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!! ! " #$%&''(&&')*+',$ -$(*' .$-/&&)$.#.0,1''+2'%$ 3$1%%'1% (4'#$/&&)$./50,&(6$ 7$ (%'(*4'&('1%2++(%'&4 &+(*8(4$ /$* *('('19:**+(42+1* &(*&;&$ ($" #7 ? 2''( #.. & (82(%1)3..'@#. '1', # 11'2(%1 <. & ;'(4 / (4&(1(4 7. ab/ (4&(1(4 // a#.. (%%4&(1 c#$<&&)$.<30,&=%d -<. /*%' $ e$ ?$ = $ .$#b7 .$/7 = .$3< .$fb == .$/- #$.- = 1(%(*%* .$* g-.& = #$3b3 7$.< = -$f# /$bf == 3$5# f$ ( %+ /. & g-.& 2(%(4 #$- #$< g/.& ;'1 #.. g/ 244)$<, - <. %4$ ($" #7 )-/ &9&(1'' +2'%, 20 40 60 80 100 5.0 4.0 3.0 2.0 1.0 0 0.5 1.0 1040 940 840 60 50 40 30 20 10 relative radiant intensity wavelength (nm) fig.1 spectral distribution 0 forward current if (ma) ambient temperature fig.2 forward current vs. ambient temperature ta ( c) o 100 -40 0 -20 20 60 40 80 ambient temperature ta ( c) vs. ambient temperature fig.4 relative radiant intensity -20 output power relative to value at if=20ma 0.6 0.2 0 0.4 0.8 1.0 1.2 60 40 20 0 o 80 10 20 30 40 50 forward current (ma) 0 1.6 forward voltage fig.3 forward current vs. forward voltage (v) 1.2 02.8 2.4 2.0 value at if=20ma output power relative to 0 vs. forward current fig.5 relative radiant intensity foward current (ma) 0 relative radiant intensity fig.6 radiation diagram 0.6 0.5 0.3 0.1 0.2 0.4 020 10 o oo 80 o 90 o 70 60 o o 50 40 o o 30 o 0.9 0.7 0.8 1.0 ($" #7 |
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