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Description: 快速CRC校验源码-Fast CRC FOSS
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Size: 2958 |
Author: 红孩儿 |
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Description: 一个verilog实现的crc校验,用于fpga实现,快速,准确有效
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Size: 1440278 |
Author: 枫叶鹏 |
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Description: 简单实用的单片机CRC快速算法-simple and practical algorithm for fast MCU CRC
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Size: 136192 |
Author: 王中正 |
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Description: 快速CRC校验源码-Fast CRC FOSS
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Size: 3072 |
Author: 果の果ooοО |
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Description: 16位CRC:生成CRC16表(256项),用于快速查表计算
// 在程序初始化时就先调用,预先生成CRC16Tab[256]查表数据-16 CRC : formation CYXLIC REDUNDANCY (256), Fast look-up table for calculation// initialization procedure on first call, pre-generation CRC16Tab [256] Lookup Data
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Size: 134144 |
Author: 456 |
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Description: crc快速校验程序,对于新手很快就能看懂的,结合实际读一读友好处!-Fast CRC checksum procedure, for the novice to understand quickly, and in light of the actual read friendly Office!
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Size: 11264 |
Author: xiaogao |
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Description: 一个verilog实现的crc校验,用于fpga实现,快速,准确有效-A Verilog realize the CRC checksum for the FPGA realization, rapid, accurate and effective
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Size: 1440768 |
Author: 枫叶鹏 |
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Description: MCS51的CRC-16快速查表计算函数
要预先生成CRC16查表数据,起始地址CRC16TAB,按高/低字节顺序存放(512字节) // CRC-CCITT16 = X16+X12+X5+1, 00010000 00100001($1021)
郑州 汉威光电 刘海峰编制 (0371-62003091),欢迎交流-MCS51 the CRC-16 fast look-up table calculation function to pre-generated look-up table data CRC16, start address CRC16TAB, according to high/low byte order storage (512 bytes)// CRC-CCITT16 = X16+ X12+ X5+ 1, 00010000 00100001 ($ 1021) Zhengzhou Hanwei Haifeng photoelectric preparation (0371-62003091) and welcomes the exchange of
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Size: 2048 |
Author: liuhaifeng |
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Description: 单片机实现crc算法。本程序高效快速的完成了crc计算的问题-Crc algorithm MCU. This procedure was completed fast and efficient computing crc
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Size: 16384 |
Author: yzl |
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Description: Re: CRC7 и CRC16 for SD card
If you develope your interfsce to work with sd/mmc card, you need algrithm to check CRC7 & CRC16
it s very fast progtamm/algrithm to calculate CRC
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Size: 5120 |
Author: GGrumble |
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Description: Fast CRC Algorithmes develop in Delphi.
Simple to uses and very fast to run
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Size: 1024 |
Author: Capgi |
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Description: CRC汇编算法(一个快速的CRC汇编算法)-CRC compilation algorithm (a compilation of fast CRC algorithm)
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Size: 31744 |
Author: slatyan |
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Description: 8 bit very fast CRC generator for polynom x8+x2+x1+x (0x07), fits any AVR processor and any type of 8-bit data trasfer with 8 bit CRC code written in AVR assembler with AVRStudio 4.
Author: Jens Hallgren, Sweden-8 bit very fast CRC generator for polynom x8+x2+x1+x (0x07), fits any AVR processor and any type of 8-bit data trasfer with 8 bit CRC code written in AVR assembler with AVRStudio 4.
Author: Jens Hallgren, Sweden
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Size: 1024 |
Author: jens |
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Description: 本文首先研究了IsO/IECl8000.6标准中A、B两类短程通讯的前向链路与返回
链路的数据编码方式,对(FMO)双相间隔编码、(PIE)脉冲间隔编码、曼切斯特码
的编解码方式和技术参数进行了深入的分析,并利用FPGA实验平台对这三种编
码的编、解码电路进行了设计和仿真。然后对UHF RFID系统的差错控制技术原理
进行了探讨,重点研究了ISo/IECl8000.6标准中采用的数据保护与校验技术,即
循环冗余校验(CRC)技术。分析了基于线性反馈移位寄存器(LFSR)实现CRC的电
路,从理论和实现两个方面对其中存在的问题提出了解决办法,设计了一种改进
型线性反馈移位寄存器电路来实现循环冗余校验。对于要求CRC运算速度高的系
统,本文利用了递归的算法设计了一种新型的并行CRC电路。最后本文提出了一
种新颖的UHF RFID系统数字基带电路,区别于一般数字基带电路的地方是:在编
解码模块和CRC模块之间加入了卷积编码和维特比译码模块。利用卷积码优良的
纠错能力,来解决UHF RFID系统在电磁干扰严重的环境中识别率低、通信速度慢
的问题,效果良好。-The first,this paper investigates the f.0rward link and retum link data encodlng
method in short range communication types A and B in ISO/IEC 1 8000-6,and deeply
analyzes encoding method and technical parameters of Bi—Phase Space(FMO)coding,
Pulse IntervaI Encoding(PIE)coding and Manchester coding.We also designed and
simulated code circuits and decode circuits of the three encoding method by FPGA
experiment platfoml. The second, We discussed the technical principle of error
control of the UHF RFID system,especially for the techn0109y of data Verification
肌d calibration,namely cyclic redundancy check that used in IS0/IEC 1 8000·6·The
circuits of CRC based on Linear Feedback Shin Register(LSFR)are analyzed行om
theonr and realization,and some means of solVing problems are put fon)Irard,then an
improved LSFR circuit to implement CRC is designed.For some require fast CRC
calculation system,we designed a noVel parallel CRC circuit by using recurslVe
fomlula.In the end,we put forw
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Size: 4366336 |
Author: HY jian |
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Description: CRC错误检测是一个非常
电信应用上常见的功能。
对提高数据速率的发展要求
更多和更sofisticated实现。
在本文中,我们提出了一个方法来实现
管道结构为基础的CRC功能
多项式除法。它非常有效地改善
高速性能,允许从1 Gb / s的数据传输速率
4千兆位/秒,基于FPGA implementions根据
并行化水平(8至32位)。- The CRC error detection is a very
common function on telecommunication applications. The evolution towards increasing data rates requires
more and more sofisticated
implementations. In this paper, we present a method to implement
the CRC function based on a pipeline structure for the
polynomial division. It improves very effectively the
speed performance, allowing data rates from 1 Gbits/s
to 4 Gbits/s on FPGA implementions, according to the
parallelisation level (8 to 32 bits).
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Size: 226304 |
Author: 吴越强 |
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Description: 本文档是基于intel架构下,intel公司自己提出的使用“无进位乘法”指令实现快速的CRC算法的介绍。-This document is based on the Intel architecture, the intel' s own proposed using the binary multiplication " instruction to achieve rapid introduction of the CRC algorithm.
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Size: 354304 |
Author: 胡攀 |
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Description: fast CRC latest Algo..implemented in Hardware description language
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Size: 4768768 |
Author: ahmed |
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Description: Fast CRC 16 bits for 8051 core
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Size: 1024 |
Author: |
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Description: 一种快速的crc的加密解密算法的实现,可以达到给数据加密的目的-A fast crc encryption and decryption algorithm, can achieve the purpose for data encryption
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Size: 1245184 |
Author: chenbaik |
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Description: 快速实现crc polynom fpga使用流水线架构-A Fast CRC Implementation on FPGA Using a Pipelined Architecture for the Polynomial Division
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Size: 16384 |
Author: 孙磊 |
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