Here an embedded System-on-Chip is build, in an Xilinx Spartan-3 FPGA with Microblaze as the processor.A PLB core System is made with the VGA IP core attached to it. The software written for the MicroBlaze processor specifies the object, the color and the movement of the display. The functionality of the module is verified by implementation on Spartan 3.
标签: System-on-Chip Microblaze embedded Spartan
上传时间: 2013-12-20
上传用户:上善若水
介绍几种cpuThe 8xC251SA/SB/SP/SQ improves on the MCS-51 architecture and peripheral features, introducing the advanced register based CPU architecture i.e., the MCS 251 microcontroller architecture. The register based CPU supports a 40-byte register file. In addition, the 8xC251SA/SB/SP/SQ microcontroller has 256-Kbyte expanded external code/data memory space and 64-Kbyte stack space. The new controller is also specially designed to execute C code efficiently. More importantly, the 8xC251SA/SB/SP/SQ maintains binary code compatibility with MCS 51 microcontrollers but at the same time allows the use of the powerful MCS 251 microcontroller instruction set, with many new 8, 16 and 32 bit instructions available. The 8xC251SA/SB/SP/SQ has 512 bytes or 1 Kbyte of on-Chip data RAM options and is available in 16 Kbytes and 8 Kbytes of on-Chip ROM/OTPROM or ROMless options.
标签: architecture introducin peripheral improves
上传时间: 2015-03-15
上传用户:ccclll
Atmel’s AT91SAM7FP105 is a low pincount FingerChip processor based on the 32-bit ARM RISC processor. It features a on-Chip biometric engine performing enrollment verification and identification, an internal record cache of up to 25 records and a secure command protocol over USB, SPI, UART. This protocol enables an external host system or processor to control the onchip bioengine functions, manipulate the record cache, and securely export record cache records for external storage. Together with the FingerChip sensor device AT77C104B, it forms an embedded, secured biometric turnkey solution.
标签: processor FingerChip pincount Atmel
上传时间: 2013-12-26
上传用户:shawvi
信号与信息处理是信息科学中近几年来发展最为迅速的学科之一,随着片上系统(SOC,System On Chip)时代的到来,FPGA正处于革命性数字信号处理的前沿。基于FPGA的设计可以在系统可再编程及在系统调试,具有吞吐量高,能够更好地防止授权复制、元器件和开发成本进一步降低、开发时间也大大缩短等优点。然而,FPGA器件是基于SRAM结构的编程工艺,掉电后编程信息立即丢失,每次加电时,配置数据都必须重新下载,并且器件支持多种配置方式,所以研究FPGA器件的配置方案在FPGA系统设计中具有极其重要的价值,这也给用于可编程逻辑器件编程的配置接口电路和实验开发设备提出了更高的要求。 本论文基于IEEE1149.1标准和USB2.0技术,完成了FPGA配置接口电路及实验开发板的设计与实现。作者在充分理解IEEE1149.1标准和USB技术原理的基础上,针对Altcra公司专用的USB数据配置电缆USB-Blaster,对其内部工作原理及工作时序进行测试与详细分析,完成了基于USB配置接口的FPGA芯片开发实验电路的完整软硬件设计及功能时序仿真。作者最后进行了软硬件调试,完成测试与验证,实现了对Altera系列PLD的配置功能及实验开发板的功能。 本文讨论的USB下载接口电路被验证能在Altera的QuartusII开发环境下直接使用,无须在主机端另行设计通信软件,其兼容性较现有设计有所提高。由于PLD(Programmable Logic Device)厂商对其知识产权严格保密,使得基于USB接口的配置电路应用受到很大限制,同时也加大了自行对其进行开发设计的难度。 与传统的基于PC并口的下载接口电路相比,本设计的基于USB下载接口电路及FPGA实验开发板具有更高的编程下载速率、支持热插拔、体积小、便于携带、降低对PC硬件伤害,且具备其它下载接口电路不具备的SignalTapII嵌入式逻辑分析仪和调试NiosII嵌入式软核处理器等明显优势。从成本来看,本设计的USB配置接口电路及FPGA实验开发板与其同类产品相比有较强的竞争力。
上传时间: 2013-04-24
上传用户:lingduhanya
如今IC设计进入了SOC(System-on-Chip)设计时代。SOC是指在单一芯片上集成了微控制器、数字信号处理器、存储器、I/O接口等,可以实现信号采集、转换、存储、处理等功能的芯片。SOC设计是基于IP可重用性的设计过程。现在已有不少公司成功地开发了各种SOC总线规范,以便于IP核的可复用性设计。其中,ARM公司开发的AMBA(Advanced Microcontroller Bus Arehitecture)规范已经成为嵌入式应用的行业标准。嵌入式SOC芯片广泛应用于消费电子产品中,近年来随着彩屏手机、PDA等移动终端的普及,液晶电视等平板显示器件的推广,液晶显示器已经逐渐取代CRT成为主流的显示器件。LCD Driver IC作为液晶显示器的重要部件,需求量也日益增大。嵌入式液晶显示系统的设计是当今SOC设计中不可缺少的部分,而基于AMBA总线规范的LCD显示系统更是具备良好的性能和较大的潜力。 本文提出了一种基于AMBA总线规范的彩色TFT-LCD数字图像显示解决方案,硬件设计上包括APB存储接口模块、LCD控制模块,并用VHDL硬件描述语言进行了功能仿真,采用Mentor公司Modelsim5.8完成了系统功能验证;软件设计上完成了基于SAMSUNG公司S6D0110 TFT-LCD驱动芯片的测试程序的编写和系统测试。本设计不需要掌握TFT-LCD内部构造,复杂的内部驱动原理,只需要掌握AMBA总线规范和LCD的MPU并行接口时序,采用本课题设计出的LCD显示控制模块简单实用,便于推广应用。 本课题基于Xilinx公司的VirtexⅡ FF1152 PROTO开发平台完成了软件调试,实现了TFT-LCD图像显示。调试结果表明硬件和软件设计正确且取得了较为满意的结果。
上传时间: 2013-06-02
上传用户:小枫残月
信号与信息处理是信息科学中近几年来发展最为迅速的学科之一,随着片上系统(SOC,System On Chip)时代的到来,FPGA正处于革命性数字信号处理的前沿。基于FPGA的设计可以在系统可再编程及在系统调试,具有吞吐量高,能够更好地防止授权复制、元器件和开发成本进一步降低、开发时间也大大缩短等优点。然而,FPGA器件是基于SRAM结构的编程工艺,掉电后编程信息立即丢失,每次加电时,配置数据都必须重新下载,并且器件支持多种配置方式,所以研究FPGA器件的配置方案在FPGA系统设计中具有极其重要的价值,这也给用于可编程逻辑器件编程的配置接口电路和实验开发设备提出了更高的要求。 本论文基于IEEE1149.1标准和USB2.0技术,完成了FPGA配置接口电路及实验开发板的设计与实现。作者在充分理解IEEE1149.1标准和USB技术原理的基础上,针对Altcra公司专用的USB数据配置电缆USB-Blaster,对其内部工作原理及工作时序进行测试与详细分析,完成了基于USB配置接口的FPGA芯片开发实验电路的完整软硬件设计及功能时序仿真。作者最后进行了软硬件调试,完成测试与验证,实现了对Altera系列PLD的配置功能及实验开发板的功能。 本文讨论的USB下载接口电路被验证能在Altera的QuartusII开发环境下直接使用,无须在主机端另行设计通信软件,其兼容性较现有设计有所提高。由于PLD(Programmable Logic Device)厂商对其知识产权严格保密,使得基于USB接口的配置电路应用受到很大限制,同时也加大了自行对其进行开发设计的难度。 与传统的基于PC并口的下载接口电路相比,本设计的基于USB下载接口电路及FPGA实验开发板具有更高的编程下载速率、支持热插拔、体积小、便于携带、降低对PC硬件伤害,且具备其它下载接口电路不具备的SignalTapII嵌入式逻辑分析仪和调试NiosII嵌入式软核处理器等明显优势。从成本来看,本设计的USB配置接口电路及FPGA实验开发板与其同类产品相比有较强的竞争力。
上传时间: 2013-06-07
上传用户:2525775
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.
上传时间: 2014-12-23
上传用户:han_zh
The CN3052A is a complete constant-current /constant voltage linear charger for single cell Li-ion and Li Polymer rechargeable batteries. The device contains an on-Chip power MOSFET and eliminates the need for the external sense resistor and blocking diode.
上传时间: 2013-11-10
上传用户:子虚乌有
MG3500SoC是支持H.264高清编解码器的片上系统,内部集成一个嵌入式ARM926处理器,支持高清H.264编解码、MPEG鄄2解码和JPEG编解码。介绍了MG3500SoC的主要性能特点、引脚排列、主要接口功能及在DVR上的应用,以及MG3500SoC及其周围器件的硬件设计,提出了在设计中应注意的问题。 Abstract: The MG3500System-on-Chip(SoC)is high definition(HD)H.264codec,including ARM926-EJ processor,H.264encoder/decoder,MPEG2decoder and JPEG/MJPEG encoder/decoder.The features,pin assignments,interfaces and the typical application of MG3500in DVR are introduced in this paper.The application hardware circuit between the MG3500SoC and peripheral device are given,the questions which the syetem design needs to pay attention are explained.
上传时间: 2013-11-12
上传用户:elinuxzj
1 FEATURES· Single chip LCD controller/driver· 1 or 2-line display of up to 24 characters per line, or2 or 4 lines of up to 12 characters per line· 5 ′ 7 character format plus cursor; 5 ′ 8 for kana(Japanese syllabary) and user defined symbols· on-Chip:– generation of LCD supply voltage (external supplyalso possible)– generation of intermediate LCD bias voltages– oscillator requires no external components (externalclock also possible)· Display data RAM: 80 characters· Character generator ROM: 240 characters· Character generator RAM: 16 characters· 4 or 8-bit parallel bus or 2-wire I2C-bus interface· CMOS/TTL compatible· 32 row, 60 column outputs· MUX rates 1 : 32 and 1 : 16· Uses common 11 code instruction set· Logic supply voltage range, VDD - VSS: 2.5 to 6 V· Display supply voltage range, VDD - VLCD: 3.5 to 9 V· Low power consumption· I2C-bus address: 011101 SA0.
上传时间: 2013-11-08
上传用户:laozhanshi111