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mean-square

  • 6小時(shí)學(xué)會labview

    6小時(shí)學(xué)會labview, labview Six Hour Course – Instructor Notes   This zip file contains material designed to give students a working knowledge of labview in a 6 hour timeframe. The contents are: Instructor Notes.doc – this document. labviewIntroduction-SixHour.ppt – a PowerPoint presentation containing screenshots and notes on the topics covered by the course. Convert C to F (Ex1).vi – Exercise 1 solution VI. Convert C to F (Ex2).vi – Exercise 2 solution subVI. Thermometer-DAQ (Ex2).vi – Exercise 2 solution VI. Temperature Monitor (Ex3).vi – Exercise 3 solution VI. Thermometer (Ex4).vi – Exercise 4 solution subVI. Convert C to F (Ex4).vi – Exercise 4 solution subVI. Temperature Logger (Ex4).vi – Exercise 4 solution VI. Multiplot Graph (Ex5).vi – Exercise 5 solution VI. Square Root (Ex6).vi – Exercise 6 solution VI. State Machine 1 (Ex7).vi – Exercise 7 solution VI.   The slides can be presented in two three hour labs, or six one hour lectures. Depending on the time and resources available in class, you can choose whether to assign the exercises as homework or to be done in class. If you decide to assign the exercises in class, it is best to assign them in order with the presentation. This way the students can create VI’s while the relevant information is still fresh. The notes associated with the exercise slide should be sufficient to guide the students to a solution. The solution files included are one possible solution, but by no means the only solution.

    標(biāo)簽: labview

    上傳時(shí)間: 2013-10-13

    上傳用戶:zjwangyichao

  • 簡述PCB線寬和電流關(guān)系

      PCB線寬和電流關(guān)系公式   先計(jì)算Track的截面積,大部分PCB的銅箔厚度為35um(即 1oz)它乘上線寬就是截面積,注意換算成平方毫米。 有一個(gè)電流密度經(jīng)驗(yàn)值,為15~25安培/平方毫米。把它稱上截面積就得到通流容量。   I=KT(0.44)A(0.75), 括號里面是指數(shù),   K為修正系數(shù),一般覆銅線在內(nèi)層時(shí)取0.024,在外層時(shí)取0.048   T為最大溫升,單位為攝氏度(銅的熔點(diǎn)是1060℃)   A為覆銅截面積,單位為square mil.   I為容許的最大電流,單位為安培。   一般 10mil=0.010inch=0.254mm 1A , 250mil=6.35mm 8.3A ?倍數(shù)關(guān)系,與公式不符 ?  

    標(biāo)簽: PCB 電流

    上傳時(shí)間: 2013-11-12

    上傳用戶:ljd123456

  • PCB設(shè)計(jì)問題集錦

    PCB設(shè)計(jì)問題集錦 問:PCB圖中各種字符往往容易疊加在一起,或者相距很近,當(dāng)板子布得很密時(shí),情況更加嚴(yán)重。當(dāng)我用Verify Design進(jìn)行檢查時(shí),會產(chǎn)生錯(cuò)誤,但這種錯(cuò)誤可以忽略。往往這種錯(cuò)誤很多,有幾百個(gè),將其他更重要的錯(cuò)誤淹沒了,如何使Verify Design會略掉這種錯(cuò)誤,或者在眾多的錯(cuò)誤中快速找到重要的錯(cuò)誤。    答:可以在顏色顯示中將文字去掉,不顯示后再檢查;并記錄錯(cuò)誤數(shù)目。但一定要檢查是否真正屬于不需要的文字。 問: What’s mean of below warning:(6230,8330 L1) Latium Rule not checked: COMPONENT U26 component rule.答:這是有關(guān)制造方面的一個(gè)檢查,您沒有相關(guān)設(shè)定,所以可以不檢查。 問: 怎樣導(dǎo)出jop文件?答:應(yīng)該是JOB文件吧?低版本的powerPCB與PADS使用JOB文件?,F(xiàn)在只能輸出ASC文件,方法如下STEP:FILE/EXPORT/選擇一個(gè)asc名稱/選擇Select ALL/在Format下選擇合適的版本/在Unit下選Current比較好/點(diǎn)擊OK/完成然后在低版本的powerPCB與PADS產(chǎn)品中Import保存的ASC文件,再保存為JOB文件。 問: 怎樣導(dǎo)入reu文件?答:在ECO與Design 工具盒中都可以進(jìn)行,分別打開ECO與Design 工具盒,點(diǎn)擊右邊第2個(gè)圖標(biāo)就可以。 問: 為什么我在pad stacks中再設(shè)一個(gè)via:1(如附件)和默認(rèn)的standardvi(如附件)在布線時(shí)V選擇1,怎么布線時(shí)按add via不能添加進(jìn)去這是怎么回事,因?yàn)橛袝r(shí)要使用兩種不同的過孔。答:PowerPCB中有多個(gè)VIA時(shí)需要在Design Rule下根據(jù)信號分別設(shè)置VIA的使用條件,如電源類只能用Standard VIA等等,這樣操作時(shí)就比較方便。詳細(xì)設(shè)置方法在PowerPCB軟件通中有介紹。 問:為什么我把On-line DRC設(shè)置為prevent..移動元時(shí)就會彈出(圖2),而你們教程中也是這樣設(shè)置怎么不會呢?答:首先這不是錯(cuò)誤,出現(xiàn)的原因是在數(shù)據(jù)中沒有BOARD OUTLINE.您可以設(shè)置一個(gè),但是不使用它作為CAM輸出數(shù)據(jù). 問:我用ctrl+c復(fù)制線時(shí)怎設(shè)置原點(diǎn)進(jìn)行復(fù)制,ctrl+v粘帖時(shí)總是以最下面一點(diǎn)和最左邊那一點(diǎn)為原點(diǎn) 答: 復(fù)制布線時(shí)與上面的MOVE MODE設(shè)置沒有任何關(guān)系,需要在右鍵菜單中選擇,這在PowerPCB軟件通教程中有專門介紹. 問:用(圖4)進(jìn)行修改線時(shí)拉起時(shí)怎總是往左邊拉起(圖5),不知有什么辦法可以輕易想拉起左就左,右就右。答: 具體條件不明,請檢查一下您的DESIGN GRID,是否太大了. 問: 好不容易拉起右邊但是用(圖6)修改線怎么改怎么下面都會有一條不能和在一起,而你教程里都會好好的(圖8)答:這可能還是與您的GRID 設(shè)置有關(guān),不過沒有問題,您可以將不需要的那段線刪除.最重要的是需要找到布線的感覺,每個(gè)軟件都不相同,所以需要多練習(xí)。 問: 尊敬的老師:您好!這個(gè)圖已經(jīng)畫好了,但我只對(如圖1)一種的完全間距進(jìn)行檢查,怎么錯(cuò)誤就那么多,不知怎么改進(jìn)。請老師指點(diǎn)。這個(gè)圖在附件中請老師幫看一下,如果還有什么問題請指出來,本人在改進(jìn)。謝?。。。?!答:請注意您的DRC SETUP窗口下的設(shè)置是錯(cuò)誤的,現(xiàn)在選中的SAME NET是對相同NET進(jìn)行檢查,應(yīng)該選擇NET TO ALL.而不是SAME NET有關(guān)各項(xiàng)參數(shù)的含義請仔細(xì)閱讀第5部教程. 問: U101元件已建好,但元件框的拐角處不知是否正確,請幫忙CHECK 答:元件框等可以通過修改編輯來完成。問: U102和U103元件沒建完全,在自動建元件參數(shù)中有幾個(gè)不明白:如:SOIC--》silk screen欄下spacing from pin與outdent from first pin對應(yīng)U102和U103元件應(yīng)寫什么數(shù)值,還有這兩個(gè)元件SILK怎么自動設(shè)置,以及SILK內(nèi)有個(gè)圓圈怎么才能畫得與該元件參數(shù)一致。 答:Spacing from pin指從PIN到SILK的Y方向的距離,outdent from first pin是第一PIN與SILK端點(diǎn)間的距離.請根據(jù)元件資料自己計(jì)算。

    標(biāo)簽: PCB 設(shè)計(jì)問題 集錦

    上傳時(shí)間: 2014-01-03

    上傳用戶:Divine

  • This program will ask how many numbers you want to find the average of, then it will allow you to en

    This program will ask how many numbers you want to find the average of, then it will allow you to enter your numbers(yes they can even be decimals) then it will calculate the mean, median, mode and range of what you enter.

    標(biāo)簽: will you program average

    上傳時(shí)間: 2015-03-23

    上傳用戶:skhlm

  • This a Bayesian ICA algorithm for the linear instantaneous mixing model with additive Gaussian noise

    This a Bayesian ICA algorithm for the linear instantaneous mixing model with additive Gaussian noise [1]. The inference problem is solved by ML-II, i.e. the sources are found by integration over the source posterior and the noise covariance and mixing matrix are found by maximization of the marginal likelihood [1]. The sufficient statistics are estimated by either variational mean field theory with the linear response correction or by adaptive TAP mean field theory [2,3]. The mean field equations are solved by a belief propagation method [4] or sequential iteration. The computational complexity is N M^3, where N is the number of time samples and M the number of sources.

    標(biāo)簽: instantaneous algorithm Bayesian Gaussian

    上傳時(shí)間: 2013-12-19

    上傳用戶:jjj0202

  • The goal with this project was to make it possible for almost any mobile-phone to use ICQ and be abl

    The goal with this project was to make it possible for almost any mobile-phone to use ICQ and be able to communicate with other users! One other goal with this project was to lower the GPRS-traffic in the phone and make the ICQ-ing cheaper. A third goal was to make this service as easy to log-in to as possible. Anyone tried to fill a log-in screen with a WAP-browser should know what I mean. With Wapmess all you have to do is to write your login-url ONCE and then bookmark it in your phone, to make it available fast. :)

    標(biāo)簽: mobile-phone possible project almost

    上傳時(shí)間: 2015-04-08

    上傳用戶:xiaodu1124

  • This project is created using the Keil ARM CA Compiler. The Logic Analyzer built into the simula

    This project is created using the Keil ARM CA Compiler. The Logic Analyzer built into the simulator may be used to monitor and display any variable or peripheral I/O register. It is already configured to show the PWM output signal on PORT3.0 and PORT3.1 This ARM Example may be debugged using only the uVision Simulator and your PC--no additional hardware or evaluation boards are required. The Simulator provides cycle-accurate simulation of all on-chip peripherals of the ADuC7000 device series. You may create various input signals like digital pulses, sine waves, sawtooth waves, and square waves using signal functions which you write in C. Signal functions run in the background in the simulator within timing constraints you configure. In this example, several signal functions are defined in the included Startup_SIM.INI file.

    標(biāo)簽: the Analyzer Compiler project

    上傳時(shí)間: 2013-12-19

    上傳用戶:Yukiseop

  • The module LSQ is for unconstrained linear least-squares fitting. It is based upon Applied Statisti

    The module LSQ is for unconstrained linear least-squares fitting. It is based upon Applied Statistics algorithm AS 274 (see comments at the start of the module). A planar-rotation algorithm is used to update the QR- factorization. This makes it suitable for updating regressions as more data become available. The module contains a test for singularities which is simpler and quicker than calculating the singular-value decomposition. An important feature of the algorithm is that it does not square the condition number. The matrix X X is not formed. Hence it is suitable for ill- conditioned problems, such as fitting polynomials. By taking advantage of the MODULE facility, it has been possible to remove many of the arguments to routines. Apart from the new function VARPRD, and a back-substitution routine BKSUB2 which it calls, the routines behave as in AS 274.

    標(biāo)簽: least-squares unconstrained Statisti Applied

    上傳時(shí)間: 2015-05-14

    上傳用戶:aig85

  • 利用多態(tài)性編程

    利用多態(tài)性編程,創(chuàng)建一個(gè)square類,實(shí)現(xiàn)求三角形、正方形和圓形面積。方法 //抽象出一個(gè)共享的類,定義一個(gè)函數(shù)求面積的公共界面。再重新定義各面積的求面積 //函數(shù),在主類中創(chuàng)建不同類的對象,并求不同形狀的面積

    標(biāo)簽: 編程

    上傳時(shí)間: 2013-12-16

    上傳用戶:athjac

  • bayeserr - Computes the Bayesian risk for optimal classifier. % bayescln - Classifier based on Baye

    bayeserr - Computes the Bayesian risk for optimal classifier. % bayescln - Classifier based on Bayes decision rule for Gaussians. % bayesnd - Discrim. function, dichotomy, max aposteriori probability. % bhattach - Bhattacharya s upper limit of mean class. error. % pbayescln - Plots discriminat function of Bayes classifier.

    標(biāo)簽: Classifier classifier bayeserr Computes

    上傳時(shí)間: 2015-06-14

    上傳用戶:sunjet

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