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Section5

PerformanceEvaluationSection5

PerformanceEvaluatTypesofPerformanceEvaluationsDisplayfeaturesUsedtovisualizeandcharacterizetheopticalsystemUsedtocommunicateinformationtoothersDiagnosticanalysesUsedprimarilybythedesignerAberrationanalyses(first-andthird-order,rayfans,etc.)SingleraytracingGeometricalandDiffraction-basedImageevaluationsSimulatefinaluse(ofinteresttodesignerandcustomer)ComparetospecificationsGeometricalorwavebasedMTF,PSF,encircledenergy,RMSwavefronterror,etc.SystemandOtherevaluationsMaybeofinteresttodesigner,otherengineers,andcustomerCost,weight,transmission,ghostimages,Narcissus,etc.IlluminationanalysisTolerancingTypesofPerformanceEvaluatioDisplayMenuOptionsVIE ViewLens,comprehensivefeaturetoallowthe plottingofopticalsystemsincross-section,as3D perspectiveviews,etc.,withmanyoptionsSLD SolidModeling,supportsasolidmodelraster imagedisplayoftheopticalsystem.(Soontobe replacedbyanenhanced3DVisualizationfeaturein CODEV9.40)ELE ElementDrawings,providesabilitytocreatelens elementdrawingsintheCODEVstandardformat, ISO10110format(ISOPLOTmacro),orChinese Nationalformat(CHINAPLOTmacro)LIS ListLensData,providesameanstocreateatext listingofall,orasubset,oflensparameter informationDisplayMenuOptionsVIE ViewLSampleofDisplayOutputSampleofDisplayOutputUsefulSuppliedMacroforVIETheVIEWLENS(VIE)optionisveryflexible,buttheflexibilitycanmaketheinputdialogcomplexIntheCV_MACRO:directory,ORAprovidesthesamplemacroQUICKVIEW.SEQ,thatallowssimplifiedinputofthemostcommonlyusedVIEchoices:UsefulSuppliedMacroforVIETDiagnosticAnalysisOptions:

Analysis>DiagnosticsFIO ParaxialRayTraceofmarginalandchiefray.Usefulfor understanding1storderpropertiesofthesystemRSI/SIN RealRayTraceofarbitraryrays.Oneofthemostuseful diagnosticfeaturesinanyopticaldesign/analysissoftwareBEA

GaussianBeamTraceofspotsizeandorientation,

wavefrontcurvatureandorientation,waistsizeand

location. Usefulforphotonicssystems,orlasersourcesTHO ThirdOrderAberrations,computationofSeidel aberrations;typicallythirdorderaberrationsdominantthe designFORDER FifthOrderAberrations,computationof3rd,5th,and7th ordertransverseorwavefrontaberrations,viamacroANA First/ThirdOrderAnalysis,withchromaticdifferences,

higher-order,fullraytraceforallreferenceraysRIM

RayAberrationCurves(transverseorOPD).Useful graphicaldiagnosticofaberrationcontentFIE

FieldCurves:astigmatismanddistortion,scanlinearity,

longitudinalsphericalaberration,chromaticdifferencesDiagnosticAnalysisOptions:

ADiagnosticAnalysisOptions:

Analysis>Diagnostics(2)DIST

DistortionGrid:Macrotoplotreferencerectilineargrid acrossthefieldofviewandcorrespondingactualimage grid,displayingsystemdistortionLATCOLOR

Lateralcolorplotmacrotocomputethelateralcolorof thesystembasedonrealraytracingPMA

PupilMapdisplayofOPDsorintensityacrossthepupil,fit ofpupilOPDmapstoZernikepolynomials.Idealdiagnostic forFFT-baseddiffractionoptionsFMA

FieldMapdisplayofdistortion,spotsize,wavefront error, Zernikecoefficients,orBraggefficiencyacrosstheFOV. IdealdiagnosticfortiltedanddecenteredsystemsFOO

Footprintofopticalraybundlesonsurfaces.Ideal diagnosticforaperturesizingandclearancedeterminationsCAT

CatseyePlotofapertures/obstructionsasprojectedonto pupilFOV

BiocularFOVPlotfromdifferenteyepositions.Specialty analysisforvisualinstrumentsorHUDsutilizingbotheyesDiagnosticAnalysisOptions:

AFifthOrderAberrationsSelectAnalysis>Diagnostics>FifthOrderAberrationsList3rd,5th,and7thorderaberrationsintermsoftransverseaberrationsorwavefrontaberrationsFifthOrderAberrationsSelectRayAberrationPlots:RIMOptionSelectAnalysis>Diagnostics>RayAberrationCurvesOrusethetoolbarbutton:PlotoftransverseorOPDrayaberrationvs.pupilpositionPlotshowsdeviationsfromthechiefrayattheimageplaneinXandYRayAberrationPlots:RIMOptiTypicalRimrayCurves

DefocusThird-ordersphericalComaAstigmatismTypicalRimrayCurvesDefocusTFieldAberrations:FIEOptionSelectAnalysis>Diagnostics>FieldCurvesOrusethetoolbarbutton:Tableandplotofastigmatismanddistortionvs.fieldForafocalsystems,canlisttheseindiopters

RELATIVEANGLEX-FOCUSY-FOCUSX-FOCUSY-FOCUSDISTORTIONFIELDHEIGHT(DEG)ATTHEIMAGESURFACE(DISPLACEDBY0.028933)(PERCENT)

0.000.00-0.028933-0.0289330.0000000.0000000.000000.102.08-0.037182-0.028489-0.0082490.0004440.009140.204.16-0.061446-0.027324-0.0325130.0016100.036910.306.23-0.100283-0.026215-0.0713490.0027190.084320.408.28-0.151292-0.026981-0.1223590.0019530.153160.5010.31-0.211126-0.033353-0.182193-0.0044200.246040.6012.32-0.275480-0.052407-0.246546-0.0234740.366570.7014.29-0.339068-0.096802-0.310135-0.0678690.519580.8016.23-0.395560-0.188305-0.366627-0.1593720.711520.9018.14-0.437445-0.363345-0.408512-0.3344110.950981.0020.00-0.455803-0.681918-0.426870-0.6529851.24963Optionallycanalsooutputlongitudinalsphericalaberrationorscanlinearity(deviationsfromf-thetadistortion)FieldAberrations:FIEOptionSFieldAberrationPlot

FieldAberrationPlotPupilMap:PMAOptionSelectAnalysis>Diagnostics>PupilMapMainoutputisalistandoptionalplotoftheOPDacrossthepupilSeparateoutputsforeachwavelength,field,andzoompositionAlsoliststheRMSofthebasicdataandtheRMSafterremovingtiltandafterremovingtiltandfocuserrorOPDdatacanbeconvertedtoZernikepolynomialsandcanbesavedasinterferogramsPupilintensityoutputcanreplaceOPDMeasureofpupilaberrationOutputcanalsobephaseacross

thepupilUsefulinpolarizationstudiesOutputcanalsoshowsurfaceswhere

thepupilisclippedPupilMap:PMAOptionSelectAnPupilMapOPDListing

FIELD(X,Y)=(0.00,0.69)MAX,(0.00,14.00)DEG587.6NM117415x14Waveaberrationsinhundredthsofwavelength587.6NMRMS=0.883wavesP-V=4.113wavesSUMOFVALUES=8929.7891011121314151617181920212223242526

10-75-74-74-74-75113426145151426341211694684530253045689411613179151114784931253149781141511791422620316011473422316234273114160203226152412051551066433147143364106155205241162371971469756268282656971461972371721918113488502260622508813418121918188160119794621616214679119160188191411289967391861618396799128141206878654525100-3010254565786821-295-4-13-18-21-18-13-459-222-88-69-63-61-62-62-62-61-63-69-8823-170-155-147-145-147-155-170

RMSWaveaberrationShiftofnominalimage(waves)point(mm)(FIT)XYFocusNone0.883(P-V=4.113)Tilt0.8220.000000-0.003866Tilt/Focus0.8070.000000-0.017298-0.057160PupilMapOPDListingFIELD(XPupilMapOPDPlottedOutput

PupilMapOPDPlottedOutputPupilMapOPDPlottedasInterferogram

PupilMapOPDPlottedasInterFieldMap:FMAOptionSelectAnalysis>Diagnostics>FieldMapFMAisusedtocreateafull-fielddisplayofvariousperformancemeasuresGeometricaldistortion

(chiefrayorcalibrated)PSFbaseddistortion

(centroidorcalibrated)RMSspotsizeRMSwavefronterrorAstigmatismZernikepolynomial

coefficientsofwavefrontIdealdiagnosticforsystemswithtilted&decenteredcomponentsFieldMap:FMAOptionSelectAnFieldMapPlots

FieldMapPlotsFootprintPlot:FOOOptionChoose

Analysis>Diagnostics>FootprintPlotFOOcalculatesthesurfacefootprintsofeachfieldandzoompositionforeachspecifiedsurfaceForspeed,thecomputationisatthereferencewavelengthonlyThesefootprintsareplottedintheirproperlocationonthesurface,allowingyoutoseeataglancetheneededsizeandshapeofthesurfaceThefootprintscanbeplottedasoutlinesofeachfield,orasgridsofrays(essentiallyspotdiagrams)Theoutlineofthecombinedeffectofalldefinedaperture(s)onthesurfacecanbeplottedwithDAP

(SpecialControlstab,DrawApertureLimits)FOOalsooutputstheprojectedareaforeachfieldThiscanbeveryusefulforilluminationcalculationsFootprintPlot:FOOOptionChooFootprintExample

computefootprintonfoldmirrorFootprintExamplecomputefootWorkshop5-1:DistortionAnalysis1. RestoretheFisheyelens(NewLensWizard,CODEVSamples,fisheye.len).Changethemaximumfieldangleto60°intheNLWandsetthevignettingintheLDM(Lens>Calculate>SetVignettingData).Drawthelens. InCODEV,theimagesurfaceisdrawntocovertheGaussian(paraxial)imageheight.Notethelastfieldiswellwithintheedgeoftheimage;thisisindicativeofalargeamountofnegativedistortion.2. ComputeandplotthedistortionwiththeFIEoption(Analysis>Diagnostics>FieldCurves).3. GetafullfieldmapofthedistortionwiththeFMAoption(Analysis>Diagnostics>FieldMap).SelectDistortion

fromthedropdownlist.TryitagainwithCalibratedDistortion.Whatisthedifference?4. Getaplotofthedistortedimage(Analysis>Diagnostics>DistortionGrid).Use60fortheXFOVsemi-fieldvalue.Thisshowstheactualdistortedimageontheimageplane. NotethatthisplotisnotactuallypartofCODEV,butratherrunsamacro(cv_macro:dist.seq).Workshop5-1:DistortionAnalyGeometricalImageEvaluationOptions:Analysis>GeometricalSPO

SpotDiagramvs.fieldandthrough-focusQUA

QuadrantAnalysisshowingenergyonquadrant

detectorvs.scan.Usefulfortrackingsystems, photometers.RAD

RadialEnergyAnalysislistingpercentenergyin spotdiameters.GDE

GeometricalDetectorAnalysisofenergyvs. position.Usefulfortrackingsystems,photometers.GLS

GeometricalLineSpreadFunctionandedgetrace vs.scanMTF

Modulationtransferfunctionvs.frequencyand

through-focusBIO

BiocularAnalysis:divergence,convergence,or

dipvergencefordifferenteyepositions(Specialty analysisforvisualinstrumentsorHUDsutilizingboth eyes)GeometricalImageEvaluationOSpotDiagram:SPOOptionSelectAnalysis>Geometrical>SpotDiagramOruseQuickSpottoolbarTracesarectangulargridacrosstheentrancepupilandplotstherays'imageintersectionsThedefaultistotraceabout316raystotaloverallwavelengthsThiscanbechangedwithNRD

WTWcontrolsthenumberofraysplottedforeachwavelengthOutputisplotplustabularsummaryofcentroidsandRMSspotsizesRecommendedtosetthenumberofraysacrossthediameterto>50formoreaccurateRMSspotsizesSpotDiagram:SPOOptionSelectUsefulSuppliedMacrosforSPOChoose

Tools>Macro…SampleMacros>GeometricalAnalysisSPOT2D.SEQwillcreatea2-Darrayofspotdiagramsrepresentingspotsacrossthefieldofview

SPOTDET.SEQwillsuperimposeadetectororAirydiskpatternonthespotdiagramLUMSPOT.SEQusesCODEV’silluminationanalysisfeaturetocreateafalsecolorspotdiagramUsefulSuppliedMacrosforSPORadialEnergyAnalysis:RADOptionSelectAnalysis>Geometrical>RadialEnergyAnalysisFindsdiameterofcirclewhichcontainsagivenpercentoftheenergyAdjustscentersofcirclestominimizediameter

SPOTDIAMETERSDoubleGauss

FOCUS0.00000FIELD(X,Y)PCT(0.00,0.00)MAX(0.0,0.0)DEG100.00750200.02110300.03632400.05241500.06129600.07322700.08421800.08940900.100961000.13372RadialEnergyAnalysis:RADOpRADPlottedOutputRADPlottedOutputDiffraction-basedImageEvaluationOptions:Analysis>DiffractionMTF

Modulationtransferfunctionvs.frequencyand

through-focusPSF

PointSpreadFunction(imageofapointobject)LSF

LineSpreadFunctionandedgetrace

(1DintegralsofPSF).Usefulfordeviceswithslits.WAV

WavefrontAnalysisofRMSwavefronterrorand bestfocusdetermination.Helpfultodetermineif systemisdiffraction-limited.PAR

PartialCoherence,analyzes1Dor2Daerialimage structureunderilluminationrangingfromincoherent tofullycoherent(primarilyformicro-lithographic) systemsBPR GeneraldiffractionBeamPropagation,oftenfor freespacephotonicssystems.CEF

FiberCouplingEfficiencyintosingle-modefibersFMA*

BraggDiffractionEfficiency,

computesthe diffractionefficiencyforavolumehologram(*FMA optionwithoutFFDsub-command)Diffraction-basedImageEvaluaModulationTransferFunction:

MTFOptionSelectAnalysis>Diffraction>MTFComputespolychromaticfrequencyresponsetosinewave(oroptionallysquarewave)targetsorientedhorizontallyandvertically(andoptionallyat45°)foreachfocusposition(ateachfieldandzoomposition)Computedbyautocorrelationofpupilfunction(OPD,amplitudeatexitpupil)ModulationTransferFunction:MTFTabularOutput

WAVELENGTHWEIGHTNO.OFRAYSFIELD(X,Y)=(0.00,1.00)MAX,(0.00,20.00)DEG650.0NM1852RELATIVEILLUMINATION=60.6PERCENT550.0NM21194ILLUMINATION(UNITBRIGHTNESS)=0.016008480.0NM11556DISTORTION=-0.08PERCENT

DIFFRACTIONLIMITFOCUSPOSITIONFormulaActual-0.10000-0.050000.000000.050000.10000L/MMf/5.471RADTANRADTANRADTANRADTANRADTANRADTAN

0.999.999.999.999.999.999.999.999.999.999.999.999.99920.922.920.878.591.827.738.856.847.853.899.819.885.75740.845.841.757.191.648.442.706.681.685.798.591.726.44760.768.762.636.017.507.239.569.545.526.707.398.565.23580.693.684.519.024.398.120.450.435.394.620.264.430.127100.618.607.405.018.307.060.345.347.288.539.177.328.075MTFdiffractionlimitincludingapertures,vignetting,andpupilaberrationcomputedtangentialandsagittalMTFateachfrequencyandfocuspositionSpatialfrequencyMTFTabularOutputMTFvs.SpatialFrequency

MTFvs.SpatialFrequencyThrough-focusMTFAnalysisYoucanevaluateMTF(andotheranalyses,e.g.,SpotdiagramandPSF)onathrough-focusbasis(i.e.,onplanesdisplacedby+zand/or-zshiftsfromthenominalimageplaneposition)Focusdefinitionispartoflensdata,sobeforerunningMTF,usetheLDMtospecifynumberoffocuspositions,firstfocusposition,andincrementinfocusChooseLens>SystemData

OnThroughFocuspage,definenumber,start,andincrementoffocus

Through-focusMTFAnalysisYouThrough-focusMTFCheckthisboxforthrough-focusplot

Canonlyplotfrequenciesalreadychosenforcalculation1.00.90.80.70.60.50.40.30.20.1MODULATION-0.15000-0.10000-0.05000-0.000000.05000DEFOCUSINGPOSITION()MMIntroductorySeminarf/5.6TessarDIFFRACTIONMTFDIFFRACTIONLIMITAXISTR0.7FIELD()14.00OTR1.0FIELD()20.00OWAVELENGTHWEIGHT650.0NM1550.0NM2480.0NM1FREQUENCY50C/MMThrough-focusMTFCheckthisboUsefulSuppliedMacrosforMTFChoose

Tools>Macro…SampleMacros>DiffractionAnalysisFFT2DMTF.SEQwillcreatea3DMTFplotforeachfieldMTFVSFLD.SEQwillcreateaplotofMTFversusfieldatupto3userdefinedspatialfrequenciesUsefulSuppliedMacrosforMTFWorkshop5-2:MTFAnalysis

ofaCookeTriplet1. UsetheNewLensWizardtoopentheCODEVsamplelenscooke1.2. RunanMTFanalysis(Analysis>Diffraction>MTF).Useamaximumfrequencyof100cycles/mmandafrequencyincrementof10cycles/mm.PlottheMTFvs.frequency.3. Setup9focalpositionsspanningtherangeof-0.4mm

to+0.4mm.4.RuntheMTFagain,plottingtheMTFvs.focusforafrequencyof20cycles/mm.NotehowthesagittalandtangentialMTFshavedifferentlocationsforthepeakvalues.Thisisanindicationofastigmatism.Workshop5-2:MTFAnalysis

ofPointSpreadFunction:PSFOptionSelectAnalysis>Diffraction>PointSpreadFunctionCalculatesdiffraction-basedimageofapointobjectUsesFFT(FastFourierTransform)VarioustypesofoutputImageofapointobjectEncircledenergyDetectorconvolutionImageoftwocloseobjectsOutputcanbelisted,plotted,output

asinterferograms,orsavedintothe

WorksheetBufferforfurtheranalysisPolychromaticoutputisperfield,

focusposition,andzoompositionPointSpreadFunction:PSFOptPSFPrintedOutput

SUMOFVALUES=567.StrehlRatio=0.99922324252627282930313233343536373839

291213014545413143134321521492151332414910049142341521492151354313436145454137121

XYPSFcentroidcoordinatesrelativetochiefray0.0000000.000000mm.

Momentaboutthecentroid:Second0.2001101E-030.2001101E-03Third-0.1118492E-12-0.2691536E-12Fourth0.1059935E-050.1059935E-05<XY>:0.1161191E-12PSFPrintedOutputSUMOFVALUPSFPlottedOutput

PSFPlottedOutputUsefulSuppliedMacroforPSFChoose

Tools>Macro…SampleMacros>DiffractionAnalysisPSFPLOT.SEQwillcreateacross-sectionalsliceofthePSFateachfield,withauserselectedgridoffset,onanormalizedorlogscale

UsefulSuppliedMacroforPSFCLineSpreadFunction:LSFOptionSelectAnalysis>Diffraction>LineSpreadFunctionOutputislinespreadandedgetraceandplotofthelinespreadforeachfieldandzoompositionLineSpreadFunction:LSFOptiWavefrontAnalysis:WAVOptionSelectAnalysis>Diffraction>WavefrontAnalysisCanalsousetheQuickBestFocustoolbarbutton:ComputestheRMSwavefronterror(withtiltremoved)foreachfieldatindividualbestfocusandatbestcompositefocus,oroptionally,atthecurrentfocusFIELD

BESTINDIVIDUALFOCUS

BESTCOMPOSITEFOCUS

FRACTDEGSHIFTFOCUSRMSSTREHLSHIFTFOCUSRMSSTREHL(MM.)(MM.)(WAVES)(MM.)(MM.)(WAVES)

X0.000.000.0000000.0121810.00031.0000.000000-0.0056620.00670.998Y0.000.000.0000000.000000

X0.000.000.000000-0.0221530.01660.9890.000000-0.0056620.01750.988Y0.670.40-0.0004990.001155

X0.000.000.000000-0.0129110.01980.9850.000000-0.0056620.02000.984Y1.000.600.0007710.001881

COMPOSITERMSFORPOSITION1:0.01553

UnitsofRMSarewavesat632.8nm.

WavefrontAnalysis:WAVOptionBeamPropagation:BPROptionChooseAnalysis>Diffraction>BeamPropagationBeampropagationisusefulforanalyzingsystemsforwhichgeometricalopticsisunabletoproperlyaccountforthepropagationoflightthroughthesystemEspeciallysignificantwhendiffractioneffectsoccurduetoslowbeams,apertureclipping,intermediateimagestructure,etc.Forexample,lasersystemsandinterferometersUsesseveralFFT-basedalgorithmstopropagatethefieldTheuserselectsthesurfacerangesinwhichtousebeampropagation,andgeometricalraytracingisusedbetweentheseregionsCombinesaccuracyofbeampropagationwhereneededwiththespeedofraytracing,whenbeampropagationisnotneededBeamPropagation:BPROptionChBeamPropagationExample

RonchiRulingBeamPropagationExampleRonchFabricationSupportOptions:

Analysis>FabricationSupportFAB Fabricationdatatablesincludessag tablesandtheabilitytodisplay interferogramfiledataCOS CostAnalysisbasedonmaterialand fabricationcostsWEI

WeightAnalysisincludesacenterof gravitycalculationALI

AlignmentOptimization,interfaceswith measuredinterferometricdatatoaidin systemalignmentFabricationSupportOptions:

SPE SpectralAnalysisofmultiplecurvesand determinationofrepresentativewavelengths andweightsTRA TransmissionAnalysisincludingpolarization effectsofsingleormultilayercoatings.GHO ParaxialGhostImageAnalysisofall2- surfaceghostimages.NAR NarcissusAnalysisofscanningthermal infraredsystems.SystemAnalysisOptions:

Analysis>SystemSPE SpectralAnalysisofmultiTransmissionAnalysis:TRAOptionSelectAnalysis>System>TransmissionAnalysisComputespupilaveragedtransmissionofeachfieldandzoompositionComputationincludespolarizationeffectsofanysingleormultilayercoatingsonsurfacesandbulkabsorptionofrefractivematerialsIfnocoatingsarespecified,TRAassumesasinglel/4coatingofMgF2

onallair-glasssurfacesandadefaultcementonallglass-glasssurfacesMirrorswithoutcoatingsareassumedtobeperfectreflectorsTRAalsooutputstheprojectedsolidangleinimagespace(andobjectspaceforfiniteconjugates)ThisisaveryaccuratecalculationoftherelativeilluminationatthatimagepointOutputislistingonly(nographics)TransmissionAnalysis:TRAOptTransmissionAnalysisOutput

TRANSMISSIONCHARACTERISTICS

FIELDSURFSOURCE656.3NM587.6NM486.1NMTOTAL

FIELD(X,Y)=(0.00,0.00)DEG

SurfaceTransmittance1REF0.99160.99330.98880.9913ABS0.99600.99710.99560.99622REF0.99730.99720.99700.9972ABS0.99930.99930.99830.99893REF0.99500.99730.99060.9943

PRODUCTREF0.98400.98790.97660.9828ABS0.99530.99640.99390.9952

AveTransmittance:0.97940.98430.97060.9781

ILLUMINATION:0.085880.086320.085110.08577RELATIVEILLUM:100.0100.0100.0100.0

PROJECTEDSOLIDANGLE(IMAGESPACE):0.087690.087690.087680.08769

USEDAREAOFENTRANCEPUPIL:.871E+03.871E+03.871E+03.871E+03TransmissionAnalysisOutputGhostImageAnalysis:GHOOptionSelectAnalysis>System>GhostImageAnalysisOutputisalistofallthetwo-surfacereflectionghostimagesOutputincludessizeofghostimage,focallengthofghostimage,shiftinbackfocalpositionfortheghostimage,pupilratio,andmagnificationCalculationisbasedonparaxialraytracealthoughrealrayghostimagescanbeanalyzedwithnon-sequentialmodelsGhostImageAnalysis:GHOOptiUsefulSuppliedMacroforGHOChoose

Tools>Macro…SampleMacros>GeometricalAnalysesGHOST_VIEW.SEQ

willruntheGHOoption,displaynon-sequentialmodelswithrealraysforeachghostpathandoptionallysaveeachmodelUsefulSuppliedMacroforGHOCTOR

MTF,RMSWavefrontError,Fiber CouplingEfficiency,andPolarization DependentLoss.Alltheseoptionsuse CODEV’sveryfastwavefrontdifferential tolerancingalgorithmTOD

Distortion,toleranceanalysisonchiefray distortionperformanceTOLFDIF

USER–FINITEDIFFERENCES,macro thatperformsfinitedifferencestolerancing onanyperformancemetricthatCODEVcan computeTOLMONTE

USER–MONTECARLO,macrothat performs MonteCarlotolerancingonany performancemetricthatCODEVcan computeTolerancingAnalysisOptions:

Analysis>TolerancingSeeSection13formoredetailTOR MTF,RMSWavefrontError,OtherAnalysisOptionsLUM

Analysis>

Illumination,illuminanceatareceiver basedononeormorepointorextendedsourcesENV Lens>Environm

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