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texas-instrument

  • MSP430G2553

    DESCRIPTION The Texas Instruments MSP430 family of ultra-low-power microcontrollers consists of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with five low-power modes, is optimized to achieve extended battery life in portable measurement applications. The device features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows wake-up from low-power modes to active mode in less than 1 μs. The MSP430G2x13 and MSP430G2x53 series are ultra-low-power mixed signal microcontrollers with built-in 16- bit timers, up to 24 I/O capacitive-touch enabled pins, a versatile analog comparator, and built-in communication capability using the universal serial communication interface. In addition the MSP430G2x53 family members have a 10-bit analog-to-digital (A/D) converter. For configuration details see Table 1. Typical applications include low-cost sensor systems that capture analog signals, convert them to digital values, and then process the data for display or for transmission to a host system.

    標簽: G2553 2553 430G MSP 430

    上傳時間: 2018-12-25

    上傳用戶:ygyh

  • New Horizons in Mobile and Wireless

    European Research Framework Programs are a public policy instrument to strengthen European competitiveness through cooperation. Although they have a fixed timeframe, determined research themes, and specific expected impact, the achievements in research and development (R&D) made by the funded projects pave the way for a research continuum.

    標簽: New Horizons Mobile Wireless

    上傳時間: 2020-05-31

    上傳用戶:shancjb

  • safety instrument system(SIS)技術方案

    安全儀表系統(tǒng)、SIS系統(tǒng)技術方案,方案設計。

    標簽: SIS

    上傳時間: 2021-10-15

    上傳用戶:

  • MIPI DSI to eDP converter

    Texas instruments MIPI DSI to eDP converter. Input supports 2 channel, 4 lanes each, up to 1.5GBit/s. Total input bandwidth is 12Gbit/s. Output eDP 1.4 1,2 or 4 lanes up to 5.4Gbit/s. output up to 4096x2304 60fps. 

    標簽: mipi dsi

    上傳時間: 2021-12-22

    上傳用戶:

  • 基于STM32單片機設計的非接觸式電流檢測控制系統(tǒng)

    本系統(tǒng)基于STM32單片機設計的非接觸式電流檢測控制系統(tǒng),通過OPA548片將所給任意信號放大,由100Ω電阻和INA128芯片進行電流電壓轉換放大后,利用STM32單片機對獲取的電壓信號以0.488μs頻率采樣,利用STM32單片機的FFT庫,獲得信號的諧波信息。測量電流信號精準,該設計可廣泛應用在以STM32單片機為核心控制器件的新型儀表中,性能精準且抗干擾能力強。This system is a non-contact current detection and control system based on STM32 single chip microcomputer. It amplifiesany signal through OPA548 chip, converts and amplifies the current and voltage by 100 Ω resistance and INA128 chip. The obtainedvoltage signal is sampled at the frequency of 0.488 μs by STM 32 single chip microcomputer, and the harmonic information of the signalis obtained by the FFT library of STM 32 single chip microcomputer. The measurement of current signal is accurate. This design can bewidely used in a new instrument with STM 32 single chip microcomputer as its core control device, with accurate performance and stronganti-interference capability.

    標簽: stm32 單片機

    上傳時間: 2022-03-27

    上傳用戶:

  • 基于Proteus的單片機模數(shù)轉換電路的設計與仿真

    以單片機控制A/D轉換器TLC549為例,對A/D轉換器的主要技術指標進行了分析研究,在Proteus平臺下,完成了A/D轉換電路的構建,采用器件工作時序方式進行程序編寫,借助仿真圖表、虛擬儀器等工具對A/D轉換的數(shù)據(jù)進行測量并對失調誤差、增益誤差、微分非線性、積分非線性和轉換時間等重要參數(shù)進行了詳細分析。結果表明:使用Proteus軟件可對A/D轉換過程進行定性分析,將抽象的A/D轉換器技術指標直觀化、形象化展現(xiàn)出來,有助于學生更好地理解A/D轉換過程。The main technical indicators of A/D converter were analyzed and studied with an example from A/D converter TLC2543 which is controlled by using SCM.It was completed the construction of the A/D converter circuit under the Proteus software.The programming based on the operation sequence of the chip is put forward.With the aid of the simulation tools such as virtual instrument,simulation charts provided by Proteus,the important parameters of circuit such as offset error,gain error,differential nonlinearity(DNL),integral nonlinearity (INL) and conversion time are analyzed detailedly.Simulation results show that the A/D conversion process can be qualitatively analyzed and visualized the abstract indicators of A/D.The system can help students better to understand the SCM conversion process.

    標簽: proteus 單片機 模數(shù)轉換

    上傳時間: 2022-04-04

    上傳用戶:

  • 磁致伸縮位移傳感器的設計與實現(xiàn)

    本文設計了一種磁致伸縮位移傳感器,介紹了該磁致伸縮位移傳感器的測量原理,通過結構優(yōu)化設計提高了儀器的性能,詳述了硬件電路設計及實現(xiàn)方法,完成了軟件設計,實現(xiàn)了高壓充電、問詢脈沖加載、時間測量及濾波等功能,并通過實驗對其性能進行了驗證。所研制的磁致伸縮位移傳感器具有測量精度高、長期穩(wěn)定性好等特點,滿足了大量程、高精度、惡劣環(huán)境等測量的要求。A kind of sensor based on magnetostrictive principle is designed.The measuring principle of the magnetostrictive displacement sensor is introduced,the performance of the instrument is improved by the structural optimization design,and introduced the hardware circuit design and the realization method,completed the software design,realized the functions of the high voltage charging,inquiries pulse loading,time measurement and filtering,and its performance is verified through the experiment.The magnetostrictive displacement sensor has the characteristics of high measuring precision.The sensor meets the requirements of large range,high precision,poor environment and so on.

    標簽: 位移傳感器

    上傳時間: 2022-04-06

    上傳用戶:

  • 萬能模擬信號輸入采集電路

    介紹一種萬能模擬信號輸入采集電路,可以同時支持電壓、電流、熱電偶、熱電阻等常見的工業(yè)類型信號,方便后級電路的測量。該研究成果通過不斷優(yōu)化和完善,已成功應用到了中控儀表的新產品中。The paper introduces a collection circuit of universal signal input. The circuit support voltage, current, thermocouple, thermal resistance and other common industrial type signal. The research results, which has been continuous optimized and improved, has been successfully applied to the new production of Zhejiang Supcon Instrument Co., Ltd.

    標簽: 采集電路

    上傳時間: 2022-04-21

    上傳用戶:slq1234567890

  • 24位ADC驅動代碼

    ADS1256 是TI(Texas I nstruments )公司推出的一款低噪聲高分辨率的24 位Si gma - Delta("- #)模數(shù)轉換器(ADC)。"- #ADC 與傳統(tǒng)的逐次逼近型和積分型ADC 相比有轉換誤差小而價格低廉的優(yōu)點,但由于受帶寬和有效采樣率的限制,"- #ADC 不適用于高頻數(shù)據(jù)采集的場合。該款ADS1256 可適合于采集最高頻率只有幾千赫茲的模擬數(shù)據(jù)的系統(tǒng)中,數(shù)據(jù)輸出速率最高可為30K 采樣點/秒(SPS),有完善的自校正和系統(tǒng)校正系統(tǒng), SPI 串行數(shù)據(jù)傳輸接口。本文結合筆者自己的應用經(jīng)驗,對該ADC 的基本原理以及應用做簡要介紹。ADs1256 的總體電氣特性下面介紹在使用ADs1256 的過程中要注意的一些電氣方面的具體參數(shù):模擬電源(AVDD )輸入范圍+ 4 . 75V !+ 5 .25V,使用的典型值為+ 5 .00V;數(shù)字電源(DVDD )輸入范圍+ 1 . 8V !+ 3 .6V,使用的典型值+ 3 .3V;參考電壓值(VREF= VREFP- VREFN)的范圍+ 0 .5V!+ 2 .6V,使用的典型值為+ 2 .5V;耗散功率最大為57mW;每個模擬輸入端(AI N0 !7 和AI NC M)相對于模擬地(AGND)的絕對電壓值范圍在輸入緩沖器(BUFFER)關閉的時候為AGND-0 .1 !AVDD+ 0 . 1 ,在輸入緩沖器打開的時候為AGND !AVDD-2 .0 ;滿刻度差分模擬輸入電壓值(VI N = AI NP -AI NN)為+ /-(2VREF/PGA);數(shù)字輸入邏輯高電平范圍0 .8DVDD!5 .25V(除D0 !D3 的輸入點平不可超過DVDD 外),邏輯低點平范圍DGND!0 .2DVDD;數(shù)字輸出邏輯高電平下限為0 .8DVDD,邏輯低電平上限為0 .2DVDD,輸出電流典型值為5mA;主時鐘頻率由外部晶體振蕩器提供給XTAL1和XTAL2 時,要求范圍為2 M!10 MHz ,僅由CLKI N 輸入提供時,范圍為0 .1 M!10 MHz 。

    標簽: ADC ADS1256

    上傳時間: 2022-06-10

    上傳用戶:

  • JTAG基礎知識

    IEEE1149.1的產生1985年由IBM、AT&T、Texas Instruments、Philips Electronics NV、Siemens、Alcatel和Ericsson等公司成立的JETAG(Joint European Test Action Group)提出了邊界掃描技術。1986年由于其它地區(qū)的一些公司的加入,JETAG改名為JTAG。1988年JTAG提出了標準的邊界掃描體系結構,名稱叫Boundary-Scan Architecture Standard Proposal,Version2.0,1990年IEEE正式承認了JTAG標準,經(jīng)過補充和修訂以后命名命名為IEEE1149.1-90。同年又提出了BSDL(Boundary Scan Description Lauguage,邊界掃描描述語言)。后來成為IEEE1149.1-93標準的一部分。

    標簽: jtag

    上傳時間: 2022-07-06

    上傳用戶:canderile

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