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   0.8 (.118) (.10) (.118) (.02) (.10) (.10) (.20) (.188) (.114) (.039) (.031) (.157) radiant sensitive area (.079) 3 2 1 3 2 1 emitter (ptr b) collector (com) emitter (ptr a) 3 2 1 (see note 4) 5.0 4.77 2.9 2- 0.56typ. 2.0 2.54nom. 2.54nom. 1.0 3.0 2.5 3.0 4.0 3- 0.5typ. (.022) 5.7  0.3 (.224) see note 3 a rough surface a detail (.018) (.018) (.036) 0.92  0.01 0.46 0.46  0.01 1.2 1.0 (.039) (.047)  ' $() *+ +, *  *+- ./+0( 1(,. +  2($!**-(223405++/6 +)( 7(5))+ 5) ,8 +$(!**-(2!"40*,9( :(
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,)) 8*,5 b$(3**-(23740*&)c 132   !.)+ ,('
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+-9! 26.8mm a i current note 2 constant voltage source v =5v ir source 1mw/cm at dut lead frame if=4ma dut note 1 constant note 3 2 ce l -:' -+;/!/  4 -+<-6<!/' ()   $ -9"-/" +-= !  ,('
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               -1!  *< *,5++ /6 +)0 tr tf wavelength fig.5 relative spectral sensitivity vs. wavelength relative spectral sensitivity 700 750 800 900 950 1000 100 75 50 25 0 % 850 vs ambient temperature fig.1 collector dark current ta-ambient temperature- c 40 080 o 120 iceo-collector dark current- a 0 0.01 0.1 100 1 10 collector power dissipation pc(mw) ta-ambient temperature- c vs ambient temperature fig.2 collector power dissipation 0 20 40 60 80 120 100 collector power dissipation pc(mw) 0 -10 10 30 20 40 60 o 50 140 tr tf-rise and fall time- s 120 100 20 0 80 60 40 200 180 160 rl-load resistance-k fig.3 rise and fall time 0246 ? 810 vs load resistance pw =1ms f =100hz vrl=1v vcc=5v 4 fig.4 relative collector current ee-irradiance-mw/cm vs irradiance 01 3 25 2 relative collector current 3.0 2.0 1.0 0 4.0 vce= 5v ,('
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