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1、外文文獻外文文獻原文:原文:DDSdevicestoproducehighqualitywavefm:asimpleefficientflexibleSummaryDirectdigitalfrequencysynthesis(DDS)technologyfthegenerationregulationofhighqualitywavefmswidelyusedinmedicalindustrialinstrumentationcomm
2、unicationsdefensemanyotherareas.ThisarticlewillbrieflydescribethetechnologyonitsstrengthsweaknessesexaminesomeapplicationexamplesalsointroducedsomenewproductsthatcontributetothepromotionIntroductionAkeyrequirementinmanyi
3、ndustriesisanexactproductioneasyoperationquickchangeofdifferentfrequenciesdifferenttypesofwavefms.Whetheritisbroadbtransceiverrequireslowphasenoiseexcellentspuriousfreedynamicperfmanceofagilefrequencysourcefindustrialmea
4、surementcontrolsystemneedsastablefrequencyexcitationfasteasyeconomicaltoproduceadjustablewavefmwhilemaintainingphasecontinuitycapabilitiesarecriticaltoadesignstardwhichiswhattheadvantagesofdirectdigitalfrequencysynthesis
5、.FrequencysynthesistaskThegrowingcongestionofthespectrumcoupledwithlowerpowerconsumptionqualityofneverendingdemfhighermeasuringequipmentthesefactsrequiretheuseofthenewfrequencyrangerequiresabetteruseofexistingfrequencyra
6、nge.Aresultthesearchfbettercontrolinmostcasesbymeansoffrequencysynthesizerffrequencygeneration.ThesedevicesuseagivenfrequencyfCoftogenerateatargetfrequency(phase)fOUTthegeneralrelationshipcanbesimplyexpressedas:fOUT=εxfC
7、Amongthemthescalefactεxsometimesknownasthenmalizedfrequency.Theequationisusuallygradualapproximationoftherealnumberalgithms.Whenthescalefactisarationalnumbertworelativelyprimenumbers(outputfrequencyreferencefrequency)tha
8、ntheharmonic.HoweverinmostcasesεxmaybelongtoabroadersetofrealnumberstheapproximationprocessiswithintheacceptablerangewillbedDirectDigitalFrequencySynthesizerThefrequencysynthesizerapracticalwaytoachieveisthedirectdigital
9、frequencysynthesis(ofDDFS)usuallyreferredtoasdirectdigitalsynthesis(DDS).ThistechniqueusingdigitaldataprocessingtogenerateafrequencyphaseadjustableoutputtheoutputafixedfrequencyreferenceclocksourcefC.related.DDSarchitect
10、urethereferencethesystemclockfrequencydividedbyascalefacttoproducethedesiredfrequencythescalefactiscontrolledbythebinarytuningwdprogrammable.Inshtdirectdigitalfrequencysynthesizertoconvertabunchofclockpulsesintoananalogw
11、avefmusuallyasinewavetrianglewavesquarewave.ShowninFigure1itsmainparts:thephaseaccumulat(toproducetheoutputwavefmphaseangledata)relativetodigitalconverter(abovethephasedataisconvertedtotheinstantaneousoutputamplitudedata
12、)digitaltoanalogconverter(DAC)(themagnitudeofdataintoasampledanalogdatapoints)IntegratedinasingledeviceontheengineofaDDSaDAChasbothadvantagesdisadvantageshoweverwhetherintegratednotneedaDACtoproduceultrahighpurityhighqua
13、lityanalogsignal.DACwillconvertdigitalsinusoidaloutputtoananalogsinewavemaybesingleendeddifferential.Someofthekeyrequirementsflowphasenoiseexcellentwideb(WB)narrowb(NB)spuriousfreedynamicrange(SFDR)lowpowerconsumption.If
14、theexternaldevicetheDACmustbefastenoughtohlethesignalsothebuiltinparallelptdeviceisverycommon.DDSothersolutionsThefrequencyanalogphaselockedloops(PLLs)clockgenerattheuseofFPGAdynamicprogrammingoftheoutputoftheDAC.Byexami
15、ningthespectrumofperfmancepowerofthesetechnologiesasimplecomparisonTable1showsthequalitativeresultsofthecomparisonTable1.DDSwithcompetingtechnologiesAdvancedcomparePowerconsumptionSpectralpurityRemarksDDSLowdleEaseoftuni
16、ngDiscreteDACFPGAdledleHighWithtuningcapabilitiesAnalogPLLMilddleHighDifficulttuningPhaselockedloopisafeedbackloopitscomponents:aphasecomparatadividerapressurecontrolledoscillat(VCO)phasecomparatreferencefrequencyoutputf
17、requency(usuallytheoutputfrequencyisN)frequency)werecompared.TheerrvoltagegeneratedbythephasecomparatisusedtoadjusttheVCOthustheoutputfrequency.Whentheloopisestablishedtheoutputfrequencyphasewiththereferencefrequencytoma
18、intainapreciserelationship.PLLhaslongbeenconsideredinaparticularfrequencyrangehighfidelityconsistentsignallowphasenoisehighspuriousfreedynamicrange(SFDR)areidealfapplications.PLLcannotbepreciselyquicklytuningthefrequency
19、outputwavefmtheslowresponsewhichlimitstheirapplicabilityffastfrequencyhoppingpartofthefrequencyshiftkeyingphaseshiftkeyingapplications.OtherprogramsincludingintegratedDDSenginefieldprogrammablegatearrays(FPGAs)asynthetic
20、sinewaveoutputwiththeofftheshelfDACthoughthePLLfrequencyhoppingproblemcanbesolvedbutthereownshtcomings.Thedefectsofthemajsystemswkinterfacepowerrequirementshighcostlargesizesystemdevelopersmustalsoconsidertheadditionalso
21、ftwarehardwarememy.FexampleusingtheDDSengineoptioninthemodernFPGAtogeneratethe10MHzoutputsignaldynamicrangeis60dBupto72kBmemyspace.InadditiondesignersneedtoacceptbefamiliarwiththesubtlebalanceDDScearchitecture..Fromaprac
22、ticalpointofview(seeTable2)thankstotherapiddevelopmentofCMOStechnologymoderndigitaldesigntechniquesaswellastheimprovementoftheDACtopologyDDStechnologyhasbeenabletoachieveunprecedentedlowpowerconsumptioninawiderangeofappl
23、icationsspectrumperfmancecostlevels.AlthoughthepureDDSproductsinperfmancedesignflexibilitytoachievethelevelofhighendDACtechnologyFPGAbuttheadvantagesofDDSintermsofsizepowerconsumptioncostsimplicitymakingittheprimarychoic
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