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(RemoveLowerLeaksTest2(RemoveUpperLeaksTestKReplugAllGaugesd6ReportChooseOrEnterDOCXFile(ReportChooseTemplateReportCompletedA@ReportCompletedExcelInstructionsT6ReportCompletedInstructions4ReportExportChooseTemplate ReportFileExistsr8ReportFileExistsInstructions$ReportNotGeneratedCReportNotSaved_"ReportSavedToFileq4ReportUsingDefaultTemplateReporting&ReportsNotAvailable(RequiredExtDischarge:RequiredExtendedDischargeRate RequiredHoldTime1 ResetF.ResetToProtocolDefaultsMFRestartApplicationForLanguageChangeiFRestartApplicationForLicenseInstallRestartToUpdate ResultResultNotPass#ResultPass2Results:ResultsSummaryC&ResumeAutomaticTestT:ResumeAutomaticTestDirectionse ResumingAutotest6RetentionBasedOnCalculatedF2RetentionBasedOnWholeRoom0RetentionFailBCLATooHigh.RetentionFailBCLATooLow:RetentionFailHoldTimeShortISO7SelectBuildingTypeToSetPressureSelectClass)NSelectDeviceAndRangeOnGaugeInstructionsF6SelectDuctConstructionClassSelectExposureSelectFanSelectFolder6SelectHowVentingDatasetUsedSelectMethod.SelectOption?4SelectPressureReliefChoiceSSemiAutoDataCollectionCancelled[$SemiAutoDirections4SemiAutoOscillationWarning.SemiAutoSetZeroPressureI.SemiAutoUnableToCollect*SemiAutoWaitForTarget,SemiAutoWaitForTarget2v2SemiAutomaticInstructions"SemiAutomaticTest(SemiAutomaticTestingSendSendEmailSerialNumber$SerialNumberAbbrev0SetDirectionDepressurize,SetDirectionPressurize*SetFanSpeedOrTargetToSetNumber;FSetToDepressurizeInstructionsInsideDHSetToDepressurizeInstructionsOutsideBSetToPressurizeInstructionsInsideDSetToPressurizeInstructionsOutsideYSets SettingsShow,ShowAveragedPointsOnly .ShowCalculationWarnings;ShowDetailsW ShowGaugeDisplayeShowGraphsy"ShowGraphsTooltipSignWasNegativeSignWasPositiveSkippingReading Slope SlopeNdSlopeNp=8SomeRangesNotSelectedOnGaugeSRSpecificEffectiveLeakageAreaEnvelopeAtNPaLSpecificEffectiveLeakageAreaFloorAtNPa*SpecificLeakageAt50Pa8@SpecificLeakageRateEnvelopeAtNPal:SpecificLeakageRateFloorAtNPaSqInAt10PaSqInAt4Pa&SqInPer100SqFtAt4PaStandard0StopTestKRStringTargetReachedStartingDataCollectionV4StromaLodgementWindowTitle6SucessGettingCertificatePDFSumOfFlows Supply&SyncRangeInMainFormTCPGaugePairing0TCPGaugePairingAndSearchC4TCPGaugePairingExplanationdTCPNotPairedf.TCPNotPairedExplanationhTCPPairingj*TCPPairingExplanationlTake"TakeSemiAutoPoint Target*TargetArrivalCriteria"TargetOfNAttainedTargetPressure"TargetPressureNPa/>TargetPressureNotReachedTimeOutHFTargetReachedStartingDataCollection~TechnicianTemperature4TemperatureDuringDischarge*TemperatureDuringTest TemperatureFinal$TemperatureIndoors .TemperatureIndoorsFinal"$TemperatureInitial>&TemperatureOutdoorsT0TemperatureOutdoorsFinaljTemplateMissing6TemplateMissingInstructions TemplateUpgraded18TemplateUpgradedInstructionsOLTemplateUpgradedInstructionsUpgradable*TestAndTechnicianInfo|(TestAppearsCompletedTestCompliantTestDate"TestDeleteConfirm,TestDirectionAutomaticQ(TestDirectionUnknown$TestDirectionWrong TestFileSavePathTestHistory?TestIsRunningM TestNotCompliant`:TestParametersNotInCompliancetTestPoint$TestPointDurationsTestPoints,TestPromptInstructions4TestResultsNotInCompliance9TestStoppedaTestTechnicianoTestTimeTestTypeTestWillRepeat Tested,TestedOneDirectionOnlyTestedOverTestingTestingAtNPa TestingEquipment&ThickInterfaceModel(Time?TimeAveragingE4TimeAveragingForBiasPointsU4TimeAveragingForTestPointsy&TimePerBiasPressure.TimePerBuildingPressure$TimeoutCollectData"TimeoutKeepTrying$TimeoutLargerRange2TimeoutReduceErrorSettingF&TimeoutSmallerRangenToTooHigh Tools$TotalCorrectedFlow2TotalEnclosureLeakageArea"TotalEnvelopeAreaTotalFlowTotalFlowATTMATotalFlowFR:"TotalFlowNoAbbrevY:TotalLeakageForPressureReliefe0TotalLeakageForWholeroomTurnOnGaugesTwoFansTogether2USACEBiasPointsCompliance*USACECorrelationErrorU$USACECorrelationR2nDUSACEHighestTestPressureComplianceUSACEManual@USACEPressureVariationComplianceUSACESlopeError*(USACESoftwareVersionJ2USACETestPointsCompliances8USACETestRAndSlopeComplianceUnTested8UnableAutoOnlyRetrotecGauges$UnableToAttainFlow,UnableToAttainPressure`UnableToCalculatePeakPressureForGivenLeakageArea6UnableToCalculatePeakResult.UnableToCalculateResult">UnableToCalculateResultNegative>0UnableToCalculateResultsc"UnableToCalibrate.UnableToCalibrateDeviceDUnableToCalibrateDeviceExplanation8UnableToCalibrateExplanationQ,UnableToCalibrateGauge"UnableToCustomizeUnableToDelete?*UnableToDeleteDoorFanQ@UnableToDeleteDoorFanExplanationl:UnableToDeleteFanPressureLinePUnableToDeleteFanPressureLineExplanation(UnableToDeleteSample>UnableToDeleteSampleExplanation6"UnableToDeleteSetu8UnableToDeleteSetExplanation4UnableToDetermineDemoStart,UnableToDetermineError$UnableToExportData%,UnableToGenerateReportE*UnableToGraphHoldTimeh0UnableToGraphNonStandard"UnableToIncrement"UnableToLoadImage8UnableToLoadImageExplanation$UnableToMatchRangeY:UnableToReadLicenseExpiration6UnableToReadLicenseFanCount,UnableToReadLicenseKey8UnableToReadLicensedStandard UnableToRegister="UnableToRegister2Z$UnableToSearchCFEP{BUnableToSearchCFEPInvalidFanModel:UnableToSearchCFEPInvalidInfoDUnableToSearchCFEPInvalidNoDefault\ UnattendedTestMessageSurpressed[ *UnattendedTestTooltip Uncertainty (UncertaintyDueToWind UnhandledError 4UnhandledErrorInstructions  UnitsF UnknownM UnsavedChangesV 0UnsavedChangesCreateFiler *UnsavedChangesNewFile  UnsealFanMessage, UpdateAvailabled .UpdateAvailableQuestionv UpdateFans :UpdateFullInstallInstructions "UpdateMandatoryToUpdateRequiredUpdateRestart#&UpdatedToValueUnitsh2UpdatesNotAvailRunAsAdmin}"UpdatesNotChecked UpperLeakageArea$UpperLeakageAreaAtUpperLeaksTestLUseEnteredProtectedInsteadOfCalculated*UseStrictErrorTesting>UseTopOfEquipHeightForProtected*UsedForNegativeRelief.4UsedForPositiveAndNegativeQ*UsedForPositiveReliefUserCompanyUserEmailUserInfoUserNameUserOverride$UsingEquationsFrom UsingSplitterBox/VentAreaUsedNegC(VentAreaUsedNegAtReffVentAreaUsedPos(VentAreaUsedPosAtRefVentOnlyVentSameInBothVentTextInfoVentType*0VentilationNotSufficientL*VentilationSufficient\,VentilationUnknownSuffh"VentingCalculator.VentingCalculatorManualVentingDataset1VentingDataset2"VentingElectronicVentingEquation2VentingEquationCO2Warning"@VentingEquationHalocarbonWarning16VentingEquationInertWarningzBVentingEquationRecommendUsingFSSAi6VentingEquationWarningTitleNVentingFaily8VentingFailUnableToCalculate%$VentingGravityBothY"VentingGravityNeg"VentingGravityPosVentingHVAC,VentingNegativeNotFormVentingNoVent$VentingPPEquations8*VentingPPEquationsISOs,VentingPPEquationsNFPA&VentingPassPeakHigh"VentingPassPeakOkj,VentingPassPeakUnknown&VentingPeakPressure VentingPneumaticBVentingSampleEnteredLeakageChoiceVentingSelect VentsSetNegative3 VentsSetPositivegVerboseLoggingVersionNumberView@ViewNFPA2012DesignConcentrationsViewReportDir VolumeWaitingForOpenRangeInstructions:WaitingForPressureToStabilizelBWaitingForRangeChangeInstructionsDWaitingForSmallerRangeInstructions"WarningsAndErrorss "WeatherConditions WebAddress *WebServiceCredentials WholeRoomTest $WhyCalculateHeHelp $WhyNotOverrideCmin),WhyNotOverrideCminNFPA\-,WhyNotUse90PercentHelp0Wind<WindExposureA<WindExposureB<WindExposureC<WindSpeed<WindSpeed0<WindSpeed1<WindSpeed2<WindSpeed3=WindSpeed4!=WindSpeed55="WindSpeedBeaufortF=WindVariability]= WindVariability0p= WindVariability1{= WindVariability2= WindVariability3=6WithPressureRegulatingValve=(WithThisRangeMounted=Witness=$WitnessNameCompany="WitnessPhoneEmail= Word2007Required >8Word2007RequiredInstructions,>WordOpenFailureb>6WordOpenFailureInstructions>&YellowAndGreenTubes>YellowTubeOnly?Yes'?Zip,?IStarting Air Barrier Test. Two gauges attached to opposing fans required.2APSAD R13 (2010) Extinguishing Concentration Table ASTM Manual2FanTestic ASTM Lite version {0} License# {1};FanTestic Air Barrier Test - version {0} License# {1},Lodge test data with air test web service... ATTMA Manual7Abort this pressure point and continue to the next one.AboutAcceptDate accepted:&Accuracy of building measurements, +/-+Accuracy of envelope area measurements, +/-HMeasurements are accurate within +/- the value entered. Typically 1-10%.(Accuracy of floor area measurements, +/-$Accuracy of volume measurements, +/-'Accuracy of +/- {0}% is unusually high.AddAdd additional test?mAre you sure you wish to add a {0} test? Additional testing is needed only if the current test fails to pass. Add BCLA TestAdd Correction FactorAdd a Test FanAdd IP AddressAdd new fan pressure entry lineAdd Lower Leaks Test(add notes here)Add Upper Leaks TestvWhen agent is added for increasing hold time in Continual Mixing situations the Minimum Concentration does not change.(Additional Building and Test InformationAdditional vent area neededAddressAddress2!Adjust targets for high baseline?4Advanced - view or change default program parametersVAerosol agents are now an option. An article on the website explains the calculation:;Enter final required extinguishing density for this Aerosol,Enter final required amount for this AerosolyTested for hold time as required in section 7.7 ISO-15779.2 (2010 edition) - Condensed-aerosol fire-extinguishing systemsTested for hold time as required in section A.8.1.8 NFPA 2010 (2010 edition) - Standard for Fixed Aerosol Fire-Extinguishing Systems@Enter a final value that is lower than the initial value of {0}.AgentAgentExtinguishing Agent Info:Extinguishing Agent Info:AgentAgent quantity byAgent quantity by!Using a pressure regulating valveVBy using FanTestic or FanTestic Integrity you agree to this Software License Agreement-Air changes at {0} Pa, n{1}>Air flow reference pressure #1 (also for Air Changes per Hour)Air flow reference pressure #2$Air flow at {0} Pa, Qv{1}*Air flow at {0} Pa, V{1}!Air flow at 4 Pa, Q{1}#Air flow at {0} Pa, Q{1}*Air flow at {0} Pa, V{1}#Air flow at {0} Pa, Q{1}2Air leakage rate at {0} Pa, q{1}!CFM referenced to STP at -{0} Pa!CFM referenced to STP at +{0} PaAir Leakage Reduction)Air permeability at {0}, AP{1}+Air Permeability at {0} Pa, Q{1} All gauges Allowed errorKAlready data entered for a different range on fan {0} for target point {1}.'amount of this leakage used for ventingandand addApplication installation path2Your copy of FanTestic is the most recent version.KApplication updated. Please re-open FanTestic to complete the installation. Application LeftToRightApplication InfoAir Leakage Test FanTestic Are you sure?uCreate new test set based on the parameters of this set? Environmental data, but not test inputs, will be duplicated.eAre you sure you wish to delete this test set? All data in this test set will be deleted permanently.RAre you sure you wish to delete this test? All data will be permanently destroyed.As newAsk for Tech Support at reference:#Atmospheric pressure, Pt/Atmospheric pressure during the fan test in kPa3Attemping to reach target Pressure Point of {0} Pa.pAuto discovery of attached equipment will clear your currently specified information about test fans and gauges. Auto Hide? Auto RepeatAuto Repeat test startingAuto Repeat: {0} remaining. Auto Save?)Automatic save of '{0}' completed at {1}. Auto testAuto test cancelled.Auto test completed.Auto test Information/Auto test settings (reset if standard changed):Auto test, Step {0}Auto test timeout {seconds}Auto test with {0} steps.Available TCP Gauges"Average air flow at STP and 75 Pa,Average Flow at {0} PaAverage baseline, finalAverage baseline, initial'Average CFM/sq ft of envelope at 75 Pa, Average errorAverage error is {0} Pa.Average Flow per area at {0} PaΔP 02ΔP 01Average Values Wind speed Hold time using leakage fraction'Mixing hold time using leakage fraction BCLA Test6Bad BCLA test, ELA is greater than maximum allowed ELA=Bad Lower Leaks test, ELA is greater than maximum allowed ELA=Bad Upper Leaks test, ELA is greater than maximum allowed ELABarometric pressureBarometric pressure fromBaseline, finalBaseline, initialBasicsBelow Ceiling leakage areaBelow ceiling leakage at {0} Pa.Bias pressure during hold time, Pbhbias during hold is positive if the inside pressure is above the outside pressure, and negative if the inside pressure is below the outside pressurePInitial column pressure will be {0} Pa and final column pressure will be {1} Pa.gMagnitude of Bias pressure must be less than 3 Pa. It must be reduced in order to conduct a valid test.oMagnitude of Bias pressure must be less than 5 Pa. It must be reduced before proceeding with the integrity test bias point Bias points Bias pressureBias pressure at discharge-Bias pressure during fan test, PbtBias Pressure AutotestBias pressure, final Bias PressureBias pressure, initialbias pressures for&Bias stability required before testingvMagnitude of Bias pressure during door fan test must be less than {0} Pa. It must be reduced to conduct a valid test.PThe average of all negative test bias pressures Dpo1- cannot be lower than -5PaQThe average of all positive test bias pressures Dpo1+ cannot be greater than 5Pa AgriculturalAir ConditionerAir-exchange Heat Pump Altitude envelope measured from:6Analysis of results over multiple enclosure conditionsAnnexReport AppendixApartment buildingAssembly Balanced FansBoundary conditions:Boundary conditions:Brick or BlockBuilding Enclosure ConditionsOpen BAT Report preview toolBuilding Elements PresentBuilding Tested Details Permit #:!Condition of building during testBuilding Systems PresentBurning bio-gas Burning waste Burning woodCeiling exterior cladding:Ceiling insulating material:Ceiling interior cladding:Ceiling structural material:Choose a building type!Choose building testing conditionMethod of envelope measurement:Building Civic InformationClientClient InformationClosed-cell foam Combination insulation materials CommercialComposite SidingConcreteConstruction method:Year of construction:Cooling system description:Air Leakage Data5Air Leakage Datasets included for this enclosure testDimensional Lumber 2x4Dimensional Lumber 2x6$Dimensional measurement uncertainty:DuplexSystem efficiency:Electric Baseboard Radiators"Electric Boiler Hydronic Radiators#Electric Boiler Hydronic Underfloor-Electric Condensing Boiler Hydronic Radiators.Electric Condensing Boiler Hydronic Underfloor&Electric Condensing Furnace Forced AirElectric Furnace Forced AirElectric IR HeatersElectric Oil Filled RadiatorsElectric radiatorsElectricity From CoalElectricity From GasElectricity From HydroElectricity From NuclearElectricity From OilElectricity From SolarElectricity From Tidal ActionElectricity From WasteElectricity From Wind%Specific Enclosure Condition Test ID:Enclosure Tested Information.Enclosure Air Leakage Testing Data and ResultsEnclosure use:EnergyRecoveryVentilationBuilding Envelope InformationExposed envelope surface area!Equipment used to gather datasetsExhaust Fans OnlyExport to .docx report file+Export To INIVE air leakage database formatExposed ceiling envelope area:Exposed floor envelope area:Exposed wall envelope area:Fibreglass BattsFloor exterior cladding:Floor insulating material:Floor interior cladding:Floor structural material:Gross floor area:Habitable floor area:Other floor area: Forced airFourplex Natural gasGas Boiler Hydronic RadiatorsGas Boiler Hydronic UnderfloorGas Boiler Steam Radiators(Gas Condensing Boiler Hydronic Radiators)Gas Condensing Boiler Hydronic Underfloor!Gas Condensing Furnace Forced Air$Gas District Heat Hydronic Radiators!Gas District Heat Steam RadiatorsGas Furnace Forced AirGeneral CommentsGeo-exchange Heat PumpGeo-thermal heat pump Gypsum BoardHeat distribution method: Heat Pump-Heat Pump Forced Air -Battery electric backup%Heat Pump Forced Air -Electric backup Heat Pump Forced Air -Gas backup*Heat Pump Hydronic-Battery electric backup"Heat Pump Hydronic-Electric backupHeat Pump Hydronic-Gas backupHeat Recovery Ventilation Heat source:Heated volume:Heating system description:Envelope height:Hydronic radiatorsHydronic underfloorIndividual house IndustrialInformation for Enclosure:LaserLegal Plot #: Enclosure location:MDFManualMetal Mobile HomePMultiple Enclosures within building, each enclosure before and after renovations[Multiple Enclosures within building, each enclosure remains constant between included testsNoneOfOilOil Boiler Hydronic RadiatorsOil Boiler Hydronic Underfloor(Oil Condensing Boiler Hydronic Radiators)Oil Condensing Boiler Hydronic Underfloor Oil Condensing Furnace ForcedAirOil Furnace Forced AirOpen-cell foamOriented Strand BoardOtherOther convectionOther electric Other gas Other oil Other radiant Other solar Other steamPage ParticleBoardPassive Pellet StovePlywoodR value: Rammed EarthYear of renovation:Report Introduction+Preview Building Analysis Test (BAT) Report Report Ref ResidentialAnalysis of ResultsRockwool Batts Row houseReport Reference Number: Serial #:>Single Enclosure within building, before and after renovationsWSingle Enclosure within building, no change in volume or systems between included tests Solar thermal:Solar Thermal Hydronic Underfloor -Battery electric backup2Solar Thermal Hydronic Underfloor -Electric backup-Solar Thermal Hydronic Underfloor -Gas backupSteam radiatorsSteel Steel FramedStick Balloon FramedStick Platform FramedStructural Insulated PanelsStuccoSupplementary Information.Choose test files (.exml) to include in report Test MethodTest ObjectiveTester InformationTester Information ThermographyTileTimber Timber FramedTrussesType of Building Uncertainty:Unique property ID: Building Use:Ventilation air flow:Ventilation system description:VinylWall exterior cladding:Wall insulating material:Wall interior cladding:Wall structural material:&Waste District Heat Hydronic Radiators#Waste District Heat Steam RadiatorsWaste Heat Exchange Heat Pump)Whole House, before and after renovationsHWhole House, no change in house volume or systems between included testsWood Wood Boiler Woodstove#Gauge outside duct, using blue tubeBuildingBuildingBuilding AddressBuilding and Agent details"Building and Extinguishant detailsBuilding and Customer details!Building and Duct Network detailsBuilding descriptionBuilding exposure to windBuilding pressureAverage pressure in buildingFlow vs. Induced PressureBuilding height (above ground)Building Info:8Building initial sample of {0} points. {1} points taken.Pressure vs Timeinduced pressures fromBuilding pressurization (flow)Number of storeysInduced pressure CFM at {0} Pa CFM/sq ft of envelope at -{0} PaCFM per sq. ft pass level CFM/sq ft of envelope at +{0} PaCFM/sq ft at {0} PaCorrelation: r > 0.990?Flow exponent: 0.5 < n < 1 ?&Maximum error: |Qi-Qcalc,i|/Qi < 0.06?Standard error of Q10 < 0.07?=All compliant and enough baseline and target points measured? CGSB Manual Authorize using entered Site Key,Click to Authorize software on this computer,Click to get the Site Code for this computer5Copy Site Code below and send to support@retrotec.com)Enter details and click Authorize button:GError getting Site Code for this computer, contact support@retrotec.com.Paste the Site Key received from Retrotec hereProof of Purchase numberSoftware AuthorizedSoftware Not AuthorizedkWill change test point durations in file, turn off autosave if you want to be able to cancel without saving3Calculate and update durations for auto-test points CalculateCalculation Warnings CalibrationCalibration DateCalibration NotespWarning: Only fans that have been calibrated since January 1st, 2018 will have their calibration reports online.Calibration unitscanCancelCancel this testcannotCapture data automatically Certified to:ChangeChange language Change RangelChange the range, change the range settings in the gauge controls, then click the CONTINUE button to resume.,You may need to change the Range on the fan.HYou may need to change the Ranges on fans connected to these gauges: {0}The fan has reached 100% without reaching the target pressure. Select an option below. Typically changing to a more open Range is required.The gauge is unable to attain a flow value because fan pressure is too low. Select an option below. Typically changing to a Range with a smaller opening is required to obtain a flow."Change Standard used for new tests!change venting equation to enableePlease verify that a gauge is turned on and plugged into the computer or can be found on the network.Check USB driversKChecks if your computer has drivers installed for connecting gauges via USBCheck for Updates>Please ensure that the DM2 USB drivers are installed properly. Check VersionChecking test direction:Unable to determine test direction. No reading from gauge.XNeed to choose a fan model in the equipment tab to be able to show the available ranges. Choose one:3Choose formula to use for peak pressure calculationXChoose a range or direct flow entry in the drop down to the left before entering values.CityClear data setClear Data and Change PointssSome data has already been entered for this test. Changing the data point arrangements will clear it all. Continue?2Clear all data point inputs and regenerate points?Some data has already been entered for this test. Start a new autotest and clear existing data or continue with last unfinished point?Clear Data and Start Auto test?Clear point...4Waiting for Range change. Click Continue when ready.Click for more information...7Click to open saved test, right-click for more options.Close"Flow characteristic, k1 Flow constant, k1Collect Data PointCollecting data.#Collecting data: {0} of {1} points.?Reached time out while collecting data for target point {0} Pa._The attempt to collect data for the target point has timed out. How would you like to proceed?Final Column Pressure of {0} Pa is less than the absolute value of bias during hold of {1} Pa - hold time equations are not valid as bias pressure may cause flow reversal.EColumn pressure of extinguishant/air mixture at initial concentration=Column pressure of agent/air mixture at initial concentrationCombined resultCombined Test DataCombined uncertainty CommercialCommercial reference pressureCommon1Primary gauge controls speed output of all gaugesKCalculation tool tested according to specification in annex 1 of STS-P 71-33Bias must be measured for a total of at least {0}s.!Correlation is not in compliance.CDifference between flow points too large, must be less than {0} Pa.'Must be at least {0} induced pressures.Slope n is not in compliance.", each measured for at least {0}s. Compliant95% Confidence IntervalConfidence Limit 95%UChange the custom calibration for this fan on all ranges to the values stored online?Continuous Mixing'Predicted Hold time (continuous mixing)(Calculated Hold time (continuous mixing)%Calculated using concentration = {0}%Continue Continue?UA test is being performed. Are you sure you want to stop the test before is it done?4Continue data collection without changing the Range.Continuing for {0} readings.Corrected flow rateCorrected flow QenvCorrected flow QenvCorrected flow, VenvCorrected flow, VmCorrelation, rCorrelation, r²CountryCounty+Cover fans before taking baseline readings?`Determines whether the system will prompt you to cover the fans for each baseline pressure test.Create New FileCreate new set2To preserve the data in this set, start a New Set.Create ShortcutCreated on {0} Created with Current step:Customer detailsCustomize Report Template"Customize Generated Reports Manualdm2dll.dll version in use:DM2 Driver Not InstalledThe device driver for DM2 gauges is not properly installed. FanTestic will attempt to open www.retrotec.com so that you may download the device driver installer.Data exists for this fan.Data point completed.)Venting datasets express leakage area of:Data to CollectDataset {0} not used.Dataset {0} used.'Create very detailed log for debugging?Default StandardDeleteDelete test fan?.Are you sure you wish to delete this test fan?Delete existing point?bData point {0} contains completed data. Are you sure you wish to delete it and take new readings?Delete Test Fan Delete line8Are you sure you wish to delete this Range and fan data? Delete set Delete testDelete all set data?>Are you sure you wish to delete all data readings in this set?Delete this set?Delete this test?ΔP 01-ΔP 02-ΔP 01+ΔP 02+oYour demonstration of this software expired on {0}. Please contact sales@retrotec.com for licensing assistance.Your demo expired on {0}. Your trial of FanTestic expired on {0}. You can continue to use this product with limited features, or you can contact sales@retrotec.com to discuss purchasing a license. Demo licenseDemo TechnicianDepressurization set DepressurizeDepressurize Test DetectedArea at HpyArea at protected height, used to calculate Volume at protected height for non-standard enclosures (descending interface)Descending Interface*Predicted Hold time (descending interface)+Calculated Hold time (descending interface)+Calculated using min protected height = {0},Descending Interface, non-standard enclosurePVolume below protected height for non-standard enclosures (descending interface)Volume below HpDesign Concentrations provided may be useful guidelines but are not a substitute for a specification which must be provided by a qualified Fire Protection Engineer after they have completed an evaluation of the hazard and the suppression system design.Design ConcentrationDesign concentration, cDesign concentration, C+, set to value from fire protection tables.;Get design concentration from your Fire Protection Engineer;Get design concentration from your Fire Protection EngineerDesign Concentration entered means that initial concentration is less than design, you need more agent to increase initial concentration.Detailed Results..."Major device communication error! DevicesUnits for dimensions:  Dimensions DirectionDirection is depressurizeDirection is pressurizedischarge type!Calculate hold time result using:Discharge time_Common discharge time for Halocarbons agents is 10 seconds, and for Inert agents is 60 seconds.Discharge typeQAttempt to connect to attached digital gauges and discover equipment information.7Calculate Pressure Relief Vent needed for system designDo not show againTest FanNGauge #{0}, attached to a {1}, was added to your equipment list automatically. Fan Model.Fan model '{0}' is not available on the gauge.(The ducts are measured to be in class:  Achieved FlowFlow @ test pressure {0}&Achieved Leakage Class, CL(Total surface area of ductwork installedJDuct Surface Area tested should be at least 10% of total duct surface area1Duct Surface Area tested should be at least 10 m20Duct Surface Area, A, must be greater than zero..Surface area of ductwork tested, AjCircularClass of duct network5Maximum allowable Leakage class C will be calculatedDuct Construction Class Area testedPressure in ductssJoint Length L, and Duct Surface Area tested A, should have values such that 1 <= L / A < 1.5 (values in metres)&maximum allowable f will be calculated'Use the Duct Leakage Cost Calculator...Duct Leakage Cost CalculatorLength of junctions tested, LEMax operating pressure is determined by the chosen construction class2Operating pressure of duct system, Pref(Specified duct pressure was not achievedSpecified Test PressurePressure too high in ducts2Duct pressure varied more than allowed during test RectangularRound duct areaCL (round)F @ achieved pressure {0} F @ specified class pressure {0} Required F,All sets must pass with compliant parametersTotal Allowed FlowDuct Sealing ClassParameters used for the setEnter Duct Test Pressure to use Duct ShapeSquare duct areaCL (rectangular)Duct system installerDuct system manufacturerParameters used for the testMeasurement result?Enter pressure to test ducts at, usually the operating pressureDuct Testing Manual0Induced pressure must be stable for {0}s or moreUse Duct Leakage Cost Calculator (in the Tools menu) before generating a report if you want to include cost estimates of the leakage in the output.JReference pressure used does not match required pressure for building typeZSpecify a duct test pressure to use that is less than the Duct Construction class pressureducts)Effective Leakage Area reference pressureEN13829 (Belgium) ManualEN13829 (Denmark) Manual)FanTestic, version {0} License# {1})EN13829 (France) Manual - french languageEN13829 (France) ManualEN13829 (Europe) ManualEN13829 (Sweden) Manual)FanTestic, version {0} License# {1}*EN15004 (2019) Design Concentration Table *EN15004 (2008) Design Concentration Table &FanTestic Integrity for EN15004 ManualEquivalent leakage area, EqLA(Average equivalent leakage area at 75 Pa!Equivalent leakage area at -75 Pa!Equivalent leakage area at +75 PaBEquivalent Leakage Area (EqLA) reference pressure, Pref$End User Software License Agreement Edit Edit test9Leakage area, Cd=1.0, at {0} Pa, AL9Leakage area, Cd=0.6, at {0} Pa, AL5Effective leakage area at {0} Pa, EfLA{0}:Effective leakage area at {0} Pa, ELA{1} ElevationElevation above sea levelEmailEnable auto repeat? enclosureEnclosure Area'Enclosure conditions prior to dischargeEnclosure DescriptionEnclosure leakage designEnclosure Integrity TestEnclosure pressure limitEnclosure pressure limit:Enclosure VolumeLEnter the agent quantity above, required to complete calculation of Results.YTo enable, enter enclosure volume, select extinguishing agent and click Calculate above. NEnter building information above, required to complete calculation of Results.]Enter the required Concentration(s) above, default values are being used in the calculations.LEnter custom parameters to calculate flow for this fan, and calibration dateEnter data manuallyEnter license detailsdPlease fill in your name, email, and company in the Settings dialog and select the testing standard.XEnter the planned discharge rate above, required to complete calculation of the Results.Enter Door Fan test values3Enter leakage results from a previous Door Fan test Envelope area,Total flow through envelope, qenv?height*temperature difference is too great or wind is too high. Equipment Test Fan Equipment Not SpecifiedYou must list on the top of the form the test fan model and gauges in use. If you are using a digital gauge this software can attempt to discover some of this information.!Equivalent leakage area at {0} Pa2Equivalent Leakage Area at {0} Pa, Q{1}ErrorError at {0} is too high.Error inserting imagepAn image could not be inserted into the report, you may insert the image manually after the report is generated.Error must be less than(Error limit is: {0} Pa {1}%)Error: {0} Pa.0Choose a test file which has file extension: {0}estimateestimate estimated estimatedEstimated flow exponent, nEnter leakage area estimating!Get values from Retrotec (online)View latest certificate%Unable to open Excel report template.|Microsoft Excel 2007 or greater is required for FanTestic reports. Please verify that is it installed and working correctly.The Bias pressure during hold time of {0} Pa should not be greater than {1} Pa, which is 25% of the {2} Pa column pressure. Since this Bias pressure may affect agent distribution and/or hold time, the source of the excessive bias pressure should be identified and, if possible, permanently reduced.ExitExperimental FanTestic FeatureNYou must click OK to the agreement to use this experimental FanTestic feature.ExpiredExpires on {0}.Export Data (Excel)!Exporting test data to Excel fileExtended DischargePlanned extended discharge rateYminimum extinguishant flow rate required, calculated with design = {0}% and minimum={1}%Pminimum agent flow rate required, calculated with design = {0}% and minimum={1}%8Mass flow rate of an installed extended discharge systemDuct Test ResultsWhile FanTestic software may calculate air leakage results based on user input, use of this software does not in any way guarantee these results.While FanTestic Integrity software may identify clean agent peak pressure and hold time risks, use of this software does not in any way guarantee the elimination of those risks.FAILFAILSFanFan attached to this gauge is:Flow Equation Parameters - {0}Fan last calibrated: Fan ControlWThe software is only licensed for {0} fans. Additional attached gauges will be ignored.PThis software is only licensed for one fan. Gauges besides {0} will be ignored.^The entered pressure of {0} Pa is higher than the maximum possible value for the gauge in use. Fan SpeedFanTestic Equipment GuideYou have installed a FanTestic Energy license into the Integrity program. Go to www.retrotec.com to download FanTestic Energy and install the license into that application.{0} fans allowedFans connected:FaxFile'The file you dropped could not be read.&Start a test with the default standardFile not createdFile '{0}' opened, standard {1}Failure saving Word document=Unable to save report file '{0}' in Word. Error details: {1}File '{0}' saved.File '{0}' cannot be found.Final bias pressureFinal concentration Final density Final indoorsFind Connected Gauges Find Gauges Finish timeFanTestic IntegrityYou have installed an Integrity license into the FanTestic Energy program. Go to www.retrotec.com to download FanTestic Integrity and install the license into that application.;Enter valid concentrations (ci >= design and design > cmin)]Below Ceiling or Lower Leaks Tests are not provided for agents lighter than air, nor aerosolsdOnly whole building leakage can be calculated for non-standard enclosures with descending interface. Floor area,FlowFlow at {0} Pa, Q{1}Air flow at {0} PaLow pressure warningFlow coefficient, CFlow coefficient, k1USoftware uses third party flow equation parameters to calculate flow from PrA and PrBVSoftware uses version {0} flow equation parameters to calculate flow from PrA and PrBFlow exponent, n Flow (m³/h)2Flow per Envelope Area at {0} Pa, q{1} Flow per Envelope Area at {0} PaFlow per Floor Area at {0} Pa Flow PointNumber of test pointsgStep {0}: Fan pressure at {1} points, {2}, each point collected for {3} seconds (minimum {4} readings).Warning: Some fans making up this flow had fan pressure too low. Changing to a smaller range can fix fan pressure too low problems.Warning: at least some readings in this average fan pressure point were too low to calculate flow. Changing to a smaller range can fix fan pressure too low problems.for"For fans connected to gauge(s) {0}from ElevationGaugeGauge CalibrationGauges last calibrated:Gauge Control: (Gauge count has changed from {0} to {1}.Gauge #{0} on {1}, Range {2}.jFan model '{0}' set on gauge [serial: {1}] is not one of the current DoorFans, change device on the gauge.bA gauge scan error occured which may be a result of a turned-off DM-2 plugged in to this computer.Total flow qr#At least one gauge had data errors. Gauge ModeluGauge #{0} is not listed in any DoorFan in your equipment list. Stop the test and Find Gauges from the equipment tab. Gauge {0}Gauge is turned off.gauge pressure Gauge ready./Gauge serial number(s) could not be determined.?Gauge(s) return no serial numbers. Gauge communication failure.WConnect the same gauges that were in use, then click Refresh (or Stop test and resume).8Gauge [{0}] found but device does not match the DoorFan.{0} gauges found.8Gauges found but fewer than were being used in the test.WFound gauges, but there is already data in this test using different gauges or devices.Gauge found with no range set.Gauges not yet scannedFanTestic has not yet scanned for attached gauges. Changing the device will not update the gauge until a gauge scan is done. Would you like to initiate a gauge scan now and refresh this list? Click 'YES' to do a gauge scan, click 'NO' to make your change in the software only.@Gauge(s) are off or could not connect. Serial number 0 returned. Gauges ready.FSelect a device and range on the gauge, and click Refresh button below}Change the devices on the gauges to match those in use in this test, or start a new test to capture data from the new gauges.1Unable to stop fans - gauge communication problem%Generate Report (docx file - MS Word)Generating report...Get TimeGokClick to start an unattended autotest for this set. For best results, fill in any environmental data first.|Hover the cursor over a point on the graph to see detailed information, or on a legend item to see only that series of data.GraphsgreatergreaterGreatest Static PressureGreatest Initial BaselineHighest pressure during test HalocarbonHide Header InformationShow Header InformationHeight of Building above groundheight X temperature diffHelp* Values based on heptane design concentrations specified in ISO14520. For other combustible solvents/hazards, see other documents such as APSAD R13 (France).~* Values based on heptane concentrations specified in APSAD R13 (2010). For other combustible solvents/hazards, refer to R13.Hide hide detailsHide Gauge DisplayhThe barometric pressure of {0} you entered is unusually high, are you sure this measurement is correct?LFan pressures that are too high for accurate flow calculation were detected.The final concentration is too high compared to design concentration. Final concentration must be less than the minimum design concentration, usually 85% of design.Estimated flow exponent, n, greater than 1.0 will give inaccurate results. Estimated flow exponent should be between 0.5 and 1.0[Combined slope above 1.0 means test is invalid. Graph for Hold time will NOT be generated.0Slope above 1.0 generally means test is invalid.%New high target if baseline too high:`The temperature of {0} you entered is unusually high, are you sure this measurement is correct?OIf checked, the file history is hidden automatically whenever a test is opened. Hold timeHold time analysis: HouseHouse reference pressureIP Address to add:ISO 14520, 2000 edition+ISO-14520 (2000) Design Concentration TableISO 14520, 2006 edition+ISO-14520 (2006) Design Concentration TableISO 14520, 2015 editionISO 9972 Manual+ISO-14520 (2015) Design Concentration Table'FanTestic Integrity for ISO14520 ManualEnclosure net volume, VZISO 14520 requires at least 5 induced pressures, per test direction, between 10 and 60 PaENo data entered for induced pressure and flow, calculation not valid.imperialmixedin a sample of&Baseline taken for {0} seconds or moreCorrelation >= {0}Tested in both directionsCompliance Statement0Height X temperature difference is less than {0}.Outdoor temperature is between {0} and {1} {2}Slope is >= {0} and <= {1}7Building target pressures taken for {0} seconds or more0{0} or more building pressure target points usedinclude all readingsFPlease indicate the type of testing being done, using drop-down above.Indicate wind speed IndividualFEach gauge controls its own speed output to reach its target pressure.(Individual Control is on)Individual fan flowsindoorsInduced pressurePEnclosure pressure relative to outside the enclosure, created by the test fan(s) Inert GasInfiltration EffectsInitial Application Densityinitial averageInitial baseline'Initial column pressure, Pmi=Column pressure of agent/air mixture at initial concentrationContinual Mixing will require an Initial Concentration that is at least 1.15 times the Design in order to be able to maintain 85% of the Design Concentration at the end of the hold time (usually 10 minutes). If, for example, the Design Concentration is 10% then we recommend an Initial Concentration of 11.5% (or more) so the hold time can be calculated as the time it will take for the concentration to fall from 11.5% to 8.5% which will be roughly double the time it would take to fall from 10% to 8.5% which would be the situation had the Initial concentration not been increased.Initial concentration$Initial concentration, ci$Initial concentration, CilConcentration of extinguishing agent at the beginning of the hold time, based on quantity, must be >= Design[Agent concentration at the beginning of the hold time, based on quantity, must be >= DesignInitial densityInitial indoorsThe enclosure FAILS acceptance procedure due to insufficient initial concentration. Results to be used for information purposes only.'Initial sample of {0} points collected.InsideInstall License Key Installer InterceptIntercept, CL&Air leakage coefficient, Cd!Intercept, Cenv&Air leakage coefficient, Cp0Equivalent sharp interface height, HeInterface HeightInto:Into:~He is invalid, making Hold Times INVALID. Increase initial concentration so Ci is greater than 2 * Cmin.2Total venting EqLA divided by the enclosure volumeLanguage to useLast modified on {0}'Leak to Volume ratio, LVRneg'Leak to Volume ratio, LVRpos Leakage area leakage area2Effective leakage area per envelope area at {0} Pa/Effective leakage area per floor area at {0} Pa;leakage area in this direction is the same as other datasetLeakage exponent, nLeakage exponent, nlLeakage exponent, nuLower leakage fraction, FlesslessLevelHLicense is EXPIRED, you have {0} left out of {1} calculates after expiryBContact sales@retrotec.com to discuss license purchase or renewal.Your license expired on {0}. You can continue to use this product with limited features, or you can contact sales@retrotec.com to discuss renewing your license.Your license expired on {0}. You can continue to use this product with limited features, or you can contact sales@retrotec.com to discuss renewing your license.Your license expired on {0}. This FanTestic Integrity license will expire in {0} days on {1}. We may limit updates and support. Please contact sales@retrotec.com for renewal.9This feature is limited to users with current licenses. 2This feature is not available in the Lite version.PLicense is EXPIRED, you have {0} left out of {1} report generations after expiry License info:BLicense is EXPIRED, you have {0} left out of {1} runs after expiryCLicense is EXPIRED, you have {0} left out of {1} saves after expiryLicensed to {0}. Licenced ToA licensing issue has occurred. If you are still unsuccessful after pasting your license key, contact Technical Support (support@retrotec.com).A licensing issue has occurred. If you are still unsuccessful after pasting your license key, contact Technical Support (support@retrotec.com). Linear RampXStep {0}: Linear ramp from {1} Pa to {2} Pa stepping by {3} Pa, {4} points at each step.Location/Record the location of this fan during the testCollect data on ducts for:LowhThe barometric pressure of {0} you entered is unusually low, are you sure this measurement is correct?Some fan pressures are lower than the design specification for the range selected. Flow values may be inaccurate. A smaller range is recommended.dThe initial concentration is too low compared to design concentration, increase the agent quantity.}Estimated flow exponent, n, less than 0.5 will give inaccurate results. Estimated flow exponent should be between 0.5 and 1.0[Combined slope below 0.5 means test is invalid. Graph for Hold time will NOT be generated.0Slope below 0.5 generally means test is invalid.^The temperature of {0} you entered is unusually low, are you sure this measurement is correct?Lower leakage areaLower leakage areaLower leakage area at {0} PaLower leakage fraction0Lower leakage area divided by total leakage areaLower Leaks TestLowest pressure during testdataset with lowest uncertainty Magnehelic5Maximum must be greater than or equal to the minimum."Minimum must be greater than zero. Manufacturermass4Maximum allowable BCLA leakage for {0} min hold time5Maximum allowable Lower leakage for {0} min hold time5Maximum allowable Upper leakage for {0} min hold time@Maximum Below Ceiling Leakage Area (when leakage fraction = 0.5)dataset with maximum flow:for given Hold time, enclosure leakage cannot be more than%enclosure leakage cannot be more than8Maximum Lower Leakage Area (when leakage fraction = 0.5)8Maximum Upper Leakage Area (when leakage fraction = 0.5)Maximum allowable leakageHMaximum allowable leakage at {0} Pa that will maintain {1} min hold time4Maximum EqLA that will result in a passing hold timemaximum change of%Maximum flooded height, H0;Measured from lowest to highest point in the flooded volume"Maximum humidity, RHmaxmeasuredDirect measurementmeasuredMeasured flow qm measurement measurement measuring concentrationmassvolumemetricMidEMinimum Concentration entered cannot be less than 85% of design = {0}AMinimum negative leakage to remain under enclosure pressure limitAMinimum positive leakage to remain under enclosure pressure limit,Minimum leakage to relieve negative pressure,Minimum leakage to relieve positive pressure`Minimum venting EqLA that will prevent peak pressures over the negative enclosure pressure limit`Minimum venting EqLA that will prevent peak pressures over the positive enclosure pressure limitMinimum concentrationcminCmin1Concentration is 85% of the design concentration.(, often specified as 85% of design: {0}%+, calculated as (design concentration)/ 1.3fConcentration of extinguishing agent at protected height in the enclosure at the end of the hold time WConcentration of agent at protected height in the enclosure at the end of the hold timeMinimum Density Minimum Flow"Minimum humidity, RHminMinimum test pressure {0}minutesMissing Primary Gauge: {0}#Move to Test Fan #1 (primary gauge)Multiple Fan Gauge Set-up Multi-familyMulti-family reference pressure multiply byNFPA 2001, 2004 edition3NFPA-2001 Design Concentration Table (2008 edition)NFPA 2001, 2012 editionDesign Concentration Table 'FanTestic Integrity for NFPA2001 ManualMNFPA 2001 recommends 2 induced pressures, per test direction, at 10 and 50 Pa${0} gauges attached to this computer{0} readings taken.${0} readings taken over {1} seconds.{0} seconds remaining.NameNegativeYWarning: flow appears to have reversed in one or more fans. A flow of zero was assumed.'Negative Fan Pressures are not allowed.`Negative holdtime was calculated, ensure that protected height {0} is less than room height {1}.negative PRV area needed isNegative PRV area needed is:Negative peak pressure8Predicted negative peak pressure using vent test resultsUReceiving negative pressures (room is being depressurized), during a pressurize test.Negative pressure result:Negative ResultsNew#New file created using standard {0})New file '{0}' created with standard {1}.New lineNew setFA more recent template for this report is now available from Retrotec.Would you like to upgrade to the new template? Your current template will be backed up and you will be able to add any customizations you have made to the upgraded template.New testTest data has already been collected or entered. Do you wish to start a new test, clearing all data, or attempt to resume with the last unfinished data point?5Test data found. Clear and start new test, or resume?Next Empty or Incomplete Point Next step:NoSBuilding Elevation not specified. 0 assumed in calculation of barometric pressure.FEnvelope area not specified. Unable to determine permeability result.CFloor area not specified. Unable to determine permeability result.cHeight of building above ground not specified, unable to calculate Height X Temperature difference.GBuilding volume not specified. Unable to determine air changes result.No certificate returned.No gauges found.XCheck your USB connections, that the gauges are turned on, and click the Refresh button.has no data for agent {0}!No Pressure detected on Channel B Something is wrong in the set uptCheck that all tubing is properly connected, fans are powered on, and gauges are connected. Select an option below.No measurable flow.\Unable to calculate, enter all induced pressures and fan pressures (or flows) and try again.#No gauges attached to this computer;Indoor temperature(s) not specified. 20 degrees C assumed.(Assumes no negative pressures will form.FNo significant negative pressures occur during Inert Agent discharges.VdS equations assume only positive peak pressures occur which is not consistent with experiments where negative peak pressures were often greater than the positive. FSSA or FIA equations are recommended.2no negative-opening pressure relief vent specified{0} Not Compliant(not less than{0} is not a valid IP address# readings per:number!Variation from primary at fan {0}*Variation from building average at fan {0}"Number of baseline pressure points(Number of Fans Calculator - coming soon!Number of repeats?OKofOn fan(s) connected to gauge On graphs:.Fan test data was found in only one direction.1 gauge found.EOnly one range can have data, you will have to delete a fan pressure.Open Open (22)Open as new test"Please open or create a test file. Open New FileOpen Gauge Pairing ControlDesign temperatureminimum anticipated ambient temperature of the protected volume, used for calculating agent/air concentrations during dischargewminimum anticipated temperature of the protected volume, used for calculating agent/air concentrations during discharge9The operator is really located inside the test enclosure.:The operator is really located outside the test enclosure.Operator locationOptionsorOther Other GaugesoutdoorsoutsidecProtected height was entered by user instead of using the Standard specified 90% of flooded height.Over-ride minimum concentrationnMinimum concentration was entered by user instead of using the Standard specified 85% of Design concentration.rResults were calculated based on a user-entered protected height rather than the Standard specified calculated He..Unable to overwrite file. Is it open in Word?Unable to overwrite previous file '{0}'. Aborting report. Please check if this file is open in Word and close it before trying again.Pa/sPage {0}Page {0} of {1}Paired Ethernet GaugesPASSPASSESPassing value <= {0}Paste from clipboardwDrag and Drop a license key text file below (or paste in the license key below and click the 'Install License' button).Drag and Drop the license key text file you received from Retrotec onto the license box (or paste in the license key and click the 'Install License' button). Pause test and change range Pause test while fan is reversedPeak mass flow ratendelete entered value and software will calculate and show default value based on agent mass and discharge timePeak negative pressure:Peak positive pressure:CNo data is available to calculate peak pressure for Aerosol agents. /h at {0} Pa% Change"% of this leakage used for ventingperformance criteria'Permeability at {0} Pa, Q{1}/Permeability at {0} Pa, Q{1} Pa_surf'Permeability at {0} Pa, w{1}.Permeability at {0} Pa, q{1}#Flow / unit area reference pressure'Permeability at {0} Pa, v{1}PhoneEPlease select a testing standard from the radio button options above.point 1st point 10th point 11th point 12th point 2nd point 3rd point 4th point 5th point 6th point 7th point 8th point 9th point Point total Point {0}Point {0}, Reading {1}Point {0}: {1} PapointsPositivepositive PRV area needed isPositive PRV area needed is:Positive peak pressure8Predicted positive peak pressure using vent test resultsTReceiving positive pressures (room is being pressurized) during a depressurize test.Positive pressure result:Positive Results'Preferred flow units to show in displayjUnseal the fan(s) for a pressure test and verify that the fans are oriented to depressurize the enclosure.Prepare for duct testhUnseal the fan(s) for a pressure test and verify that the fans are oriented to pressurize the enclosure.Pressure"Venting and Peak Pressure AnalysisPressure Change.Fan pressure difference created by test fan(s) Pressure (Pa)Pressure point abortedPressure point timeoutKThe attempt to reach {0} Pa has timed out. How would you like to proceed?Pressure reference for {0}:(For pressure relief use leakage area of: Pressure Relief Vent area neededPressure TargetThe lowest point of {0} Pa is too low. The minimum pressure difference shall be 10 Pa or {1} times the bias pressure, whichever is greater.Pressurization set PressurizePressurize Test DetectedPrevious step:This is the primary gaugekAll fans should be controlled by this gauge which is also the primary gauge used to collect room pressures. Primary Fan Primary GaugePrimary gauge not selected.##1 Induced (primary gauge) pressureLThis test fan has the gauge which is used for fan control and test pressures Print screensProblem reading License keyFanTestic is unable to read your license key. Check that you have selected text starting with and including '===START_KEY===' and ending with and including '===END_KEY==='Problem with file '{0}'.Test data not found.Maximum flooded volume, VProtected height(Required protected height, HpMinimum protected height, H2Highest level of equipment/hazards to be protected2The highest level of combustibles in the enclosure+In compliance with APSAD R13 (2010), FranceAPSAD R13 (2010)+In compliance with APSAD R13 (2015), FranceAPSAD R13 (2015)In compliance with ASTM E779-19ASTM E779 (2019 edition) in compliance with ASTM E-779-10ASTM (American)7Air Barrier Test for large building seal stress testingAir Barrier Test+In compliance with ATTMA TSL1 or ATTMA TSL2ATTMA (United Kingdom)'In compliance with CAN/CGSB-149.10-2019CGSB (Canada - 2019)'In compliance with CAN/CGSB-149.10-2002 CGSB (Canada)8In compliance with CAN/CGSB-149.10-2002 - Imperial UnitsCGSB (Imperial Units)KIn compliance with DW/143 - A practical guide to - Ductwork Leakage Testing DW/143 (UK)QIn compliance with European Norm 12237 Ventilation for buildings - Ductwork, 2003EN12237 (Europe)/In compliance with STS-P 71-3 (EN13829) BelgiumSTS-P 71-3 (EN13829 Belgium)1In compliance with European Norm EN13829, DenmarkEN13829 (Denmark)6In compliance with European Norm EN13829 France RT2012:In compliance with ISO 9972:2015 and European Norm EN13829"ISO 9972:2015 and EN13829 (Europe)CIn compliance with European Norm EN13829, with NEN2686, NetherlandsNEN2686 (Netherlands)EN13829 (France)0In compliance with European Norm EN13829, SwedenEN13829 (Sweden)?In compliance with British Standard EN 15004 (2008 ed.) Annex E?In compliance with British Standard EN 15004 (2019 ed.) Annex EBS EN 15004 (2019)BS EN 15004 (2008 edition).In compliance with FD E51-767 for Duct TestingFD E51-767 (France)3In compliance with ISO 14520 (2000 edition) Annex EISO 14520 (2000 edition)3In compliance with ISO 14520 (2015 edition) Annex EISO 14520 (2015 edition)(In compliance with ISO9972 Europe (2016)ISO9972 Europe (2016)3In compliance with ISO 9972 FD 50-784 France (2016) ISO 9972 FD 50-784 France (2016)3In compliance with AS - ISO 14520 (2009), AustraliaAS - ISO 14520 (2009) >In compliance with AS 4214:2018 (ISO 14520 Annex E), Australia AS 4214:2018 (ISO 14520 Annex E)3In compliance with ISO 14520 (2006 edition) Annex EISO 14520 (2006 edition)Select the one testing standard this copy of FanTestic will use with the FanTestic Lite license. A new license is required to run additional standards.3In compliance with NFPA 2001 (2012 edition) Annex C3In compliance with NFPA 2001 (2004 edition) Annex CNFPA 2001 (2004 ed.)=In compliance with NFPA 2001 (2004 edition) Annex C, imperialNFPA 2001 (2004 ed.), imperial3In compliance with NFPA 2001 (2015 edition) Annex CNFPA 2001 (2015 ed.)=In compliance with NFPA 2001 (2015 edition) Annex C, imperialNFPA 2001 (2015 ed.), imperial3In compliance with NFPA 2001 (2018 edition) Annex CNFPA2001 (2018 ed.)NFPA 2001 (2012 ed.)=In compliance with NFPA 2001 (2012 edition) Annex C, imperialNFPA 2001 (2012 ed.), imperial&Residential Duct Testing (US) at 25 Pa&Residential Duct Testing (US) at 50 Pa2In compliance with American Duct Testing standardsAIn compliance with SMACNA HVAC Air Duct Leakage Test Manual, 2012SMACNA 2012 (US)AIn compliance with SMACNA HVAC Air Duct Leakage Test Manual, 1985 SMACNA (US)`In compliance with: US Army Corps of Engineers Air Leakage Test Protocol for Building EnvelopesUSACE (US Army Corps)2In compliance with VdS2380 - Inerts (2019 edition)VdS 2380 - 20197In compliance with VdS2381 - Halocarbons (2019 edition)VdS 2381 - 2019 Ramp up delayInitial delay when spinning up fans to reach a pressure target. Longer for large fans prevents inappropriate low pressure warnings.>Something has gone wrong while working on target point {0} Pa.FThis target point cannot be completed. How would you like to proceed?RangekThe primary range still shows as Range {0}, please specify the new Range selected and press Continue again.Range change needed.!Please change to a smaller Range.Flow values are based on a lower than acceptable fan pressure. It is recommended that you change to a Range with a smaller opening to increase fan pressure. You may continue the test without changing the Range but flow value accuracy cannot be guaranteed. Range name '{0}' not recognized.Range not changed in softwareRanges9Reading taken: Flow= {0} cu m/hr, Room Pressure= {1} Pa. Reading {0}Readings Recent TestsRed tube through panelRefreshRefresh list of gauges attached!Refresh Ethernet Connected GaugesRegression LineKRe-install your license key or contact support@retrotec.com for assistance.Relative humiditymStop and restart FanTestic to run as administrator. Future starts will automatically be run as administrator. Release NotesRemoveRemove BCLA TestRemove Lower Leaks TestRemove Upper Leaks Test?Unplug all USB gauges, power cycle them, and plug them back in.6Choose or Enter the DOCX File Name to create or updatebChoose existing DOCX file template to use for report. If not found, factory default will be used.Report completed.GReport written to '{0}' and is ready to be opened with Microsoft Excel.pReport written to '{0}' and should be open in Microsoft Word. Switch to Word to review and finalize your report.aChoose existing EXCEL file template for data export. If not found, factory default will be used.&Report file already exists. Overwrite?The file '{0}' already exists? Overwrite with the new report or Cancel. You may open, save, or rename your reports at any time in the {1} folder on your hard drive.Report NOT generated: {0}Report not savedReport saved to file: {0}3Unable to find template, will try default template. ReportingReports not available.(Minimum required extended discharge rate Required extended discharge rateSpecified hold timeResetReset to Standard Defaults?Restart the application for the language change to take effect.>Restart the application for the license change to take effect./Please restart FanTestic to install the update.Result Does NOT PassPassesResultsResults SummaryResume autotest*Resume autotest in the following position?Resuming autotest.7Based on values from a calculated leakage factor F. .Based on values from the total leakage test. Possible FAIL - ELA of {0} is more than the maximum allowable ELA of {1}. Reduce by at least {2}. F and hold time calculated using the maximum allowable: Possible FAIL - ELA of {0} is less than the minimum allowable ELA of {1}. F and hold time calculated using the minimum allowable: The predicted hold time of {0} minutes is less than the required {1} minutes, therefore the enclosure FAILS the hold time requirements.The calculated hold time of {0} minutes is less than the required {1} minutes, therefore the enclosure FAILS the hold time requirements.uFAIL - Measured ELA of {0} is greater than the maximum allowable ELA of {1}. At least {2} of leakage must be sealed.FAIL - the extended discharge rate of {0} is less than the minimum required rate of {1}. The planned discharge rate may not maintain the required concentration for the duration of the discharge.gThe lower leakage fraction F was determined to be {0} which gives a predicted hold time of {1} minutes.hThe lower leakage fraction F was determined to be {0} which gives a calculated hold time of {1} minutes.The predicted hold time of {0} minutes is greater than the required {1} minutes, therefore the enclosure PASSES the hold time requirements.The calculated hold time of {0} minutes is greater than the required {1} minutes, therefore the enclosure PASSES the hold time requirements.PASS - the extended discharge rate of {0} is greater than the minimum required rate of {1}. The planned discharge rate will likely extend protection for the duration of the discharge.Retention TimeCustomer Fan Model Help WindowReturnKReturn to the main form to fill in test fan and gauge information manually.Ring 1Ring 2Ring 3The license you are using is invalid. A demo version of the software will run. To get a new license contact Pergam-Engineering JSC at (495)775-7525 or sales@pergam.ruBuildingenclosure and vent-Create 'Run as Admin' shortcut on the desktopRNeeded if your machine experiences 'access denied' errors on connecting to the DM2IRun FanTestic "as administrator"? (solves the DM2 Access Denied error 5)Sample\Data has already been entered for this test. Unable to continue - start a new test instead. Sample {0}Only a sample report (not real data) is shown for demo and expired licenses. Contact sales@retrotec.com to license full functionality.Save:Save your test and re-open to see the new values on-screenSave AsSave Before Exit?LThere are unsaved changes. Save before exiting and closing this application?Scanning for gauges...BPlease seal the fan before this static pressure test can continue.!Searching for connected gauges...s each.Seek to Induced Targets?Seeking target of {0} Pa.Select a duct testing standard&Select an Enclosure Integrity Standard"Select a building testing standardSelect a standard(select a technician)(select an agent)7Select a fire supression agent from the drop-down list.%Select an older edition of a standardSelect Building Image8Select a building type to specify required test pressureSelect a duct network classBOn the gauge, set the device and range in use, then click Refresh.3Select the construction class of ducts being testedSelect Exposure... Select fan... Select Folder;select what the venting dataset measures using option above(select method)(select an option)4select leakage used for pressure relief option abovevSpecify the primary gauge in the gauges control. The primary gauge measures room pressure and should control ALL fans.Select Range....Select the sealing class of ducts being tested*Select the shape of the ducts being tested (Select Test)(select a type)I understand that Semi-Automatic testing is a new FanTestic feature which has not yet been fully documented or tested and I use Semi-Automatic testing at my own risk.HAlready collecting a point, wait for it to complete in the TestDashboard4Already using the gauges, Stop Test to update gaugesDIf you want to turn off the fans and stop data collection, click OK.BChoose a target pressure or set fan speed in the Semi-Auto Window.Semi-Auto window closed.$Semi-Auto data collection cancelled.+Take readings for the following data point?Setting Pressure on Duct Test fans may cause conditions of overshoot or oscillation. Press OK to continue, or Cancel to stop and use Set Speed instead.STo collect a bias point, enter 0 for speed above, click Update fans, then try again+Semi-Automatic Test: Unable to collect dataWait for the pressure point to be attained (watch the Test Dashboard), or set fan speed above. Enter 0 speed and click Update fans if you wish to collect bias points.(Wait for target pressure to be attained.Set testing conditions with these controls. Click [Collect Data Point] button to collect readings for the next data point. Data collection will stop when readings for the point are completed. Watch the TestDashboard for information.Begin Semi-Automatic TestSemi-Automatic TestingSendSend files via emailSerial #S/NSet to DepressurizeSet to Pressurize$set fan speed or pressure target to:Set {0}The negative sign on your first building test pressure and the operator's inside location suggests a depressurize test. Click OK to confirm or click one of the other options.The positive sign on your first building test pressure and the operator's outside location suggests a depressurize test. Click OK to confirm or click one of the other options.The positive sign on your first building test pressure and the operator's inside location suggests a pressurize test. Click OK to confirm or click one of the other options.The negative sign on your first building test pressure and the operator's outside location suggests a pressurize test. Click OK to confirm or click one of the other options.SetsSettingsShowshow averaged points onlyShow calculation warnings? Show detailsShow Gauge Display Show GraphsShow large display of graphs.'Test pressure signs should be negative.'Test pressure signs should be positive.Skipping reading:Slope, n Pressure Exponent, ndSlope, npDSome gauges do not have device and range set to match installed fan.OSpecific effective leakage area (envelope) at {0} Pa, ELAE{1}LSpecific effective leakage area (floor) at {0} Pa, ELAF{1}2Specific leakage at {0} Pa, w{1}CSpecific leakage rate (envelope) at {0} Pa, qE{1}@Specific leakage rate (floor) at {0} Pa, qF{1}sq in at {0} Pasq in at {0} Pasq in/100 sq ft at {0} Paenclosure leakage StandardStandard temp/pressureBegin AutoTestStart Data Collection Start dateClear data and start new test Start Test Start timestart venting calculator"Starting Auto Test with {0} steps.Starting on data point #{0} of/Starting on data point #{0} with target {1} Pa. Starting stepStateStatic Baseline (Post)Static Baseline (Pre)Enclosure room pressure is changing too quickly. Current rate of change is {0} Pa/s. Waiting for rate of change less than {1} Pa/s.Static PressureStatic pressure at dischargeStatic pressure at testStatic pressure, initialXRate of change in enclosure room pressure is {0} Pa/s. Starting baseline pressure test.fStep {0}: Baseline of {1} points, averaged from data collected over {2} seconds (minimum {3} readings)GPreparing for baseline pressure test. Verifying stability of pressure.Step0Step {0} - {1} {2} Pa - Seeking target pressure. Stop & Cancel]Go to Settings>> View or change program parameters>> Application tab, to disable Auto Repeat. Stop Fan(s) Stop Test)Target reached, starting data collection.(Submit air leakage test to ATTMA website Success getting certificate: {0} Sum of flowsSupply:Synchronizing main form: Range set to {0} on Test Fan #{1}"TCP Gauge Pairing & IP Search ListTCP Gauge Pairing & Search ListrTotal flow, QcCorrected Flow, Qm Total flow*Enclosure leakage used for pressure reliefLeakage area for enclosure0Turn on all gauges and click the refresh button.Two fans joinedcMin of 12 valid bias points before/after each dataset AND all less than 30% of min induced pressureunacceptable, is < 0.98$Squared correlation coefficient, r²:AND highest >= 75 Pa and > 25 Pa over the minimum induced. USACE ManualJInduced pressure variation does not exceed +/ -10 % of average of all fansunacceptable, is <=0.45, >=0.8'FanTestic, ver {0} License# {1}BMore than 10 test points over at least 10 seconds each per dataset:Correlation and slope within acceptable range per data setenter directly|Unable to use Auto-test, FanTestic only controls Retrotec gauges. Enter data from your gauges manually to calculate leakage.Unable to Attain Flow ValueUnable to Attain Pressure=Unable to calculate peak pressure for the leakage area of {0}(Unable to calculate peak pressure resultUnable to calculate result#Unable to calculate negative resultBUnable to calculate Results until parameters are entered for test.Unable to Change Calibration)Unable to change Flow Equation Parameters_Select the equipment type and enter the serial number before changing flow equation parameters._Select the equipment type and enter the serial number before changing flow equation parameters."Unable to Change Gauge CalibrationgUnable to generate custom template to edit. Manually copy the one in the Retrotec\Templates directory.Unable to deleteUnable to delete test fan8This is the last test fan listed, you may not delete it."Unable to delete fan pressure lineMThis is the last remaining line of fan pressure entry, you may not delete it.Unable to delete sample set=This is the last remaining sample set, you may not delete it.Unable to delete sample set.=This is the last remaining sample set, you may not delete it.![Unable to read demo start date.].Unable to determine DM2 status. Driver error.Unable to export data to Excel!Unable to generate report in WordAUnable to graph hold time. Hold time results should not be used.7Unable to graph with non-standard descending interface.Problem with after expiry runsUnable to load image=Unable to load image at '{0}' - please try a different image.AUnable to match range in gauge #{0} to the settings in your form.'Unable to read license expiration date.!Unable to read license fan count.Unable to read license key.6Unable to read licensed standard from license entered.Problem registering licenseProblem registering new license.Unable to find Custom Flow Equation ParametersRUnable to search for Custom Flow Equation Parameters: Invalid fan model passed in.[Unable to search for Custom Flow Equation Parameters: Invalid search information passed in.VUnable to search for Custom Flow Equation Parameters: No factory default ranges found.oUnable to find Custom Flow Equation Parameters: No valid custom fit test found for fan with that serial number.*Unable to find Gauge Certification Report.VUnable to search for Gauge Certification Report without valid serial number for model.6Unable to find Gauge Certification Report for [ {0} ].Could not show PDF: {0}MUnable to show a report for {0} combination of standard and venting equation.Unattended test?*Unattended test. Message suppressed: '{0}'Using unattended test settings UncertaintyUncertainty due to wind Major errorjA major error has occured. Please send your log file to support@retrotec.com if continued problems occur.unitsUnknownThere are unsaved changes.\There are unsaved changes. Are you sure you wish to create a new file, losing your changes?ZThere are unsaved changes. Are you sure you wish to open a new file, losing your changes?6Unseal the fan before this pressure test can continue.Update AvailableUAn update is available to version {0}. Would you like to update the application now?Run fan(s) with new targetGo to https://Retrotec.com/software.html and click "View Software Updates" to check what is the latest version. If a newer version is available, uninstall, delete the shortcuts and install the latest.[This application has detected a mandatory update from your current version to version {0}.Update requiredCRestart the application to install the update or issues may result.updated to: {0} {1}Upper leakage areaUpper leakage area at {0} PaUpper Leaks TestOver-ride (He) calculationUse strict error testing?0Over-ride default value of 90% of flooded height!used for negative pressure relief.used for positive and negative pressure relief!used for positive pressure reliefSoftware user's companySoftware user's email User detailsSoftware user's nameuser override on peak mass flowusing equations fromUsing splitter box!Vent area used, ELAneg0Vent area available at {0} Pa, ELAneg!Vent area used, ELApos0Vent area available at {0} Pa, ELApos vent only vent (same area both directions)Venting notes: Pressure Relief Vent (PRV) type:not sufficient sufficientof unknown sufficiencyVenting CalculatorVenting Calculator ManualVenting Dataset Positive PeakVenting Dataset Negative Peak!electronic vent (both directions)venting equationWarning for gaseous Carbon Dioxide: VdS, FIA and NFPA12 equations use peak mass flow rates to calculate the "required vent area" and have been defaulted to rates consistent with experiments of other inert gases. Entering smaller rates may result in undersized vents.Warning for Halocarbon Chemical Agents: VdS equations use peak mass flow rates to calculate the "required vent area" and assume only positive pressures occur during a discharge which is not consistent with experiments where negative peak pressures were often greater than the positive. FSSA or FIA equations are recommended.Warning for Inert Agents: VdS and FIA equations use peak mass flow rates to calculate the "required vent area", and these have been defaulted to rates consistent with experiments. Entering smaller rates may result in undersized vents.Equations other than FSSA rely on estimation of peak mass flow rate, and for halocarbon agents VdS equations assume that no negative peak pressures form. Given these limitations, it is recommended that FSSA equations be used.)Warning - Recommended equation not chosenFAILS - ELA for {0} of {1} is less than the minimum required ELA of {2}. At least {3} of venting must be added to remain below the enclosure peak pressure limit of {4}.2FAILS - Unable to calculate minimum required ELA. $gravity vent (positive and negative)gravity vent (negative only)gravity vent (positive only)&HVAC time delay vent (both directions)4Peak negative pressure will not form with agent {0}.no pressure relief vent (PRV)9Equations to use for peak pressure and required vent area1Venting & Peak Pressure equations for ISO testing2Venting & Peak Pressure equations for NFPA testingPASSES - ELA for {0} of {1} exceeds the minimum required ELA of {2} but the peak pressure of {3} exceeds the enclosure pressure limit of {4}.PASSES - ELA for {0} of {1} exceeds the minimum required ELA of {2} and the peak pressure of {3} is less than the enclosure pressure limit of {4}.PASSES - ELA for {0} of {1} exceeds the minimum required ELA of {2}. Unable to calculate and compare developed peak pressure to the enclosure peak pressure limit of {3}./Venting and Peak Pressure Analysis of Enclosure pnuematic vent (both directions)For leakage area of (select venting arrangement)2for vents set in negative pressure relief position2for vents set in positive pressure relief positionCreate detailed log? Version # {0}View+View Design concentration values for agentsView Reports in directoryVolume,Volume at protected height is too high, check that (area at protected height {0}) x (protected height {1}) is less than total volume {2}.hVolume below protected height is too high, reduce Volume below Hp = {0} to less than Total Volume = {1}+Wait until some flow data has been capturedOReverse the fan direction and click the Continue button to resume the autotest.Waiting for gauge...Waiting for gauge(s)&Waiting for non-zero pressure readingsSwitch to a more OPEN Range on one or more fans, change the Range setting in the gauge controls, then click the CONTINUE button to resume.$Waiting for pressure to stabilize...TWaiting for Range change, click the Continue button when ready or the Stop the test.Switch to a SMALLER Range on one or more fans, change the Range setting in the gauge controls, then click the CONTINUE button to resume.Warnings and ErrorsWeather ConditionsWebEnter Web Service CredentialsTotal Enclosure LeakageChecking the box over-rides the He calculation and instead predicts the time it would take for the agent mixture to fall to the Minimum protected height, Hp. Using Hp assumes the interface has no thickness and will make your test non-compliant but there may be reasons you want to do this which are explained under, “Our guidance”. The ISO 2006 edition of this Standard requires an equivalent interface height, He, be calculated in order to reduce hold times to allow for the development of a Wide Interface that was theorized to occur. He is only used in Descending Interface calculations where no Continual mixing occurs. The effect of allowing the software to perform the He calculation will reduce the hold time by 20% for inerts and about 35% for halocarbon chemical agents. This is done to make allowance for the formation of a theoretical Wide Interface that would reduce concentrations in the center of the interface below the Minimum. Since the Wide Interface was demonstrated not to occur and changes to the Standard have been accepted, there are precedents for over-riding the calculation: 1) He was not used in the 2000 version, 2) NFPA does not use He, 3) The new version of ISO will have a different He calculation that will give longer hold times but not as long as not using He at all, 4) Many countries do not use the He calculation, 5) Previous versions of Retrotec software (CA2001) did not force an He calculation but it was supplied as a separate calculation for those who wanted to use it. Our guidance is to follow the requirements of the AHJ or to continue with past procedures. This software will make calculations in any way you choose but the operator may want to consider the following comments to provide a context should a decision path be needed: 1) If a definitive procedure is in place, continue with it until the new version of ISO is in place that will reduce the impact of He calculations, 2) If the He calculation has not been done in previous tests, you may wish to consider the over-ride to make the evaluation on the same basis. Note that if He is being used now, the new Standard, that may be published in 2015, will give longer hold times. If He is not used now, the new Standard will result in shorter hold times.Checking the box allows you to enter any “Minimum concentration” and select a value that is less than 85% of design. By doing so would mean you were not fully compliant with the letter of the Standard. Standards require that, at the end of the hold time, the agent concentration must be greater than 85% of the Design at the Minimum protected height. To place this in perspective, most countries do adhere to this requirement but some do not, notably Australia. The Initial concentration must be equal to or greater than the Design. In cases Initial concentration is greater than the Design, the Minimum must still be based on Design, not the Initial. Entering a Minimum smaller than 85% of Design will increase retention time if: 1) there is Continuous Mixing, or 2) Descending interface is chosen and He is used. If He is not used then there will be no change.Checking the box allows you to enter any “Minimum concentration” and select a value that is less than 85% of design. By doing so would mean you were not fully compliant with the letter of the Standard. Standards require that, at the end of the hold time, the agent concentration must be greater than 85% of the Design at the Minimum protected height. To place this in perspective, most countries do adhere to this requirement but some do not, notably Australia. The Initial concentration must be equal to or greater than the Design. In cases Initial concentration is greater than the Design, the Minimum must still be based on Design, not the Initial. Entering a Minimum smaller than 85% of Design will increase retention time if: 1) there is Continuous Mixing, or 2) Descending interface is chosen and He is used. If He is not used then there will be no change.Checking the box permits entry of any “Required protected height” which would typically be “the elevation of the protected hazard”. By doing so would mean you were not fully compliant with the letter of the Standard. The 2006 version of this Standard requires agent concentration to be held at 10%, 50% and 90% of the total flooded height for Descending Interface Hold Time calculations. Check with your local jurisdiction to determine what is required because many do not require this conservative approach. Both the 2000 version of ISO and the version about to be released in 2014 or early 2015 require: “At the end of the hold time, the extinguishant concentration at the elevation of the protected hazard shall be not less than 85% of the design concentration”. In practice, using 90% of the total flooded height for Descending Interface Hold Time calculations will reduce hold times by 50 to 75%. This forces enclosures to be 2 to 4 times tighter to pass which is often difficult, expensive and/or impossible. For this reason, many jurisdictions do not adhere to this requirement but some do. Continual Mixing is often a way to comply with the Standard because mixing maintains the same concentration at all heights making the 90% requirement irrelevant. This is often the only way the enclosure will pass the required hold time because mixing will always yield longer hold times. If the Initial Concentration is greater than the Design the hold time will increase even more. For example, if the Initial is 40%, the Design is 40% and the Minimum is 34% and the hold time is 7.1 minutes, then, if the Initial is increased to 44%, the Design is still 40%, the Minimum is still 34% but the hold time increases to 11 minutes. When increasing the Initial, the Design stays the same but the hold time increases. Do NOT make the common mistake of making the Minimum 85% of the Initial which would nullify the effect of adding extra agent. Instead, always make the Minimum 85% of Design. In order to choose this option, there must be mechanical or thermodynamic effects during the hold time that would assure Continual Mixing does occur. Fortunately, these conditions are often present when dedicated HVAC is left running during the hold time or where hot equipment will cause mixing due to convection or where an extended agent discharge is used. Our guidance is to follow the requirements of the AHJ or to continue with past procedures. This software will make calculations in any way you choose but the operator may want to consider the following comments to provide a context should a decision path be needed. 1) If a definitive procedure is in place, continue with it until the new version of ISO is in place that will eliminate the 90% requirement. 2) The vast majority of tests done worldwide and future versions of all standards will not require protection to a mandatory 90%, so over-riding this default is a reasonable action.WindHighly protected buildingPartially protected buildingHighly exposed building Wind speed0: Calm 1: Light air2: Light breeze3: Gentle breeze4: Moderate breeze5: Fresh breezeWind speed (Beaufort)Wind variability: dead calm light wind strong windgustywith pressure regulating valveWith this Range mounted:WitnessWitness name, companyWitness phone, e-mailWord2007 or newer is required.4To generate reports Word 2007 or newer is required. Unable to open Microsoft WordzMicrosoft Word 2007 or greater is required to generate reports. Please verify that is it installed and working correctly.Yellow and green tubesYellow tube onlyYesZipBSJB v4.0.30319l#~t`#Strings#US#GUID$#Blob %3%B_x <<<!<)<1<9<. ...#.+.3.;$( .mscorlibSystem.ReflectionAssemblyTitleAttribute.ctorAssemblyDescriptionAttributeAssemblyCompanyAttributeAssemblyProductAttributeAssemblyCopyrightAttributeAssemblyTrademarkAttributeAssemblyFileVersionAttributeLocalizationResources.resources.dllLocalizationResources.resourcesen-USLocalizationResources.Language.en-US.resources p+~Dz\V4visyd`\ $$RSA1)ump`T?LǠީ,tO#<Z1ݩ19vI!5dBX2Mb{^20t!~8ً`̦]ɍ,{,-eR`Ɔ|7(n @LocalizationResources Retrotec Copyright © 2017 Retrotec 2.0.0.0 _CorDllMainmscoree.dll% 0HX4VS_VERSION_INFO?DVarFileInfo$TranslationStringFileInfo000004b04 CompanyNameRetrotecTFileDescriptionLocalizationResources0FileVersion2.0.0.0h$InternalNameLocalizationResources.resources.dll\LegalCopyrightCopyright 2017 Retrotecp$OriginalFilenameLocalizationResources.resources.dllLProductNameLocalizationResources4ProductVersion2.0.0.08Assembly Version2.0.0.0 0=