SpringerInternationalPublishingSwitzerland2017Thisbookconsistsof30chapters.Chapter1presentsthetheoryandapplicationofactuationofelastomericmicro-devicesviacapillaryforcetechnology.Chapter2providesinsightintothefundamentaldesign,workingprinciples,andpracticalguidanceofMEMSaccelerometers.Detailsofexperimentalsetups,signalconditioning,anddataprocessingarealsoprovidedtoconstructanintegratedperformanceassessmentsystem.Chapter3givesanoverviewoftheimpactofthechangefromafocusonanalysis,simulation,andmodelingcombinedwithoutsourcinghardwaredesigntotheuseofdigitalfabricationtoolsallowingacyclicdesignprocessinsidethelab,usingmanyexamplesfromvariousprojects,andsharessomeinsightsandlessonslearnedforfacilitatingandimplementingthisprocess.Chapter4presentsthedesignofafamilyofmicro-robotscapableofobjectmanipulationinafluidicenvironment.Chapter5discusseshowstate-of-theartmobiletechnologiesmaybeintegratedintohuman-in-the-loopcyber-physicalsystemsandexploitedtoprovidenaturalmappingsforremoteinteractionswithsuchsystems.Ademonstrativeexampleisusedtoshowhowanintuitivemetaphorisuncoveredforperformingabalancingtaskthroughtheteleoperationofaballandbeamtestbed.Chapter6providesanoverviewonforce/tactilesensordevelopment.Byexploitingoptoelectronictechnology,twotactilesensorsthatcanbeusedtoexecutebothfinemanipulationofobjectsandsafeinteractiontaskswithhumansaredesignedandrealized.Chapter7addressesabriefaccountofissuesrelatedtomechanicalpropertiesofMEMS.Micro-testingtechniquesincludingmicrotensileandmicro-fatiguetestingalongwiththehardwarearedescribedwithtypicalsampletype,shape,andgeometry,depictedwithdiagramsandimages.Chapter8studiesatypeofmarmot-likerescuerobotforminesafetydetectionandrescuing.Thekinematics,maximumstiffness,minimumstiffness,andglobalstiffnessoftheheadsectionoftherescuerobotaremodeledandanalyzed.Chapter9presentsasystematicreviewofkeycontrolschemesforreconfigurableroboticsystems,highlightingtheirbenefitsanddisadvantages,andalsoreviewstheapplicationofthesesystemsatmicroscale.Chapter10givesadetailedoverviewofMEMSbasedsensorsandactuators.Chapter11proposesanovelsensingapproachtoinsituparticulatematerial(soot)loadmeasurementinadieselparticulatefilterusingelectricalcapacitancetomography(ECT).Chapter12providesanoverviewofthreeactuationmechanismsthatarerelevantforbiomedicalapplicationsofmicrofluidics.Thetopicsdealtwithincludedielectrophoresis,acoustophoresis,andmagnetophoresis.Chapter13reviewsafewmechatronicdevicesdesignedandusedinASDscreeninganddiscussesafewdevicesusedfortherapeuticpurposes.Chapter14conductsacriticalandthoroughreviewonvapor/gassensingpropertiesofawiderangeofelectrochemicallyderivedmetaloxidenano-formsasthesensinglayeremployingadifferentdeviceconfiguration.Chapter15developsawearablebloodpressuremonitoringsystemusingultrasoundandamicroperfusionsystemusingametalneedlewithmicro-flowchannelformeasurementofsubepidermalbiologicalsubstances.Chapter16discussesthefabricationstrategiesandmaterialsforthedevelopmentofphysical,chemical,andbiosensors.Theemergingapplicationsofflexibleelectronicsinwoundhealing,wearableelectronics,implantabledevices,andsurgicaltools,aswellaspoint-of-carediagnosticdevices,arealsoexplored.Chapter17presentsseveralMEMSdeviceswherethemainapplicationisagriculture.Chapter18showsthedesign,fabrication,andtestingofamultifunctionalMEMSsensorforuseinhydraulicsystems.TheMEMSdeviceisincorporatedintoatypicalfluidpowercomponent.Chapter19proposesapiezoelectric-actuatedrigidnano-needleforsinglecellwall(SCW)cutting.Afabricatedtungsten(W)nano-needleisassembledwithacommercialpiezoelectricactuatorlaterallyandperpendicularly.Chapter20developsaprocessplanning-drivenapproachforthedevelopmentofaroboticpercussiverivetingsystemforaircraftassemblyautomation.Chapter21introducesphotoinducedfabricationtechnologiesfor3DMEMSdevicesandexaminesfourtechnologiesandtheiroutcomeofapplicationswherefabricatedfeaturesizesdecreaseandresolutionincreases.Chapter22presentsadesignprincipleoftheOKESbyderivingamathematicalmodelandcharacterizedtheOKESperformanceintermsofworkingrange,positioningaccuracy,resolution,linearity,bandwidth,andcontroleffectivenesswiththenano-positioningsystems.Chapter23presentsalab-on-chipmicrofluidicssystemforSCMmeasurement,relatedtotheforcerequiredtodragasinglecellandNewton’slawofmotioninsidemicrofluidicschannel.Chapter24focusesonthecharacteristicsofmicromanipulationintermsofthetypesandprinciplesofgrippingforces.Chapter25discussesthreeimportantaspectsofinertialmicrofluidics:fundamentalmechanism,microchanneldesigns,andapplications.Chapter26providesadetailedoverviewofthedifferenttypesofpiezoelectricforcesensorsandthedynamiccalibrationtechniquesthathavebeenusedtocalibratethesesensors.Chapter27introducesamagneticallydrivenmicro-roboticssystemtoexplaintheprocedureofdevelopingamagneticlevitationstageandproposesasensorswitchingmechanismthatcombinesmagneticfluxmeasurement-basedpositiondeterminationandopticalsensor-basedpositiondetection.Chapter28applies3Dprintingmoldingmethodstofabricateaminiaturemagneticactuatorforanopticalimagestabilizer,andtheapplicationofrobustcontroltechniquestoactuatethedevelopedminiaturemagneticactuatorsisdiscussed.Chapter29dealswiththeconceptofbiofeedbackcontrolsystemsanditsstructure,andvariousapplicablecontrolmethodswhicharedesignedtofulfilldifferentsystemrequirementsareprovided.Chapter30developsaninverseadaptivecontrollerdesignmethodforthepurposeofmitigatingthehysteresiseffectinthemagnetostrictive-actuateddynamicsystems.
2025/3/25 2:21:38 36.06MB MEMS Mechatronics Devices
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非常著名的Word公式编辑器,和MathType显著区别是“所想即所得”,而MathType是所见即所得。
支持LaTeX语法格式。
90%以上的出版社用它来编辑公式。
非常漂亮!里面有公式编辑助手,方便初学者使用。
使用方法:(一)安装Micro-Miktex软件。
(二)安装Aurora。
在提示需下载、安装Micro-Miktex时,跳过。
(三)使用keygen进行破解Aurora。
(四)Enjoyit!(五)将系统时间调到2005年或以前,运行一次,然后再把时间改回来。
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内含MiniUSB和MicroUSB的PCB封装,下载地址Protel也可用MicroUSB是USB2.0标准的一个便携版本,比部分手机使用的MiniUSB接口更小,Micro-USB是Mini-USB的下一代规格,由USB标准化组织美国USBImplementersForum(USB-IF)于2007年1月4日制定完成。
Micro-USB支持OTG,和Mini-USB一样,也是5pin的。
Micro系列的定义包括标准设备使用的Micro-B系列插槽;
OTG设备使用的Micro-AB插槽;
Micro-A和Micro-B插头,还有线缆。
Micro系列的独特之处是他们包含了不锈钢外壳,万次插拔不成问题。
2025/1/16 4:24:52 5KB AD protel usb PCB
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STM32F103C8T6LQFP48最小系统核心板AD设计硬件原理图+PCB文件+集成库文件,采用2层板设计,板子大小为52x50mm,双面布局布线,主要器件为STM32F103C8T6.USB转串口CH340G,USB-Micro接口供电。
AltiumDesigner设计的工程文件,包括完整的原理图PCB文件,可以用Altium(AD)软件打开或修改,可作为你产品设计的参考。
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详细的altiumMicro_SD封装,可以使用。
附加相应的datasheet和drawingschematic.
2024/9/20 3:32:55 578KB Micro_SD 封装 尺寸图 altium
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s7-200编程软件使用手册;
版本STEP7-Micro/WINV4.0SP5
2024/9/6 22:35:36 1.9MB STEP7 Micro/WIN s7-200
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谷歌商店下载来的,国内不好下载,作为备份上传,提供其他micro:bit开发者下载。
2024/6/16 3:12:16 7.5MB 安卓 micro:bit
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完美结合word,excell,powpoint的公式编辑器,类似于mathtype。
但是公式比之要美观。
需会使用latex语言。
有网友提供过,但是缺少算号器,这里加上了。
2024/5/19 19:54:31 13.93MB aurora+micro-miktex+keygen
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Visual.Micro.Processing.Sketch.dll适用版本:VisualStudio2019、VisualMicro21.01.06VisualMicro使硬件开发者可在VisualStudio中开发Arduino应用程序。
DLL文件的使用方法:找到目录【...\ProgramFiles(x86)\MicrosoftVisualStudio\2019\Community\Common7\IDE\Extensions】中的“Visual.Micro.Processing.Sketch.dll”文件,将其替换。
2024/5/13 3:58:21 6.16MB arduino ESP8266 VisualMicro
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STM32F101C8T6STlinkJTAG仿真器AD设计硬件原理图+PCB文件,采用2层板设计,板子大小为22x45mm,双面布局布线,主要器件为STM32F101C8T6,AS1360-3V3,USB_MICRO接口等。
AltiumDesigner设计的工程文件,包括完整的原理图、PCB文件,可以用Altium(AD)软件打开或修改,已经制板并在实际项目中使用,可作为你产品设计的参考。
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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