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self-biased

  • Self Healing Key Distribution With Revocation

    Self Healing Key Distribution With Revocation

    標(biāo)簽: Distribution Revocation Healing Self

    上傳時(shí)間: 2014-01-27

    上傳用戶:xuan‘nian

  • All New Electronics Self-Teaching Guide (2008)

    All New Electronics Self-Teaching Guide (2008)

    標(biāo)簽: Self-Teaching Electronics Guide 2008

    上傳時(shí)間: 2014-11-22

    上傳用戶:xuanjie

  • A BIST (BUILT-IN SELF-TEST) STRATEGY FOR MIXED-SIGNAL INTEGRATED CIRCUITS

    A BIST (BUILT-IN SELF-TEST) STRATEGY FOR MIXED-SIGNAL INTEGRATED CIRCUITS

    標(biāo)簽: MIXED-SIGNAL INTEGRATED SELF-TEST BUILT-IN

    上傳時(shí)間: 2013-12-03

    上傳用戶:xzt

  • Aodv for NS-2. A mobile ad-hoc network (MANET) is a kind of wireless ad-hoc network, and is a self-c

    Aodv for NS-2. A mobile ad-hoc network (MANET) is a kind of wireless ad-hoc network, and is a self-configuring network of mobile routers connected wirelessly. MANET may operate in a standalone fashion, or may be connected to the larger Internet. Many routing protocols have been developed for MANETs over the past few years. This project evaluated three specific MANET routing protocols which are Ad-hoc On-demand Distance Vector (AODV), Dynamic Source Routing (DSR) and Dynamic MANET Ondemand routing protocol (DYMO) to better understand the major characteristics of these routing protocols. Different performance aspects were investigated in this project including packet delivery ratio, routing overhead, throughput and average end-to-end delay.

    標(biāo)簽: network ad-hoc wireless mobile

    上傳時(shí)間: 2014-01-12

    上傳用戶:zsjzc

  • This is a very good book on self learning electronics from Wiley publications and is very useful to

    This is a very good book on self learning electronics from Wiley publications and is very useful to understand basics of electronics for some one shifting from computer science to embedded system development

    標(biāo)簽: very publications electronics learning

    上傳時(shí)間: 2017-09-24

    上傳用戶:playboys0

  • 高壓變頻器前側(cè)逆變晶閘管自供電驅(qū)動(dòng)系統(tǒng)研究與設(shè)計(jì).rar

    隨著電力電子技術(shù)的發(fā)展,高壓換流設(shè)備在工業(yè)應(yīng)用中日益廣泛。其核心元件晶閘管(SCR)的電壓與電流越來(lái)越高(已達(dá)到10KV/10KA以上),應(yīng)用場(chǎng)合要求也越來(lái)越高。在國(guó)際上,晶閘管的光控技術(shù)發(fā)展日益成熟。根據(jù)對(duì)國(guó)內(nèi)晶閘管技術(shù)發(fā)展前景和需求的展望,本文采用自供電驅(qū)動(dòng)技術(shù)與光控技術(shù)相結(jié)合,研發(fā)光控自供電晶閘管驅(qū)動(dòng)控制板,然后與晶閘管本體相結(jié)合即形成光控晶閘管工程化實(shí)現(xiàn)模型,其可作為光控晶閘管的替代技術(shù)。 在工程應(yīng)用中,光控晶閘管的典型應(yīng)用場(chǎng)合為四象限高壓變頻器和國(guó)家大型直流輸變電系統(tǒng)等。隨著國(guó)家節(jié)能工程的實(shí)施,高壓變頻器的應(yīng)用范圍越來(lái)越廣泛,已成為工業(yè)節(jié)能中的重要環(huán)節(jié)。高壓直流換流系統(tǒng)難度大,技術(shù)復(fù)雜,要求高,本論文研究的光控晶閘管替代技術(shù)只作為其儲(chǔ)備技術(shù)之一。本論文以電流源型高壓變頻器作為該光控晶閘管替代技術(shù)的應(yīng)用背景重點(diǎn)闡述。 電流源型高壓變頻器為了提高單機(jī)容量,通常是數(shù)個(gè)SCR串聯(lián)使用。隨著系統(tǒng)容量越來(lái)越大,裝置對(duì)高壓開(kāi)關(guān)器件的要求也越來(lái)越高。如果一組串聯(lián)SCR中某一個(gè)SCR該導(dǎo)通時(shí)沒(méi)有導(dǎo)通,那么加在該組SCR上的電壓都將加到該SCR上形成過(guò)電壓,造成該器件的擊穿損壞,甚至于一組串聯(lián)SCR都被燒壞。為了克服上述問(wèn)題,保證高壓變頻器中串聯(lián)晶閘管能夠安全可靠的工作,提高系統(tǒng)可靠性,有必要為晶閘管配備后備驅(qū)動(dòng)系統(tǒng)。本文提出了給SCR驅(qū)動(dòng)電路增設(shè)自供電驅(qū)動(dòng)系統(tǒng)——SPDS (Self—Powered Drive System)的解決辦法。SPDS基本功能是通過(guò)高位取能電路利用RC緩沖電路中的能量為監(jiān)測(cè)電路和后備觸發(fā)電路提供正常工作所需要的能量。它的優(yōu)點(diǎn)是由于緩沖電路與晶閘管同電位,自供電驅(qū)動(dòng)系統(tǒng)要求的電壓隔離水平可以從幾千伏降低到幾百伏,節(jié)省了高壓隔離變壓器,節(jié)省了成本和體積,提高了系統(tǒng)可靠性。國(guó)外對(duì)相關(guān)內(nèi)容已經(jīng)有了深入研究,并將其應(yīng)用在高壓變頻器產(chǎn)品中。在國(guó)內(nèi),目前還沒(méi)有查到相關(guān)文獻(xiàn)。本文為基于晶閘管的電流源型高壓變頻器設(shè)計(jì)了一種高壓晶閘管自供電驅(qū)動(dòng)系統(tǒng),填補(bǔ)了國(guó)內(nèi)空白,為自供電驅(qū)動(dòng)系統(tǒng)的推廣應(yīng)用和其他高壓開(kāi)關(guān)器件自供電驅(qū)動(dòng)系統(tǒng)的研制提供了參考。 本文詳細(xì)介紹了串聯(lián)高壓晶閘管驅(qū)動(dòng)系統(tǒng)的要求和RC緩沖電路的工作特 點(diǎn),進(jìn)而提出了SPDS的工作原理和具體實(shí)現(xiàn)方式,闡述了SPDS各部分組成及其功能。SPDS的核心技術(shù)是取能回路和觸發(fā)方式的設(shè)計(jì)。本文在比較各種高壓取能方式和觸發(fā)方式優(yōu)缺點(diǎn)的基礎(chǔ)上,選擇采用RC緩沖取能方式和光纖觸發(fā)方式。 論文基于Multisim10仿真軟件,結(jié)合高壓晶閘管自供電驅(qū)動(dòng)系統(tǒng)取能電路的原理,對(duì)高壓晶閘管自供電驅(qū)動(dòng)系統(tǒng)的核心部分——SPDS取能電路進(jìn)行了仿真。通過(guò)搭建帶SPDS取能電路的單相晶閘管仿真電路和電流源型高壓變頻器前側(cè)變流電路的仿真模型,詳細(xì)討論了影響RC取能回路正常工作的各種因素。同時(shí),通過(guò)設(shè)定仿真電路的參數(shù),分析了其工作狀況。根據(jù)得到的仿真波形圖,證明了高壓晶閘管自供電驅(qū)動(dòng)系統(tǒng)可以達(dá)到有效觸發(fā)晶閘管導(dǎo)通的設(shè)計(jì)目標(biāo),具有可行性。 為考察SPDS的實(shí)際工作性能,本文搭建了簡(jiǎn)易的SPDS低壓硬件實(shí)驗(yàn)平臺(tái),為其高壓條件下的工程化應(yīng)用打好了基礎(chǔ)。 在論文的最后,對(duì)高壓晶閘管自供電驅(qū)動(dòng)系統(tǒng)的發(fā)展方向進(jìn)行了展望。 關(guān)鍵詞:高壓變頻器;晶閘管驅(qū)動(dòng);自供電系統(tǒng);高壓換流;光控晶閘管

    標(biāo)簽: 高壓變頻器 逆變 晶閘管

    上傳時(shí)間: 2013-05-26

    上傳用戶:riiqg1989

  • 基準(zhǔn)電壓的溫度漂移研究應(yīng)用筆記

    Abstract: A perfect voltage reference produces a stable voltage independent of any external factors. Real-world voltagereferences, of course, are subject to errors caused by many external factors. One causeof these major errors istemperature. Without care, it is easy to operate a voltage reference outside its operating temperature range. Thisapplication note describes how references respond to temperature changes, and how self-heating can cause a voltagereference to operate outside its recommended temperature range. Once understood, this knowledge can then be used toavoid making this design error.

    標(biāo)簽: 基準(zhǔn)電壓 溫度漂移 應(yīng)用筆記

    上傳時(shí)間: 2013-11-08

    上傳用戶:xianglee

  • STM32F10xxx設(shè)備中如何得到高精度ADC

    The STM32F10xxx microcontroller family embeds up to three advanced 12-bit ADCs (depending on the device) with a conversion time down to 1 μs. A self-calibration feature is provided to enhance ADC accuracy versus environmental condition changes.

    標(biāo)簽: STM 32F F10 ADC

    上傳時(shí)間: 2014-12-23

    上傳用戶:eastimage

  • PCB被動(dòng)組件的隱藏特性解析

    PCB 被動(dòng)組件的隱藏特性解析 傳統(tǒng)上,EMC一直被視為「黑色魔術(shù)(black magic)」。其實(shí),EMC是可以藉由數(shù)學(xué)公式來(lái)理解的。不過(guò),縱使有數(shù)學(xué)分析方法可以利用,但那些數(shù)學(xué)方程式對(duì)實(shí)際的EMC電路設(shè)計(jì)而言,仍然太過(guò)復(fù)雜了。幸運(yùn)的是,在大多數(shù)的實(shí)務(wù)工作中,工程師并不需要完全理解那些復(fù)雜的數(shù)學(xué)公式和存在于EMC規(guī)范中的學(xué)理依據(jù),只要藉由簡(jiǎn)單的數(shù)學(xué)模型,就能夠明白要如何達(dá)到EMC的要求。本文藉由簡(jiǎn)單的數(shù)學(xué)公式和電磁理論,來(lái)說(shuō)明在印刷電路板(PCB)上被動(dòng)組件(passivecomponent)的隱藏行為和特性,這些都是工程師想讓所設(shè)計(jì)的電子產(chǎn)品通過(guò)EMC標(biāo)準(zhǔn)時(shí),事先所必須具備的基本知識(shí)。導(dǎo)線和PCB走線導(dǎo)線(wire)、走線(trace)、固定架……等看似不起眼的組件,卻經(jīng)常成為射頻能量的最佳發(fā)射器(亦即,EMI的來(lái)源)。每一種組件都具有電感,這包含硅芯片的焊線(bond wire)、以及電阻、電容、電感的接腳。每根導(dǎo)線或走線都包含有隱藏的寄生電容和電感。這些寄生性組件會(huì)影響導(dǎo)線的阻抗大小,而且對(duì)頻率很敏感。依據(jù)LC 的值(決定自共振頻率)和PCB走線的長(zhǎng)度,在某組件和PCB走線之間,可以產(chǎn)生自共振(self-resonance),因此,形成一根有效率的輻射天線。在低頻時(shí),導(dǎo)線大致上只具有電阻的特性。但在高頻時(shí),導(dǎo)線就具有電感的特性。因?yàn)樽兂筛哳l后,會(huì)造成阻抗大小的變化,進(jìn)而改變導(dǎo)線或PCB 走線與接地之間的EMC 設(shè)計(jì),這時(shí)必需使用接地面(ground plane)和接地網(wǎng)格(ground grid)。導(dǎo)線和PCB 走線的最主要差別只在于,導(dǎo)線是圓形的,走線是長(zhǎng)方形的。導(dǎo)線或走線的阻抗包含電阻R和感抗XL = 2πfL,在高頻時(shí),此阻抗定義為Z = R + j XL j2πfL,沒(méi)有容抗Xc = 1/2πfC存在。頻率高于100 kHz以上時(shí),感抗大于電阻,此時(shí)導(dǎo)線或走線不再是低電阻的連接線,而是電感。一般而言,在音頻以上工作的導(dǎo)線或走線應(yīng)該視為電感,不能再看成電阻,而且可以是射頻天線。

    標(biāo)簽: PCB 被動(dòng)組件

    上傳時(shí)間: 2013-10-09

    上傳用戶:時(shí)代將軍

  • LED的電源管理

    A light-emitting diode (LED) is a semiconductor device that emits narrow-spectrum incoherent light when forward-biased.The color of the emitted light depends on the chemical composition of the semiconductor material used, and can benear-ultraviolet, visible or infrared. LEDs are more prevalent today than ever before, replacing traditional incandescent andfluorescent bulbs in many lighting applications. Incandescents use a heated filament, are subject to breakage and burnoutand operate at a luminous efficiency of 2% to 4%. Fluorescents are more efficient, at 7% to 12%, but require highdrive voltage and contain mercury, a toxic substance that may be eventually banned in certain countries. LEDs, however,produce light directly through electroluminescence, operate at low voltage and can deliver over 20% luminous efficiency.

    標(biāo)簽: LED 電源管理

    上傳時(shí)間: 2013-11-07

    上傳用戶:xiaoyuer

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