P802.11ax/D6.0,Nov2019-IEEEDraftStandardforInformationTechnology--TelecommunicationsandInformationExchangeBetweenSystemsLocalandMetropolitanAreaNetworks--SpecificRequirementsPart11:WirelessLANMediumAccessControl(MAC)andPhysicalLayer(PHY)SpecificationsAmendmentEnhancementsforHighEfficiencyWLANfromhttps://ieeexplore.ieee.org/document/8935585
2025/4/29 20:06:09 5.53MB wifi6 规范 802.11ax D6.0
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TI的DP83848中文文档非常好用的PHY。
支持10Mb/s和100Mb/s
2025/4/15 10:40:48 1.65MB DP83848
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以下产生2.4GHz电磁波的设备是ABD。
A.蓝牙手机B.微波炉C.传统固定电话D.AP4.定义了WLAN中QoS的802.11协议是802.11e5.在802.11系列标准仅仅限局于MAC层与PHY层的描述。
A.正确
2025/4/4 15:41:55 205KB GB0-341 H3CSE-W
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关于fpga控制PHY芯片完成以太网功能,代码已经验证,更改
2025/1/10 18:36:53 1.09MB fpga和以太网
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wily2014年新书UnderstandingLTEwithMATLABContentsPrefacexiiiListofAbbreviationsxvii1Introduction11.1QuickOverviewofWirelessStandards11.2HistoricalProfileofDataRates41.3IMT-AdvancedRequirements41.43GPPandLTEStandardization51.5LTERequirements51.6TheoreticalStrategies61.7LTE-EnablingTechnologies71.7.1OFDM71.7.2SC-FDM81.7.3MIMO81.7.4TurboChannelCoding81.7.5LinkAdaptation91.8LTEPhysicalLayer(PHY)Modeling91.9LTE(Releases8and9)111.10LTE-Advanced(Release10)111.11MATLAB?andWirelessSystemDesign111.12OrganizationofThisBook11References122OverviewoftheLTEPhysicalLayer132.1AirInterface132.2FrequencyBands142.3UnicastandMulticastServices142.4AllocationofBandwidth162.5TimeFraming172.6Time朏requencyRepresentation172.7OFDMMulticarrierTransmission202.7.1CyclicPrefix212.7.2SubcarrierSpacing22viContents2.7.3ResourceBlockSize222.7.4Frequency-DomainScheduling222.7.5TypicalReceiverOperations232.8Single-CarrierFrequencyDivisionMultiplexing232.9ResourceGridContent242.10PhysicalChannels252.10.1DownlinkPhysicalChannels262.10.2FunctionofDownlinkChannels272.10.3UplinkPhysicalChannels302.10.4FunctionofUplinkChannels302.11PhysicalSignals312.11.1ReferenceSignals312.11.2SynchronizationSignals332.12DownlinkFrameStructures342.13UplinkFrameStructures352.14MIMO352.14.1ReceiveDiversity362.14.2TransmitDiversity372.14.3SpatialMultiplexing382.14.4BeamForming392.14.5CyclicDelayDiversity402.15MIMOModes402.16PHYProcessing412.17DownlinkProcessing412.18UplinkProcessing432.18.1SC-FDM442.18.2MU-MIMO442.19ChapterSummary45References463MATLAB?forCommunicationsSystemDesign473.1SystemDevelopmentWorkflow473.2ChallengesandCapabilities483.3Focus493.4Approach493.5PHYModelsinMATLAB493.6MATLAB493.7MATLABToolboxes503.8Sim
2024/12/30 9:25:58 6.99MB LTE 4G MATLAB
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DM9051是基于SPI接口的以太网MAC+PHY集成IC,本文档包括驱动源码及其源码解读,包括寄存器初始化,接口函数封装
2024/12/27 18:54:52 116KB DM9051 以太网 PHY MAC
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用一个星期研究GD32F4系列的单片机,因为公司项目越来越偏向与GD系列的片子,就借着GD32F407的片子,使用LAN8720的PHY芯片移植了最新的FreeRTOS10.2.0系统,顺便移植进了LWIP2.0.2网络协议,倒腾了一个星期,重要是调通了,感觉还是有些问题,上传上来给后来人当个参考吧,使用的库文件是GD32自带的库,不是STM32的库文件,问题估计肯定是有的,后续再深入研究吧,可以给后来人当个参考吧,也欢迎高手留言推荐问题解决方法!
2024/12/20 9:28:39 36.49MB GD32F4 FreeRT LWIP2.
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与教程--FPGA基础入门【10】开发板EthernetPHY局域网配置--相应的源代码。
根目录包含:1.相关文档,nexys4ddr_rm.pdf是开发板文档;
8720a.pdf是PHY芯片LAN8720A文档2.src/包含所有源代码3.sim/包含所有仿真所需文件4.ethernet/包含Vivado工程文件
2024/11/29 9:52:46 2.29MB FPGA FPGA基础 FPGA入门 NEXYS
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verilog实现的phy芯片mdio控制器,适用于各种以太网phy芯片的配置
2024/10/12 1:39:04 7KB verilog mdio
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802.11-2012完整版本,对无线开发是十分必要的IEEEStandardforInformationtechnology—TelecommunicationsandinformationexchangebetweensystemsLocalandmetropolitanareanetworks—SpecificrequirementsPart11:WirelessLANMediumAccessControl(MAC)andPhysicalLayer(PHY)SpecificationsAbstract:ThisrevisionspecifiestechnicalcorrectionsandclarificationstoIEEEStd802.11forwirelesslocalareanetworks(WLANS)aswellasenhancementstotheexistingmediumaccesscontrol(MAC)andphysicallayer(PHY)functions.ItalsoincorporatesAmendments1to10publishedin2008to2011.Keywords:2.4GHz,3650MHz,4.9GHz,5GHz,5.9GHz,advancedencryptionstandard,AES,carriersensemultipleaccess/collisionavoidance,CCMP,channelswitching,CountermodewithCipher-blockchainingMessageauthenticationcodeProtocol,confidentiality,CSMA/CA,DFS,directlink,dynamicfrequencyselection,E911,emergencyalertsystem,emergencyservices,forwarding,genericadvertisementservice,highthroughput,IEEE802.11,interface,internationalroaming,interworking,interworkingwithexternalnetworks,LAN,localareanetwork,MAC,measurement,mediumaccesscontrol,media-independenthandover,mediumaccesscontroller,mesh,MIH,MIMO,MIMO-OFDM,multi-hop,multipleinputmultipleoutput,networkadvertisement,networkdiscovery,networkmanagement,networkselection,off-channeldirectlink,path-selection,PHY,physicallayer,powersaving,QoS,qualityofservice,PHY,physicallayer,QoSmapping,radio,radiofrequency,RF,radioresource,radiomanagement,SSP,SSPN,subscriberserviceprovider,temporalkeyintegrityprotocol,TKIP,TPC,transmitpowercontrol,tunneleddirectlinksetup,wirelessaccessinvehicularenvironments,wirelessLAN,wirelesslocalareanetwork,WLAN,wirelessnetworkmanagement,zero-knowledgeproof
2024/9/26 12:16:02 14.91MB IEEE 802.11 2012
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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