OP123 OPTEK | Alldatasheet
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. saa: . GaAs Hermetic Infrared Emitting Diodes Types OP123, OP124 ‘ ‘ oe 2045 (1.14) eae 2138 (3.45) ® “cas (0.03) APERTURE a $ 2089 (1.75) MEASURING 016 (0.41) @B. 7062 (1.57) 7 SURFACE . . (SEE NOTE 4) a 058 (1.47) 7084 (2.13) iat 1 4 LENS —_ : L 010 (0.25) ANODE 005 (0.13) CATHODE 083 (2.26) 080 (2.03) (DIMENSIONS ARE IN INCHES (MILLIMETERS) Features Absolute Maximum Ratings (Ta = 25° C unless otherwise noted) to the OP600 phototransistor and the Notes: OP300 photodarlington (1) Refer to Application Bulletin 202 which reviews proper soldering techniques for pill-type devices. inti (2) No clean or low solids, RMA flux is recommended. Duration can be extended to 10 sec. Description tax. wen flow soldering ‘ i (3) Derate linearly 1.50 mWP C above 25° C. The OP 123 and OP124 series are high (4) Ex/apn) is measured using a 0.031" (0.787 mm) diameter apertured sensor placed 0.50" (12.7 intensity gallium arsenide infrared mm) from the measuring surface, emitting diodes mounted in miniature “Pill” type hermetically sealed packages. Typical Performance Curves This package style is intended for direct Percent Changes in Radiant Intensity Coupling Characteristics mounting into PC boards. 9 . vs Time of OP123 and OP6O0 10 100 i il of Tieesov * of el ' I}, aaee Ae ZU Hee Trap AE PCO (AEE Bw» E CONCEP ee Pope TT) CEES SCOMICATICC = HEEEBSREH “o »LLETT | ARE 100 « 10x 100%. ° 02 of «608k 1 = TIME - Hours DISTANCE BETWEEN LENS TIPS - Inches Optek Technology, Inc. 1215 W. Crosby Road Carrollton, Texas 75006 (972) 323-2200 Fax (972) 323-2396 2-4
Types OP123, OP124 Electrical Characteristics (Ta = 25° C unless otherwise noted) Apertured Radiant Incidence opi23 | 0.40 | 21 en ald) fi Poarminnone BEES, |mme pee [ve [Forwardvotage | S| 50] tpesoma Points ior [Seecealshtwin Temperature ———|——=*d 080 | wm sonst | [tv foutputrisetime | | 1000 | Ts ireny = 100 ma, P= 10.04, [tv louputrantime || p00 Fins POO Typical Performance Curves Forward Voltage vs Forward Voltage and Radiant Incidence Forward Voltage vs Forward Current vs Forward Current Ambient Temperature BU * Ca tears Lee [re tunstoe [ |] Test Conditions ig Pulsed (PW =25 ys; L Pulse Width = 100 ps | [| | oe eel LL 2 ¢ [100 ms between puses 2B ta [Duty Cycle= 0.1% > Ta=25°C g Eq and Vp sampled at end of pulse EY} Th=25°C wow? Pal i W=BC ag 7 A [ | LUT || og. Pye #. PPP er ean 2 Che SE en ee ae COCCIPAT) = ees > ESS COUT. oes) Jee] carn 10 10 100 0 02 0& 06 08 10 “0-4 0) 401201860 Ig - FORWARD CURRENT - mA Ig - FORWARD CURRENT - Amps Ty ~ AMBIENT TEMPERATURE ~ °C Rise Time and Fall Time vs Normalized Power Output vs Forward Current Ambient Temperature ® 20 Vt Ty butyCyee 108 IN Duty Cycle =0.1% “ rY 1 225°C is LIN Normalized at Ty = 25°C ENCE EEN Pesce CENT : mes lug UT INI EEE EL occceNS Port | Tt ee NO wt tL TT tT Het Ts oe ee ~LLLIT TTT TY ° 100 200 300 50-75 0 2 $0 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 2-5