OP265A OPTEK | Alldatasheet

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Product Bulletin OP265A St ° June 1996 Sw . wags . GaAlAs Plastic Infrared Emitting Diodes Types OP265A, OP265B, OP265C, OP265D Pe ee Gee oe ee. eee £200 (5.08) , ss eed | bee se = 180 (4.57) +050 (1.27; 1185 (4.19) Se ese] oS i | owe ee | eae 2160 (4.57) ee aw, cas (0.84) oe ae 039 (9.78) . 2025 (0-89 50, rye Pe lc eee ro tout _ Bo ats DIMENSIONS ARE IN INCHES (MILLIVETERS) Be le ee ee ee Features Absolute Maximum Ratings (Ta = 25° C unless otherwise noted) GaAs at equivalent drive currents Lead Soldering Temperature [1/16 inch (1.6 mm) from case for 5 sec. with soldering T-1 package style Notes: (1) RMA flux is recommended. Duration can be extended to 10 sec. max. when flow soldering. A ipti max. of 20 grams force may be applied to the leads when soldering. Description (2) Derate linearly 1.33 mW/ C above 25° C. i i (3) Eeiarr) is a measurement of the average apertured radiant incidence upon a sensing area The OP265 series devices are 890nm 0.081" (2.06 mm) in diameter, perpendicular to and centered on the mechanical axis of the high li high intensity gallium aluminum arsenide lens, and 0.590" (14.99 mm) from the measurement surface. Ee(apt) is not necessarily infrared emitting diodes molded in IR uniform within the measured area. transmissive amber tinted epoxy packages. The narrow irradiance pattern Typical Performance Curves rovides high on-axis intensity for it i ft sti y Pl igh oF 3 In ity Percent Changes in Radiant Intensit Coupling Characteristics excellent coupling efficiency. vs Time of OP265 and OP505 Replaces " P Ee “er K6600 RSet st Fates au . SEES eh | | Tiesss" tw LPN 2m] TT 5” z as “ho PHS EA Fy =

2 LLL ATT] oe rv} tt

: 1] = " Ed Bos a -30 vaca LT =| TE NET a CoS a WITT, — 109 1« 10K 100K o 02 04 06 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 2-36

Types OP265A, OP265B, OP265C, OP265D Electrical Characteristics (Ta = 25° C unless otherwise noted) [symeoL| PARAMETER | MIN| TYP [MAX] UNITS| TESTCONDITIONS _ | | Eeiapt) _|Apertured Radiant Incidence OP265D | 0.54 mWicm? | Ip = 20 ma‘ | OP265C| 0.54 3.30 | mW/em?| Ir = 20 ma® | OP265B | 1.65 4.70 | mWiem? | Ie = 20 may i OP265A | 2.70 mW/em? | Ir = 20 mA\\ | Fe [evedral Sanavign ween Ha PoverPains | | 0 | [am [ket0ma [sist lseeanisntwnTonpemre | (| [rw e=consat —| "ee —lemsson ArgeatHatPoverrains |_| ve | | Dep [r=20ma | [_t loutputrisetme | S| 800 | | ns i= 100ma, | [t _loupurrantime | as ns JP HO DO Typical Performance Curves Forward Voltage vs Forward Voltage and Radiant Incidence Forward Voltage vs Forward Current vs Forward Current Ambient Temperature 16 : 5 —T- 150 20 : cy Ta=25°C pill 24 He i betwee 120 z 1s Dery Gren ts 3 ¥ A= 2 8 Cee) a EF oa PEE PE’ TIC g epee gs E+ ++ EP CONLUTIET «= § EAGER “Cooder En ° oO. 10 10 100 ° ° 02 O4 06 os 1.0 ° sare 40 o 40 80 120-160 Ig - FORWARD CURRENT - mA Ig ~ FORWARD CURRENT - Amps ‘Ty - AMBIENT TEMPERATURE - °C Rise Time and Fall Time vs Relative Radiant Intensity and Wavelength Relative Radiant Intensity vs Forward Current at Peak Emission vs Ambient Temperature Angular Displacement os 20 ss0 12 Taren| 1 | Tee 1. TET TTI Juty Cycle = 10% = = ONCE a. POPS. Cy .. LAL |_| | Pe’ TTT Net)" ees Saaieee er ed ee ec ee rN PTT itt) Peery ry. A_|_h eee} eo .* “Ee ES ° 00 200 300 80-25 0 2% $0 75 100 “ 40° 20° or 20° - Ig - FORWARD CURRENT - mA ‘Ty - AMBIENT TEMPERATURE - °C @ - ANGULAR DISPLACEMENT - Degrees 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 2-37