GP2S04 SHARP | Alldatasheet
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15— 0 I 6180798 0003323°? | GP2S04/GP2S06/GP2S07 Photointerrupters . GP2S09/GP2S10 mens SHARP ELEK/ MELEC D1V ——— 7-U(-73 . 2 GP2S04/GP2S06/GP2S07 _—suominiature /GP2S09/GP2S10 Photointerrupter @ Features @ Applications 1. Compact and thin 1. Cassette tape recorders, VCRs GP2S04 : Compact DIP type 2. Floppy disk drives GP2S06 : Flat lead type 3. Various microcomputerized control equip- GP2S07 : Mini-flat package type ment GP2S09 : Compact DIP, long lead type GP2S10 : Short flat lead type 2. Optical detection distance : 0.8~1mm 3. Visible light cut-off type Outline Dimensions (Unit : mm) GP2804 Uigram Geonmen | GP2SO6 @P2807 _ i @ ® i _ rr £] ot i Apes : £) sores E ; 5] [Oo 3} Ky ali SHIPUPHSL — Ocatnote | Seige stra! FU] @ Anode Sram Spe Orig Emitter co. Ae cori 3 a /B) h |i 2 @Collector obo 3a} gorse fp 4243 ste 3 2 te | SEF dis nis 2 = 3 SrA __} a | oes Ee 8 : FT Worse] o4'33 1 Oat Lo ° ost 13.0 4 x x 6= 430 3 £15415" F5=9~a08 GP2S09 GP2S10 s 3 g a 7 i i j 3 4ort 5 by A0cst SFUtIHE Ln eA oor Pa con UG 3.0883 alts
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£1S 1S i at 0.4833 ° 4 —_- SHARP 749
se o Bf szsozsa ooo3324 9 i @P2S04/GP2S06/GP2S07 Photointerrupters i GP2S09/GP2S10 ™@ Absolute Maximum Ratings (Ta=25°C) Te oY/ -73 Parameter Unit - [Forward current |e | 50 [mA Input [Reverse voltage | Va Sf 6 TV | Power dissipation | Po | 75 | mw. Collector-emitter voltage Vv Output |—Emitter-collector voltage [Veco [6 | V PUL Collector current | te P20 Tm Collector power dissipation | Pe | 75 | mW. Total power dissipation [Poe | 100 | mW. Operating temperature =25~+85 c Storage temperature =40~+100[ °C “Soldering temperature [Tow | 260 ~| “C 1 Within 5 seconds (Soldering areas for each model are shown below.) GP2S04, GP2S09 GP2S06 GP2S07 GP2S10 Soldering area Soldering area Soldering area Soldering area ‘The hatched areamorethan The hatched areamore than The hatchedareamorethan The hatched area more than Imm" away from the lower 2.0mm away from the both 0.5mm away from the both 1.0mm away from the both edge of package as shownin —edges of package as shown _—edges of package as shown —edges. of package as shown the figure below. in the figure below. in the figure below. in the figure below.
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z ‘ Y y el * SPaS08: 20mm = 2.0mm Za Ze Y & 05mm 0.5mm Tomm Tomm ™@ Electro-optical Characteristics (Ta=25'C) Parameter Unit Input 1,=20mA [= [12 [a4 [iv Put [Reverse current | ik [Verov_ | = | = Tt A Output | Collector dark current | Iceo | Vee=20V [| —_[1xio-*[1x10-7|_ A | "Collector current | te | T= mA, Ver=2V [20 J 45 | 120 | vA Transfer Response time (Rise) | _tr__| Vee=2V, Ie=100nA [ — | 2 | 100 | us teristics |_Response time (Fall) [tr | R.=1k0, d=Imm [=| 20 [100 | as [Leak current | _lueax_| Ip=4mA, Vee=2V, [= = on a %*3 The condition and arrangement of the reflective object are shown in the right drawing. *4 Without reflective object The ranking of collector current shall be classi- fied into the following 6 ranks. Marking exemple Test Conditon and (GP2S04, GP2S06, GP2S07, GP2S09) ap2sos Arrangement for Rank Te WA) Rank mark HD sfoder ‘olector Curr A_ | 20~a2 | A Sharp's mark fe No.GP2g04 A evaporation B 34=71 B Rank mark | B Lot No. p co ss=1aa | oo HN asl em AorB | 20-71 | AorB {| BorC BorC A,BorC| _20~120 A, Borc SHARE 750
_ a . LSE of 6180798 0003325 off GP2S04/GP2S06/GP2S07 Phatointerrunters GP2S09/GP2S10 Fig. 1 Forward Current vs. Fig. 2 Power Dissipation vs. Ambient Temperature Ambient Temperature TTTTT) wee sd roped a] | ALT é p POOR OL BES a ft EIA fee st PEEP OPENS & 9 I\\ & a [TT Aan =———e [| | TT 0 35875 00 31-00 Ambient temperature Ta (‘C) Ambient temperature Ta (‘C) ‘a Forward Voltage 10 Forward Voltage Oe r ot Hee wf ee LET ; Pezser Seaee= = a | tt VT au ail COZ EeGnAn' ANRREE i. Coca 3 wd 4 COCA] L711 1 1 Forward voltage Ve (V) Forward current Ir (mA) Fig. 5 Collector Current vs. Collector-emitter Voltage Eaten 2 act || 3 a AnEoEE gee 2) |p peal 5 ob eT I anezae Ae 0 2 4 6 8 10 12 Collector-emitter voltage Vex (V) so. or SHARR«OOM TT 751 i i :
= SSS EEE ase o Bf azaoza cooaae, 2 geaso4/er2806/6P2807 Photointerrupter= Fig. 6 Relative Collector Current vs. Fig. 7 Collector Dark Current vs. t Ambient Temperature ' jient Temperature — _ ca —— g 10 ——— Vex=2¥ 2 ee 2 awl [. ad a a A ¢ _ a a | PCT 6) .BS45 £60} 10" ‘ PCO Vee 8 40 pa a es PToOCCCr 6) Gees = a 2" Af tT PT OF ee. rr re a wii 0 2 80 75 100 Ambient temperature Ta (C) Ambient temperature Ta (‘C) Fig. 8 Response Time vs. Test Circuit for Response Time Load Resistance ml Yan, LLU ee ee . so] Pan 20 eat sees eeeeiilececslit Vee _ SREEUiee ee set E
3 Sea “Ret
2 CEE eee Input Re Output Output
BERET HHH “he-=---}- foe gO ee | De \\ if} FEB HEH | wr oa} oa LUMM CEI CTT} 0.01002 0050102 051 2 5 10 20 Load resistance Ry, (kA) Distance between GP2S04 and Card Card Moving Distance (1) 100 =A 100 — A | a SRNR rt Fi Ta=25C PJ B CEE oe aN s LETT TY TTT ese ceeecee is casseteeze 8 IN
2 CPPPN 2 CCCP
3 “LUT T TSA a CLT INET . CTT Tri} LITT TTT ttt COUT 4 012345 6789 10 “5-4-3-2-10123 4 5 Distance between GP2S04 and card d (mm) Card moving distance f (mm) SHA RO 752 i
1se 0 ff 4180798 -co033e7 4 § GP2S04/4P2806/4P2S07 Photointerruptet > EK/ MELEG DIV GP2S09/GP2S10 es SHARP EL: ee Fig. 11 Relative Collector Current vs. Test Condition for Distance & Detecting
10 Card Moving Distance (2) Position fe 5
TTORILI asian Correspond to Fig.10 — J- 3 a EECA ios sie yg ear>—7— OL? LOCCNTTL sees coments — bce ere a CEE HH — ee ; oT Correspond to Pagel (278 moving direction (Distance) | SHARP O1 T CARD Att ttt tri | Black | White -5-4-3-2-10 1234 5 a 0 ; Card moving Gistance fn) ap2so4 ‘ard moving direction (Distance=¢) Fig. 12 Frequency Response Fig. 13 Spectral Sensitivity 100 (Detecting Side) — Tore) , Eee 2. UMN Fat = “Ep < - SHTPS a a eI Vero gS TMC NM SEY po INGE | SESE SS TI CAINEEIY) ESE Frequency f (Hz) 00700800900 10001100 1200 Wavelength 2 (am) —_- SS SHAR OT. 753 . i