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intmain(void){delay_init();//延时函数初始化NVIC_PriorityGroupConfig(NVIC_PriorityGroup_2);//设置NVIC中断分组2:2位抢占优先级,2位响应优先级uart_init(115200);//串口初始化为115200LED_Init();//初始化与LED连接的硬件接口TM1637_Init();while(1){delay_ms(1);//延时1msTM1637_NixieTubeDisplay();TM1637_NixieTubeDisplayChar(1,0);//第一位显示1TM1637_NixieTubeDisplayChar(2,1);//第二位显示2TM1637_NixieTubeDisplayChar(3,2);//第三位显示3TM1637_NixieTubeDisplayChar(4,3);//第四位显示4}}
2024/6/28 16:21:43 2.55MB STM32 TM1637 四段数码管
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DistributedSystems(3rd)英文无水印原版pdf第3版pdf所有页面使用FoxitReader、PDF-XChangeViewer、SumatraPDF和Firefox测试都可以打开本资源转载自网络,如有侵权,请联系上传者或csdn删除查看此书详细信息请在美国亚马逊官网搜索此书Copyright@2017MaartenvanSteenandAndrewS.TanenbaumPublishedbyMaartenvanSteenThisbookwaspreviouslypublishedby:PearsonEducation,IncISBN:978-15-430573-8-6(printedversion)ISBN:978-90-815406-2-9(digitalversion)Edition:3.Version:01(February2017)AllrightstotextandillustrationsarereservedbyMaartenvanSteenandAndrewS.Tanenbaum.Thisworkmaynotbecopied,reproduced,ortranslatedinwholeorpartwithoutwrittenpermissionofthepublisher,exceptforbriefexcerptsinreviewsorscholanyformofinformationstorageadaptationorwhatever,computersoftware,orbysimilarordissimilarmethodsnowknownordevelopedinthefutureisstrictlyforbiddenwithoutwrittenpermissionofthepublisherToMarielle,max,andelkeMVSToSuzanneBarbara,Marvin,Aronnathan,olivia,andmirteASTCONTENTSPreface1Introduction1.1Whatisadistributedsystem?Characteristic1:Collectionofautonomouscomputingelements2Characteristic2:SinglecoherentsystemMiddlewareanddistributedsystems1.2DesigngoalsSupportingresourcesharingMakingdistributiontransparent12Beingscalable15Pitfalls243Typesofdistributedsystems24Highperformancedistributedcomputing25Distributedinformationsystems34Pervasivesystems1.4Summary522Architectures552.1Architecturalstyles56Layeredarchitectures.57Object-basedandservice-orientedarchitectures62Resource-basedarchitectures64Publish-subscribearchitectures2.2MiddlewareorganizationWrappersInterceptors垂番Modifiablemiddleware752.3SystemarchitectureCONTENTSCentralizedorganizations76Decentralizedorganizations:peer-to-peersystemsHybridarchitectures2.4Examplearchitectures94TheNetworkFilesystem94TheWeb982.5Summary3Processes1033.1Threads..104Introductiontothreads104Threadsindistributedsystems1113.2Virtualization116Principleofvirtualizationapplicationofvirtualmachinestodistributedsystems,1223.3Clients124Networkeduserinterfaces124Client-sidesoftwarefordistributiontransparency1273.4Servers128Generaldesignissues129Objectservers133Example:TheApacheWebserver139Serverclusters,,,,,,,1413.5Codemigration152Reasonsformigratingcode152Migrationinheterogeneoussystems1583.6Summary1614Communication4.1Foundations164LayeredProtocols164TypesofCommunication.1724.2Remoteprocedurecall..173Basicrpcoperation174Parameterpassing178RPC-basedapplicationsupport182VariationsonrPc185Example:dCErPc,.1884.3Message-orientedcommunication193Simpletransientmessagingwithsockets.193Advancedtransientmessaging198Message-orientedpersistentcommunication206Example:IBM'sWebSpheremessage-queuingsystem212Example:AdvancedMessageQueuingProtocol(AMQP)....218DS3.01DOWNLOADEDBYTEWIGOMIXMAIL.INFOCONTENTS4.4Multicastcommunication221Application-leveltree-basedmulticasting221Flooding-basedmulticasting225Gossip-baseddatadissemination2294.5Summary2345Naming2375.1Names,identifiersandaddresses2385.2Flatnaming.241Simplesolutions241Home-basedapproaches245Distributedhashtables246Hierarchicalapproaches2515.3Structurednaming256Namespaces.256Nameresolution259Theimplementationofanamespace264Example:TheDomainNameSystem271Example:TheNetworkFileSystem2785.4Attribute-basednaming283Directoryservices283Hierarchicalimplementations:LDAP285Decentralizedimplementations2885.5Summary2946Coordination2976.1Clocksynchronization.298Physicalclocks299Clocksynchronizationalgorithms3026.2Logicalclocks310Lamport'slogicalclocks310Vectorclocks3166.3Mutualexclusion321322acentralizedalgorithm.322adistributedalgorithm323atoken-ringalgorithm.325adecentralizedalgorithm3266.4Electionalgorithms329Thebullyalgorithm.,..330Aringalgorithm332Electionsinwirelessenvironments333Electionsinlarge-scalesystems.3356.5Locationsystems336DOWNLOADEDBYTEWIGOMIXMAIL.INFODS301VIllCONTENTSGPS:GlobalPositioningSystem337WhengPsisnotanoption339Logicalpositioningofnodes3396.6Distributedeventmatching..343Centralizedimplementations3436.7Gossip-basedcoordination349asgregation349Apeer-samplingservice350Gossip-basedoverlayconstruction3526.8Summary3537Consistencyandreplication3557.1Introduction356Reasonsforreplication356Replicationasscalingtechnique3577.2Data-centricconsistencymodels358Continuousconsistency359Consistentorderingofoperations364Eventualconsistency3737.3Client-centricconsistencymodels375MonotonicreadsMonotonicwrites.379Readyourwrite380Writesfollowreads3827.4ReplicamanagementFindingthebestserverlocation383Contentreplicationandplacement..385Contentdistribution..388Managingreplicatedobjects3937.5Consistencyprotocols.396Continuousconsistency..........396Primary-basedprotocols398Replicated-writeprotocolsCache-coherence403Implementingclient-centricconsistency,,...4077.6Example:CachingandreplicationintheWeb4097.7Summar4208Faulttoleran4238.1Introductiontofaulttolerance424Basicconcepts.424Failuodels427Failuremaskingbyredundancy8.2Processresilience432DS3.01DOWNLOADEDBYTEWIGOMIXMAIL.INFO
2024/6/24 6:52:56 36.95MB Distributed Systems
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太赫兹波(THz)是一种介于微波和红外线波之间的电磁波。
由于生物体对THz波的独特响应性,太赫兹波在生物医学领域的应用研究特别是其与生物组织的相互作用成为了研究热点。
该研究旨在探索太赫兹波能否激发光敏剂产生光敏效应。
采用纳焦级宽谱(1~3THz)的脉冲太赫兹光源对光敏剂(PS)血卟啉单甲醚(HMME)照射30min,用DPBF作为单态氧的捕获剂检测单态氧产率。
采用相同的太赫兹光源照射常规培养的HepG2细胞,光学显微镜下观察细胞形态,MTT法检测细胞活性。
PS+THz组单态氧产率显著高于单纯太赫兹波组(21.04%vs.2.39%);
PS+THz组HepG2细胞形态较对照组略圆,细胞有收缩趋势;
细胞活性检测结果显示,太赫兹波照射后HMME孵育的HepG2细胞的活性降低至81.13%(THz组为99.21%)。
实验结果表明宽谱1~3THz纳焦级太赫兹波可激发光敏剂HMME,激发效率约为20%。
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无线串口模块手册简介
2024/6/16 21:19:11 1.61MB 电学
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1安装及卸载......................................................................................................41.1安装需求.......................................................................................................41.2Caché的标准安装..........................................................................................41.3软件许可证的安装........................................................................................61.4卸载Caché...................................................................................................72Caché工具菜单...............................................................................................82.1CachéCube简介...........................................................................................82.2Studio............................................................................................................92.3Terminal.......................................................................................................112.4Explorer.......................................................................................................112.5SQLManager..............................................................................................152.5.1用户权限管理...................................................................................162.5.2表格管理..........................................................................................182.5.3数据迁移..........................................................................................192.5.4查看sql查询计划...............................................................................222.6ControlPanel..............................................................................................232.7ConfigurationManager...............................................................................233配置缓存........................................................................................................293.1缓存简介............................
2024/6/15 2:13:14 10.45MB cache 数据库
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开关电源功率因数校正电路设计与应用实例1.1功率因数定义及校正技术1.1.1功率因数定义及谐波1.1.2功率因数校正技术1.2功率因数校正控制技术1.2.1功率因数校正控制方法1.2.2功率因数校正电路控制器1.2.3功率因数校正技术发展动态第2章功率因数校正电路2.1无源PFC校正技术2.1.1无源PFC电路2.1.2改进型无源PFC电路2.1.3单相无源PFC整流器的电路拓扑2.2有源功率因数校正(APFC)电路2.2.1APFC电路工作原理及分类2.2.2APFC变换器中电流型控制技术2.2.3主频同步控制PFC电路2.2.4输入电流间接控制的APFC电路2.2.5临界导电模式APFC电路2.2.6DCVM模式工作的Cuk变换器的APFC2.3复合型单开关PFC预调节器及基于SEPIC的PFC电路2.3.1复合型单开关PFC预调节器2.3.2基于SEPIC的PFC电路2.4软开关PFC电路2.4.1单相三电平无源无损软开关PFC电路2.4.2单相Boost型软开关PFC电路2.5单级隔离式PFC2.5.1单级PFC技术2.5.2单级PFC变换器的功率因数校正效果分析2.5.3单级PFC电路的直流母线电压2.5.4单级PFC变换器的设计2.5.5基于Flyboost模块的新型单级PFC电路2.5.6恒功率控制的单级PFC电路第3章功率因数校正电路集成控制器3.1UC/UCC系列PFC集成控制器3.1.1UC3852PFC集成控制器3.1.2UC3854PFC集成控制器3.1.3UC3854A/BPFC集成控制器3.1.4UCC3858PFC集成控制器3.1.5UCCx850x0PFC/PWM组合控制器3.2TDA系列PFC集成控制器3.2.1TDA16888PFC集成控制器3.2.2TDA4862PFC集成控制器3.2.3TDA16846PFC集成控制器3.3其他系列PFC集成控制器3.3.1ML4841PFC集成控制器3.3.2ML4824复合PFC/PWM控制器3.3.3FA5331P(M)/FA5332P(M)PFC集成控制器3.3.4L4981PFC集成控制器3.3.5NCP1650PFC集成控制器3.3.6HA16141PFC/PWM集成控制器3.3.7MC34262PFC集成控制器3.3.8FAN4803PFC集成控制器3.3.9CM68/69xxPFC/PWM集成控制器第4章功率因数校正电路设计实例实例1基于UC3852的PFC电路设计实例实例2基于UC3845的PFC电路设计实例实例3基于UC3854A/B的PFC电路设计实例实例4基于UCC28510的PFC电路设计实例实例5基于UCC3858的PFC电路设计实例实例6基于TOPSwitch的PFC电路设计实例实例7基于ML4824的PFC电路设计实例实例8基于TDA16888的PFC电路设计实例实例9基于MC33260的PFC电路设计实例实例10基于NCP1650/1的PFC电路设计实例参考文献
2024/6/10 0:30:08 14.01MB 开关电源 功率因数校正 PFC
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zigbeeZCL协议2018最新版Removedtheextraneousword“ZigBee”todescribeitems.CCB2288Chapter1:referenceforManufactureCodedatabaseChapter2:clarifiedclusterInstanceModelCCB23272266233822132318DefineDeprecationNewdatatype:FixedASCIIChapter3:LevelControlclusterStateChangeTableNewBasicattributes;ZCLVersionis0x03TransitiontimetoRecallSceneNFRQualityofGoodsclusters:PWM,LevelZLO1.0changestoLevelControlforLightingCCB14991584177520852147
2024/6/2 4:27:25 9.07MB zigbee 3.0 最新版
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MongoDB客户端Linux平台,robot3t解压即用TheRobo3T(formerlyRobomongo)toolhasbeenacquiredby3TSoftwareLabs,thecreatorsoftheMongoDBclientStudio3T(formerlyMongoChef).
2024/5/31 6:09:32 94.51MB mongodb
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DatabaseSystemConcepts——数据库系统概念第六版(英文版)作者:AbrahamSilberschatz(YaleUniversity)HenryF.Korth(LehighUniversity)S.Sudarshan(IndianInstituteofTechnology,Bombay)本书目录:Chapter1Introduction1.1Database-SystemApplications11.2PurposeofDatabaseSystems31.3ViewofData61.4DatabaseLanguages91.5RelationalDatabases121.6DatabaseDesign151.7DataStorageandQuerying201.8TransactionManagement221.9DatabaseArchitecture231.10DataMiningandInformationRetrieval251.11SpecialtyDatabases261.12DatabaseUsersandAdministrators271.13HistoryofDatabaseSystems291.14Summary31Exercises33BibliographicalNotes35Chapter2IntroductiontotheRelationalModel2.1StructureofRelationalDatabases392.2DatabaseSchema422.3Keys452.4SchemaDiagrams462.5RelationalQueryLanguages472.6RelationalOperations482.7Summary52Exercises53BibliographicalNotes55Chapter3IntroductiontoSQL3.1OverviewoftheSQLQueryLanguage573.2SQLDataDefinition583.3BasicStructureofSQLQueries633.4AdditionalBasicOperations743.5SetOperations793.6NullValues833.7AggregateFunctions843.8NestedSubqueries903.9ModificationoftheDatabase983.10Summary104Exercises105BibliographicalNotes112Chapter4IntermediateSQL4.1JoinExpressions1134.2Views1204.3Transactions1274.4IntegrityConstraints1284.5SQLDataTypesandSchemas1364.6Authorization1434.7Summary150Exercises152BibliographicalNotes156Chapter5AdvancedSQL5.1AccessingSQLFromaProgrammingLanguage1575.2FunctionsandProcedures1735.3Triggers1805.4RecursiveQueries1875.5AdvancedAggregationFeatures1925.6OLAP1975.7Summary209Exercises211BibliographicalNotes216Chapter6FormalRelationalQueryLanguages6.1TheRelationalAlgebra2176.2TheTupleRelationalCalculus2396.3TheDomainRelationalCalculus2456.4Summary248Exercises249BibliographicalNotes254Chapter7Datab
2024/5/17 10:55:55 10.51MB Database Concepts PDF 英文版
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在日常工作中,钉钉打卡成了我生活中不可或缺的一部分。然而,有时候这个看似简单的任务却给我带来了不少烦恼。 每天早晚,我总是得牢记打开钉钉应用,点击"工作台",再找到"考勤打卡"进行签到。有时候因为工作忙碌,会忘记打卡,导致考勤异常,影响当月的工作评价。而且,由于我使用的是苹果手机,有时候系统更新后,钉钉的某些功能会出现异常,使得打卡变得更加麻烦。 另外,我的家人使用的是安卓手机,他们也经常抱怨钉钉打卡的繁琐。尤其是对于那些不太熟悉手机操作的长辈来说,每次打卡都是一次挑战。他们总是担心自己会操作失误,导致打卡失败。 为了解决这些烦恼,我开始思考是否可以通过编写一个全自动化脚本来实现钉钉打卡。经过一段时间的摸索和学习,我终于成功编写出了一个适用于苹果和安卓系统的钉钉打卡脚本。
2024-04-09 15:03 15KB 钉钉 钉钉打卡