OP240SL OPTEK | Alldatasheet

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OPTEK TECHNOLOGY INC ObE D | 6794540 oO001ec0 1 I Optoelectronics Division a=apeme TAW Bectronic Components Grup = T=4 (13 1ityy Product Bulletin 6063 January 1985 eee GaAlAs Plastic Infrared Emitting Diodes Types OP240SL, OP240SLC, OP240SLB, OP240SLA va i Pe tat OstAS ‘CATHODE — aay e=—=> ee PR Oras fH sg SiR. Fiat se ane Lava seo ue nos aA E * FOR WENTIFCATION ‘PURPOSES, ANODE LEAD IS .060(1.52) NOM. LONGER THAN CATHOOE LEAD. Features Absolute Maximum Ratings (T,-25°C unless otherwise noted) intensity ranges ‘Storage and Operating Temperature Range... eee cece eeeeecceeceeeeee ees 40% to +100°C OP560 series of photodarlingtons Notes: 1) RMA flux is recommended. Duration can ba extended to 10 seconds max, whan flow soldering. Description 12 ee ay 0 a . customs ‘arsenide infrared emitting diodes mounted in low ‘eezurement of the average radiant intety witin the cane frmed by the ebove contin. EXAPT is rat necessary cost, clear plastic sideooking packagas. Gallium wife within the macswed ae. ‘aluminum arsenide features a significant increase in the rediated output of gallium arsenide at the ‘Typical Performance Curves same forward current. Also, with a wavelength Percent Changes in Radiant Intensity Coupling Characteristics centered at 875 nanometers, it more closely vs Time of OP240SL and OP550 matches the spectral response of silicon . phototransistors. For additional information on ie spectral emission characteristics, please refer to ° een eal HEH Neeneov the OPS50 date sheet. . SS eee ms a" a KeEHH a2 The OP240SL is equivalent to TRW's earlier part Pw] i rub O24 7 CHIPSET EAE

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OPTEK TECHNOLOGY INC OLE D Jpersssao doo01e1 3 I Types OP240SL, OP240SLC, OP240SLB, OP240SLA T-4l-13 Pe eS Electrical Characteristics (TA = 25% unless otherwise noted) [Symbol] _———sParametor~—S | Min. | ‘Typ. | Max. [Unite] _—sTest Conditions| [0 [fodonPowertwen OY || [pera ep | eee OP240SLC | 0.20 0.88 | mWiem?| IF=20 mA OP240SLB | 0.40 1.20 | mWrem? | \\F=20 mA OP240SLA | 0.80 nlWicm? | \\f=20 mA a TA "1 a a . [r» | Wevelongh at Peck Emision | S| <8 || wm [hm Q0mA [8 | Specvel Guniwidth Getwoun Ha Power Poms | —*|| a0 | | am |lf=a0mA a A [ie [ening ata Pov Rs | | [| om ren a [oe [ower i Pm | Nn Dm ‘Typical Performance Curves Forward Voltage vs Forward Voltage and Radiant Incidence Forward Voltage vs Forward Current vs Forward Current Ambient Temperature a ee) alll Z| foo ce oF uw parte I oe ohh yf Montel pt a : aS Cerri) «6g. bee zee ew A a go #.t og pet POI egy’ f eos * COTE APT ea Et . ee “COOL il Pe Rise Time and Fall Time vs Relative Radiant Intensity Reletive Radiant Intensity va Forward Current vs Ambient Temperature Angular Displacement 7 “Test Conditions: 20 Wh wa Pulse ory eet AEE] SO wlmeee TTT) ATT tates j TELL SINEECEE PIN itty ) BOSSE g.fePN LEE TT BOURSES POCCPNCE EERE eet Tt) 3. TTT ANT TT TLLALL rt {ttt (TT TTT yy “ry rq Jobe} toe LET IN ee Son ee See ee lg = FORMARO CURRENT = A Th ~ AMBIENT TEMPERATURE ~ °C (6 ~ ANGULAR DISPLACEMENT ~ Cogres TRW reserves the right to make cher es at any time in ‘order to improve design and to supply the best product possible. ‘protean Gvisin, TAW Ean Ce mips Group, T2i6 W. Trosby 7. Carrolton, K 75000 4 305-2000, x07 ea oC RES B