OPB125A OPTEK | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 2
Technical content
OPTEK TECHNOLOGY INC ObE D fJ&798Sa0 ooooa0a a Optoelectronics’ Division ai ame TRW Electronic Components Group aa vy Product Bulletin 5279 . Sanvary 1985 FYrI3 ———$ eS Reflective Object Sensor Type OPB125A sonar ” a a 905,00 a0. 6 CS uct baal 7 \\ A al “corot saan —.| L . [ecu ‘OMENSONS ARE CES MLMETERS, Features Absolute Maximum Ratings (Ta = 26°C unless otherwise noted) © Low profile to facilitate stacking Operating Temperature Range... seeeveesesesevsceeserssserevsesess, QQ to +100° ‘© Low cost plastic housing Input Diode Description Output Photodarlington plastic housing. The photodarlington responds to Notes: ° radiation from the LED only when ¢ reflective frowns fe a rt eo ae . abject passes within its field of view. (3) Mesured wing an EasinanKadek osu whit test cad having 9 tse refactanca a8 a refecing src. OPB126A utiizes an OP123 or OP223 LED and an (4 Messured using @ reflecting surface thet hes a very beck dull surface with ‘optical reflectance qualities comparable to @ (0P300 famity sensor. Leads ara #26 AWG, teflon saree caatod with carbon blck pre’ ink. insulation, 4.0” (101.6 mm) minimum {ength, 15) Crosstelk tlc) is tha collector current messured with the indiceted current in the input diode and with no reflecting surface. ss aor " 1G) Lower curve is based on a calculated worst case condition rather than the conventional -2o Smit. stripped and tinned, 17) isthe distance from the assembly head to the reflective surfece. ‘Thioclectrontes Division, TAW Electronic Components Group, a6 W. Trosby Rid, Carrol ton, 1X 76008 1214) S2a-2n J TUK O7T0000 or 210080 212
- OPTEK TECHNOLOGY INC ObE D | 6798580 0000305 0 | Type OPB125A T= 41-73 Electrical Characteristics (Tq ~ 26°C unless otherwise noted) ‘Input Diode Output Photodarlington a a a a La aa ie a i cA Combined pee OO See Note 6. Totector Enter Saturation Votoge se Typicel Performance Curves Reflective Surface Collector Current Diffused Surface Collector Current Wormalized Collector Current vs. Diode Forward Current vs. Diode Forward Current vs. Ambient Temperature ne a lode Forward Cert 0 " a + tenet Tt 4 pute eee] Ss. (ee a Bu LA t ao co ba Het = Ze 3 i wert (oa 3 Lt a re | alt tI | Fase| eae] MHS on »Z-CH “LL «os ow « w . ss « @ rrr rare iy tone Forman CURRENT nA ig ooe ran canta 0A vate TRPERATNA = Normalized Collector Current Rise and Fall Time va. Test Condition vs. Object Distance: Load Resistance o TLL “0 “| REFLECTING SURFACE cr Per i EHR]: Fe aria aan B"GRELLIw » 2, Leen" ‘ H ES o S PERE a i 7 \\ “GRETTTTr) | [} wuld TTT TT) a é RPT TT] | os = wed CSsskedeed [I an ! tuwn wiue et i. «we “0 he
4 DISTANCE TO REFLECTIVE SURFACE - Inher ‘hy ~ LOAD RESISTANCE - 2 eo PHOTOOARLINGTON
‘TAW reserves the right to mako changes at any time in ‘order to improve design and to supply the best product possible. Toslectronics Division, TAW Electronic Components Group, 1. W. Crosby Rd., Carrollton, 006 (214) 323-2200, or anrvageg Don, TRW estan Canpoes G iW oar Une Ta SETI, TOK ETIOR 37 23 ‘