tag 标签: sense

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    2014-11-23 21:47
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    When you need to measure current through a load such as a motor, there are various obvious options: Use a Hall-effect device, a transformer (for AC only, of course), or an in-line series sense resistor (often called a "shunt resistor," but this is misleading, as it is not bypassing the load). Conceptually, the sense resistor is an attractive option, because it is inexpensive, can be placed anywhere in the load line in principle, and produces a voltage output based on Ohm's law: V = I × R. What could be simpler?   As with so many other engineering topics, the reality is that what looks simple at first actually involves tradeoffs and conflicts. That's true for the sense resistor, as well, with issues such as the resistor's value, location, and physical installation. Two application notes (found in the References section) made this quite clear.   Using a low-value sense resistor is a common technique for measuring current through a load, but applying even this simple component for such a basic, straightforward application has its subtleties and tradeoffs.   Consider the most obvious parameter: the resistor value. A higher-value resistor develops a larger voltage drop for a given current, and that larger voltage is easier to use as a feedback signal. Whether you digitize it or use it in analog form, the higher voltage provides greater noise immunity and better resolution.   However, that larger value also means there is increased voltage drop between the rail and common (often referred to as "ground," even if it is not a true Earth ground) and less voltage for the load, reducing system performance and efficiency. Further, the resistor itself dissipates power. This wastes available power and means there is more heat to be removed from the system. Dissipation in tens of watts is fairly common. Finally, the sense resistor is within the load-control loop, and this will affect the loop dynamics, stability, and performance, since it is in that loop but not part of the "real load" that the system is driving.   Balancing these factors, most sense resistors are chosen with sub-ohm, milliohm, and even sub-milliohm values to minimize IR drop, I 2 R self-heating dissipation, and load disruptions. The corresponding voltage across the resistor is usually about 1 V full scale, meaning that the sensing circuit needs to be designed for good analog response and resolution at relatively low levels.   The low resistance value also has a ripple effect on design, layout, and physical configuration in a way that many engineers may not be used to considering, especially if most of their experience is with the resistance in the more familiar kilohm range. At the milliohm and lower values for the sense resistor itself, the associated resistances of the PC board, solder connections (if any), and the placement of the voltage sense-lead pickoffs become significant.   Even a few centimeters of PC-board track between the sense resistor and the sense-circuit input may be a significant fraction of the sense-resistor value. There's also the temperature coefficient of resistance α of the PC board's copper to consider: ΔR/R 0 = αΔT; for copper, α = .00386.   I also wonder: If you are interviewing a candidate for a power-related or analog-circuit role, would a good place to start be to ask about an apparently simple subject such as current-sensing options, especially the use of current-sensing resistors? Then you could dive deeper into topics such as the pros and cons of high-side versus low-side sensing or techniques for isolated or differential sensing (often needed, especially with high-side sensing). Perhaps we'll look at those issues in future columns.   What's been your experience with current sensing and sense resistors? Are there other topics which you assumed at first would be simple, only to surprise you when you dug deeper, did the math, and looked at topologies?   References Choosing the right sense resistor layout, Texas Instruments Optimize High-Current Sensing Accuracy by Improving Pad Layout of Low-Value Shunt Resistors, Analog Devices
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    时间: 2023-4-4 09:51
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    时间: 2019-12-27 20:51
    大小: 142.69KB
    上传者: givh79_163.com
    LTC6102是工业领域中最高精度的电源检测放大器,优异的精度可极大地减小检测电阻值,而且提高了效率,动态范围和电流管理。UltrapreciseCurrentSenseAmplierDramaticallyEnhancesEfciencyandDynamicRange……
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    电流检测正变得日益重要起来,因为可提供实时的效率、工作和错误分析的情况。宽输入范围的LT6105在全量程内的准确度使其成为各种应用的理想选择。CurrentSenseAmpInputsWorkfrom……
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    时间: 2019-12-27 20:57
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    LTC4213是一款小封装、无RSENSE的电子电路断路器,低MOSFET插入损耗使其十分适用于低压应用。其内集成可选双电流电平和双响应定时电路器功能。advertisementElectronicCircuitBreakerinSmallDFNPackageEliminatesSenseResistor……
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    时间: 2020-1-2 02:17
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    上传者: rdg1993
    电流检测电路大全(信号链路)APPLICATIONNOTE―105ApplicationNote105December2005CurrentSenseCircuitCollectionMakingSenseofCurrentTimRegan,EditorINTRODUCTIONSensingand/orcontrollingcurrentflowisafundamentalThisApplicationNoteWillChangerequirementinmanyelectronicssystems,andthetech-ThisApplicationNoteisagrowingandchangingdocu-niquestodosoareasdiverseastheapplicationsthem-ment.Manyofthechapterslistedbelowareplaceholdersselves.ThisApplicationNotecompilessolutionstocur-……
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    时间: 2019-12-24 22:22
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    Abstract:ThisarticlediscussesapplicationcircuitsforMaximforce/sensedigital-to-analogconverters(DACs).Applicationsinclude:selectablefixed-gainDAC,programmablegainDAC,photodiodebiascontrol,amperometricsensorcontrol,digitallyprogrammablecurrentsource,Kelvinloadsensing,temperaturesensing,andhighcurrentDACoutput.AbriefdescriptionofthevariousDACoutputconfigurationsisalsogiven.Maxim>DesignSupport>AppNotes>A/DandD/AConversion/SamplingCircuits>APP807Maxim>DesignSupport>AppNotes>DigitalPotentiometers>APP807Maxim>DesignSupport>AppNotes>InterfaceCircuits>APP807Keywords:DACapplicationcircuits,Force/senseDAC,DAC,digitaltoanalogconvertor,selectableDACgain,programmableDACgain,digitalpotentiometers,photodiodecontrol,amperometricsensorbiascontrol,digitallyprogrammablecurrentsource,tempsenseOct02,2001APPLICATIONNOTE807Force/SenseDACApplicationsAbstract:ThisarticlediscussesapplicationcircuitsforMaximforce/sensedigital-to-analogconverters(DACs).Applicationsi……
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    时间: 2019-12-24 21:52
    大小: 167.1KB
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    Abstract:Thisapplicationnotehelpsdesignerschoosethecorrectexternalcomponentstoensurethatautomobileantenna-detectioncircuitrymeetsperformanceobjectives.AcalculatordetailshowtospecifythecriticalexternalcomponentsfortheMAX16913/MAX16913Aremoteantennacurrent-senseamplifiersandswitches.Thecalculatoralsodeterminesthedevice'soperationalwindowsandanalogoutputvoltageaccuracy.Anexamplecalculationisgiven.Maxim>Designsupport>Appnotes>AmplifierandComparatorCircuits>APP4798Maxim>Designsupport>Appnotes>Automotive>APP4798Keywords:currentsenseamplifier,automotiveantenna,antennapowersupply,remoteantennapowersupply,remoteantennapower,phantompower,radioantennalna,activeantennadetection,antennadiagnosticsJun24,2011APPLICATIONNOTE4798HowtoCalculatetheOperatingWindowsforaRemoteAntennaCurrent-SenseAmplifierandSwitchRobertRegensburger,AutomotiveSpecialist,AutomotiveProductDefinitions,MaximIntegratedBy:Products,GermanyAbstract:Thisapplicationnotehelpsdesignerschoosethecorrecte……
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    时间: 2019-12-24 21:42
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    上传者: 二不过三
    Abstract:Simpleeasytousehighsidecurrentsenseampsprotectspowersuppliesasaresultofirregularsupplyvoltagecausedbyshort-circuitconditions.Maxim>AppNotes>AMPLIFIERANDCOMPARATORCIRCUITSBATTERYMANAGEMENTCOMMUNICATIONSCIRCUITSPOWER-SUPPLYCIRCUITSKeywords:currentsense,highsidecurrentsense,outputovercurrentprotection,loadcurrentmonitor,highNov06,2000sideamp,currentsenseampAPPLICATIONNOTE714IsolatedPowerSuppliesforTelecomApplicationsAbstract:Simpleeasytousehighsidecurrentsenseampsprotectspowersuppliesasaresultofirregularsupplyvoltagecausedbyshort-circuitconditions.Toensurecompliancewithallinternationalstandards,thedesignerofanisolatedpowersupplyfortelecomapplicationsneedstotakecertainfactsintoaccount:Theinputvoltageisnever110Vor220Vfromthemains,butthelowervoltageofalead-acidbattery(-12V,-24V,or-48V)……
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    时间: 2019-12-24 21:42
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    Abstract:ThisarticledemonstrateshowtoachievecurrentlimitfortheMAX1692PWMstep-downregulatorbyusingaMAX4173Hcurrent-senseamplifier.Maxim>AppNotes>AMPLIFIERANDCOMPARATORCIRCUITSPOWER-SUPPLYCIRCUITSKeywords:currentlimit,currentsenseamplifier,buckregulator,pwm,step-downregulatorDec01,2000APPLICATIONNOTE478Current-LimitCircuitfortheBuckRegulatorAbstract:ThisarticledemonstrateshowtoachievecurrentlimitfortheMAX1692PWMstep-downregulatorbyusingaMAX4173Hcurrent-senseamplifier.AdditionalInformation:qQuickViewDataSheetfortheMAX1692qQuickViewDataSheetfortheMAX4173qSamplesandLiteratureOrderFormqTechnicalSupport:PowerAcurrentlimitcanbeaddedtoastep-downconverterbyusingaMAX4173Hcurrent-senseamplifiertoinjectcurrentintothefeedbacknetwork.D1sharpensthethresholdofcurrent……
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    时间: 2019-12-24 21:22
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    上传者: rdg1993
    Abstract:Thisapplicationnoteusesahigh-sidecurrent-senseamplifiertomonitorthecurrentfromanegativesupplyvoltage.ThecircuitusestheIC'swidecommon-modeinputrangetoamplifyasmallVsensesignalatthenegativesupplyandlevelshiftituptoapositiveoutputvoltage.Maxim>AppNotes>AMPLIFIERANDCOMPARATORCIRCUITSBATTERYMANAGEMENTCIRCUITPROTECTIONMEASUREMENTCIRCUITSKeywords:currentsensor,negativesupply,currentsenseamplifier,negativecurrentmonitor,currentsenseMay11,2003amp,currentmonitorAPPLICATIONNOTE2011High-SidePositiveCurrentSensorMonitorsNegativeSupplyAbstract:Thisapplicationnoteusesahigh-sidecurrent-senseamplifiertomonitorthecurrentfromanegativesupplyvoltage.ThecircuitusestheIC'swidecommon-modeinputrangetoamplifyasmallVsensesignalatthenegativesupplyandlevelshiftituptoapositiveoutputvoltage.Alldedicatedcurrent-senseamplifiersaredesignedforhigh-sidesensingonapositivesupply,butyoucanadaptthemtomonitoranegativesupply(Figur……
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    时间: 2019-12-24 21:22
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    Abstract:TheMAX4374high-sidecurrentsenseamplifierwithtwointernalcomparatorsisusedtoproduceapulse-widthoutputsignalproportionaltothecurrentbeingsensed.ThissimplecircuiteliminatestheneedforadiscreteA/Dconverter.Maxim>AppNotes>AMPLIFIERANDCOMPARATORCIRCUITSKeywords:currentsenseIC,highsidecurrentsense,currentsenseamplifier,pulsewidthsignaloutput,May31,2002currentsenseresistorAPPLICATIONNOTE1084High-SideCurrentSensorHasPeriodOutputAbstract:TheMAX4374high-sidecurrentsenseamplifierwithtwointernalcomparatorsisusedtoproduceapulse-widthoutputsignalproportionaltothecurrentbeingsensed.ThissimplecircuiteliminatestheneedforadiscreteA/Dconverter.High-sidecurrentmonitoringisfoundinmanybattery-poweredproductsthatrequireaccuratemonitoringofloadcurrent,chargercurrent,orboth.Innon-portableapplicationshigh-sidecurrentmonitoringservesasapower-supplywatchdogthatcanflagafailureindownstreamdevices.It……
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    上传者: givh79_163.com
    摘要:两个内部比较器MAX4374高边电流检测放大器用于产生一个输出信号的脉冲宽度的比例目前所检测。这个简单的电路,消除了一个独立的A/D转换的需要。Maxim>AppNotes>AMPLIFIERANDCOMPARATORCIRCUITSKeywords:currentsenseIC,highsidecurrentsense,currentsenseamplifier,pulsewidthsignaloutput,May31,2002currentsenseresistorAPPLICATIONNOTE1084High-SideCurrentSensorHasPeriodOutputAbstract:TheMAX4374high-sidecurrentsenseamplifierwithtwointernalcomparatorsisusedtoproduceapulse-widthoutputsignalproportionaltothecurrentbeingsensed.ThissimplecircuiteliminatestheneedforadiscreteA/Dconverter.High-sidecurrentmonitoringisfoundinmanybattery-poweredproductsthatrequireaccuratemonitoringofloadcurrent,chargercurrent,orboth.Innon-portableapplicationshigh-sidecurrentmonitoringservesasapower-supplywatchdogthatcanflagafailureindownstreamdevices.It……
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    时间: 2019-12-24 20:32
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    摘要:DC/DC转换模块之间的电流共享使多个模块并联。近年来,电流共享的紧公差作出分立的电流检测电路设计一项艰巨的挑战。本应用笔记介绍了一个低成本,空间节约和精确的电流检测和共享计划使用MAX4372Maxim>AppNotes>AMPLIFIERANDCOMPARATORCIRCUITSPOWER-SUPPLYCIRCUITSKeywords:currentsensecircuit,MAX4372,currentsharing,high-accuracy,currentsenseamplifierMar01,2001APPLICATIONNOTE1180High-AccuracyCurrent-SenseAmplifierEnablesCurrentSensingandCurrentSharingAbstract:CurrentsharingbetweenDC/DCconvertermodulesenablesseveralmodulestobeparalleled.Inrecentyears,tighttolerancesforcurrentsharinghavemadediscretecurrent-sensecircuitdesignsaformidablechallenge.Thisapplicationnotedescribesalow-cost,space-savingandaccuratecurrentsensingandsharingschemeusingMAX4372.CurrentsharingbetweenDC/DCconvertermodulesisaveryimportantsystemparameterinensuringreliableoperation.Inrecentyears,thetoleran……
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    时间: 2019-12-24 20:25
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    时间: 2019-12-24 20:20
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    时间: 2019-12-24 19:47
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    上传者: quw431979_163.com
    :本应用笔记帮助设计人员选择正确的外部元件,以确保汽车天线检测电路满足性能目标。一个计算器详细介绍了如何以指定的MAX16913/MAX16913A远程天线电流检测放大器和开关的关键外部元件。计算器也决定了设备的运行窗口和模拟输出电压精度。给出一个例子计算。Maxim>Designsupport>Appnotes>AmplifierandComparatorCircuits>APP4798Maxim>Designsupport>Appnotes>Automotive>APP4798Keywords:currentsenseamplifier,automotiveantenna,antennapowersupply,remoteantennapowersupply,remoteantennapower,phantompower,radioantennalna,activeantennadetection,antennadiagnosticsJun24,2011APPLICATIONNOTE4798HowtoCalculatetheOperatingWindowsforaRemoteAntennaCurrent-SenseAmplifierandSwitchRobertRegensburger,AutomotiveSpecialist,AutomotiveProductDefinitions,MaximIntegratedBy:Products,GermanyAbstract:Thisapplicationnotehelpsdesignerschoosethecorrecte……
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    时间: 2019-12-24 19:33
    大小: 33.89KB
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    摘要:雪崩二极管和电流源提供一个浮动的电源,使高边电流检测放大器工作在高达300V。Maxim>AppNotes>AMPLIFIERANDCOMPARATORCIRCUITSAUTOMOTIVEKeywords:highvoltage,currentsenseamp,currentmonitor,amplifier,high-side,currentsenseamplifiers,Mar14,2003ampsAPPLICATIONNOTE1934AddHighVoltageCapabilitytotheMAX471/MAX472High-SideCurrentSenseAmplifiersAbstract:Anavalanchediodeandcurrentsourceprovideafloatingpowersupplytoallowhigh-sidecurrentsenseamplifierstoworkatupto300V.TheMAX471andMAX472arecompletebi-directionalhigh-sidecurrentsenseamplifiersforportablePCs,telephones,andothersystemswherebattery/DClinemonitoringisimportant,andwheregroundcontinuitybetweensystemandsupplyiscrucial.However,thepart's36Vmaximumoperatingvoltageisalimitingfactorwhenhighervoltage……
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    时间: 2019-12-24 19:32
    大小: 67.67KB
    上传者: 二不过三
    摘要:当使用外部的热敏二极管测量温度,温度测量的精度上取决于外部二极管的特性。两个关键的参数会影响测量精度是理想因子和系列电阻。本应用指南对远程温度传感器测量结果解释这些参数的影响,并讨论了如何确定补偿及其影响因素。Maxim>AppNotes>AutomotiveTemperatureSensorsandThermalManagementKeywords:temperaturesensor,ideality,thermaldiode,thermalsensediodes,tempsensor,remotetempsensor,sensors,thermal,Sep05,2002temperatuer,temperatureAPPLICATIONNOTE1057CompensatingforIdealityFactorandSeriesResistanceDifferencesbetweenThermal-SenseDiodesAbstract:Whenusinganexternalthermaldiodetomeasuretemperature,theaccuracyofthetemperaturemeasurementdependsonthecharacteristicsoftheexternaldiode.Twocriticalparametersthataffectmeasurementaccuracyareidealityfactorandseriesresistance.Thisapplicationnoteexplainstheeffectsoftheseparametersonremotetemperature-sensormeasurementsanddiscusseshowtodeterminecompensationfactorsfortheir……