OP223 OPTEK | Alldatasheet

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Product Bulletin OP223 of ° June 1996 GaAlAs Hermetic Infrared Emitting Diodes Types OP223, OP224 2 ee 1045 (1.14) ae pa 136 (3.45) % “035 (0.03) APERTURE : = 1089 (1.75) MEASURING {016 (0.41) i 062 (1.57) - SURFACE TEE ae (SEE NOTE 4) Ka aes 062 (1.57) 2032 (2.34) Se e Sepa i LENS ‘ | .010 (0.25) f ae { ‘ANODE ‘005 (0.13) CATHODE 08g (2.26) os oe 080 (2.03) (DIMENSIONS ARE IN INCHES (MILLIMETERS) Features Absolute Maximum Ratings (Ta = 25° C unless otherwise noted) © Significantly higher power output than —_—Notes: GaAs at equivalent drive currents (1) Refer to Application Bulletin 202 which discusses proper techniques for soldering Pill type ilicon’ devices into PC boards. ° noe matched to silicon's peak —(.) A 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. Description (4) Eeqapr) is measured using a 0.031" (0.787 mm) diameter apertured sensor placed 0.50" (12.7 from the mounting plane. Ee(arr) is not ly uniform within the measured area. The 0P223 and OP224 devices are mm) fror unting pl (APT) is not necessarily uniform withi red ar 890nm gallium aluminum arsenide Typical Performance Curves infrared emitting diodes mounted in Percent Changes in Radiant Intensity Coupling Characteristics hermetically sealed Pill” type packages. vs Time of OP223 and OP600 The narrow irradiance pattern provides 10 100 iciency. Voe=5.0 V ICC. ERE «HUI LTT . Oo onl oe eS COMRMCUT @ EAREEEEHHH En N - CONCH es ee COMI #- FEA ~ PP NTT TT “ = 100 1« 10K "00K 0 02 of 08 08 10 t= TIME ~ Hours DISTANCE BETWEEN LENS TIPS ~ Inches Optek Technology, Inc. 1215 W. Crosby Road Carrollton, Texas 75006 (972) 323-2200 Fax (972) 323-2396 2-26

Types OP223, OP224 Electrical Characteristics (Ta = 25° C unless otherwise noted) [Sympo.[ PARAMETER | MIN | TYP [MAX] UNITS | TEST CONDITIONS _ | Ee(apt) _|Apertured Radiant Incidence oP223 | 1.00 mWiem? |I¢ = 50 ma“) op224 |.3.50 mWiem? |Ip = 50 ma [ve |Forwardvonage | to] ie=soma | eer [aiput [sretalshinwin Terenure | vasa | Po [r= coneat ——_——+| [te lemtsen ange attatPoerram || = || Dem. [re soma | | Jouputrisetime Tf 500 | ns [ire = 100 ma, Lu Joutputrartine Tf aso Tins PW = 10s. DC.= 10.0% | Typical Performance Curves Forward Voltage vs Forward Voltage and Radiant Incidence Forward Voltage vs Forward Current vs Forward Current Ambient Temperature 16 7 5 qs 20 Lo TT LA CTT": a ete) gE ee EWINE TE ETO) Cg EAH ERS rococo) «6 eee PENRO if 06 t [ (raed = 25 aS 3 1. ps = SFOTICOICC BRR +. ERS ws ane a eCLUITTT es ae or 10 0 100 ° oz oe os 08 ‘0 80-40 o 40 80 120° 160 Ig ~ FORWARO CURRENT - mA 'p ~ FORWARO CURRENT - Amps Ty ~ AMBIENT TEMPERATURE - °C Rise Time and Fall Time vs Normalized Power Output vs Forward Current Ambient Temperature os — 20 Eeettt| “ee. Duty Cycle = 10% < = * E IN x 5 po Netty es. {FPN TTT > LLP ee ENT efepoos TT] FLT TT NT y 100 200 00 ° $0 -25 0 2% 80 75 100 125 Ig - FORWARD CURRENT - mA ‘Ty - 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 Road Carrollton, Texas 75006 (972)323-2200 Fax (972)323-2396 2-27