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  page : 1 2010.12.15 KU163C reflector sensor recommended applications ? cameras, dsc (lenz controller, film detection, tape-end detection) ? mo, dvd (pick-up cont roller, disk detection) ? other general applications for controller (object detection, code reader) ? outer dimension : 3.1 x 1.9 x 1.1mm ( l x w x h ) ? compact small package of surface mount ? integrated ired and phototransistor ? lead?free soldering compatible ? rohs compliant die materials (emitter) gaas product features assembly method auto pick & place machine (auto mounter) si features function reflector sensor (analog output) die materials (detector) soldering methods reflow soldering, and manual soldering please refer to soldering conditions about soldering. taping and reel 2,500pcs per reel in a 8mm width tape. (standard) reel diameter: 180mm
page : 2 KU163C reflector sensor absolute maximum ratings symbol unit t opr t stg power dissipation pd mw forward current i f ma derating 1 S i f ma/ pulse forward current 2 i fr m ma pulse forward current derating 1 S i fr m ma/ reverse voltage v r v collector dissipation pc mw collector-emitter voltage v ceo v emitter-collector voltage v eco v collector current ic ma 1 ta=25 or higher 2 i frm measurement condition : pulse width Q 0.1ms, duty Q 1/100 -30 +85 -40 +100 75 20 0.17 300 4 item 20 operating temperature storage temperature led ta = 25 5 75 20 5 absolute maximum ratings phototransistor ta = 25 2010.12.15
page : 3 KU163C reflector sensor 2010.12.15 electro-optical characteristics min. 0.9 typ. 1.1 max. 1.5 reverse current i r max. 10 a peak wavelength p typ. 940 nm dark current i ceo max. 0.1 a peak sensitivity wavelength ptyp.850nm min. 115 typ. 200 max. 425 leak current i leak max. 2 a rise time/fall time tr/tf typ. 10/10 s v ce = 5v, i f = 5ma, no reflector v ce = 10v, r l = 100 , i f = 5ma item photo current input output coupling characteristics - forward voltage v r = 5v v v ce = 5v, i f = 5ma, d = 1mm ic a characteristics unit symbol i f = 20ma v ceo = 10v v f i f = 5ma conditions (ta=25 ) input output
page : 4 KU163C reflector sensor 2010.12.15 photo current rank min. max. b 115 162 c 146 206 d 185 262 e 236 334 f 300 425 i f =5ma v ce =5v d=1mm ranks photo current i c ( a) conditions
page : 5 KU163C reflector sensor ambient temperature vs. forward current ambient temperature : ta( ) forward current : i f (ma) ambient temperature vs. pulse forward current condition : tw Q 100 s, duty Q 1/100 ambient temperature : ta( ) pulse forward current : i frm (ma) duty ratio vs. pulse forward current condition : ta = 25 , tw Q 100 s duty ratio pulse forward current : i frm (ma) ambient temperature vs. collector dissipation ambient temperature : ta( ) collector dissipation : pc(mw) technical data 2010.12.15
page : 6 reflection rate vs. relative photo current condition : ta = 25 , i f = 5ma, v ce = 5v, gray scale reflection rate (%) relative photo current ic KU163C reflector sensor forward voltage vs. forward current condition : ta = 25 forward voltage v f (v) forward current i f (ma) ambient temperature vs. forward voltage ambient temperature : ta( ) forward voltage v f (v) distance vs. relative photo current condition : ta = 25 , i f = 5ma, v ce = 5v, aluminum mirror distance l (mm) relative photo current ic technical data 2010.12.15 0.1 1 10 100 0.9 1.0 1.1 1.2 1.3 1.4 0.8 0.9 1.0 1.1 1.2 1.3 1.4 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 100 if=5ma 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 012345 al mirror 90% reflective paper 60%reflective paper 25%reflective paper 18%reflective paper
page : 7 load resistance vs. response time condition : ta = 25 , i f = 5ma, v ce = 5v, d = 1mm, aluminum mirror load resistance : r l ( ) KU163C reflector sensor forward current vs. relative photo current condition : ta = 25 , v ce = 5v, d = 1mm, aluminum mirror forward current i f (ma) relative photo current ic forward current vs. relative leak current condition : ta = 25 , v ce = 5v forward current i f (ma) relative leak current i leak collector-emitter voltage vs. photo current condition : ta = 25 , d = 1mm, aluminum mirror collector-emitter voltage v ce (v) photo current ic ( a) response time ( s) technical data 2010.12.15 0.0 1.0 2.0 3.0 4.0 5.0 6.0 7.0 0 5 10 15 20 25 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 0 5 10 15 20 25 0 200 400 600 800 1000 1200 1400 1600 1800 0246810 if=1ma if=5ma if=10ma if=15ma if=20ma
page : 8 ambient temperature vs. relative dark current condition : v ce = 5v ambient temperature : ta( ) relative dark current iceo KU163C reflector sensor ambient temperature vs. relative photo current condition : i f =5ma, v ce = 5v, d=1mm aluminum mirror ambient temperature : ta( ) relative photo current ic ambient temperature vs. relative photo current condition : i f =5ma, v ce = 5v ambient temperature : ta( ) relative leak current i leak technical data 2010.12.15 0 0.2 0.4 0.6 0.8 1 1.2 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 100 0.00 0.20 0.40 0.60 0.80 1.00 1.20 1.40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 100 0.01 0.1 1 10 100 1000 -30-20-100 102030405060708090100
page : 9 KU163C reflector sensor detection range (x direction) condition : ta = 25 , i f = 5ma, d = 1mm, aluminum mirror position (mm) relative photo current ic detection range (y direction) condition : ta = 25 , i f = 5ma, d = 1mm, aluminum mirror position (mm) relative photo current ic technical data 2010.12.15 0.0 0.2 0.4 0.6 0.8 1.0 1.2 -1.0 -0.5 0.0 0.5 1.0 led x -+ 0.0 0.2 0.4 0.6 0.8 1.0 1.2 -1.0 -0.5 0.0 0.5 1.0 led y -+
page : 10 package dimensions recommended soldering pattern (unit: mm) taping specification (unit: mm) (unit: mm) quantity: 2,500pcs/ reel (standard) KU163C reflector sensor mass (9.0mg) 2010.12.15
page : 11 reflow soldering conditions manual soldering conditions iron tip temp. soldering time and frequency 3 s 1 time 350 (max.) (max.) (per one terminal) KU163C reflector sensor 1) the above profile temperature gives the maxi mum temperature of the product resin surface. please set the temperature so as to avoid exceeding this range. 2) total times of reflow soldering pr ocess shall be no more than 2 times. when the second reflow soldering process is performed, intervals between the first and second reflow should be short as possible (while allowing some time for the component to return to normal temperature after the first reflow) in order to prevent the product from absorbing moisture. 3) temperature fluctuation to the product dur ing the pre-heating process shall be minimized. (1) please avoid the installation of the substrat e with the manual soldering as much as possible. if you do with the manual soldering, please note the following . 2010.12.15
page : 12 reliability testing result applicable standard testing conditions duration failure room temp. operating life eiaj ed- 4701/100(101) ta = 25 , led : i f = 5ma, phototransistor : v ce = 5v, there is a reflector., d = 1mm 1,000 h 0/25 wet high temp. operaing life eiaj ed- 4701/100(102) ta = 60 , rh = 90%, led : i f = 5ma, phototransistor : v ce = 5v, there is a reflector., d = 1mm 1,000 h 0/25 high temp. operating life eiaj ed- 4701/100(101) ta = 85 , led : i f = 5ma, phototransistor : v ce = 5v, there is a reflector., d = 1mm 1,000 h 0/25 low temp. operating life eiaj ed- 4701/100(101) ta = -30 , led : i f = 5ma, phototransistor : v ce = 5v, there is a reflector., d = 1mm 1,000 h 0/25 thermal shock eiaj ed- 4701/200/(203) -40 (15min) 100 (15min) 5 cycles 0/25 resistance to soldering heat eiaj ed- 4701/300(301) (reflow)preheat : 150 180 (120s max.) operating heat : 230 (40s max.) peak : 260 (5s max.) twice 0/25 KU163C reflector sensor reliability testing result failure criteria items symbols conditions failure criteria forward voltage v f i f =5ma testing max.value R initial value x 1.2 reverse current i r v r =5v testing max.value R 10 a x 2.5 photo current i c i f =5ma, v ce =5v, d=1mm testing max.value R initial value 1.2 testing min.value Q initial value 0.8 leak current i leak i f =5ma, v ce =5v, no reflector testing max.value R 2 a x1.2 2010.12.15
page : 13 special notice to customer s using the products and technical information shown in this data sheet KU163C reflector sensor 1) the technical information shown in the data sheets are limited to the typical characteristics and circuit examples of the referenced products. it does not co nstitute the warranting of industrial property nor the granting of any license. 2) for the purpose of product improvement, the specif ications, characteristics and technical data described in the data sheets are subject to change without prior notice. therefore it is recommended that the most updated specifications be used in your design. 3) when using the products described in the data sh eets, please adhere to the ma ximum ratings for operating voltage, heat dissipation characteristics, and other precautions for use. we are not responsible for any damage which may occur if these specifications are exceeded. 4) the products that have been described to this cata log are manufactured so that they will be used for the electrical instrument of the benchmark (oa equipment, telecommunications equipment, av machine, home appliance and measur ing instrument). the application of aircrafts, space borne application, transportation equipment, medical equipment and nuclear power control equipment, etc. needs a high re liability and safety, and the breakdown and the wrong operation might influence the life or the human body. pl ease consult us beforehand if you plan to use our product for the usages of aircrafts, space borne appl ication, transportation equipment, medical equipment and nuclear power control equipment, etc. except oa equipment, telecommunications equipment, av machine, home appliance and measuring instrument. 5) in order to export the products or technologi es described in this data sheet which are under the ?foreign exchange and foreign trade control law,? it is necessary to first obtain an export permit from the japanese government. 6) no part of this data sheet may be reprinted or reproduced without prior written permission from stanley electric co., ltd. 7) the most updated edition of this data sheet can be obtained from the address below: http://www.stanley-components.com 2010.12.15


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