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  • ESD - Physics and Devices

    Electrostatic discharge (ESD) phenomena have been known to mankind since Thales of Miletus in approximately 600 B.C.E. noticed the attraction of strands of hay to amber. Two thousand six hundred years have passed and the quest to obtain a better under- standing of electrostatics and ESD phenomenon continues. Today, the manufacturing of microelectronics has continued the interest in the field of electrostatic phenomenon spanning factory issues, tooling, materials, and the microelectronic industry

    標簽: Devices Physics ESD and

    上傳時間: 2020-06-05

    上傳用戶:shancjb

  • 微電腦型數(shù)學演算式隔離傳送器

    特點: 精確度0.1%滿刻度 可作各式數(shù)學演算式功能如:A+B/A-B/AxB/A/B/A&B(Hi or Lo)/|A|/ 16 BIT類比輸出功能 輸入與輸出絕緣耐壓2仟伏特/1分鐘(input/output/power) 寬范圍交直流兩用電源設(shè)計 尺寸小,穩(wěn)定性高

    標簽: 微電腦 數(shù)學演算 隔離傳送器

    上傳時間: 2014-12-23

    上傳用戶:ydd3625

  • CMOS模擬開關(guān)工作原理

    開關(guān)在電路中起接通信號或斷開信號的作用。最常見的可控開關(guān)是繼電器,當給驅(qū)動繼電器的驅(qū)動電路加高電平或低電平時,繼電器就吸合或釋放,其觸點接通或斷開電路。CMOS模擬開關(guān)是一種可控開關(guān),它不象繼電器那樣可以用在大電流、高電壓場合,只適于處理幅度不超過其工作電壓、電流較小的模擬或數(shù)字信號。 一、常用CMOS模擬開關(guān)引腳功能和工作原理  1.四雙向模擬開關(guān)CD4066  CD4066 的引腳功能如圖1所示。每個封裝內(nèi)部有4個獨立的模擬開關(guān),每個模擬開關(guān)有輸入、輸出、控制三個端子,其中輸入端和輸出端可互換。當控制端加高電平時,開關(guān)導(dǎo)通;當控制端加低電平時開關(guān)截止。模擬開關(guān)導(dǎo)通時,導(dǎo)通電阻為幾十歐姆;模擬開關(guān)截止時,呈現(xiàn)很高的阻抗,可以看成為開路。模擬開關(guān)可傳輸數(shù)字信號和模擬信號,可傳輸?shù)哪M信號的上限頻率為40MHz。各開關(guān)間的串擾很小,典型值為-50dB。

    標簽: CMOS 模擬開關(guān) 工作原理

    上傳時間: 2013-10-27

    上傳用戶:bibirnovis

  • 印刷電路板設(shè)計原則

    減小電磁干擾的印刷電路板設(shè)計原則 內(nèi) 容 摘要……1 1 背景…1 1.1 射頻源.1 1.2 表面貼裝芯片和通孔元器件.1 1.3 靜態(tài)引腳活動引腳和輸入.1 1.4 基本回路……..2 1.4.1 回路和偶極子的對稱性3 1.5 差模和共模…..3 2 電路板布局…4 2.1 電源和地…….4 2.1.1 感抗……4 2.1.2 兩層板和四層板4 2.1.3 單層板和二層板設(shè)計中的微處理器地.4 2.1.4 信號返回地……5 2.1.5 模擬數(shù)字和高壓…….5 2.1.6 模擬電源引腳和模擬參考電壓.5 2.1.7 四層板中電源平面因該怎么做和不應(yīng)該怎么做…….5 2.2 兩層板中的電源分配.6 2.2.1 單點和多點分配.6 2.2.2 星型分配6 2.2.3 格柵化地.7 2.2.4 旁路和鐵氧體磁珠……9 2.2.5 使噪聲靠近磁珠……..10 2.3 電路板分區(qū)…11 2.4 信號線……...12 2.4.1 容性和感性串擾……...12 2.4.2 天線因素和長度規(guī)則...12 2.4.3 串聯(lián)終端傳輸線…..13 2.4.4 輸入阻抗匹配...13 2.5 電纜和接插件……...13 2.5.1 差模和共模噪聲……...14 2.5.2 串擾模型……..14 2.5.3 返回線路數(shù)目..14 2.5.4 對板外信號I/O的建議14 2.5.5 隔離噪聲和靜電放電ESD .14 2.6 其他布局問題……...14 2.6.1 汽車和用戶應(yīng)用帶鍵盤和顯示器的前端面板印刷電路板...15 2.6.2 易感性布局…...15 3 屏蔽..16 3.1 工作原理…...16 3.2 屏蔽接地…...16 3.3 電纜和屏蔽旁路………………..16 4 總結(jié)…………………………………………17 5 參考文獻………………………17  

    標簽: 印刷電路板 設(shè)計原則

    上傳時間: 2013-10-24

    上傳用戶:18165383642

  • 傳輸線理論

    目錄  第一章           傳輸線理論 一 傳輸線原理 二 微帶傳輸線 三 微帶傳輸線之不連續(xù)分析 第二章           被動組件之電感設(shè)計與分析 一 電感原理 二 電感結(jié)構(gòu)與分析 三 電感設(shè)計與模擬 電感分析與量測

    標簽: 傳輸線

    上傳時間: 2013-12-12

    上傳用戶:浩子GG

  • 微電腦型數(shù)學演算式雙輸出隔離傳送器

    特點(FEATURES) 精確度0.1%滿刻度 (Accuracy 0.1%F.S.) 可作各式數(shù)學演算式功能如:A+B/A-B/AxB/A/B/A&B(Hi or Lo)/|A| (Math functioA+B/A-B/AxB/A/B/A&B(Hi&Lo)/|A|/etc.....) 16 BIT 類比輸出功能(16 bit DAC isolating analog output function) 輸入/輸出1/輸出2絕緣耐壓2仟伏特/1分鐘(Dielectric strength 2KVac/1min. (input/output1/output2/power)) 寬范圍交直流兩用電源設(shè)計(Wide input range for auxiliary power) 尺寸小,穩(wěn)定性高(Dimension small and High stability)

    標簽: 微電腦 數(shù)學演算 輸出 隔離傳送器

    上傳時間: 2013-11-24

    上傳用戶:541657925

  • LTC4099 USB電源管理和電池充電

      The LTC®4099 high effi ciency USB power manager andLi-Ion/Polymer battery charger seamlessly managespower distribution from multiple sources in portableapplications. It is differentiated from other USB powermanagers by its bidirectional I2C port that allows the hostmicroprocessor to control and monitor all aspects of theUSB power management and battery charging processes.In addition, a programmable interrupt generation functionalerts the host microprocessor to changes in device statusand provides unprecedented control of power managementfunctions. This high degree of confi gurability allowspost-layout changes in operation, even changes in thefi eld, and it allows a single qualifi ed device to be usedin a variety of products, thus reducing design time andeasing inventory management.

    標簽: 4099 LTC USB 電源管理

    上傳時間: 2013-10-22

    上傳用戶:18602424091

  • AVR單片機數(shù)碼管秒表顯示

    #include<iom16v.h> #include<macros.h> #define uint unsigned int #define uchar unsigned char uint a,b,c,d=0; void delay(c) { for for(a=0;a<c;a++) for(b=0;b<12;b++); }; uchar tab[]={ 0xc0,0xf9,0xa4,0xb0,0x99,0x92,0x82,0xf8,0x80,0x90,

    標簽: AVR 單片機 數(shù)碼管

    上傳時間: 2013-10-21

    上傳用戶:13788529953

  • 基于MSP430單片機的智能水位計設(shè)計

      為解決我國水位監(jiān)測野外條件下長期無人看守的問題,研制開發(fā)了基于MSP430單片機的智能水位計。從其組成到各功能分別進行了詳細的介紹,該智能水位計不僅實現(xiàn)了水位數(shù)據(jù)的實時監(jiān)測、記錄和定期采集等多種工作模式,而且提高了水位監(jiān)測精度,實現(xiàn)了水位監(jiān)測的智能化。   Abstract:   In order to solve the problems of long-term unmanned observation in the field water monitoring,an intelligence water-level meter based on MSP430 is developed composition and every function moduce of the water level meter was introduced in detail. It not only realizes water level data collection and storage, regularly gathering and so on, but also improves the water-level precision , finally realizes the intelligence.  

    標簽: MSP 430 單片機 水位計

    上傳時間: 2013-11-17

    上傳用戶:417313137

  • 基于PIC16C71的數(shù)字水溫配制閥的設(shè)計

      設(shè)計了一種基于PIC16C71單片機的數(shù)字水溫配制閥。該配制閥采用NTC熱敏電阻作溫度傳感器,與固定電阻組成簡單分壓電路作為水溫測量電路,利用PIC16C71單片機內(nèi)置的8位A/D轉(zhuǎn)換器把熱敏電阻上的模擬電壓轉(zhuǎn)換為數(shù)字量,PIC16C71單片機控制直流電機驅(qū)動混水閥調(diào)節(jié)冷熱水的混合比例實現(xiàn)水溫調(diào)節(jié)。給出了控制電路圖,對水溫測量電路的參數(shù)選擇和測溫精度作了詳細討論。實驗和分析表明,選用阻值較大的NTC熱敏電阻和分壓電阻可較好地解決熱敏電阻因功耗較大造成的熱擊穿問題。   Abstract:   A digital valve for controlling water temperature based on PIC16C71 was presented in this paper.A bleeder circuit which consisted of a NTC thermistor as temperature sensor and a fixed resistance was designed as water temperature measuring circuit.The analog voltage on the thermistor was converted into digital signal by a 8-bit A/D converter embedded in PIC16C71. Based on the digital signal, the MCU PIC16C71 drived the valve by a DC motor to adjust the water temperature through adjusting the proportion of hot water and cold water.The circuit diagram of controller was given,the principle,the component parameters and the accuracy of measuring temperatures were also dissertated in detail. It was found by experiment and analysis that thermal breakdown of thermistor caused by high power could be solved by selecting thermistor and fixed resistance with high impedance value.

    標簽: PIC 16C C71 16

    上傳時間: 2013-11-08

    上傳用戶:Yue Zhong

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