OPL801 OPTEK | Alldatasheet
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Product Bulletin OPL800 of ° August 1996 = @® . Photologic’ Hermetic Sensors Types OPL800, OPL801 Series ee Sat oo. RP Seats eer Sgt vio es SAY 1 7 230 (5.84) Co ee | \\ BS CIR mere eS ee L \\ 7 028 (0.71) poke eee eS tpi ge ee 187 (4.75) Vl ——— / | ° be os ae aes qa EN Eyes & 73.88) —— / <b HR Saas oe pie pe ee 9 1913 (0.48) : 8s OSD One Pa ae Sau pfs Aree ete | 018 (0.41) ee ee Seunces. oper S 8 eee ae 030 (9,78) =] + 500 {12.709 aa eS Aws Gor ieipeaees i. c: THIS DIMENSION COVTROLLED AT HOUSING SURFACE. Pe Bee a DIMENSIONS ARE IN INCHES (MILLIMETERS) Features Absolute Maximum Ratings (Ta = 25° C unless otherwise noted) © TO-18 hermetic package Lead Soldering Temperature [1/16 inch (1.6 mm) from case for 5 sec. with soldering |. © Mechanically and spectrally matched WONJ-- 22s eve eee veeeeeeeeeeeeeseeeeeeeteeeeetteeetereeeess 260 ia Wradiance oe. e eee cece eee eeceeeeseeeeeeseeeneeseesers SmWiem? Description Notes: . . (1) RMA flux is recommended. Duration can be extended to 10 sec. max. when flow soldering. The OPL800, OPL800-0C, OPL801, Max. 20 grams force may be applied to leads when soldering, and OPLB01-0C each incorporate a (2) Derate linearly 3.4 mW/ C above 90° C. i e (3) Light measurements are made with 4 = 935 nm. photodiode, a linear amplifier, and a Schmitt trigger on a single silicon chip. The devices feature TTULSTTL Schematic compatible logic level output which can drive up to 8 TTL loads without OPL800 (Totem-Pole Output) Buffer OPL801 (Totem-Pole Output) Inverter additional circuitry. Also featured are o medium speed data rates to 250 kBaud rT 3 Oe ‘ with typical rise and fall times of 25 nsec. lj ©) t The Schmitt trigger’s hysteresis be @ Y f YY characteristics provide high immunity to wat | Y€ ‘our af veyor noise on input and Vcc. The Photologic® L | 13 7) 3. U ay chip is mounted on a standard TO-18 Oa . — Sane header which is hermetically sealed in a Light On - Output High Light On - Output Low lensed metal can. These devices are OPL800-OC (Open-Collector Output) Buffer | OPL801-OC (Open-Collector Output) Inverter mechanically and spectrally matched to » OP130 and OP230 infrared emitting cyt re diodes. i) 3 || She o tp) oor LTP eg LTy YO — Leno 11-3 1_@e0 Light On - Output High Light On - Output Low Optek Technology, Inc. 1215 W. Crosby Road Carrollton, Texas 75006 (972) 323-2200 Fax (972) 323-2396 4-20
Types OPL800, OPL801 Series Electrical Characteristics (-40° C to +100° C unless otherwise noted) [ SYMBOL PARAMETER _ MIN] TYP|MAX|UNITS| __TESTCONDITIONS _| Vcc __ |Operating Supply Voltage jas | |s5| v_ | Peak-to-Peak Vcc Ripple Necessary to Vv Vec = 5 VDC | Cause False Triggering of Output f = DC to 50 MHz | Positive-Going Threshold Irradiance 0.05 | 0.18 | 0.60 |mWiom?|Voc = 5 V, Ta = 25° 0 EctevEert)[HystowsisRao =| 18 | oes] [tcc [Supply Current | [ [ts [ma Wveo=85v, Ee=00rtmwien? | OPL800 (Buffer, Totem-Pole) | Vou High Level Output Voltage 24 | v Voc = 4.5 V, lon = -800 A, | | Ee = 1 mWicm* VoL Low Level Output Voltage Vv Voc = 4.5 V, lot = 12.8 mA, Ee=0 Short Circuit Output Current mA |Vcc =5.5V, Ee = 1 mWicm?, in | Output = GND i OPL800-0C (Buffer, Open-Collector | 33 lox ~—_|High Level Output Current | 100 | ya |Voc=4.5V, Von=30¥, 5a | | Ee = 2 mWiom = | Vou 'Low Level Output Voltage Vv Vcc = 4.5 V, lot = 12.8 mA, i | Ee=0 |OPL801 (Inverter, Totem-Pole| H VoH High Level Output Voltage 24 | Vv Voc = 4.5 V, lon = -800 pA, 1 l Ee=0 Vo. __|Low Level Output Current Vv |Veo=4.5V, Io. = 12.8 mA, | | Ee = 1 mWicm* H los | Short Circuit Output Current -100| mA |Vcc=5.5V, Ee=0, Output = GND OPL801-0C Inverter, Open-Collector) | tox [High Level Output Current | WA |Voo=45V, Von =30V, | | E,e=0 L | e a ax | Vor _|Low Level Output Voltage V_ [Voc =4.5V, lo, = 12.8 mA, | i E. = 1 mWicm* {OPL800, OPL801 1 |__t.tr__ [output Rise Time, Output Fall Time [| 70 | | _ns_|Vcc=5V, Ta=28°C, teu, (PHL | Propagation Delay, Low-High, High-Low | 5.0 [Ee = 0.081 mWicm® i RL =8 TTL Loads OPL800-0C, OPL801-0C | [ttt [Output Rise Time, Output FallTime | | 70 | | _ns_[Vec=SV, Ta=28°C, - wich High: Ee = 0 or 1 mW/cm2 tL, tpH. | Propagation Delay, Low-High, High-Low HS |F= 40 kHz, D.C. = 50%, RL = 3602 | 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.CrosbyRoad Carrollton, Texas 75006 = (972)323-2200 Fax (972)323-2396 4-21
Types OPL800, OPL801 Series (D.OPTEK eee Typical Performance Curves OPL800, OPL801 Output Voltage vs. Short Circuit Output Current vs. to Ambient Temperature Ambient Temperature CLO To (oe 7 > BRRee a Ef SEE es san
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P {iti TTT ty 2 | Leer ee 3 5 J pet tit TT a 4 Be a Petit & Fy 3 | Seow, : COCCCocee Peres a PUTT TTT | i PPP pee 8 rs Tq ~ AMBIENT TEMPERATURE — Tq ~ AMBIENT TEMPERATURE ~ °C OPL800-0C, OPL801-0C Output Current (High) vs. Rise Time and Fall Time vs. a oi or aa 71 <0 Ambient Temperature 7
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: 41 i zs Hebe 2.7 PPT 2 or z Bette i Tt TT eT TT TTT rc | | TTT TT P.-L tt. Ter fg ee Boa | vecsany || Fy LP pitt sah Sours 1 mW em? GaAs (995m ole [| oL-LITI Tt tt | “55-25-15 5 25 45 65 85 105 125 “85-35 15 5 25 45 65 85 105 125 Tq ~ AMBIENT TEMPERATURE ~ °C Tq — AMBIENT TEMPERATURE — °C OPL800, OPL800-0C OPL801, OPL801-0C Normalized Supply Current vs. Normalized Supply Current vs. ts Ambient Temperature 1 Ambient Temperature pelt LT Con JA pees || | | LLL ERE SS gos pL OEP RSS eLLE TTT TTT SERRREEEEE LTT Zo6 2 on “0.4 }- ight Souree or loca: 1 mi/em? “0.2 | Light Souree for tecu: 1 mW/em? 8 mali 19 Ta Me mes css as 8 5 as a os 8 108 WS cep cas tS 8 2s sos a8 108 125 Ta AMBIENT TEMPERATURE - °C. Tq — AMBIENT TEMPERATURE ~ °C Optek Technology, Inc. 1215 W. Crosby Road Carrollton, Texas 75006 (972) 323-2200 Fax (972) 323-2396 4-22
Types OPL800, OPL801 Series eee Se Typical Performance Curves Normalized Threshold Irradiance vs. Angular Displacement from w Ambient Temperature Package Mechanical Axis 8 20 100 2 cowsv Bind on IL ve
3 Light Source is ‘Angular Displace-
FY GaAs, = 935 0m * ment edn Ear oto 3‘ Ki 2 og | dtovedonces aN 55 T samoie Alicea ‘ FI SS z 2 z Hi gas Z 04 5 Y \\ Fe oi = @ 55-25 -15 5 25 45 65 85 105 125 2 1% 0 5 0 5 0 1 20 “Q oy Ta - AMBIENT TEMPERATURE ~ °C ANGULAR RESPONSE (Typ! - 0° oF Propagation Time vs. Rise Time and Fall Time vs. 3g Ambient Temperature Ambient Temperature On 25 50 vA Fa =v - ; Pulte Amplitude: 1 mWiem? ao | bit Source A 20 | Duty yee 80% 4 : J |_| z 1 3 | #,-f TTY fa Ht a 3 Hn ett bet 7 aeee 4eeee Pace Vero = “1 3 Core CT eT
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LIT Tit) CEPT TTT 55 35 15 5 25 45 6S 85 105 125 “85-95-15 5 25 45 65 85 105 125, ‘Ta — AMBIENT TEMPERATURE - °C ‘Ta - AMBIENT TEMPERATURE - °C Switching Test Curve for Inverters wer _f gay tr uN) iro 7 tPLH | tHE = ourPuT 3 v0 witlrz====fel_ \\“Y Fy BS — As “ou g Lg0: f= 10 kHz. O.C. = 50% £ Switching Test Curve for Buffers i wer [Nay § ean ipso t LH {PHL g SS ee “ ourrur is Cr Vou ul wk LEO: 1=10 kt, DC. = 50% 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. 4215 W. Crosby Road Carrollton, Texas 75006 (972)323-2200 Fax (972)323-2396 4-23