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OPTEK OP265W handbook

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1. datasheet has been download from www AllDataSheet com 100 Free DataSheet Search Site Free Download No Register Fast Search System www AllDataSheet com
2. 5 sec with soldering WOR EE a E a ences aed 260 cl Power Dissipation 0 000 ra cece eee eee e ee nnnes 100 mw Notes 1 RMA flux is recommended Duration can be extended to 10 sec max when flow soldering A max of 20 grams force may be applied to the leads when soldering 2 Derate linearly 1 33 mW C above 25 C Typical Performance Curves Percent Changes in Radiant Intensity vs Time Coupling Characteristics of OP265W and OP505W PERCENT CHANGE IN Ep RELATIVE OUTPUT CURRENT i 0 0 2 0 4 0 6 0 8 1 0 DISTANCE BETWEEN LENS TIPS Inches t TIME Hours Carrollton Texas 75006 2 38 972 323 2200 Fax 972 323 2396 Type OP265W Electrical Characteristics Ta 25 C unless otherwise noted SYMBOL PARAMETER MIN TYP MAX UNITS TEST CONDITIONS a Po Radiant Power Output 1 0 f mw _ r 20 mA Ve Forward Voltage f 1 80 IF 20 mA IR Reverse Current 100 Vr 2V Ap Wavelength at Peak Emission 890 onm IF 10 mA B Spectral Bandwidth Between Half Power Points 80 nm i 10mA w ouput Rise Time sof ns fipa 100mA t Output Fall Time __ 250 ns 1 EN One DEE Typical Performance Curves Forward Voltage vs Forward Current Vp FORWARD VOLTAGE V Vp FORWARD VOLTAGE Volts 0 1 1 0 10 Ip FORWARD CURRENT mA Rise Time an
3. OO oP265 0 O Product Bulletin OP265W June 1996 SP OPTEK GaAlAs Plastic Infrared Emitting Diode Type OP265W Features Wide irradiance pattern Mechanically and spectrally matched to the OP505W Small package size for space limited applications T 1 package style Significantly higher power output than GaAs at equivalent drive currents Description The OP265W is an 890 nm high intensity gallium aluminum arsenide infrared emitting diode molded in an IR transmissive amber tinted epoxy package The broad irradiance pattern provides relatively even illumination over a large area This package is a T 1 style in all respects except for the length of the plastic package Optek Technology Inc 1215 W Crosby Road 165 4 19 145 3 68 125 3 18 115 2 92 080 ci 27 eg ae gl 930 1 ee 76 506 pa 70 125 3 18 115 2 92 1025 0 64 Sa NOM 7015 0 38 x ee eee PURPOSES ANODE LEAD IS 060 1 52 NOM LONGER THAN CATHODE LEAD DIMENSIONS ARE IN INCHES MILLIMETERS Absolute Maximum Ratings Ta 25 C unless otherwise noted Reverse Voltage oi antenin TEIE Rank E ds pai dune EVENE 2 0V Continuous Forward Current 0 0000s cece cece eee eee eee 50 mA Peak Forward Current 1 us pulse width 300 pps 0000 3 0 A Storage and Operating Temperature Range 40 C to 100 C Lead Soldering Temperature 1 16 inch 1 6 mm from case for
4. d Fall Time vs Forward Current Test Conditions Pulse Width 10 ys Duty Cycle 10 Ty 25 C t TIME us RELATIVE RADIANT INTENSITY 1 Ig FORWARD CURRENT mA Forward Voltage and Radiant Incidence vs Forward Current Test Conditions Ip Pulsed PW 25 ps 100 ms between pulses Py and Ve sampled at end of pulse Tya 25 C MAW JONSGIONI LNVIGVY OJUNLYJJY 93 0 2 0 4 0 6 0 8 ip FORWARD CURRENT Amps 950 20 mA Pulse Pulse Width 100 ps Duty Cycle 0 1 Normalized at Ta 25 C 925 875 50 Ty AMBIENT TEMPERATURE C 25 0 235 50 75 100 Relative Radiant Intensity and Wavelength at Peak Emission vs Ambient Temperature WU NOISSIN3 XY3d LV HL9NIIJAVM AX Forward Voltage vs Ambient Temperature Test Conditions Pulse Width 100 ps Duty Cycle 0 1 Vp FORWARD VOLTAGE V Ty AMBIENT TEMPERATURE C Relative Radiant Intensity vs Angular Displacement EL Dr sea ca es Ng AE so 6o 40 20 o0 20 40 60 6 ANGULAR DISPLACEMENT Degrees RELATIVE RADIANT INTENSITY 02 80 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 2 39 972 323 2200 Fax 972 323 239 6 INFRARED EMITTING DIODES Copyright Each Manufacturing Company All Datasheets cannot be modified without permission This

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