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單片機(jī)單片機(jī)也被稱為微控制器(MicrocontrollerUnit),常用英文字母的縮寫MCU表示單片機(jī),它最早是被用在工業(yè)控制領(lǐng)域。單片機(jī)由芯片內(nèi)僅有CPU的專用處理器發(fā)展而來。最早的設(shè)計(jì)理念是通過將大量外圍設(shè)備和CPU集成在一個(gè)芯片中,使計(jì)算機(jī)系統(tǒng)更小,更容易集成進(jìn)復(fù)雜的而對(duì)體積要求嚴(yán)格的控制設(shè)備當(dāng)中。INTEL的Z80是最早按照這種思想設(shè)計(jì)出的處理器,從此以后,單片機(jī)和專用處理器的發(fā)展便分道揚(yáng)鑣。早期的單片機(jī)都是8位或4位的。其中最成功的是INTEL的8031,因?yàn)楹?jiǎn)單可靠而性能不錯(cuò)獲得了很大的好評(píng)。此后在8031上發(fā)展出了MCS51系列單片機(jī)系統(tǒng)?;谶@一系統(tǒng)的單片機(jī)系統(tǒng)直到現(xiàn)在還在廣泛使用。隨著工業(yè)控制領(lǐng)域要求的提高,開始出現(xiàn)了16位單片機(jī),但因?yàn)樾詢r(jià)比不理想并未得到很廣泛的應(yīng)用。90年代后隨著消費(fèi)電子產(chǎn)品大發(fā)展,單片機(jī)技術(shù)得到了巨大提高。隨著INTELi960系列特別是后來的ARM系列的廣泛應(yīng)用,32位單片機(jī)迅速取代16位單片機(jī)的高端地位,并且進(jìn)入主流市場(chǎng)。而傳統(tǒng)的8位單片機(jī)的性能也得到了飛速提高,處理能力比起80年代提高了數(shù)百倍。目前,高端的32位單片機(jī)主頻已經(jīng)超過300MHz,性能直追90年代中期的專用處理器,而普通的型號(hào)出廠價(jià)格跌落至1美元,最高端[1]的型號(hào)也只有10美元。當(dāng)代單片機(jī)系統(tǒng)已經(jīng)不再只在裸機(jī)環(huán)境下開發(fā)和使用,大量專用的嵌入式操作系統(tǒng)被廣泛應(yīng)用在全系列的單片機(jī)上。而在作為掌上電腦和手機(jī)核心處理的高端單片機(jī)甚至可以直接使用專用的Windows和Linux操作系統(tǒng)。單片機(jī)比專用處理器更適合應(yīng)用于嵌入式系統(tǒng),因此它得到了最多的應(yīng)用。事實(shí)上單片機(jī)是世界上數(shù)量最多的計(jì)算機(jī)?,F(xiàn)代人類生活中所用的幾乎每件電子和機(jī)械產(chǎn)品中都會(huì)集成有單片機(jī)。手機(jī)、電話、計(jì)算器、家用電器、電子玩具、掌上電腦以及鼠標(biāo)等電腦配件中都配有1-2部單片機(jī)。而個(gè)人電腦中也會(huì)有為數(shù)不少的單片機(jī)在工作。汽車上一般配備40多部單片機(jī),復(fù)雜的工業(yè)控制系統(tǒng)上甚至可能有數(shù)百臺(tái)單片機(jī)在同時(shí)工作!單片機(jī)的數(shù)量不僅遠(yuǎn)超過PC機(jī)和其他計(jì)算的總和,甚至比人類的數(shù)量還要多。單片機(jī)又稱單片微控制器,它不是完成某一個(gè)邏輯功能的芯片,而是把一個(gè)計(jì)算機(jī)系統(tǒng)集成到一個(gè)芯片上。相當(dāng)于一個(gè)微型的計(jì)算機(jī),和計(jì)算機(jī)相比,單片機(jī)只缺少了I/O設(shè)備。概括的講:一塊芯片就成了一臺(tái)計(jì)算機(jī)。它的體積小、質(zhì)量輕、價(jià)格便宜、為學(xué)習(xí)、應(yīng)用和開發(fā)提供了便利條件。同時(shí),學(xué)習(xí)使用單片機(jī)是了解計(jì)算機(jī)原理與結(jié)構(gòu)的最佳選擇。單片機(jī)內(nèi)部也用和電腦功能類似的模塊,比如CPU,內(nèi)存,并行總線,還有和硬盤作用相同的存儲(chǔ)器件,不同的是它的這些部件性能都相對(duì)我們的家用電腦弱很多,不過價(jià)錢也是低的,一般不超過10元即可......用它來做一些控制電器一類不是很復(fù)雜的工作足矣了。我們現(xiàn)在用的全自動(dòng)滾筒洗衣機(jī)、排煙罩、VCD等等的家電里面都可以看到它的身影!......它主要是作為控制部分的核心部件。它是一種在線式實(shí)時(shí)控制計(jì)算機(jī),在線式就是現(xiàn)場(chǎng)控制,需要的是有較強(qiáng)的抗干擾能力,較低的成本,這也是和離線式計(jì)算機(jī)的(比如家用PC)的主要區(qū)別。單片機(jī)芯片單片機(jī)是靠程序運(yùn)行的,并且可以修改。通過不同的程序?qū)崿F(xiàn)不同的功能,尤其是特殊的獨(dú)特的一些功能,這是別的器件需要費(fèi)很大力氣才能做到的,有些則是花大力氣也很難做到的。一個(gè)不是很復(fù)雜的功能要是用美國50年代開發(fā)的74系列,或者60年代的CD4000系列這些純硬件來搞定的話,電路一定是一塊大PCB板!但是如果要是用美國70年代成功投放市場(chǎng)的系列單片機(jī),結(jié)果就會(huì)有天壤之別!只因?yàn)閱纹瑱C(jī)的通過你編寫的程序可以實(shí)現(xiàn)高智能,高效率,以及高可靠性!由于單片機(jī)對(duì)成本是敏感的,所以目前占統(tǒng)治地位的軟件還是最低級(jí)匯編語言,它是除了二進(jìn)制機(jī)器碼以上最低級(jí)的語言了,既然這么低級(jí)為什么還要用呢?很多高級(jí)的語言已經(jīng)達(dá)到了可視化編程的水平為什么不用呢?原因很簡(jiǎn)單,就是單片機(jī)沒有家用計(jì)算機(jī)那樣的CPU,也沒有像硬盤那樣的海量存儲(chǔ)設(shè)備。此外,單片機(jī)在工商,金融,科研、教育,國防航空航天等領(lǐng)域都有著十分廣泛的用途。學(xué)習(xí)應(yīng)用六大重要部分單片機(jī)學(xué)習(xí)應(yīng)用的六大重要部分:一、總線:我們知道,一個(gè)電路總是由元器件通過電線連接而成的,在模擬電路中,連線并不成為一個(gè)問題,因?yàn)楦髌骷g一般是串行關(guān)系,各器件之間的連線并不很多,但計(jì)算機(jī)電路卻不一樣,它是以微處理器為核心,各器件都要與微處理器相連,各器件之間的工作必須相互協(xié)調(diào),所以需要的連線就很多了,如果仍如同模擬電路一樣,在各微處理器和各器件間單獨(dú)連線,則線的數(shù)量將多得驚人,所以在微處理機(jī)中引入了總線的概念,各個(gè)器件共同享用連線,所有器件的8根數(shù)據(jù)線全部接到8根公用的線上,即相當(dāng)于各個(gè)器件并聯(lián)起來,但僅這樣還不行,如果有兩個(gè)器件同時(shí)送出數(shù)據(jù),一個(gè)為0,一個(gè)為1,那么,接收方接收到的究竟是什么呢?這種情況是不允許的,所以要通過控制線進(jìn)行控制,使器件分時(shí)工作,任何時(shí)候只能有一個(gè)器件發(fā)送數(shù)據(jù)(可以有多個(gè)器件同時(shí)接收)。器件的數(shù)據(jù)線也就被稱為數(shù)據(jù)總線,器件所有的控制線被稱為控制總線。在單片機(jī)內(nèi)部或者外部存儲(chǔ)器及其它器件中有存儲(chǔ)單元,這些存儲(chǔ)單元要被分配地址,才能使用,分配地址當(dāng)然也是以電信號(hào)的形式給出的,由于存儲(chǔ)單元比較多,所以,用于地址分配的線也較多,這些線被稱為地址總線。二、數(shù)據(jù)、地址、指令:之所以將這三者放在一起,是因?yàn)檫@三者的本質(zhì)都是一樣的——數(shù)字,或者說都是一串‘0’和‘1’組成的序列。換言之,地址、指令也都是數(shù)據(jù)。指令:由單片機(jī)芯片的設(shè)計(jì)者規(guī)定的一種數(shù)字,它與我們常用的指令助記符有著嚴(yán)格的一一對(duì)應(yīng)關(guān)系,不可以由單片機(jī)的開發(fā)者更改。地址:是尋找單片機(jī)內(nèi)部、外部的存儲(chǔ)單元、輸入輸出口的依據(jù),內(nèi)部單元的地址值已由芯片設(shè)計(jì)者規(guī)定好,不可更改,外部的單元可以由單片機(jī)開發(fā)者自行決定,但有一些地址單元是一定要有的(詳見程序的執(zhí)行過程)。三、P0口、P2口和P3的第二功能用法:初學(xué)時(shí)往往對(duì)P0口、P2口和P3口的第二功能用法迷惑不解,認(rèn)為第二功能和原功能之間要有一個(gè)切換的過程,或者說要有一條指令,事實(shí)上,各端口的第二功能完全是自動(dòng)的,不需要用指令來轉(zhuǎn)換。如P3.6、P3.7分別是WR、RD信號(hào),當(dāng)微片理機(jī)外接RAM或有外部I/O口時(shí),它們被用作第二功能,不能作為通用I/O口使用,只要一微處理機(jī)一執(zhí)行到MOVX指令,就會(huì)有相應(yīng)的信號(hào)從P3.6或P3.7送出,不需要事先用指令說明。事實(shí)上‘不能作為通用I/O口使用’也并不是‘不能’而是(使用者)‘不會(huì)’將其作為通用I/O口使用。你完全可以在指令中按排一條SETBP3.7的指令,并且當(dāng)單片機(jī)執(zhí)行到這條指令時(shí),也會(huì)使P3.7變?yōu)楦唠娖剑褂谜卟粫?huì)這么去做,因?yàn)檫@通常會(huì)導(dǎo)致系統(tǒng)的崩潰。四、程序的執(zhí)行過程:?jiǎn)纹瑱C(jī)在通電復(fù)位后8051內(nèi)的程序計(jì)數(shù)器(PC)中的值為‘0000’,所以程序總是從‘0000’單元開始執(zhí)行,也就是說:在系統(tǒng)的ROM中一定要存在‘0000’這個(gè)單元,并且在‘0000’單元中存放的一定是一條指令。五、堆棧:堆棧是一個(gè)區(qū)域,是用來存放數(shù)據(jù)的,這個(gè)區(qū)域本身沒有任何特殊之處,就是內(nèi)部RAM的一部份,特殊的是它存放和取用數(shù)據(jù)的方式,即所謂的‘先進(jìn)后出,后進(jìn)先出’,并且堆棧有特殊的數(shù)據(jù)傳輸指令,即‘PUSH’和‘POP’,有一個(gè)特殊的專為其服務(wù)的單元,即堆棧指針SP,每當(dāng)執(zhí)一次PUSH指令時(shí),SP就(在原來值的基礎(chǔ)上)自動(dòng)加1,每當(dāng)執(zhí)行一次POP指令,SP就(在原來值的基礎(chǔ)上)自動(dòng)減1。由于SP中的值可以用指令加以改變,所以只要在程序開始階段更改了SP的值,就可以把堆棧設(shè)置在規(guī)定的內(nèi)存單元中,如在程序開始時(shí),用一條MOVSP,#5FH指令,就時(shí)把堆棧設(shè)置在從內(nèi)存單元60H開始的單元中。一般程序的開頭總有這么一條設(shè)置堆棧指針的指令,因?yàn)殚_機(jī)時(shí),SP的初始值為07H,這樣就使堆棧從08H單元開始往后,而08H到1FH這個(gè)區(qū)域正是8031的第二、三、四工作寄存器區(qū),經(jīng)常要被使用,這會(huì)造成數(shù)據(jù)的混亂。不同作者編寫程序時(shí),初始化堆棧指令也不完全相同,這是作者的習(xí)慣問題。當(dāng)設(shè)置好堆棧區(qū)后,并不意味著該區(qū)域成為一種專用內(nèi)存,它還是可以象普通內(nèi)存區(qū)域一樣使用,只是一般情況下編程者不會(huì)把它當(dāng)成普通內(nèi)存用了。Single-chipSCMisalsoknownasmicro-controller(MicrocontrollerUnit),commonlyusedlettersoftheacronymMCUthatitwasfirstusedinindustrialcontrol.OnlyasinglechipbytheCPUchipdevelopedfromadedicatedprocessor.ThefirstdesignisbyalargenumberofperipheralsandCPUonachipinthecomputersystem,smaller,moreeasilyintegratedintoacomplexanddemandingonthevolumecontroldevicewhich.INTEL'sZ80isthefirstdesignedinaccordancewiththisideaprocessor,thenonthedevelopmentofmicrocontrolleranddedicatedprocessorshavepartedways.Are8-bitmicrocontrollerearlyor4bits.OneofthemostsuccessfulistheINTEL8031,forasimple,reliableandgoodperformancewasalotofpraise.Thendevelopedin8031outofMCS51MCUSystems.SCMsystemsbasedonthissystemuntilnowisstillwidelyused.Withtheincreasedrequirementsofindustrialcontrolfield,begana16-bitmicrocontroller,becausethecostisnotsatisfactorybuthavenotbeenverywidelyused.After90yearswiththegreatdevelopmentofconsumerelectronics,microcontrollertechnologyhasbeenahugeincrease.WithINTELi960series,especiallythelaterseriesofwidelyusedARM,32-bitmicrocontrollerquicklyreplacehigh-end16-bitMCUstatusandenterthemainstreammarket.Thetraditional8-bitmicrocontrollerperformancehavebeentherapidincreasecapacityincreasecomparedto80thenumberoftimes.Currently,high-end32-bitmicrocontrollerclockedover300MHz,theperformancecatchingthemid-90'sdedicatedprocessor,whiletheaveragemodelpricesfalltooneU.S.dollars,themosthigh-end[1]modelonly10dollars.ModernSCMsystemsarenolongeronlyinthedevelopmentanduseofbaremetalenvironment,alargenumberofproprietaryembeddedoperatingsystemiswidelyusedinthefullrangeofSCM.Thehandheldcomputersandcellphonesasthecoreprocessingofhigh-endmicrocontrollercanevenuseadedicatedWindowsandLinuxoperatingsystems.SCMismoresuitablethanthespecificprocessorusedinembeddedsystems,soitwasuptotheapplication.InfactthenumberofSCMistheworld'slargestcomputer.Modernhumanlifeusedinalmosteverypieceofelectronicandmechanicalproductswillbeintegratedsinglechip.Phone,telephone,calculator,homeappliances,electronictoys,handheldcomputersandcomputeraccessoriessuchasamousewitha1-2inboththeDepartmentofSCM.PersonalcomputerwillhavealargenumberofSCMinthework.Generalcarwithmorethan40SCM,complexindustrialcontrolsystemsmayevenhavehundredsofSCMinthesametimework!SCMisnotonlyfarexceedsthenumberofPCandothercomputingthesum,orevenmorethanthenumberofhumanbeingsSinglechip,alsoknownassingle-chipmicrocontroller,itisnotcompleteacertainlogicchips,buttoacomputersystemintegratedintoachip.Equivalenttoamicro-computer,andcomputerthanjustthelackofamicrocontrollerI/Odevices.Generaltalk:achipbecomesacomputer.Itssmallsize,lightweight,cheap,forthestudy,applicationanddevelopmentoffacilitiesprovided.Atthesametime,learningtousetheMCUistounderstandtheprincipleandstructureofthecomputerthebestchoice.SCMandthecomputerfunctionsinternallywithsimilarmodules,suchasCPU,memory,parallelbus,thesameeffectaswell,andharddiskmemorydevices,anddifferentisitsperformanceofthesecomponentswererelativelyweakmanyofourhomecomputer,butthepriceislow,usuallynotmorethan10yuanyoucandowithit......somecontrolforaclassisnotverycomplicatedelectricalworkisenoughof.Weareusingautomaticdrumwashingmachine,smokehood,VCDandsoonapplianceswhichcouldseeitsshadow!......ItisprimarilyasacontrolsectionofthecorecomponentsItisanonlinereal-timecontrolcomputer,control-lineisthatthesceneisneededisastrongeranti-jammingability,lowcost,andthisis,andoff-linecomputer(suchashomePC),themaindifference.Singlechip
MCUisthroughrunning,andcanbemodified.Throughdifferentprocedurestoachievedifferentfunctions,inparticularspecialuniquefeatures,thisisanotherdevicemucheffortneedstobedone,somegreateffortsareverydifficulttodo.Anotverycomplexfunctionsifthe50'swiththeUnitedStatesdeveloped74series,orthe60'sCD4000seriesofthesepurehardwarebuttoned,thenthecircuitmustbealargePCBboard!ButiftheUnitedStatesifthe70'swithaseriesofsuccessfulSCMmarket,theresultwillbeadrasticchange!Justbecauseyouarepreparedbymicrocomputerprogramscanachievehighintelligence,highefficiencyandhighreliability!Asthemicrocontrolleronthecost-sensitive,sonowthedominantsoftwareorthelowestlevelassemblylanguage,whichisthelowestlevelinadditiontomorethanbinarymachinecodelanguage,andassolowwhyistheuse?Manyhigh-levellanguagehasreachedthelevelofvisualprogrammingWhyisnotit?ThereasonissimplythatthereisnohomecomputerasasinglechipCPU,notashardasamassstoragedevice.Avisualizationofsmallhigh-levellanguageprogramwhichevenifonlyonebutton,willreachtensofKofsize!ForthehomePC'sharddriveintermsofnothing,butintermsoftheMCUisnotacceptable.SCMintheutilizationofhardwareresourcestobeveryhighforthejobsoalthoughtheoriginalisstillinthecompilationofalotofuse.Thesametoken,ifthegiantcomputeroperatingsystemandapplicationsrunuptogethomePC,homePC,alsocannotaffordto.Canbesaidthatthetwentiethcenturyacrossthethree"power"era,thatis,theageofelectricity,theelectronicageandhasenteredintothecomputerage.However,thiscomputer,usuallyreferstothepersonalcomputer,referredtoasPC.Itconsistsofthehost,keyboard,monitorandothercomponents.Anothertypeofcomputer,mostpeopledonotknowhow.Thiscomputeristogiveallkindsofintelligentmachinessinglechip(alsoknownasmicro-controller).Asthenamesuggests,thiscomputersystemtookonlyaminimalintegratedcircuit,canbeasimpleoperationandcontrol.Becauseitissmall,usuallyhiddeninthechargedmechanical"stomach"in.Itisinthedevice,likethehumanbrainplaysarole,itgoeswrong,thewholeplantwasparalyzed.Now,thismicrocontrollerhasaverybroadfieldofuse,suchassmartmeters,real-timeindustrialcontrol,communicationsequipment,navigationsystems,andhouseholdappliances.OnceallkindsofproductswereusingSCM,canservetoupgradetheeffectivenessofproducts,oftenintheproductnameprecededbytheadjective-"intelligent,"suchasintelligentwashingmachines.Nowsometechnicalpersonneloffactoriesorotheramateurelectronicsdeveloperstoengageinoutofcertainproducts,notthecircuitistoocomplicated,thatfunctionistoosimpleandcaneasilybecopied.Thereasonmaybestuckintheproductdidnotuseamicrocontrollerorotherprogrammablelogicdevice.SCMhistorySCMwasborninthelate20thcentury,70,experiencedSCM,MCU,SOCthreestages.
Firstmodel
1.SCMthesinglechipmicrocomputer(SingleChipMicrocomputer)stage,mainlyseekingthebestofthebestsingleformofembeddedsystemsarchitecture."Innovationmodel"success,layingtheSCMandgeneralcomputercompletelydifferentpathofdevelopment.Intheopenroadofindependentdevelopmentofembeddedsystems,IntelCorporationcontributed.2.MCUthemicro-controller(MicroControllerUnit)stage,themaindirectionoftechnologydevelopment:expandingtomeettheembeddedapplications,thetargetsystemrequirementsforthevariousperipheralcircuitsandinterfacecircuits,highlighttheobjectofintelligentcontrol.Itinvolvestheareasassociatedwiththeobjectsystem,therefore,thedevelopmentofMCU'sresponsibilityinevitablyfallsonelectrical,electronicsmanufacturers.Fromthispointofview,IntelfadedMCUdevelopmenthasitsobjectivefactors.InthedevelopmentofMCU,themostfamousmanufacturersasthenumberofPhilipsCorporation.Philipscompanyinembeddedapplications,itsgreatadvantage,theMCS-51single-chipmicro-computerfromtherapiddevelopmentofthemicro-controller.Therefore,whenwelookbackatthepathofdevelopmentofembeddedsystems,donotforgetIntelandPhilipsinHistory.
EmbeddedSystems
Embeddedsystemmicrocontrollerisanindependentdevelopmentpath,theMCUimportantfactorinthedevelopmentstage,isseekingapplicationstomaximizethesolutiononthechip;Therefore,thedevelopmentofdedicatedsinglechipSOCtrendofthenaturalform.Asthemicroelectronics,ICdesign,EDAtoolsdevelopment,applicationsystembasedonMCUSOCdesignhavegreaterdevelopment.Therefore,theunderstandingofthemicrocontrollerchipmicrocomputercanbe,extendedtothesingle-chipmicro-controllerapplications.MCUapplications
SCMnowpermeateallareasofourlives,whichisalmostdifficulttofindtracesofthefieldwithoutSCM.Missilenavigationequipment,aircraft,alltypesofinstrumentcontrol,computernetworkcommunicationsanddatatransmission,industrialautomation,real-timeprocesscontrolanddataprocessing,extensiveuseofvarioussmartICcard,civilianluxurycarsecuritysystem,videorecorder,camera,fullyautomaticwashingmachinecontrol,andprogram-controlledtoys,electronicpet,etc.,whichareinseparablefromthemicrocontroller.Nottomentiontheareaofrobotcontrol,intelligentinstruments,medicalequipmentwas.Therefore,theMCUlearning,developmentandapplicationofthelargenumberofcomputerapplicationsandintelligentcontrolofthescientists,engineers.
SCMiswidelyusedininstrumentsandmeters,householdappliances,medicalequipment,aerospace,specializedequipment,intelligentmanagementandprocesscontrolfields,roughlydividedintothefollowingseveralareas:1.IntheapplicationofIntelligentInstruments
SCMhasasmallsize,lowpowerconsumption,controllingfunction,expansionflexibility,theadvantagesofminiaturizationandeaseofuse,widelyusedinstrument,combiningdifferenttypesofsensorscanberealizedZhuruvoltage,power,frequency,humidity,temperature,flow,speed,thickness,angle,length,hardness,elemental,physicalpressuremeasurement.SCMmakesuseofdigitalinstruments,intelligence,miniaturization,andfunctionalitythanelectronicordigitalcircuitsmorepowerful.Suchasprecisionmeasuringequipment(powermeter,oscilloscope,variousanalyticalinstrument).2.Intheindustrialcontrolapplication
WiththeMCUcanconstituteavarietyofcontrolsystems,dataacquisitionsystem.Suchasfactoryassemblylineofintelligentcontrol3.InHouseholdAppliances
canbesaidthattheappliancesarebasicallyusingSCM,praisefromtheelectricrice,washingmachines,refrigerators,airconditioners,colorTV,andotheraudiovideoequipment,totheelectronicweighingequipment,varied,andomnipresent.
4.Inthefieldofcomputernetworksandcommunicationsapplications
MCUgeneralwithmoderncommunicationinterface,canbeeasywiththecomputerdatacommunication,networkingandcommunicationsincomputerapplicationsbetweendeviceshadexcellentmaterialconditions,arebasicallyallcommunicationequipmenttoachieveacontrolledbyMCUfrommobilephone,telephone,mini-program-controlledswitchboards,buildingautomatedcommunicationscallsystem,trainradiocommunication,tothedailyworkcanbeseeneverywhereinthemobilephones,trunkedmobileradio,walkie-talkies,etc..5.Microcomputerinthefieldofmedicaldeviceapplications
SCMintheuseofmedicaldevicesisalsoquiteextensive,suchasmedicalrespirator,thevariousanalyzers,monitors,ultrasounddiagnosticequipmentandhospitalbeds,etc.callsystem.
6.Inavarietyofmajorappliancesinthemodularapplications
Designedtoachievesomespecialsinglespecificfunctiontobemodularinavarietyofcircuitapplications,withoutrequiringtheuseofpersonneltounderstanditsinternalstructure.Ifmusicintegratedsinglechip,seeminglysimplefunction,miniatureelectronicchipinthenet(theprincipleisdifferentfromthetapemachine),youneedacomputersimilartotheprincipleofthecomplex.Suchas:musicsignaltodigitalformstoredinmemory(likeROM),readbythemicrocontroller,analogmusicintoelectricalsignals(similartothesoundcard).
Inlargecircuits,modularapplicationsthatgreatlyreducethevolume,simplifiesthecircuitandreducethedamage,errorrate,butalsoeasytoreplace.
7.Microcontrollerintheapplicationfieldofautomotiveequipment
SCMinautomotiveelectronicsiswidelyused,suchasavehicleenginecontroller,CANbus-basedIntelligentElectronicControlEngine,GPSnavigationsystem,absanti-lockbrakingsystem,brakesystem,etc..
Inaddition,theMCUinbusiness,finance,research,education,nationaldefense,aerospaceandotherfieldshasaverywiderangeofapplications.Applicationofsiximportantpartoflearning
MCUlearninganimportantpartofthesixapplications
1,Bus:
Weknowthatacircuitisalwaysmadebythedevicesconnectedbywires,inanalogcircuits,theconnectiondoesnotbecomeaproblembecausethedeviceisaserialrelationshipbetweenthegeneral,thedeviceisnotmuchconnectionbetweenthe,butthecomputerisnotthesamecircuit,itisamicroprocessorcore,thedevicemustbeconnectedwiththemicroprocessor,thedevicemustbecoordinationbetween,sotheyneedtoconnectonalot,asifstillanalogcircuitlikethemicroprocessoranddevicesintheconnectionbetweentheindividual,thenumberoflineswillbealittlemoresurprising,thereforetheintroductionofthemicroprocessorbusZhongEachdeviceGongtongaccessconnections,alldevices8Shujulineallreceivedeightpubliconline,thatistheequivalentofalldevicestogetherinparallel,butonlythisdoesnotwork,iftherearetwodevicessenddataatthesametime,a0,a1,then,whetherthereceiverreceivedwhatisit?Thissituationisnotallowed,sotobecontrolledbycontrollingtheline,time-sharingthedevicetoworkatanytimeonlyonedevicetosenddata(whichcanhavemultipledevicestoreceiveboth).Device'sdataconnectionisknownasthedatabus,thedeviceiscalledlineofcontrolallthecontrolbus.Internalorexternalmemoryinthemicrocontrollerandotherdeviceshavememorycells,thememorycelltobeassignedaddresses,youcanuse,distribution,ofcourse,toaddressgivenintheformofelectricalsignals,andasmorememorycells,so,fortheaddressallocationThelineisalsomoreoftheselinesiscalledtheaddressbus.Second,data,address,command
Thereasonwhythesethreetogetherbecauseofthenatureofthesethreearethesame-thenumber,orareastringof'0'and'1'formthesequence.Inotherwords,addresses,instructionsarealsodata.Instruction:fromsinglechipdesignerprovidesanumberofcommonlyusedinstructionswithmnemonicwehaveastrictcorrespondencebetweenthedevelopercannotbechangedbytheMCU.Address:thesearchforMCUinternal,externalstorageunits,inputandoutputportbasedontheaddressoftheinternalunitvalueprovidedbythechipdesignerisgood,cannotbechanged,theexternalunitcanbesinglechipdeveloperstodecide,butthereareanumberofaddressunitsisamust(seeproceduresfortheimplementationoftheprocess).
Third,P0port,P2andP3ofthesecondfunctionIuse:
BeginnersoftenontheP0port,P2andP3portIusethesecondfunctionpuzzledthatthesecondfunctionandhaveaswitchbetweentheoriginalfunctionoftheprocess,orhaveadirective,infact,theportThesecondfeatureisautomatic,donotneedinstructionstoconvert.SuchasP3.6,P3.7respectivelyWR,RDsignal,whenthemicrochipprocessingmachinesexternalRAMorexternalI/Oport,theyareusedasasecondfunction,notasageneral-purposeI/Oportused,solongasaAmicroprocessorimplementationoftheMOVXinstruction,therewillbeacorrespondingsignalsentfromtheP3.6orP3.7,noprioruseofcommands.Infact'notasagen
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