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供應(yīng)寬帶紅外光源HSL-EMIRS200

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所在地: 江蘇 南京市
有效期至: 長(zhǎng)期有效
更新日期: 2010-10-02 02:58
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【供應(yīng)寬帶紅外光源HSL-EMIRS200】詳細(xì)說明
脈沖調(diào)制紅外光源(反射型)電壓5.7V,電流80-90mA,波長(zhǎng)2-16um,運(yùn)行溫度-20度到80度,壽命大于40000小時(shí),可用于各種氣體檢測(cè)FeaturesThermalblackbodysourceBroadbandIRemissionElectronicallypulsed,nomovingpartsFastheatingandcoolingratesWidemodulationfrequencybandLowpowerconsumptionLongtermstabilityCompactpackagingTO39,3pinsApplicationsInfraredspectroscopyNondispersiveinfrareddetectionPhotacousticgasdetection ProductSummary principleofoperationTheEMIRS200isaversatilethermalinfraredlightemitter.Theemissioncanbedirectlymodulatedbyvaryingtheelectricalinputsignal.Thisdeviceisbestsuitedtoreplaceexisting,mechanicallychoppedlampsolutions,thuseliminatingmovingparts.ConventionallampswithTungstenfilamentsworkundervacuumandarethereforeencapsulatedinglass.Thisprotectionisnolongertransparentforwavelengthsexceeding5 mandlimitstheirapplicationrange.TheEMIRS200exhibitsabroadbandIRemissionfromNIRto20 m.TheEMIRS200isbasedonasiliconchipusingadvancedmicrostructurefabricationtechnologies.Itconsistsofathinfilmresistorsupportedonathermallyandelectricallyinsulatingmembrane.TheheatingreliesontheJouleeffectinthemicrofilament.Thelowthermalmassofthesupportingmembranestructurepermitstoheatandcoolthemicrofilamentwithveryshorttimeconstantsof11msand17msrespectively.Thisallowsafastdirectmodulationoftheemittedinfraredlight.AuniquepatentedtechnologyallowsmanufacturingofhighlyreliablemodulatedIRsourceswithtrueblackbodycharacteristicsandveryhighemissivity.Emissivityhigherthan0.9isachievedforwavelengthsupto15 m. Thesourcecanbee.g.drivenwithasquarewaveinconstantvoltageorinconstantcurrentmode.Thetimeevolutionofthevariousparametersduringasquarewavemodulationwithconstantvoltageisdepictedinfigure3.Duetothelowerresistanceatthebeginningoftheheatingcycle,thecurrentandtheinputpowerexhibitanovershoot.Thereforetheconstantvoltagemodesupportsslightlyfasterheatingratescomparedtotheconstantcurrentmode.ThefrequencyresponseofthetotalIRemissioninfigure4hasbeenmeasuredwithadrivingsquarewavevoltageofconstantamplitude.ThemodulationdepthisMicrosystemsdefinedastheamplitudeofthesinecomponentatthefundamentalfrequencyofthedrivingsquarewave.Amodulationdepthof50%isachievedat24Hz.Themodulationdepthcanbefurtherenhancedsignificantlyinaconstanttemperaturemode,i.e.thedrivevoltageisincreasedforhigherfrequenciestomaintainthesamepeaktemperatureattheendoftheheatingcycle.Thismodeworksbestforasymmetricdutycycleswithshorterheatingperiods. OperatingconditionsThesourcecanbeoperatedincontinuous(cw)orinpulsedmode.Itsfastheatingandcoolingtimeconstantsof11msand17msrespectivelymakeitidealfordetectionschemesthatrelyonamodulatedlightsource,suchasphotoacousticdetectionandphasesensitivetechniquesforthesuppressionofDCcomponentsandthereductionof1/fnoise.TheheatingelementexhibitsahighTCRvalue.Thismeansthatacurrentflowingthroughtheresistorinducesaself-heatingoftheelementandthereforeanincreaseintheresistorvalue.Thedatainfigure2.showthetypicalriseinresistancewithincreasingelectricalpower. LifetimeLifetimetestsarepermanentlyongoing.Theseareperformedforsquaremodulationwith30Hzfrequencyand50:50dutycycleatelectricalpowerlevelsof350mW,400mWand450mW.Overthemeasured40 000h,nodegradationhasbeenobserved.Themeasuredintensityvariationwaswithintheaccuracyoftheopticaldetector( 5%).Thesourceshavebeenoperatedatambientatmosphere,whichindicatesthatahermeticsealingoftheTOpackageisnotrequired.Theuseofthesourceatmaximumratingsmayresultinashorterlifethanoperationatlowertemperatures. TheEMIRS200exhibitstrueblack-bodycharacteristics.Theemissionspectrainfigure5havebeenmeasuredwithaFouriertransformIRspectrometerfordifferentelectricalpowerlevels.ThemeasuredcurveshavebeenfittedwithaPlanckdistributionfunction.Thespectrashowexcellentagreementwiththetheoreticalblackbodyemission.Theextractedsourcetemperaturevariesfrom350 Cto550 C,thepeakwavelengthsaresituatedatabout3.5 mto4.5 m.TheEMIRS200exhibitstrueblack-bodycharacteristics.Theemissionspectrainfigure5havebeenmeasuredwithaFouriertransformIRspectrometerfordifferentelectricalpowerlevels.ThemeasuredcurveshavebeenfittedwithaPlanckdistributionfunction.Thespectrashowexcellentagreementwiththetheoreticalblackbodyemission.Theextractedsourcetemperaturevariesfrom350 Cto550 C,thepeakwavelengthsaresituatedatabout3.5 mto4.5 m.
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