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! "#$% & %'() )* +",- - (! " ./ 0% 1 & # &-, "1 2# 1% ,! , , - ! 341%#1 ) ( % -5 " /% '() 6' %% !& 0..)7 6' %% !& 0..)7.2.7/* 2 %% !& ./8)/* 9:; %% !& 9(.<8/ 0:; %% !& 4..8) 30:; %% !& ).8*(. 20:; %% !& .7.*)=.( 30 %% !& 78*// +1#& # , >,",& 1 " 4 " # - 4 '() 4 " . 7 http://www.tenand.com ??e?????e?t1??? shenzhen tenand technology co.,ltd ./(&"& - & /9 - 1&- 5 , # 5&? $ @, &a, ) 5 , # , # 5& 4 '() 4 " / 7 ! " # 4 '() 4 " ) 7 / ! !$% & ' ()*+ * ,* &-. $/0 *+ * * 0 /$*+ * ,* $$% & ' 1.. $ 2 &*+ * 3 * 1+ % /45 $ 6+ % /45 $ 2 6+ % , $ .9 .+8b< ! " , # & ", $", & .2, #$ & &- , & ,% 1 & &#$- - & , - & 1 & /, ! " $,c (- -- , # & ),$ ! %% &! " , # $ ! /9 .2- & 4 '() 4 " 8 7 / " " #" ! $ !*+ * 7 *& 8 ' ()$% & 77 ' * 8* &-. $ $ 7 ! *838 9:; $$% & 7 7 ' * 8*3& 8 $/0 <*+ <* 7 7 * & 8 ' & 8 1.. 0 /$ <*+ <* , 77* & 8 ' & 8 $$% & 7 ' 2 $%( $( # 7 = & 8 ' * 8* $$% & 7 7 ' 2 $%( $( 7 7 = & 8 ' * 8* $/0 6%*+ * 77 * & 8 ' & 8 ' &( ( 7 ? $* 4,=( : !+$ $ 7 , ! *838 >:; ( ( 7 # ('-6!0( $:'('$0(&6&$6 ( ! 7 # * 8*3& 8 ' ( 8 ? . . = 4 '() 4 " 7 b.< d/ e .)b/< d8 /b8 d* '() e 5 b8 d/ / . / 4 '() 4 " < 7 fig.1 forword current fig.2 collector power dissiption vs. ambient temperature fig.4 forward current vs. forward fig.5 current transfer ratio vs. forward current fig.6 collector current vs. collector-emitter voltage 0 ta= 75 c 50 c 25 c 0 c -25 c ta= 25 c pc(max.) 5ma 10ma 20ma vs. ambient temperatute ambient temperature ta ( c) ambient temperature ta ( c) collector power dissipation pc (mw) current transfer ratio ctr (%) collector current ic (ma) fig.3 collector-emitter saturation voltage vs. forward current ic= 0.5ma 1ma 3ma 7ma 5ma ta= 25 c collecotr-emitter saturation voltage voltage o o o o o o o o o o 10 20 30 40 50 60 0 50 100 150 200 0 1 0 0 15 1 2 3 4 5 6 0.5 1.0 1.5 2.0 2.5 3.0 2 5 10 20 50 100 200 500 0 1 0 0 2 5 10 20 50 20 40 60 80 100 120 140 160 180 200 123456789 10 30 50 10 5 20 40 25ma 15ma forward voltage v f (v) forward current i f (ma) forward current i f (ma) collector-emitter voltage v ce (v) forward current i f (ma) forward current i f (ma) i f =30ma v ce =5v ta= 25 c v ce (sat) (v) 050 25 75 100 125 -55 -55 125 25 0 50 75 100 4 '() 4 " * 7 tr tf td ts fig.8 collector-emitter saturation voltage fig.9 collector dark current vs. ambient temperature fig.10 response time vs. load fig.11 frequency response 0 ce vs. ambient temperature ambient temperature ta ( c) ambient temperature ta ( c) ambient temperature ta ( c) frequency f (khz) response time ( s) relative current transfer ratio (%) voltage gain av (db) collector-emitter saturation voltage v (sat) (v) o o o o o 20 40 60 80 100 50 100 150 0 20 40 80 100 0.2 0.05 20 40 60 80 100 0.1 0.2 0.5 1 2 5 10 0.5 1 2 5 10 20 50 100 200 500 0.5 20 10 0 2 10 100 500 resistance fig.7 relative current transfer ratio vs. ambient temperature 0.02 0.04 0.06 0.08 0.10 1 5 20 50 60 test circuit for response time test circuit for frequency response input input vc c ts output output tr output vc c td tf 10% 90% load resistance r l (k ) collector dark current i ceo (na) i f =5ma v ce =5v i f =20ma i c =1ma v ce =2v i c =2ma ta= 25 c r d r l r d r l r l = 10k 1k 100 v ce =2v i c =2ma ta= 25 c 1 10 v ce =20v 10000 1000 100 4 '() 4 " 7 !" "#!$% "& . ; &" $ - &&$,,- & % & % , $# $ 30 seconds 1 minute 2 minutes 1.5 minutes 1 minute 25 c 180 c 200 c 230 c / f, " , &", & -, & 1 %,% 1 % 1, & ,&!- :%,% ,% -5 " ,&!-$,,- & # !. ' ( 4 '() 4 " 7 7 |
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