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  • CCS3.3_使用手冊_英文版.rar

    To get started with Code Composer Studio? (CCStudio) Development Tools, review the First two sections of this book. The remaining sections contain more detailed information on specific processes and tools. To determine whether you can utilize these features, see the online help provided with the Code Composer Studio installation.

    標簽: CCS 3.3 使用手冊

    上傳時間: 2013-07-24

    上傳用戶:zaizaibang

  • ICL7135 A D轉(zhuǎn)換器的雙斜率原理及應(yīng)用實例

    Integrating A/D converters have two characteristics incommon. First, as the name implies, their

    標簽: 7135 ICL D轉(zhuǎn)換 斜率

    上傳時間: 2013-04-24

    上傳用戶:matlab

  • SystemVerilog for Design

    ·SystemVerilog is a rich set of extensions to the IEEE 1364-2001 Verilog Hardware Description Language (Verilog HDL). These extensions address two major aspects of HDL-based design. First, modeling ver

    標簽: nbsp SystemVerilog Design for

    上傳時間: 2013-07-14

    上傳用戶:ainimao

  • 如何選擇合適的Logger按鈕

    Abstract: For many First-time users, finding the right logger that meets their needs can be a challenging task. In simple

    標簽: Logger 如何選擇 按鈕

    上傳時間: 2014-01-19

    上傳用戶:縹緲

  • 針對遠程系統(tǒng)的小型溫度傳感器 (tiny temperatu

    The LM20, LM45, LM50, LM60, LM61, and LM62 are analog output temperature sensors. They have various output voltage slopes (6.25mV/°C to 17mV/°C) and power supply voltage ranges (2.4V to 10V).The LM20 is the smallest, lowest power consumption analog output temperature sensor National Semiconductor has released. The LM70 and LM74 are MICROWIRE/SPI compatible digital temperature sensors. The LM70 has a resolution of 0.125°C while the LM74 has a resolution of 0.625°C. The LM74 is the most accurate of the two with an accuracy better than ±1.25°C. The LM75 is National’s First digital output temperature sensor, released several years ago.

    標簽: temperatu tiny 遠程系統(tǒng) 溫度傳感器

    上傳時間: 2014-12-23

    上傳用戶:yl8908

  • ADC轉(zhuǎn)換器技術(shù)用語 (A/D Converter Defi

    ANALOG INPUT BANDWIDTH is a measure of the frequencyat which the reconstructed output fundamental drops3 dB below its low frequency value for a full scale input. Thetest is performed with fIN equal to 100 kHz plus integer multiplesof fCLK. The input frequency at which the output is −3dB relative to the low frequency input signal is the full powerbandwidth.APERTURE JITTER is the variation in aperture delay fromsample to sample. Aperture jitter shows up as input noise.APERTURE DELAY See Sampling Delay.BOTTOM OFFSET is the difference between the input voltagethat just causes the output code to transition to the Firstcode and the negative reference voltage. Bottom Offset isdefined as EOB = VZT–VRB, where VZT is the First code transitioninput voltage and VRB is the lower reference voltage.Note that this is different from the normal Zero Scale Error.CONVERSION LATENCY See PIPELINE DELAY.CONVERSION TIME is the time required for a completemeasurement by an analog-to-digital converter. Since theConversion Time does not include acquisition time, multiplexerset up time, or other elements of a complete conversioncycle, the conversion time may be less than theThroughput Time.DC COMMON-MODE ERROR is a specification which appliesto ADCs with differential inputs. It is the change in theoutput code that occurs when the analog voltages on the twoinputs are changed by an equal amount. It is usually expressed in LSBs.

    標簽: Converter Defi ADC 轉(zhuǎn)換器

    上傳時間: 2013-11-12

    上傳用戶:pans0ul

  • Active Filters

    Power conversion by virtue of its basic role produces harmonics due to theslicing of either voltages or currents. To a large extent the pollution in theutility supply and the deterioration of the power quality has been generatedor created by non-linear converters. It is therefore ironic that power convertersshould now be used to clean up the pollution that they helped to create inthe First place.In a utility system, it is desirable to prevent harmonic currents (which resultin EMI and resonance problems) and limit reactive power flows (whichresult in transmission losses).Traditionally, shunt passive filters, comprised of tuned LC elements andcapacitor banks, were used to filter the harmonics and to compensate forreactive current due to non-linear loads. However, in practical applicationsthese methods have many disadvantages.

    標簽: Filters Active

    上傳時間: 2013-11-05

    上傳用戶:AISINI005

  • 射頻集成電路設(shè)計John Rogers(Radio Freq

    Radio Frequency Integrated Circuit Design I enjoyed reading this book for a number of reasons. One reason is that itaddresses high-speed analog design in the context of microwave issues. This isan advanced-level book, which should follow courses in basic circuits andtransmission lines. Most analog integrated circuit designers in the past workedon applications at low enough frequency that microwave issues did not arise.As a consequence, they were adept at lumped parameter circuits and often notcomfortable with circuits where waves travel in space. However, in order todesign radio frequency (RF) communications integrated circuits (IC) in thegigahertz range, one must deal with transmission lines at chip interfaces andwhere interconnections on chip are far apart. Also, impedance matching isaddressed, which is a topic that arises most often in microwave circuits. In mycareer, there has been a gap in comprehension between analog low-frequencydesigners and microwave designers. Often, similar issues were dealt with in twodifferent languages. Although this book is more firmly based in lumped-elementanalog circuit design, it is nice to see that microwave knowledge is brought inwhere necessary.Too many analog circuit books in the past have concentrated First on thecircuit side rather than on basic theory behind their application in communications.The circuits usually used have evolved through experience, without asatisfying intellectual theme in describing them. Why a given circuit works bestcan be subtle, and often these circuits are chosen only through experience. Forthis reason, I am happy that the book begins First with topics that require anintellectual approach—noise, linearity and filtering, and technology issues. Iam particularly happy with how linearity is introduced (power series). In therest of the book it is then shown, with specific circuits and numerical examples,how linearity and noise issues arise.

    標簽: Rogers Radio John Freq

    上傳時間: 2014-12-23

    上傳用戶:han_zh

  • PCB設(shè)計問題集錦

    PCB設(shè)計問題集錦 問:PCB圖中各種字符往往容易疊加在一起,或者相距很近,當板子布得很密時,情況更加嚴重。當我用Verify Design進行檢查時,會產(chǎn)生錯誤,但這種錯誤可以忽略。往往這種錯誤很多,有幾百個,將其他更重要的錯誤淹沒了,如何使Verify Design會略掉這種錯誤,或者在眾多的錯誤中快速找到重要的錯誤。    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。現(xiàn)在只能輸出ASC文件,方法如下STEP:FILE/EXPORT/選擇一個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 工具盒中都可以進行,分別打開ECO與Design 工具盒,點擊右邊第2個圖標就可以。 問: 為什么我在pad stacks中再設(shè)一個via:1(如附件)和默認的standardvi(如附件)在布線時V選擇1,怎么布線時按add via不能添加進去這是怎么回事,因為有時要使用兩種不同的過孔。答:PowerPCB中有多個VIA時需要在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,這樣操作時就比較方便。詳細設(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,但是不使用它作為CAM輸出數(shù)據(jù). 問:我用ctrl+c復(fù)制線時怎設(shè)置原點進行復(fù)制,ctrl+v粘帖時總是以最下面一點和最左邊那一點為原點 答: 復(fù)制布線時與上面的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)進行修改線時拉起時怎總是往左邊拉起(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,每個軟件都不相同,所以需要多練習。 問: 尊敬的老師:您好!這個圖已經(jīng)畫好了,但我只對(如圖1)一種的完全間距進行檢查,怎么錯誤就那么多,不知怎么改進。請老師指點。這個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。謝!!!!!答:請注意您的DRC SETUP窗口下的設(shè)置是錯誤的,現(xiàn)在選中的SAME NET是對相同NET進行檢查,應(yīng)該選擇NET TO ALL.而不是SAME NET有關(guān)各項參數(shù)的含義請仔細閱讀第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,還有這兩個元件SILK怎么自動設(shè)置,以及SILK內(nèi)有個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端點間的距離.請根據(jù)元件資料自己計算。

    標簽: PCB 設(shè)計問題 集錦

    上傳時間: 2013-10-07

    上傳用戶:comer1123

  • pci e PCB設(shè)計規(guī)范

    This document provides practical, common guidelines for incorporating PCI Express interconnect layouts onto Printed Circuit Boards (PCB) ranging from 4-layer desktop baseboard designs to 10- layer or more server baseboard designs. Guidelines and constraints in this document are intended for use on both baseboard and add-in card PCB designs. This includes interconnects between PCI Express devices located on the same baseboard (chip-to-chip routing) and interconnects between a PCI Express device located “down” on the baseboard and a device located “up” on an add-in card attached through a connector. This document is intended to cover all major components of the physical interconnect including design guidelines for the PCB traces, vias and AC coupling capacitors, as well as add-in card edge-finger and connector considerations. The intent of the guidelines and examples is to help ensure that good high-speed signal design practices are used and that the timing/jitter and loss/attenuation budgets can also be met from end-to-end across the PCI Express interconnect. However, while general physical guidelines and suggestions are given, they may not necessarily guarantee adequate performance of the interconnect for all layouts and implementations. Therefore, designers should consider modeling and simulation of the interconnect in order to ensure compliance to all applicable specifications. The document is composed of two main sections. The First section provides an overview of general topology and interconnect guidelines. The second section concentrates on physical layout constraints where bulleted items at the beginning of a topic highlight important constraints, while the narrative that follows offers additional insight.  

    標簽: pci PCB 設(shè)計規(guī)范

    上傳時間: 2013-10-15

    上傳用戶:busterman

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