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IS471FE
Light Detector, OPIC, 940nm, 4.5-16V, Built In Signal Processing Circuit
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- Manufacturer: SHARP
- Product type: Optical / Slot Photoelectric Sensors
- Product Range: IS471FE
- Output Current: 50mA
- Supply Voltage DC Max: 16V
- Supply Voltage DC Min: 4.5V
| Delivery and price | |
|---|---|
| Units per pack | 100 |
| Price | 1.61 € |
| Current stock | 1000+ |
| Lead time | 7 days |
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OPTO-ELECTRONIC DEVICES DIVISION » ELECTRONIC COMPONENTS GROUP ' SHARP CORPORATION
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SPEC NoMED SRS<br>CC;<br>**----- End of picture text -----**<br>
## SPECIFICATION
## DEVICE SPECIFICATION FOR
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OPIC LIGHT DETECTOR<br>MODEL No.<br>IS471FE<br>**----- End of picture text -----**<br>
## Specified for
|| After confirmationEnclosed please find copies ofthe contents, ofthe Specifications please be sure which to send back consists| of[_|copy] 12 pages[ of][the] including[ Specifications] cover. | with approving signature on each.
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## CUSTOMER'SAPPROVAL
## PRESENTED
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DATE<br>**----- End of picture text -----**<br>
## DATE
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BY<br>**----- End of picture text -----**<br>
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BY hf O H. Ogura, Department General Manager of Engineering Dept.I Opto-Electronic Devices Div. ELECOM Group SHARP CORPORATION
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Productname; _ OPIC LIGHT DETECTOR<br>Model No. : __1S471] FE<br>**----- End of picture text -----**<br>
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W/11<br>) ED-05G041 IS471FE<br>Ce<br>**----- End of picture text -----**<br>
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1. These specification sheets include materials protected under copyright ofSharp Corporation ("Sharp").<br>Please do not reproduce or cause anyone to reproduce them without Sharp's consent.<br>2. When using this product, please observe the absolute maxinium ratings and the instructions for use outlined<br>in these specification sheets, as well as the precautions mentioned below. Sharp assumes no responsibility<br>for any damage resulting from use ofthe product which does not comply with the absolute maximum ratings<br>and the instructions included in these specification sheets, and the precautions mentioned below.<br>(Precautions)<br>(1) This product is designed for use in the following application areas ;<br>-OAcquipment - Audio visual equipment - Home appliances<br>- Telecommunication equipment (Terminal) - Measuring equipment<br>If [the] - Tooling use of machines [the] product [ in] - Computers [ the] above [ application] (eto. ) [1 [ areas][ is][ for] equipment [ listed][ in] paragraphs<br>(2) or (3), please be sure to observe the precautions given in those respective paragraphs. .<br>(2) Appropriate measures, such as fail-safe design and redundant design considering<br>the safety design of the overall system and equipment, should be taken to ensure reliability<br>and safety when this product is used for equipment which demands high reliability and<br>safety in function and precision, such as ;<br>- Transportation control and safety equipment (aircraft, train, automobile etc.)<br>- Traffic signals - Gas leakage sensor breakers _- Rescue and security equipment<br>- Other safety equipment<br>(3) Please donot use this product for equipment which require extremely high reliability<br>and safety m function and precision, such as ;<br>[ ‘Space- Nuclearequipment power control - T e quipleco m munication equipmentent - Medical equipment (for trunk lines)<br>(4) Please contact and consult with a Sharp sales representative ifthere are any questions<br>regarding interpretation of the above three paragraphs.<br>3. Please contact and consult with a Sharp sales representative for any questions about this product.<br>**----- End of picture text -----**<br>
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2/11<br>4 ED-05G041 IS471FE<br>(yy<br>Modbl SQ ny<br>Cy)<br>Os<br>**----- End of picture text -----**<br>
- 1, Application (yy This specification applies to the outline and characteristics ofOPIC light detecting device; Modbl SQ ny
- 2. Outline Refer to the attached drawingNo. : CY12969L02, page 3.
3. Ratings and characteristics Refer to the attached sheet, page 4 to 7.
- 4, Reliability Refer to the attached sheet, page 8.
5. Outgoing inspection Refer to the attached sheet, page 9.
6. Supplement
- (6-1) Equivalent circuit and Operating refer to the attached sheet, page 10. (6-2) Packing refer to the attached sheet, page 11. (6-3) This product is not designed against electromagnetic and ionized-particle irradiation.
- (6-4) This product shall not contain the following materials.
- Also, the following materials shall not be used in the production process for this product. Materials for ODS: CFCs, Halon, Carbon tetrachloride, 1.1.1-Trichloroethane (Methyl chloroform)
- (6-5) This product and packaging material shall not contain lead material, (6-6) Productmass (Piece): Approximately 0.18
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## 7. Notes
- (7-1) By-pass capacitor To avoid the malfunction by the power line noise, please place the capacitor above 0.33yF (f1MHz) between Vee-~GND (©-@terminals).
- (7-2) Cleaning conditions : Solvent cleaning : Solvent temperature 45°C. or less Immersion for 3 min or less Ultrasonic cleaning: The effect to device by ultrasonic cleaning differs by cleaning bath size, ultrasonic power output, cleaning time, PCB size or device mounting condition etc, ’ Please test it in actual using condition and confirm that doesn't occur any defect before starting the ultrasonic cleaning. The cleaning shall be carried out with solvent below,
Solvent: thy} alcohol, Methyl alcohol, Isopropyl alcohol
- (7-3) Soldenng The lead pins should be soldered according to the absolute maximum ratings. While or after soldering, the lead pins shall be free from external force. This device shall not be soldered with preheat or reflow,
- The terminal covering of this device consists oflead free solder.
- In case of lead free soldering, please make sure that there is no problem in practical use since there is a possibility of boundary exfoliation (Lifi-off phenomenon) between the solder and the land.
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- 3/11<br>centor ofdetector EI 25 f F /<br>| € (burr) ;<br>2-C0.5 a5 a o mold resin<br>2 7 & i VR<br>= QCLLSSSLISTSELLL<br>i)2 etfoo é——\ -heS14 a | Gloss areaa a mn7 Al Y oO<br>oe) g fe<br>2 D, |<br>CVA : we<br>TUGGOS ) TT oa!<br>Resin burr MAX 0.6 in<br>i [IL cs |<br>H il | 0.95 |<br>§<br>4-0.45 : 4 it <<br>-— 0.437<br>| arty2 . Wht \ .<br>wy a Lead.<br>4d<br>[yh<br>3<br>if \<br>\<br>@ li} a<br>nina |<br>O®®®<br>5.0 :<br>©a ~ SP 21 ) UnspecifiedDimensions tolerancein parenthesis shall beare shown40.2. for reference.<br>3) The deflection angle (0) of lead terminals are +15°MAX.<br>ley He © 4) ZZ shows burr.<br>—{- 7 — 5) The mold surface other than gloss area is satin finish.<br>[Black][ (Visible][ light][ cut-off] [resi)]<br>25 | 6) Package [:]<br>7) The lead pitch(P) is 1.27. (at lead base)<br>**----- End of picture text -----**<br>
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## Pin name
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(Q)Vec (3) GND |<br>Q) Vo (4) GLout<br>Lead :, Fe Lead pin : Solder dip Outline Dimensions<br>Pack<br>1s_ ackage : Epoxy resin f_||CompositionLead-freeree(Standarusevas)| Drawirawing<br>WA num §n96.5%,Ag3.0%,Cn0.5% J] No. clylilalolelolniolal! |<br>**----- End of picture text -----**<br>
4/1 IS471FE
ED-05G041
3, Ratings and characteristics 3-1 Absolute maximum maximum
Absolute maximum maximum ratings
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## REP
## LWP £
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|Ta=25°C|
|output|
|ine oem|fe fs|
|[Power dissipation|||P||50|| mW|
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+]. Power dissipation vs. ambient temperature is as per fig 5.
- *2, Max 5sec at the position shown below.
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\sy) Solderable<br>Y CCf jj Immersed to the bent angle<br>**----- End of picture text -----**<br>
5/11
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## 3-2 Electro-optical characteristics
## (Veo=5V, Ta=25°C)
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Low level output voltage Vo. ois | 03s | ov | tu=tomé,Eyp=0Eve=500Ix<br>43 Tx<br>£<br>a<br> [emienn pe pp pert |<br>2" Toy 2| Ep=0uWimm’ No.1,2<br>vy: 04 2.66 ?<br>threshold radiation ilummance Fou ; S| »W/nam LED(Ap=940nm)<br>#2 Toy, »| Eo=OuWimm? No.1,2<br>threshold radiation illuminance Bo | | 07 8 | eWinm LED(Qz=940nm)<br>wae en] ows J ws | os) = fo<br>oO fi a“<br>> propagation tune<br>e us No.2<br>oy “L-H" 0 670<br># Permissible disturbance illuminance 2000 | 7500. P ] | Ex=7.5uWhnm’, e=940nm<br>*] The definition of Pulse frequency( tp) and Pulse width (tw) are shown in fig. 1.<br>The wave form offig. | shows the output voltage wave ofGLo terminal of the diagram of fig 2.<br>5V Vee<br>LU | | 7Vo 280.9 sv<br>"OV IS471FE ? GLo 0.33 u F<br>—>|—~<- bu @<br>tp GND<br>@<br>Fig.1 fig.2<br>**----- End of picture text -----**<br>
- #2 "LOH" ("HL") threshhold radiation illuminance It shows E.p when output changes to L~H (HL).
- #3 Eypy: Limit ofEvp that this device works normally.
- Eyp shows the illuminance of signal light syncronized with the low level timing of GLo tenninal output. Eyp shows the iluminance of direct current light. The light source is according to CIE standard.
6/11 ED-05G041 IS471FE
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## Measurement conditions No.1 E.p,Ep
## R N hsF
E, shows the illuminance ofsignal light syncronized with the low level timing ofGLo terminal output. Eep shows the illuminance ofdirect current light. Fig 3 shows the details. The light source is LED (Ap =940nm)
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Eep<br>Ee<br>Eep<br>0 time<br>Output<br>waveform of<br>GL terminal<br>. Fig3<br>**----- End of picture text -----**<br>
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(Note) It shows the GLo terminal's waveform at fig 2 diagram.
## No.2 Response time, Threshhold radiation illimance
Fig 4 shows the measuring circuit ofresponse time, threshhold radiation iJluminance,
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Vec OFF<br>Vec Switch<br>| LED D 2800 teLu ON<br>Switch ‘ W —~< IS47IFE y sv Vou<br>Glo 0.33uF Output<br>4) @)GND ey Vo<br>**----- End of picture text -----**<br>
Fig4
LED: peak emission wavelength Ap=940nm.
7/11 IS471FE
ED-05G041
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(Fig.5) Power dissipation vs. ambient temperature
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250<br>= 200 .<br>g | LN |<br>B® 150<br>RS<br>% 100<br>Oo<br>Ra<br>0<br>-25 0 25 50 69 75 100<br>Ambient temperature Ta (°C)<br>**----- End of picture text -----**<br>
## Wee
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## (Fig.6) Spectral sensitivity (TYP)
## |
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Ta=25°C<br>80 /'<br>2 60<br>~ 40 N<br>me<br>COP<br>0 .<br>400 500 600 700 800 900 1000 1100 1200<br>Wavelength ?.(nm)<br>**----- End of picture text -----**<br>
D-05G041 IS471FE
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## “ERENCE
## 4. Reliability
The reliability of products shall satisfy items listed below.
||||Confidencelevel :90%|Confidencelevel :90%|Confidencelevel :90%|
|---|---|---|---|---|---|
||||LTPD|: 10 or20||
|TestItems|7<br>TestConditions|FailureJudgement<br>Criteria|||Samples(n)<br>Defective(C)|
|Temperaturecycling|leycle<br>-40°C<—>+100°C<br>(20min)<br>(20min)||||.<br>n=22,C=0|
||20cyclestest|||||
|Hightemp. andhigh<br>humiditystorage|ot<br>ano<br>+60°C,90%RH,1000h||||_<br>-<br>n=22,C=0|
|||Lessthan|LX0.8|||
|Lowtemp.storage|.<br>-40°C,1000h||||n=22,C=0|
||Voce5V,Ta=25,1000h||||n=22,C=0|
|Mechanicalshock|2<br>:<br>eaex.Seeen<br>Oe|U:Upperspecification||limit|n=l],C=0|
|Variablefrequency _| 100to2000to100Hz/Sweepforapprox4min |1:Lowerspecificationhimit<br>vibration<br>200m/s*, 48min/X,<br>Y, Z direction||||himit|iL<br>°|
|Electrostatic<br>withstandvoltage|+200V,200pF<br>Onceeachterminal<br>(Voc,GNDreference)||||nell. O=0<br>,|
|.<br>Solderingheat|26045T<br>,<br>5405s<br>Immersedtothebentangle||||47<br>Ce<br>wll,0|
|Solderability|+<br>+<br>4555Leontangle<br>FlixcEC-19S(Tamurakakencorporation)<br>Nopretreatment|Soldershalladhereat less<br>than95%areaofdipped<br>portion.|||n=11,C=0|
N Solderable Immersed to the bent angle
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9/11<br>. REF 041 IS471FE<br>5. Outgoing inspection FNVCE<br>(1) Inspection parameter<br>a. Eleciro-optical characteristics<br>=16 =<br>3<br>i= bowfeveloupul voles pve [- jo fos) vy | “ "5 on:<br>SQA [Faitewey |e | = [pepe<br>a mens fw Pf) fe |<br>7 oH” 2) Ep=0uWimm? No.1,2<br>. 2. 2 ’<br>thresholdradiation illuminance Een P| oe | 66 | hWhom LED(p=940nm)<br>a2 * ay 2} Ep=OuWinm? No.1,2<br>thresholdradiation illuminance Ew = 07 28 pWinns LED(z=940nm)<br>by “HoL*<br>. . 400 0<br>5 us No.2 ;<br>= “L-H* 400<br>+3 Permissible disturbance illuminance 2000 7500 atEx=7.5uW/nm?, de=940nm<br>b. Appearance<br>Cracks of product (resin area) The cracks above 1mm size, and cracks over the lead frame are defects.<br>* The appearance should not affect the electrical, optical characteristics.<br>(2) Sampling method and inspection criteria<br>ISO 2859 one time sampling<br>Major defects (Electro-optical characteristics defects, Assembly defects) Normal inspection level I!<br>Minor defects (Appearance defects) Nonnal inspection level II<br>**----- End of picture text -----**<br>
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j Lae 10/11<br>/ iv Sy ty -05G041 IS471FE<br>**----- End of picture text -----**<br>
6-] Equivalent circuit and Operating
(6-1-1) Equivalent circuit
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: @<br>detector cirenit ‘<br>' circuit '<br>i onn<br>i GLo<br>' Oscillator H<br>'<br>:<br>en oe ee<br>**----- End of picture text -----**<br>
## (6-1-2) Operating (True value)
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Light OFF High level<br>**----- End of picture text -----**<br>
6-26-2-1PackagingInnerpacking @ Inner packing drawing
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P 11/11<br>E ~ ED-05G041 IS8471FE<br>Product (500pes<br>qrs. EP fF<br>**----- End of picture text -----**<br>
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Antistatic electricity bag<br>**----- End of picture text -----**<br>
@) Inner packing material : Antistatic electricity bag (Polyethylene) @ Quantity : 500pes./bag
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6-2-2 Outer packing<br>@ Outer packing drawing Malt plane (1 sheets)<br>“ Antistatic electricity bag with products (4bags)<br>—_e—<br>S——— |<br>SSS Packing case<br>St<br>\_\ Cellophane tape<br>Model No.<br>Quantity<br>, Inspection date<br>**----- End of picture text -----**<br>
@) Outer material : Packing case (Corrugated cardboard), Malt plane (Urethane), Cellophane tape @ Quantity : 2000pes./box @ Indication : Model No., quantity and inspection date 6) Regular packaged mass : Approximately 430g
Updated at February 9, 2023
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