OPI8012 OPTEK | Alldatasheet

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OPTEK TECHNOLOGY INC ObE D | 67945480 go00esa8 4 I Optoclectronics-Division 1987 Cost Saver Product! =e ‘THY Bactronie Components Group Call TRW for more information! AAIXGVW Product Bulletin 6232 anwar 1085 TE41-8F al a oom fat . Photologic™ Optically Coupled Isolators Types OPI8012, OPI8013, OPI8014, OPI8015 oo . fe nae @o o | 5 a_7-_ Tt mT ase . T st SF ssanen ne : ea ee ay ano se nena © © @ B02 acs 1 } 3 7 2008 08 | rt —tF ers Ew mE RET : “ay oa a sae 710078 __ Fama omcs Seated 0g $41 a Features Absolute Maximum Ratings (T,~25°C unless otherwise noted) © Dirt TTULSTTLinefaca Storage Temperature Range «<<... sss. secec eee LTT eese ta te0ee < © bigh nos immunity Operating Temperature Ranga... eee eeee LTTE gee ts t00ee © Data rates to 250 KBaud Led Soldering Tempertue (1/1 inch 1.8 ml fom case far’ se. wit solaing roni@ 2802 Ingu ode Powe spat «0000000000200 ag Description Qu rl Per Din teecencecenenee 00 Duration of Ougut Short o Voc ar Ground OPO, OPGDTAN 00 se. deh cn’ gal anes ees rtn of Output Share Vee OPENS, OPROTSL. oo aS inde coupled to a monltic integrated cit at Lead QPG013 0 fh wih orate 8 pode, tear anpiar ode fFMUEDE CUTAN... vc evsvsvvssen ws an Soi we Sg le ht Th? ota: sr ie cd ods ed ac ike devices fetre TTULSTTL compatbla logic level _ mana un ent eed tosses nan van Now test Gh Ds ai av ‘output which can drive up to 8 TTL loads directly ~ (4) Oerate Snearly 1.33 miicm? above 26°C. (6) Derate inearly 2.67 mWicm? sbove 25°C. without additonal circuitry. Ao featured are medium speed data rates to 260 KBaud end ‘Schomatics {ypical iso and fall times of 26 nsec. The devices gp1@012 (Totem Pote Outpu Butler OPI8014 (Totem-Pole Output) Inverter ‘are designed for industrial environments and have Vee 18 _ ry bulvin hysteresis for hgh immunity to nis on input and Veo. : ry Py A ‘ co our oes ourta Py Py P oxo | wow OPI8013 (Open-Collector Output) Buffer OPI8016 (Opan-Collector Ourput) Inverter veo vec Y [>{FeE) _eourm | 0% our ie Px ET cero! 2 ano ‘Griatectonis Owain, TAW Electron Components Group, T2TS W. Crosby Re.,Carralton, 1% TEOUS” TETAT SEOTEON,, TUK ET TOOT or DSO 162 7

OPTEK TECHNOLOGY INC ObE D a 6794580 Oo00259 0 I Types OPI8012, OPI8013, OPI8014, OPI8015 T- 41-29 : Electrical Characteristics (-40°C to +70°C unless othgrwise noted) ° Diode Input Pow [ene [emi cae a [ferries meee | | wt fine . [memes imme Ee TT Photologic™ Cutput pe femme Ee Pe few mf fveceemnee | OP18012 (Buffer, Totem-Pole) , cc | ac a OP18013 (Buffer, Open-Collector! pre fem | [meaner] Pm remem | CL areca | OP18014 linverter, Totem-Pole) fre omen | [we femeneceare | Pw femme | | |e ferenomare | Pe fermen | [ale factrrmene | OPIB015 (inverter, Open-Collector) ee Pa fiw | fm fececaiieem | OPi8012, OPIa014 ‘Quiput Rise Time, Output Fall Time VeC=5.0 V, TA= 26°C, I= 10.0 mA, Square Wave: A cd 0P18013, OPIG015 i IG Vec=5.0 V, TA=25°C, IF=10.0 mA, Square Wave Optoelectronics Division, TAW Electronic Components Group, Tzi5 W. Trosby Tid., Carrollton, 1X 76006 Tay 305-2000, TX 6/6030 oF Ta0s 163 i

OPTEK TECHNOLOGY INC ObE D ff b79asa0 oooozLO & I Types OPI8012, OPI8013, OPI8014, OPI8015 T-4\\- v Typical Performance Curves OPIa012, OPI8O14 Output Voltage vs. Short Circuit Output Current vs. “o * Ambient Temperatura ° Ambient Temperature LE f get LE oe EEE ET peepee ~ PCT BP LLEFEEEE got LETT TTT EMT Poe TOO PCO pufwn TTT | »L LETT TTT SGSSG00e0 Poocceeeocn EEE Ee ety | oL TT TTT TTT eS haubenT ewamiaese eS Rawbent euremtieese Output Current (High) vs OPI8013, OPIBNNS Rise Time and Fall time vs a ‘Ambient — » Ambient ee 7 wee CEH ee" HH SaRnpS7 48 Seeeeeee ES CCClero }eCCCCEPE ; ECE CEE Eee LET »L LE eer COPE a i COPE E eCEEEe rey Ree ee CELT TTT} JOA} ‘Se ae =e ‘<_ eae OP18012, OPI8013 : OPI8014, OPI8015 Normalized Supply Current vs Hormalized Supply Currant vs .

1 Ambient Temperature a = Ambient Temperature

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OPTEK TECHNOLOGY INC ObE D | 6798580 Ooodeb1 6 I Types OPI8012, OPI8013, OPI8014, OPI8015 sp u-89 Typical Performance Curves : Trigger Current vs Propagation Tima vs Data Rate vs Ambient Temperature Ambient Temperature Ambient Temperature * eer “Toaeev r] "“N Ostpat Signat Outpt Loa © TTL equivalent circsit ieeaven 4 raster ae | IN 4 ‘High, 2.4.0 rin a Pulse Amplitude: 10 mA 00 ef Satie | TF a | eee cl N j oti \\ . 3 is AupzeSaa00| Daaues> cet MAMMAXGHEE Lb SERRESZ 400 FFT TL |e eee IB NX é, Lr | 2° EFT CEL wo fon 24 ee N PTB te NY . SLLEL ET TT Lisa : we em ae Bs ee ws “ess 2 6 6 ss me is Tabet ewreaTe-* Fase earn € Tabet tewbaarin-t Dats Rate vs * Ambient Temperature ‘Switching Test Curve for Inverters ‘Switching Test Curve for Buffers ATI) wee ES 40 MS. le: =0 ‘en ny | HNN a ee Oc POTN) cease ati EO E20 LEO: t= 10 We OC 508 LEO: f= 10 be, 0.6. = 50% LUTE Were ‘Ouiput Load 8 TTL equivalent circuit Ecc awe Sig a iss as as 65 0S 105 126 pcan eabtat-° ‘TAW reserves the right to make chenges at any time in order to improve design and to supply the best product possible. Plastic color may vary. Thal fectronics Division, AW Electronic Components Group, a W. Trosby Ad., Carraiton, K e006 (214) "305-2000, Tx 6716082 oF 716840 185