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功能安全標(biāo)準(zhǔn)

  • 采用TüV認(rèn)證的FPGA開發(fā)功能安全系統(tǒng)

    This white paper discusses how market trends, the need for increased productivity, and new legislation have accelerated the use of safety systems in industrial machinery. This TÜV-qualified FPGA design methodology is changing the paradigms of safety designs and will greatly reduce development effort, system complexity, and time to market. This allows FPGA users to design their own customized safety controllers and provides a significant competitive advantage over traditional microcontroller or ASIC-based designs. Introduction The basic motivation of deploying functional safety systems is to ensure safe operation as well as safe behavior in cases of failure. Examples of functional safety systems include train brakes, proximity sensors for hazardous areas around machines such as fast-moving robots, and distributed control systems in process automation equipment such as those used in petrochemical plants. The International Electrotechnical Commission’s standard, IEC 61508: “Functional safety of electrical/electronic/programmable electronic safety-related systems,” is understood as the standard for designing safety systems for electrical, electronic, and programmable electronic (E/E/PE) equipment. This standard was developed in the mid-1980s and has been revised several times to cover the technical advances in various industries. In addition, derivative standards have been developed for specific markets and applications that prescribe the particular requirements on functional safety systems in these industry applications. Example applications include process automation (IEC 61511), machine automation (IEC 62061), transportation (railway EN 50128), medical (IEC 62304), automotive (ISO 26262), power generation, distribution, and transportation. 圖Figure 1. Local Safety System

    標(biāo)簽: FPGA 安全系統(tǒng)

    上傳時(shí)間: 2013-11-05

    上傳用戶:維子哥哥

  • 采用TüV認(rèn)證的FPGA開發(fā)功能安全系統(tǒng)

    This white paper discusses how market trends, the need for increased productivity, and new legislation have accelerated the use of safety systems in industrial machinery. This TÜV-qualified FPGA design methodology is changing the paradigms of safety designs and will greatly reduce development effort, system complexity, and time to market. This allows FPGA users to design their own customized safety controllers and provides a significant competitive advantage over traditional microcontroller or ASIC-based designs. Introduction The basic motivation of deploying functional safety systems is to ensure safe operation as well as safe behavior in cases of failure. Examples of functional safety systems include train brakes, proximity sensors for hazardous areas around machines such as fast-moving robots, and distributed control systems in process automation equipment such as those used in petrochemical plants. The International Electrotechnical Commission’s standard, IEC 61508: “Functional safety of electrical/electronic/programmable electronic safety-related systems,” is understood as the standard for designing safety systems for electrical, electronic, and programmable electronic (E/E/PE) equipment. This standard was developed in the mid-1980s and has been revised several times to cover the technical advances in various industries. In addition, derivative standards have been developed for specific markets and applications that prescribe the particular requirements on functional safety systems in these industry applications. Example applications include process automation (IEC 61511), machine automation (IEC 62061), transportation (railway EN 50128), medical (IEC 62304), automotive (ISO 26262), power generation, distribution, and transportation. 圖Figure 1. Local Safety System

    標(biāo)簽: FPGA 安全系統(tǒng)

    上傳時(shí)間: 2013-11-14

    上傳用戶:zoudejile

  • C語言標(biāo)準(zhǔn)文檔.

    C語言標(biāo)準(zhǔn)文檔.

    標(biāo)簽:

    上傳時(shí)間: 2015-01-16

    上傳用戶:上善若水

  • LVDS技術(shù): 低電壓差分訊號(hào)(LVDS)在對(duì)訊號(hào)完整性、低抖動(dòng)及共模特性要求較高的系統(tǒng)中得到了廣泛的應(yīng)用。本文針對(duì)LVDS與其他幾種介面標(biāo)準(zhǔn)之間的連接

    LVDS技術(shù): 低電壓差分訊號(hào)(LVDS)在對(duì)訊號(hào)完整性、低抖動(dòng)及共模特性要求較高的系統(tǒng)中得到了廣泛的應(yīng)用。本文針對(duì)LVDS與其他幾種介面標(biāo)準(zhǔn)之間的連接,對(duì)幾種典型的LVDS介面電路進(jìn)行了討論

    標(biāo)簽: LVDS 差分 系統(tǒng)

    上傳時(shí)間: 2014-01-13

    上傳用戶:stvnash

  • 本程式是使用C++寫單片機(jī)的軔體程式, 可以和PC做串列埠COM port通訊, 也結(jié)合I2C通訊標(biāo)準(zhǔn), 將接收的資料燒錄傳輸至硬件IC 24C16

    本程式是使用C++寫單片機(jī)的軔體程式, 可以和PC做串列埠COM port通訊, 也結(jié)合I2C通訊標(biāo)準(zhǔn), 將接收的資料燒錄傳輸至硬件IC 24C16

    標(biāo)簽: 24C16 port COM I2C

    上傳時(shí)間: 2013-12-17

    上傳用戶:

  • USB是PC體系中的一套全新的工業(yè)標(biāo)準(zhǔn)

    USB是PC體系中的一套全新的工業(yè)標(biāo)準(zhǔn),它支持單個(gè)主機(jī)與多個(gè)外接設(shè)備同時(shí)進(jìn)行數(shù)據(jù)交換。 首先會(huì)介紹USB的結(jié)構(gòu)和特點(diǎn),包括總線特徵、協(xié)議定義、傳輸方式和電源管理等等。這部分內(nèi)容會(huì)使USB開發(fā)者和用戶對(duì)USB有一整體的認(rèn)識(shí)。

    標(biāo)簽: USB

    上傳時(shí)間: 2015-10-18

    上傳用戶:lixinxiang

  • C#標(biāo)準(zhǔn)教程(pdf) 1.快速入門 2.語法結(jié)構(gòu) 3.類對(duì)象和應(yīng)用 4.WEB開發(fā)

    C#標(biāo)準(zhǔn)教程(pdf) 1.快速入門 2.語法結(jié)構(gòu) 3.類對(duì)象和應(yīng)用 4.WEB開發(fā)

    標(biāo)簽: WEB 教程 快速入門

    上傳時(shí)間: 2016-05-25

    上傳用戶:zm7516678

  • USB開發(fā)步驟標(biāo)準(zhǔn),對(duì)開發(fā)的過程詳解,usb的快速入門教程

    USB開發(fā)步驟標(biāo)準(zhǔn),對(duì)開發(fā)的過程詳解,usb的快速入門教\程

    標(biāo)簽: USB usb 教程

    上傳時(shí)間: 2016-10-30

    上傳用戶:dsgkjgkjg

  • USB開發(fā)步驟標(biāo)準(zhǔn)硬件,對(duì)USB開發(fā)過程的硬件 ,帶寬詳細(xì)的說明,對(duì)開發(fā)設(shè)計(jì)有幫助

    USB開發(fā)步驟標(biāo)準(zhǔn)硬件,對(duì)USB開發(fā)過程的硬件 ,帶寬詳細(xì)的說明,對(duì)開發(fā)設(shè)計(jì)有幫助

    標(biāo)簽: USB 硬件

    上傳時(shí)間: 2013-11-27

    上傳用戶:ruan2570406

  • MDB/NAMA/EVA 自動(dòng)販賣機(jī)相關(guān)標(biāo)準(zhǔn)與技術(shù)資料

    MDB/NAMA/EVA 自動(dòng)販賣機(jī)相關(guān)標(biāo)準(zhǔn)與技術(shù)資料

    標(biāo)簽: NAMA MDB EVA

    上傳時(shí)間: 2016-11-22

    上傳用戶:極客

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