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Methodology

  • 基于8086 CPU 的單芯片計(jì)算機(jī)系統(tǒng)的設(shè)計(jì)

    本文依據(jù)集成電路設(shè)計(jì)方法學(xué),探討了一種基于標(biāo)準(zhǔn)Intel 8086 微處理器的單芯片計(jì)算機(jī)平臺(tái)的架構(gòu)。研究了其與SDRAM,8255 并行接口等外圍IP 的集成,并在對(duì)AMBA協(xié)議和8086 CPU分析的基礎(chǔ)上,采用遵從AMBA傳輸協(xié)議的系統(tǒng)總線代替?zhèn)鹘y(tǒng)的8086 CPU三總線結(jié)構(gòu),搭建了基于8086 IP 軟核的單芯片計(jì)算機(jī)系統(tǒng),并實(shí)現(xiàn)了FPGA 功能演示。關(guān)鍵詞:微處理器; SoC;單芯片計(jì)算機(jī);AMBA 協(xié)議 Design of 8086 CPU Based Computer-on-a-chip System(School of Electrical Engineering and Automation, Heifei University of Technology, Hefei, 230009,China)Abstract: According to the IC design Methodology, this paper discusses the design of one kind of Computer-on-a-chip system architecture, which is based on the standard Intel8086 microprocessor,investigates how to integrate the 8086 CPU and peripheral IP such as, SDRAM controller, 8255 PPI etc. Based on the analysis of the standard Intel8086 microprocessor and AMBA Specification,the Computer-on-a-chip system based on 8086 CPU which uses AMBA bus instead of traditional three-bus structure of 8086 CPU is constructed, and the FPGA hardware emulation is fulfilled.Key words: Microprocessor; SoC; Computer-on-a-chip; AMBA Specification

    標(biāo)簽: 8086 CPU 單芯片 計(jì)算機(jī)系統(tǒng)

    上傳時(shí)間: 2013-12-27

    上傳用戶:kernor

  • 采用TüV認(rèn)證的FPGA開(kāi)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

  • XAPP452-Spartan-3高級(jí)配置架構(gòu)

    This application note provides a detailed description of the Spartan™-3 configurationarchitecture. It explains the composition of the bitstream file and how this bitstream isinterpreted by the configuration logic to program the part. Additionally, a Methodology ispresented that will guide the user through the readback process. This information can be usedfor partial reconfiguration or partial readback.

    標(biāo)簽: Spartan XAPP 452 架構(gòu)

    上傳時(shí)間: 2013-11-05

    上傳用戶:透明的心情

  • FPGA設(shè)計(jì)重利用方法(Design Reuse Methodology)

      FPGAs have changed dramatically since Xilinx first introduced them just 15 years ago. In thepast, FPGA were primarily used for prototyping and lower volume applications; custom ASICswere used for high volume, cost sensitive designs. FPGAs had also been too expensive and tooslow for many applications, let alone for System Level Integration (SLI). Plus, the development

    標(biāo)簽: Methodology Design Reuse FPGA

    上傳時(shí)間: 2013-10-23

    上傳用戶:旗魚(yú)旗魚(yú)

  • PICMG_COM_0_R2_0COMe規(guī)范--原文資料

    A Computer-On-Module, or COM, is a Module with all components necessary for a bootable host computer, packaged as a super component. A COM requires a Carrier Board to bring out I/O and to power up. COMs are used to build single board computer solutions and offer OEMs fast time-to-market with reduced development cost. Like integrated circuits, they provide OEMs with significant freedom in meeting form-fit-function requirements. For all these reasons the COM Methodology has gained much popularity with OEMs in the embedded industry. COM Express® is an open industry standard for Computer-On-Modules. It is designed to be future proof and to provide a smooth transition path from legacy parallel interfaces to LVDS (Low Voltage Differential Signaling) interfaces. These include the PCI bus and parallel ATA on the one hand and PCI Express and Serial ATA on the other hand.

    標(biāo)簽: PICMG_COM COMe

    上傳時(shí)間: 2013-11-05

    上傳用戶:Wwill

  • 采用TüV認(rèn)證的FPGA開(kāi)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

  • XAPP452-Spartan-3高級(jí)配置架構(gòu)

    This application note provides a detailed description of the Spartan™-3 configurationarchitecture. It explains the composition of the bitstream file and how this bitstream isinterpreted by the configuration logic to program the part. Additionally, a Methodology ispresented that will guide the user through the readback process. This information can be usedfor partial reconfiguration or partial readback.

    標(biāo)簽: Spartan XAPP 452 架構(gòu)

    上傳時(shí)間: 2013-11-16

    上傳用戶:qingdou

  • FPGA設(shè)計(jì)重利用方法(Design Reuse Methodology)

      FPGAs have changed dramatically since Xilinx first introduced them just 15 years ago. In thepast, FPGA were primarily used for prototyping and lower volume applications; custom ASICswere used for high volume, cost sensitive designs. FPGAs had also been too expensive and tooslow for many applications, let alone for System Level Integration (SLI). Plus, the development

    標(biāo)簽: Methodology Design Reuse FPGA

    上傳時(shí)間: 2013-11-01

    上傳用戶:shawvi

  • 開(kāi)關(guān)電源EMI設(shè)計(jì)(英文版)

    Integrated EMI/Thermal Design forSwitching Power SuppliesWei ZhangThesis submitted to the Faculty of theVirginia Polytechnic Institute and State Universityin partial fulfillment of the requirements for the degree of Integrated EMI/Thermal Design forSwitching Power SuppliesWei Zhang(ABSTRACT)This work presents the modeling and analysis of EMI and thermal performancefor switch power supply by using the CAD tools. The Methodology and design guidelinesare developed.By using a boost PFC circuit as an example, an equivalent circuit model is builtfor EMI noise prediction and analysis. The parasitic elements of circuit layout andcomponents are extracted analytically or by using CAD tools. Based on the model, circuitlayout and magnetic component design are modified to minimize circuit EMI. EMI filtercan be designed at an early stage without prototype implementation.In the second part, thermal analyses are conducted for the circuit by using thesoftware Flotherm, which includes the mechanism of conduction, convection andradiation. Thermal models are built for the components. Thermal performance of thecircuit and the temperature profile of components are predicted. Improved thermalmanagement and winding arrangement are investigated to reduce temperature.In the third part, several circuit layouts and inductor design examples are checkedfrom both the EMI and thermal point of view. Insightful information is obtained.

    標(biāo)簽: EMI 開(kāi)關(guān)電源 英文

    上傳時(shí)間: 2013-11-16

    上傳用戶:萍水相逢

  • Professional verification-A guider for advanced functional verification:Author:PAUL WILCOX Including

    Professional verification-A guider for advanced functional verification:Author:PAUL WILCOX Including:Verication practice, Resource usage,The Unified Verification Methodology.etc.

    標(biāo)簽: verification-A Professional verification functional

    上傳時(shí)間: 2014-01-17

    上傳用戶:三人用菜

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