上传时间: 2014-04-28
上传用户:maizezhen
上传时间: 2013-11-19
上传用户:guanliya
上传时间: 2013-11-21
上传用户:xjz632
标签: CodeWarrior MetroWerks nbsp nb
上传时间: 2013-11-12
上传用户:hanhanhan
标签: Atmel
上传时间: 2013-11-15
上传用户:truth12
上传时间: 2014-05-05
上传用户:刘江林1420
介绍几种常用的仿真器的设计方案,通过比较分析各自原理的优缺点,结合硬件性能,设计了基于ZWFcore的指令集仿真器ZWISS。通过对其CPU、多级存储单元、陷阱、内存管理单元(MMU)、存储保护系统(MPS)以及物理内存属性(PMA)的仿真,较完善地完成对ZWFcore的仿真。为DSP硬件评估、DSP算法实现提供了良好的软件模拟平台。
上传时间: 2013-10-09
上传用户:exxxds
为满足对直流无刷伺服机构的数字化控制,介绍了一种数字无刷直流电机伺服控制系统,以TMS320F2812型DSP为控制核心,包括中央处理电路,驱动电路,反馈电路等实现对直流无刷电机伺服系统的控制。该系统原理简单,易于实现,抗干扰能力强且控制精度高,控制效率好,已在某型伺服控制系统中广泛应用。
上传时间: 2013-11-14
上传用户:王庆才
中文版详情浏览:http://www.elecfans.com/emb/fpga/20130715324029.html Xilinx UltraScale:The Next-Generation Architecture for Your Next-Generation Architecture The Xilinx® UltraScale™ architecture delivers unprecedented levels of integration and capability with ASIC-class system- level performance for the most demanding applications. The UltraScale architecture is the industr y's f irst application of leading-edge ASIC architectural enhancements in an All Programmable architecture that scales from 20 nm planar through 16 nm FinFET technologies and beyond, in addition to scaling from monolithic through 3D ICs. Through analytical co-optimization with the X ilinx V ivado® Design Suite, the UltraScale architecture provides massive routing capacity while intelligently resolving typical bottlenecks in ways never before possible. This design synergy achieves greater than 90% utilization with no performance degradation. Some of the UltraScale architecture breakthroughs include: • Strategic placement (virtually anywhere on the die) of ASIC-like system clocks, reducing clock skew by up to 50% • Latency-producing pipelining is virtually unnecessary in systems with massively parallel bus architecture, increasing system speed and capability • Potential timing-closure problems and interconnect bottlenecks are eliminated, even in systems requiring 90% or more resource utilization • 3D IC integration makes it possible to build larger devices one process generation ahead of the current industr y standard • Greatly increased system performance, including multi-gigabit serial transceivers, I/O, and memor y bandwidth is available within even smaller system power budgets • Greatly enhanced DSP and packet handling The Xilinx UltraScale architecture opens up whole new dimensions for designers of ultra-high-capacity solutions.
标签: UltraScale Xilinx 架构
上传时间: 2013-11-13
上传用户:瓦力瓦力hong
频谱分析仪的主要工作原理 接收到的中频模拟信号经过A/D转换为14位的数字信 号,首先对数字信号进行数字下变频(DDC),得到I路、Q路信号,然后根据控制信号对I路、Q路信号进行抽取滤波,使用CIC抽取滤波器完成,然后在分 别对I路、Q路信号分别进行低通滤波,滤波器采用FIR滤波器和半带滤波器相结合的方式,然后对信号进行加窗、FFT(对频谱进行分析时进行FFT运算, 对功率谱进行分析时不进行FFT运算)、I路和Q路平方求和、求平均。最后将输出的数据送入到DSP中进行显示与控制的后续处理。
上传时间: 2013-10-19
上传用户:几何公差