward current vs. ambient temperature forward current i f (ma) 10 20 30 50 40 60 collector power dissipation pc (mw) 100 50 150 200 30 forward voltage v f (v) 10 0.5 15 20 25 ambient temperature ta ( c) ta= 75 c 50 c o o 25 c -25 c 0 c o o o o 4 ) *+!, 4% - 8 ce v = 2v ic= 2ma ta= 25 c tr tf ts td 0 response time ( s) relative current transfer ratio (%) ambient temperature ta ( c) fig.7 relative current transfer ratio vs. ambient temperature fig.8 collector-emitter saturation voltage vs. ambient temperature ambient temperature ta ( c) fig.10 response time vs. fig.9 collector dark current vs. vs. ambient temperature ambient temperature ta ( c) fig.11 frequency response frequency f (khz) voltage gain av (db) v = 2v ic= 2ma ta= 25 c -20 o 20 40 60 80 100 50 100 150 o 0 o 100 0.02 0.04 0.06 0.08 0.10 0.1 0.1 0.2 0.5 1 2 5 10 0.2 0.5 1 2 5 10 20 50 100 o 20 40 60 100 80 o 0.2 -10 0 15 2 0.5 load resistance input output input output vc c td tr tf ts 90% 10% output vc c test circuit for response time test circuit for frequency response 1000 100 10 20 40 60 80 i f =20ma i c =1ma i f =1ma, v ce =5v collector dark current i ceo (na) r l =1k 1k 100 r d r l r d r l load resistance r l (k ) collector-emitter saturation voltage v ce (sat) (v) 1 10 v ce =20v 10000 1000 100 4 ) *+!, 4% 7 8 " ; #( % # ' 0 ((' 1 10 ( ( #1 '&# ' 30 seconds 1 minute 2 minutes 1.5 minutes 1 minute 25 c 180 c 200 c 230 c " e1% 1 #( % 1 (01 ( /# 1 / ##/ 1 #( 1($0 : 1 105% 1($0' 1 10 ( & $" 4 ) *+!, 4% 8 8 |
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