OP130 OPTEK | Alldatasheet
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Product Bulletin OP130 of ° May 1996 es . sya: . GaAs Hermetic Infrared Emitting Diodes Types OP130, OP131, OP132, OP133 { i aes 210 (5.33) move (case) ‘ Aes o4e (1.22) SBS aes war ae 188 (4.72) -~— ne ee ea 180_(4-57) | i 46 (1.17) aba eee g 013 (0.48) No ree (0-88) BOCs om (9.78 $00 (12.70) s | ae + THIS OIMENSION CONTROLLED AT HOUSING SURFACE. 3S Titties oo DIMENSIONS ARE IN INCHES (MILLIMETERS) Features Absolute Maximum Ratings (Ta = 25° C unless otherwise noted) * Variety of power ranges Lead Soldering Temperature [1/16 inch (1.6 mm) from case for 5 sec. with soldering ¢ Enhanced temperature range i) 1-108) Description Notes: . , (1) RMA flux is recommended. Duration can be extended to 10 seconds max. when flow The OP130 series are high intensity soldering. gallium arsenide infrared emitting diodes —_(2) Derate linearly 2.0 mW/C above 25° C. mounted in hermetic TO-46 housings. (3) Measurement made with 100 us pulse measured at the trailing edge of the pulse with a duty The narrow beam allows ease of design cycle of 0.1% and an Ir = 100 mA. in beam interrupt applications in conjunction with the OP800 or OP598. series phototransistors. TO-46 housings offer high Power dissipation and superior Typical Performance Curves hostile environment operation. Coupling Characteristics of OP130 and OP800SL \\Snaar aan s LTT macy TT 2 Y ee) Ge e E Noe TT Be LET TT aa oLLT TTT TTT ry o 02 O4 06 08 10 DISTANCE BETWEEN LENS TIPS — Inches Optek Technology, Inc. 1215 W. Crosby Road Carrollton, Texas 75006 (972) 323-2200 ‘Fax (972) 323-2396 2-6
Types OP130, OP131, OP132, OP133 Electrical Characteristics (Ta = 25°C unless otherwise noted) [syMBOL| PARAMETER | MIN| TYP [WAX[UNITS| TESTCONDITIONS | Radiant Power Output OP130 1.0 mW |r = 100 mA) OP131 3.0 mW |r = 100 ma®) OP132 4.0 mW |Ie = 100 ma® OP133 5.0 mW_|ir = 100 mA” [Ve |Fowardvotage | S| 45 |v |e t00ma®) | 822 [8 [Spectral Bandwidth Between HalfPower Points | | s0_| | nm |ir= 10 mal [aie [Seectal shit win Tenperte =| —* 080 [ee Constrt | [ew [Emission Ange atta PoverPone || 1 |_| Dep. |rstcoma | [te [outputrisetime || 10] slr = 100m, | Typical Performance Curves Forward Voltage vs. Forward Voltage and Radiant Forward Voltage vs. Forward Current Incidence vs. Forward Current Ambient Temperature 16 a 32 20 "=TI A 2 “leek | TT ‘VICE rey SCT COT LEC Aes
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e"ATOLLOILO «= gE" a Ree 8 3 s Percocet «= feP ZI ese] Sas e“TA [| tt bee COLTS] LLL EET ,2 , UT ot 10 10 100 o 02 os o6 os 10 50 o so 100 If - FORWARD CURRENT - mA, Ip - FORWARD CURRENT — Amps Ta — AMBIENT TEMPERATURE ~ °C Rise and Fall Time vs. Normalized Radiant Incidence Relative Radiant Intensity vs. Forward Current vs. Ambient Temperature Angular Displacement TTT ten “CTT TT fantnen TTLLLL u 3 Ns ze SReEPA PONCE EL LM 1 Ey = pI eCON AH alah PCS POE NEE betta ey a — 3 BEEEERNEE zu wil TCE Serer PCO SS et AA JOLLET FCCPT LYZ INN | o 100 200 300 50 o so 100 150 60° aoe 20° o me 40°60? Ip — FORWARD CURRENT ~ mA Ta ~ AMBIENT TEMPERATURE ~ °C 6 — 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. 1215W.Crosby Road Carrollton, Texas 75006 (972)323-2200 Fax (972)323-2396 2-7