tag 标签: accuracy

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  • 热度 23
    2014-7-10 19:38
    2063 次阅读|
    0 个评论
    Engineers consider accuracy and precision as highly important. You are designing and solving critical applications to ensure the highest product quality, system safety, and performance. You are solving complex calculations to ensure the greatest likelihood of success. There’s little room for guesswork or contradictions.   Engineers say that other engineers don't fill out registration forms, but they do. What's up with that? (Image: Getty)   So when engineers first told me with certainty that other engineers will never give up their personal information on a website, and then they turned around and did exactly that, I was amazed. And I remain amazed, because it’s happened many more times since.   Case in point: My business partner and I were speaking to hundreds of engineering business leaders at a conference recently about marketing to a technical audience. The topic was lead generation on the web. During the QA, several people in the audience voiced their reluctance to place registration gates on areas of their website, out of fear that technically minded web visitors would go elsewhere.   When I asked for a show of hands on who would fill out a lead form themselves, very few hands went up. They made it clear: Engineers do not fill out lead forms.   Right after our talk, we offered a handout with more information about marketing to technical audiences in exchange for a business card. The offer was totally voluntary, it was there if they wanted it.   Do as I say, not as I do Guess what? We had a line of engineers 75 deep waiting with business card in hand. The same engineers who said engineers will abscond when confronted with a registration wall actually waited in line to give us their information.   I have spent 25 years working in marketing with engineers and developing and executing campaigns targeting highly technical audiences. During my 14 years at National Instruments, and as CEO at TREW Marketing today, I’ve worked with business leaders to market their services, products, and companies to highly technical, skeptical audiences.   And they are generating leads every day from engineers who are filling out forms on their websites and through other channels. These are embedded engineers designing WiFi into medical device products that are surgically placed inside the bodies of humans; test engineers evaluating armament systems on mil/aero platforms to ensure they work properly for the warfighter on mission; scientists looking for new, disruptive technologies for marine fossil fuel exploration to lower costs and improve our energy resources.   Engineers will fill out lead forms. Day in and day out, it’s happening at big companies and very small ones alike.   These are real engineers, real scientists, solving real problems, and seeking real information to help them succeed. It’s about trust. Your customers are solving really big problems, and they need serious information that is accurate, technical, and trustworthy.   Why? They do it willingly when they perceive information is highly valuable, current, and accurate, and they develop trust. With the combination of established trust and a perception that the information you are providing is of high value, they will share their information to get yours. And they will expect that the trust they have placed in you with their information will be treated with respect.   So, the next time someone tells you engineers won’t fill out a lead form, remind them, sometimes even really smart, well-intentioned people will say one thing, but do another… when there is trust and perceived value.   What's your take on filling out lead forms? Do you have a good, bad, or funny experience to share? Please comment below -- I'd love to hear your story.   Rebecca Geier is CEO and Co-Founder of TREW Marketing based in Austin, Texas. With over 20 years of global marketing experience primarily in the B2B science, engineering, and technology fields. She is passionate about creating marketing that engineers love, and teaching others how it can be done. When she is not working with TREW clients in the embedded, test, control, and life sciences fields, Rebecca regularly speaks on the topic, and has written and co-authored many blog posts, articles, and e-books, including TREW’s popular Smart Marketing for Engineers , covering topics such as website design, lead generation, and product launches.
  • 热度 24
    2014-7-10 19:34
    1669 次阅读|
    0 个评论
    Accuracy and precision are of prime importance to engineers. You are designing and solving critical applications to ensure the highest product quality, system safety, and performance. You are solving complex calculations to ensure the greatest likelihood of success. There’s little room for guesswork or contradictions.   Engineers say that other engineers don't fill out registration forms, but they do. What's up with that? (Image: Getty)   So when engineers first told me with certainty that other engineers will never give up their personal information on a website, and then they turned around and did exactly that, I was amazed. And I remain amazed, because it’s happened many more times since.   Case in point: My business partner and I were speaking to hundreds of engineering business leaders at a conference recently about marketing to a technical audience. The topic was lead generation on the web. During the QA, several people in the audience voiced their reluctance to place registration gates on areas of their website, out of fear that technically minded web visitors would go elsewhere.   When I asked for a show of hands on who would fill out a lead form themselves, very few hands went up. They made it clear: Engineers do not fill out lead forms.   Right after our talk, we offered a handout with more information about marketing to technical audiences in exchange for a business card. The offer was totally voluntary, it was there if they wanted it.   Do as I say, not as I do Guess what? We had a line of engineers 75 deep waiting with business card in hand. The same engineers who said engineers will abscond when confronted with a registration wall actually waited in line to give us their information.   I have spent 25 years working in marketing with engineers and developing and executing campaigns targeting highly technical audiences. During my 14 years at National Instruments, and as CEO at TREW Marketing today, I’ve worked with business leaders to market their services, products, and companies to highly technical, skeptical audiences.   And they are generating leads every day from engineers who are filling out forms on their websites and through other channels. These are embedded engineers designing WiFi into medical device products that are surgically placed inside the bodies of humans; test engineers evaluating armament systems on mil/aero platforms to ensure they work properly for the warfighter on mission; scientists looking for new, disruptive technologies for marine fossil fuel exploration to lower costs and improve our energy resources.   Engineers will fill out lead forms. Day in and day out, it’s happening at big companies and very small ones alike.   These are real engineers, real scientists, solving real problems, and seeking real information to help them succeed. It’s about trust. Your customers are solving really big problems, and they need serious information that is accurate, technical, and trustworthy.   Why? They do it willingly when they perceive information is highly valuable, current, and accurate, and they develop trust. With the combination of established trust and a perception that the information you are providing is of high value, they will share their information to get yours. And they will expect that the trust they have placed in you with their information will be treated with respect.   So, the next time someone tells you engineers won’t fill out a lead form, remind them, sometimes even really smart, well-intentioned people will say one thing, but do another… when there is trust and perceived value.   What's your take on filling out lead forms? Do you have a good, bad, or funny experience to share? Please comment below -- I'd love to hear your story.   Rebecca Geier is CEO and Co-Founder of TREW Marketing based in Austin, Texas. With over 20 years of global marketing experience primarily in the B2B science, engineering, and technology fields. She is passionate about creating marketing that engineers love, and teaching others how it can be done. When she is not working with TREW clients in the embedded, test, control, and life sciences fields, Rebecca regularly speaks on the topic, and has written and co-authored many blog posts, articles, and e-books, including TREW’s popular Smart Marketing for Engineers , covering topics such as website design, lead generation, and product launches.
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    StatisticsandprobabilityareusedinDigitalSignalProcessingtocharacterizesignalsandtheprocessesthatgeneratethem.Forexample,aprimaryuseofDSPistoreduceinterference,noise,andotherundesirablecomponentsinacquireddata.Thesemaybeaninherentpartofthesignalbeingmeasured,arisefromimperfectionsinthedataacquisitionsystem,orbeintroducedasanunavoidablebyproductofsomeDSPoperation.Statisticsandprobabilityallowthesedisruptivefeaturestobemeasuredandclassified,thefirststepindevelopingstrategiestoremovetheoffendingcomponents.Thischapterintroducesthemostimportantconceptsinstatisticsandprobability,withemphasisonhowtheyapplytoacquiredsignals.CHAPTERStatistics,ProbabilityandNoise2StatisticsandprobabilityareusedinDigitalSignalProcessingtocharacterizesignalsandtheprocessesthatgeneratethem.Forexample,aprimaryuseofDSPistoreduceinterference,noise,andotherundesirablecomponentsinacquireddata.Thesemaybeaninherentpartofthesignalbeingmeasured,arisefromimperfectionsinthedataacquisitionsystem,orbeintroducedasanunavoidablebyproductofsomeDSPoperation.Statisticsandprobabilityallowthesedisruptivefeaturestobemeasuredandclassified,thefirststepindevelopingstrategiestoremovetheoffendingcomponents.Thischapterintroducesthemostimportantconceptsinstatisticsandprobability,withemphasisonhowtheyapplytoacquired……
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    摘要:本设计指南中,电路采用10位ADC、电阻分压器以及外部基准,能够将ADC的实际精度提高至13位。本文展示了通过电压缩放,将10位ADC扩展至13位设计实例。文中分别描述了MAX15910位ADC、MAX5420电阻分压器以及MAX6141电压基准的特性。通过调整基准电压提高ADC精度FrancoContadiniMar04,2012摘要:本设计指南中,电路采用10位ADC、电阻分压器以及外部基准,能够将ADC的实际精度提高至13位。本文展示了通过电压缩放,将10位ADC扩展至13位设计实例。文中分别描述了MAX15910位ADC、MAX5420电阻分压器以及MAX6141电压基准的特性。为了提高灵活性,数据采集板应适合不同的输入电压范围,利用同一采集电路处理低幅度信号时往往需要增加几位分辨率,从而提高了系统成本。利用本应用笔记给出的简单电路,可以采用低成本10位ADC将实际精度提高至13位。图1ADC的1个LSB(最低有效位)为FSR/2n,其中n表示位数。FSR(满量程)取决于电压基准幅度。采用外部基准的MAX159是低功耗、108ksps串行ADC,封装于MAX-8,其输入范围为0至VDD+50mV。较宽的输入范围允许利用基准缩放技术来适应不同的输入范围。低成本、3端电压基准的输出通过数字可编程电阻分压器(MAX5420)进行缩放调节,分压器可提供精确的分压比(1、2、4、8)。分压比精度为0.025%至0.5%,取决于所选择的器件等级(A、B、C)。分压比由数字输入D1和D0决定,具体如下:表1.DIGITALINPUTSD1D0DIVIDERRATIO0010121……
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    摘要:本设计指南中,电路采用10位ADC、电阻分压器以及外部基准,能够将ADC的实际精度提高至13位。本文展示了通过电压缩放,将10位ADC扩展至13位设计实例。文中分别描述了MAX15910位ADC、MAX5420电阻分压器以及MAX6141电压基准的特性。通过调整基准电压提高ADC精度FrancoContadiniMar04,2012摘要:本设计指南中,电路采用10位ADC、电阻分压器以及外部基准,能够将ADC的实际精度提高至13位。本文展示了通过电压缩放,将10位ADC扩展至13位设计实例。文中分别描述了MAX15910位ADC、MAX5420电阻分压器以及MAX6141电压基准的特性。为了提高灵活性,数据采集板应适合不同的输入电压范围,利用同一采集电路处理低幅度信号时往往需要增加几位分辨率,从而提高了系统成本。利用本应用笔记给出的简单电路,可以采用低成本10位ADC将实际精度提高至13位。图1ADC的1个LSB(最低有效位)为FSR/2n,其中n表示位数。FSR(满量程)取决于电压基准幅度。采用外部基准的MAX159是低功耗、108ksps串行ADC,封装于MAX-8,其输入范围为0至VDD+50mV。较宽的输入范围允许利用基准缩放技术来适应不同的输入范围。低成本、3端电压基准的输出通过数字可编程电阻分压器(MAX5420)进行缩放调节,分压器可提供精确的分压比(1、2、4、8)。分压比精度为0.025%至0.5%,取决于所选择的器件等级(A、B、C)。分压比由数字输入D1和D0决定,具体如下:表1.DIGITALINPUTSD1D0DIVIDERRATIO0010121……
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    摘要:出于安全原因,我们保持我们的电路引用到我们的环境。在大多数情况下,这是大地。本应用笔记介绍了如何正确理解释放的本地电路接地作为参考点我们的思维去考虑其他的简单电路。Maxim>AppNotes>AUDIOCIRCUITSCIRCUITPROTECTIONGENERALENGINEERINGTOPICSSIGNALGENERATIONCIRCUITSTEMPERATURESENSORSandTHERMALMANAGEMENTKeywords:Initialaccuracy,digitalpots,potentiometer,resistance,voltagedividers,ratiometric,ratiosteps,Sep25,2008LSB,tapserror,referencedecoupling,EarthGround,highpush-buttoninterface,commonspaceshuttle,localpotentialAPPLICATIONNOTE4292WhereIsGround?By:BillLaumeisterAbstract:Forsafetyreasonswekeepourcircuitsreferencedtooursurroundings.Inmostcasesthisisearthground.Thisapplicationnoteexplainshowaproperunderstandingoflocalcircuitgroundasareferencepointfreesourthinkingtoconsiderothersimplecircuits.Whereisgroundinspace?Usuallyengineeringisstrictlyco……
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    摘要:出于安全原因,我们保持我们的电路引用到我们的环境。在大多数情况下,这是大地。本应用笔记介绍了如何正确理解释放的本地电路接地作为参考点我们的思维去考虑其他的简单电路。Maxim>AppNotes>AUDIOCIRCUITSCIRCUITPROTECTIONGENERALENGINEERINGTOPICSSIGNALGENERATIONCIRCUITSTEMPERATURESENSORSandTHERMALMANAGEMENTKeywords:Initialaccuracy,digitalpots,potentiometer,resistance,voltagedividers,ratiometric,ratiosteps,Sep25,2008LSB,tapserror,referencedecoupling,EarthGround,highpush-buttoninterface,commonspaceshuttle,localpotentialAPPLICATIONNOTE4292WhereIsGround?By:BillLaumeisterAbstract:Forsafetyreasonswekeepourcircuitsreferencedtooursurroundings.Inmostcasesthisisearthground.Thisapplicationnoteexplainshowaproperunderstandingoflocalcircuitgroundasareferencepointfreesourthinkingtoconsiderothersimplecircuits.Whereisgroundinspace?Usuallyengineeringisstrictlyco……
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    上传者: 2iot
    摘要:精度计算器(累加器)在数据转换器应用电路的设计和分析。它计算出一个理想的数据转换器的直流精度。该方案是使用与HP®50G计算器或免费的PC模拟器。Maxim>DesignSupport>AppNotes>A/DandD/AConversion/SamplingCircuits>APP5060Maxim>DesignSupport>AppNotes>DigitalPotentiometers>APP5060Keywords:ADC,DAC,Accuracy,Calculator,analogdigital,designanalysis,dataconverter,applicationcircuits,DCaccuracy,HP50g,Resolution,bits,PPM,INL,LSB,AnalogCircuitDesign,HP50gPrograms,ACCUAug09,2011APPLICATIONNOTE5060ADC/DACAccuracyCalculatorTutorialBy:BillLaumeister,StrategicApplicationsEngineerAbstract:TheAccuracyCalculator(ACCU)aidsinthedesignandanalysisofdata-converterapplicationcircuits.ItcalculatestheDCaccuracyofanidealdataconverter.Theprogram……
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    摘要:数位计算器(ENOB),艾滋病在数据转换器应用电路的设计和分析的有效。它计算的ENOB,SINAD,分辨率,信号带宽,过采样率,DNL的,时钟抖动,模拟噪声和THD。该计算器可用于惠普®50克计算器或免费的PC模拟器。Maxim>DesignSupport>TechnicalDocuments>Tutorials>A/DandD/AConversion/SamplingCircuits>APP5061Maxim>DesignSupport>TechnicalDocuments>Tutorials>DigitalPotentiometers>APP5061Maxim>DesignSupport>TechnicalDocuments>Tutorials>MeasurementCircuits>APP5061Keywords:EffectiveNumberBits,Calculator,ENOB,DataConverter,SINAD,Resolution,Signal,OversampleRates,DNL,Clock,Jitter,AnalogNoise,THD,ADC,DAC,AnalogDesign,DigitalAccuracy,HP50g,INL,TotalHarmonicDistortionAug09,2011TUTORIAL5061EffectiveNumberofBitsCalculatorTutorialBy:BillLaumeister,StrategicApplicationsEngineerAbstract:TheEffectiv……
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    摘要:带隙基准计算器(BGRC)艾滋病的布罗考的带隙基准电路的设计和分析。所有电路参数和输出电压的计算结温的函数。惠普®50G计算器或免费的PC模拟器可以使用计算器。Maxim>DesignSupport>AppNotes>A/DandD/AConversion/SamplingCircuits>APP5062Maxim>DesignSupport>AppNotes>AmplifierandComparatorCircuits>APP5062Maxim>DesignSupport>AppNotes>DigitalPotentiometers>APP5062Keywords:accuracycalculatortutorial,analogdigitaldesignanalysis,dataconverterapplicationcircuits,HP50g,voltagereference,Bandgap,BandGap,Brokawcell,magictemperature,curvaturecorrection,lineartransferfunction,temperaturecoefficient,TempcoAug09,2011APPLICATIONNOTE5062BandgapReferenceCalculatorTutorialBy:BillLaumeister,StrategicApplicationsEngineerAbstract:TheBandgapReferenceCalculator……