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- 进制转换“微机原理就及汇编语言课程设计”是计算机科学与技术专业的学科基础课。其目的是通过本实践环节,加深了对” “微机原理” “汇编语言”、“C语言”等课程知识的掌握与综合运用,通过对进制转换程序的设计让我对这门语言有了更深一步的理解,积累初步的经验。-base for the conversion "on the principle of computer and assembly language curriculum design" is computer scienc
lwip
- LwIP是瑞士计算机科学院的Adam Dunkels等开发的一套用于嵌入式系统的开放源代码TCP/IP协议栈。-Implementation of LwIP Swiss computer science such as Adam Dunkels framework for developing embedded the open source TCP / IP protocol stack.
VHDLRAM
- 介绍vhdl硬件描述语言的特点及设计思想,运用vhdl硬件描述语言实现计算机原理实验中RAM存储器的设计方法,重点描述了对传统计算机组成原理实验中移植到基于CPLD平台的思想-introduced vhdl hardware descr iption language features and design ideas, vhdl use hardware descr iption language computer science experiments RAM memory design,
dsp123
- DSP应用开发实用子程序 本书从工程应用的角度出发,介绍了各种数字信号处理算法在DSP上的实现。本书所介绍的子程序内容涉及数学运算、DSP硬件接口程序、经典数字信号处理算法和现代数字信号处理算法,以及DSP在语音、图像、控制和无线通信中的应用。 本书实例丰富、层次清晰、语言通俗,有较强的实用性,既可作为数字信号处理开发人员查询手册,也可作为大中专院校工业自动化、电气技术专业、计算机科学及其他相关专业的参考资料。 -DSP Application Development practi
CAN-bus-shiyanshi
- 本方案适用于研究生、本科、大专、职业技术学院的嵌入式系统(单片机/ARM7) 应用、信息通信、应用电子、机电一体化、微机应用、数控技术、自动化控制、计 算机原理与应用、仪表及控制、汽车工程等与“电子/微机/总线”有紧密联系的相关 专业。-The program applies to postgraduate, undergraduate and post-secondary schools, vocational and technical colleges Embedded System (S
lwip-1.1.0
- lwIP是瑞士计算机科学院(Swedish Institute of Computer Science)的Adam Dunkels等开发的一套用于嵌入式系统的开放源代码TCP/IP协议栈。Lwip既可以移植到操作系统上,又可以 在无操作系统的情况下独立运行.-lwIP Switzerland Computer Sciences (Swedish Institute of Computer Science), Adam Dunkels such as the development of a se
multi_cycle_cpu
- 多周期cpu,multi_cycle_cpu,南京大学计算机系计算机组成原理实验-Of multi-cycle cpu, multi_cycle_cpu, Nanjing University Department of Computer Science Computer principle experiment
alu_arm_alu_mips
- 加法器的arm实现和mips实现,alu_arm,alu_mips,南大计算机系计算机组成原理实验-Adder arm to achieve and realize mips, of alu_arm alu_mips, Nanda, Department of Computer Science Computer principle experiment
嵌入式网络协议Lwip0.6
- lwIP is a small independent implementation of the TCP/IP protocol suite that has been developed by Adam Dunkels at the Computer and Networks Architectures (CNA) lab at the Swedish Institute of Computer Science (SICS). -lwIP is a small indepen
lwip-1.2.0
- LwIP是瑞士计算机科学院(Swedish Institute of Computer Science)的AdamDunkels等开发的一套用于嵌入式系统的开放源代码TCP/IP协议栈。LwIP的含义是Light Weight(轻型)IP协议。LwIP可以移植到操作系统上,也可以在无操作系统的情况下独立运行。LwIP协议的基础是在减少对硬件资源占用的前提下完成TCP/IP协议的主要功能-LwIP computers are the Swiss Academy of Sciences (Swed
TCP_IP02
- uIP协议栈分析,原创。 uIP由瑞典计算机科学学院(网络嵌入式系统小组)的Adam Dunkels开发。其源代码由C语言编写,并完全公开,所有代码和相关说明文档可以到http://dunkels.com/adam/uip/下载。最新版本是uIP1.0版本,本书移植和使用的版本正是此版本。-uIP protocol stack analysis, originality. uIP by the Swedish Institute of Computer Science (Network Em
all-new-electronics-self-teaching-guide-wiley-sel
- This is a very good book on self learning electronics from Wiley publications and is very useful to understand basics of electronics for some one shifting from computer science to embedded system development
128634vhdl-sirenqiangdaqi
- 多功能电子抢答器vhdl 计算机专业课程设计必备。初学者的好帮手。-Answer vhdl electronic multi-function devices required computer science curriculum design. Good help for beginners.
LwIP
- 瑞士国家计算机学院开发,LwIP实现的重点是在保持TCP协议主要功能的基础上减少对RAM 的占用,一般它只需要几百字节的RAM和40K左右的ROM就可以运行,这使LwIP协议栈适合在低端的嵌入式系统中使用。 -The Swiss National Computer Science Development, LwIP to achieve focus is on maintaining the main functions of the TCP protocol to reduce RAM
CSKNOWLEDGE
- 计算机知识体结构,详尽地说明所学知识!谢谢大家!-computer science knowledge
Basedon32-bitmicroprocessorandreal-timeoperatingsy
- 北京航空航天大学计算机学院06春 本课程介绍了嵌入式系统的前沿技术和发展趋势,重点讲述了基于ARM微处理器的嵌入式硬件平台、嵌入式操作系统(RTlinux)和嵌入式软硬件系统开发技术。-Beijing University of Aeronautics and Astronautics ,Computer Science 06 Spring This course introduces the forefront of embedded systems technology and de
AlgorithmsandDataStructures
- While many computer science textbooks are confined to teaching programming code and languages, Algorithms and Data Structures: The Science of Computing takes a step back to introduce and explore algorithms -- the content of the code. Focusing on thre
robotmodelingandcontrol
- Robotics is a relatively young fi eld of modern technology that crosses tra- ditional engineering boundaries. Understanding the complexity of robots and their applications requires knowledge of electrical engineering, mechanical engi- neer
ShuZiShiZhongSheJi
- 数字时钟设计 利用实验仪,完成数字时钟设计,能实现时间的调整、定时时间的设定,输出等功能。系统的功能选择由SB0、SB1、SB2、SB3 完成。其中SB0为时间校对,定时器调整功能键,按SB0 进入调整状态。按SB1键,依次进入时间时位校对、分位校对、秒位校对状态。不管是进入那种状态,按动SB2 皆可以使被调整位进行不进位增量加1 变化。各预置量设置完成后,系统将所有的设置存入RAM 中,按SB3 退出调整状态。上电后,系统自动进入计时状态,起始于00时00分00秒。定时时间到,二极管发亮。
1MEMOCODE4_dave_contest
- Hardware Acceleration of Matrix Multiplication a Xilinx FPGA Nirav Dave, Kermin Fleming, Myron King, Michael Pellauer, Muralidaran Vijayaraghavan Computer Science and Artificial Intelligence Lab Massachusetts Institute of Technology Cambridge
