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a! ' .#/*0#*=/*0#)=/)0=/(044#* ' ) *7 *& 3 , 3 ))#3 > ->- 79 , 13, - ! $$? -3@ > &! $ 3a! ' .#/*0#*=/*0#)=/)0=/(044#* ' 7 *7 *& 3 , 3 ))#3 > ->- 79 , 13, - ! $$? -3@ > &! $ 3a! ' .#/*0#*=/*0#)=/)0=/(044#* ' ( *7 *& 3 , 3 ))#3 > ->- 79 , 13, - ! $$? -3@ > &! $ 3a! ' .#/*0#*=/*0#)=/)0=/(044#* ' *7 *& 3 , 3 ))#3 > ->- 79 , 13, - ! $$? -3@ > &! $ 3a! ' .#/*0#*=/*0#)=/)0=/(044#* ' 8 *7 *& 3 , 3 ))#3 > ->- 79 , 13, - ! $$? -3@ > &! $ 3a! ' .#/*0#*=/*0#)=/)0=/(044#* ' < *7 ! "# " !# " !" ' .#/*0#*=/*0#)=/)0=/(044#* ' / *7 ) ! $% & ' ()*+ * * &,- ! $./*+ * * /.$*+ * * $$% & ' 0-- $ ! 1 &*+ * 2 * 0+% ."34 $ 5+% .34 " $ 1" 5+% " $ *9 *(b8 $ % $ ! $$? 3 ! $$ > ! 3 *4! ?> 3 3, ! 3 !" 1 3 3?>, $$, 3 ! , 3 1 3 )! $ % $ >!c #, ,, ! $$? 3 7!> % ""$3% $ ! $$? > % )9 *4, 3 ' .#/*0#*=/*0#)=/)0=/(044#* ' 0 *7 ) " " #" ! $ *+ * 6 " *& 7"' ()$% & 66 ' * 7* &,- $ $ 6 " *727 89: $$% & 6 6 ' * 7"*2& 7 $./ ;*+ ;* 66* & 7 ' & 7 0-- /.$ ;*+ ;* 66* & 7 ' & 7 $$% & " 6 " ' 1 $%( $( 6 < & 7' * 7* $./ 5%*+ * 6 "* & 7"' & 7 ' &( ( 6 ? $* 3<( 9 +$ $ 6 *727 =9: $%.0 >%? 6@69: * 7*2& 7"' ( 7 ? 2.; (( 66 (',5 /( $9'('$/(&5&$5 ( 66 * 7"*2& 7"' ( 7 ? * = ' .#/*0#*=/*0#)=/)0=/(044#* ' * *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 f f ce f f 0 -25 ta= 75 c 50 c 25 c 0 c -25 c v = 5v ta= 25 c ce ta= 25 c i = 30ma pc(max.) 5ma f 10ma 20ma vs. ambient temperatute collector-emitter voltage v (v) forward voltage v (v) ambient temperature ta ( c) ambient temperature ta ( c) forward current i (ma) forward current i (ma) collector power dissipation pc (mw) forward current i (ma) current transfer ratio ctr (%) collector current ic (ma) fig.3 collector-emitter saturation voltage vs. forward current f ce ic= 0.5ma 1ma 3ma 7ma 5ma ta= 25 c collecotr-emitter saturation voltage v (sat) (v) forward current i (ma) voltage o o o o o o o o o o 0 25 50 75 100 125 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 20 30 10 5 5 15 25 -25 0 50 25 75 100 125 ' .#/*0#*=/*0#)=/)0=/(044#* ' ** *7 r = 10k l 1k 100 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 l ceo 0 -30 ce v = 5v ic= 2ma ta= 25 c ce i = 5ma v = 5v ce f f ic= 1ma i = 20ma ce v = 2v ic= 2ma ta= 25 c vs. ambient temperature ambient temperature ta ( c) load resistance r (k ) ambient temperature ta ( c) ambient temperature ta ( c) frequency f (khz) response time ( s) relative current transfer ratio (%) collector dark current i (a) voltage gain av (db) collector-emitter saturation voltage v (sat) (v) -10 o o o o o 0 25 50 75 100 50 100 150 -25 0 0 25 50 75 100 10 -25 0.2 0.05 0 25 50 75 100 10 10 10 10 10 10 -9 -8 -7 -6 -5 -11 0.1 0.2 0.5 1 2 5 10 0.5 1 2 5 10 20 50 100 200 500 0.5 -10 0 1000 resistance fig.7 relative current transfer ratio vs. ambient temperature 0.02 0.04 0.06 0.08 0.10 0.12 0.14 0.16 ce v = 20v 1 2 5 10 20 100 500 -5 -20 -15 test circuit for response time test circuit for frequency response input r d input ts output r d r output vc c r l tr vc c l td tf 10% 90% output ' .#/*0#*=/*0#)=/)0=/(044#* ' *) *7 ' .#/*0#*=/*0#)=/)0=/(044#* ' *7 *7 |
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