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OPTEK OP223 OP224 handbook

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1. 5 C to 150 C Operating Temperature Range cece eee eens 65 C to 125 C Soldering Temperature 5 sec with soldering iron 260 C2 Power Dissipation nnana unun annann urano anaren e oren 150 mw Notes 1 Refer to Application Bulletin 202 which discusses proper techniques for soldering Pill type devices into PC boards 2 No clean or low solids RMA flux is recommended Duration can be extended to 10 sec max when flow soldering 3 Derate linearly 1 50 mW C above 25 C 4 Eecapt is measured using a 0 031 0 787 mm diameter apertured sensor placed 0 50 12 7 mm from the mounting plane Eecapt is not necessarily uniform within the measured area Typical Performance Curves Percent Changes in Radiant Intensity vs Time Coupling Characteristics of OP223 and OP600 PERCENT CHANGE IN E RELATIVE OUTPUT CURRENT 100K 0 0 2 0 4 0 6 0 8 1 0 DISTANCE BETWEEN LENS TIPS Inches t TIME Hours Carrollton Texas 75006 2 26 972 323 2200 Fax 972 323 2396 Types OP223 OP224 Electrical Characteristics Ta 25 C unless otherwise noted svymBoL ParameTeER mn TYP max UNITS a ere Radiant Incidence OP223 1 00 BA T Sl OP224 3 50 mW cm lF 50 mA vp Forward Votage tO ie 50mA O in Reverse Curent ola l Ie t0mA le 10mA i le Constant l 50mA il oI O 3 gt IM B Spectral Bandwidth Between Half Power Poin
2. O O OP225 O L Product Bulletin OP223 June 1996 SP OPTEK GaAlAs Hermetic Infrared Emitting Diodes Types OP223 OP224 Features e Narrow irradiance pattern e Enhanced temperature range e Small package size permits high device density mounting e Mechanically and spectrally matched to the OP640SL and OPSOOSL series devices e Significantly higher power output than GaAs at equivalent drive currents e Wavelength matched to silicon s peak response Description The OP223 and OP224 devices are 890nm gallium aluminum arsenide infrared emitting diodes mounted in hermetically sealed Pill type packages The narrow irradiance pattern provides high on axis intensity for excellent coupling efficiency Optek Technology Inc 1215 W Crosby Road 045 1 14 136 3 45 035 0 89 117 2 97 MEASURING SURF ACE SEE NOTE 4 APERTURE 069 1 75 062 1 57 024 0 61 T 016 0 41 092 2 34 084 2 13 062 1 57 058 1 47 LENS 210 0 25 005 0 13 DIMENSIONS ARE IN INCHES MILLIMETERS CATHODE 089 2 26 080 2 03 Absolute Maximum Ratings Ta 25 C unless otherwise noted Reverse Voltage sssnsanananc nn ennannnnnensrrenn ees SEER ees 2 0 V Continuous Forward Current 0 ccc eee eee en nenes 100 mA Peak Forward Current 2 us pulse width 0 1 duty cycle 1 0A Storage Temperature Range 0 0 cee cee eee eee eee 6
3. ad Carrollton Texas 75006 972 323 2200 Fax 972 323 2396 2 27
4. ts 8 PIT AASR nn ae a Output Rise Time 500 t Output Fall Time 250 nn ii 3 gt EMITTING DIODES INFRARED lF Constant lF PK 100 mA PW 10 us D C 10 0 Typical Performance Curves Forward Voltage vs Forward Voltage and Radiant Incidence Forward Voltage vs Forward Current vs Forward Current Ambient Temperature 5 Test Conditions Pulse Width 100 ys 4 m Duty Cycle 0 1 gt i 2z 73 w P us us oO z 3 a S S z Z Q Q o c c z 2 2 o E 2 p Test Conditions m u i A iF Pulsed PW 25 us Q a a i 100 ms between pulses gt Ee and VF sampled at 3 end of pulse Ta 25 C 3 0 o 0 2 0 4 0 6 0 8 1 0 i L80 40 0 40 80 120 160 0 1 19 ig a Ip FORWARD CURRENT Amps Ig FORWARD CURRENT mA F p TA AMBIENT TEMPERATURE C Rise Time and Fall Time vs Normalized Power Output vs Forward Current Ambient Temperature 0 8 Test Conditions oo Pul Pulse Width 10 ps 30 MA Puse Duty Cycle 10 Pulse Width 100 BS Duty Cycle 0 1 0 6 15 Normalized at Ty 25 C AL LIA es 3 j So 04 N 1 0 lt t ce O z 0 2 0 5 0 0 0 100 200 300 50 25 0 25 50 75 100 125 Ip FORWARD CURRENT mA Ta AMBIENT TEMPERATURE C Optek reserves the right to make changes at any time in order to improve design and to supply the best product possible Optek Technology Inc 1215 W Crosby Ro

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