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CRC-fun

  • Arduino Adventures Escape from Gemini Station

    Fun. We (your authors) wanted a word to describe our ultimate goal for this book, as well as a word we hope you (our reader) will use to describe it, and that’s the one we chose. There are others goals, of course, but in the end, when you’ve finished the book, we’re hoping you’ll have enjoyed the activities described in these pages. Many books use the Introduction to explain exactly what the book is about, what the reader will learn, what the reader needs (a skill or maybe an item or piece of software), and what the reader will be left with when that last page is completed. And this Introduction will do those things, but … hopefully it’ll make you excited to get started.

    标签: Adventures Arduino Station Escape Gemini from

    上传时间: 2020-06-09

    上传用户:shancjb

  • Digital and Statistical Signal Processing

    The goal of this textbook is to support the teaching of digital and statistical signal processing in higher education. Particular attention is paid to the presentation of the fun- damental theory; key topics are outlined in a comprehensible way, and all areas of the subject are discussed in a fashion that aims at simplification without sacrificing accuracy.

    标签: Statistical Processing Digital Signal and

    上传时间: 2020-06-10

    上传用户:shancjb

  • BISS协议FPGA

    关于FPGA实现的BISS协议通讯,供大家参考,里面有数据采集和CRC校验

    标签: BISS FPGA 协议

    上传时间: 2020-10-06

    上传用户:

  • stm32f103c8t6例程

    stm32f103c8t6例程 adc\crc\\io\定时、延时、\usart\按键\\\\\\\\\

    标签: 103c f103 stm 103 32f 32 c8 8t t6

    上传时间: 2021-04-06

    上传用户:rayzk

  • 不错的串口调试助手

    正点原子推荐,本人实际测试比较合适用来调485通信,特别是带CRC校验和自定义协议类的通讯调试。

    标签: 串口调试

    上传时间: 2021-11-13

    上传用户:

  • 电池与逆变器通信协议

    BMS 与储能 PCS 通信协议(RS485 接口)1.1、协议说明1) 采用RS485通讯接口;2) 标准MODBUS规约;3) 传输方式:异步方式;4) 数据传送速率:9600bit/s,BMS端主动发送,上送间隔500mS;5) 数据传送格式:起始位1位,数据位8位,停止位1位,无校验,低字节在前;6) CRC16:从校验信息字节内容1到信息字节内容14做CRC校验。

    标签: 电池 逆变器 通信协议

    上传时间: 2022-01-05

    上传用户:

  • DDR4标准 JESD79_4

    1. Scope ......................................................................................................................................................................... 12. DDR4 SDRAM Package Pinout and Addressing ....................................................................................................... 22.1 DDR4 SDRAM Row for X4,X8 and X16 ................................................................................................................22.2 DDR4 SDRAM Ball Pitch........................................................................................................................................22.3 DDR4 SDRAM Columns for X4,X8 and X16 ..........................................................................................................22.4 DDR4 SDRAM X4/8 Ballout using MO-207......................................................................................................... 22.5 DDR4 SDRAM X16 Ballout using MO-207.............................................................................................................32.6 Pinout Description ..................................................................................................................................................52.7 DDR4 SDRAM Addressing.....................................................................................................................................73. Functional Description ...............................................................................................................................................83.1 Simplified State Diagram ....................................................................................................................................83.2 Basic Functionality..................................................................................................................................................93.3 RESET and Initialization Procedure .....................................................................................................................103.3.1 Power-up Initialization Sequence .............................................................................................................103.3.2 Reset Initialization with Stable Power ......................................................................................................113.4 Register Definition ................................................................................................................................................123.4.1 Programming the mode registers .............................................................................................................123.5 Mode Register ......................................................................................................................................................134. DDR4 SDRAM Command Description and Operation ............................................................................................. 244.1 Command Truth Table ..........................................................................................................................................244.2 CKE Truth Table ...................................................................................................................................................254.3 Burst Length, Type and Order ..............................................................................................................................264.3.1 BL8 Burst order with CRC Enabled .........................................................................................................264.4 DLL-off Mode & DLL on/off Switching procedure ................................................................................................274.4.1 DLL on/off switching procedure ...............................................................................................................274.4.2 DLL “on” to DLL “off” Procedure ..............................................................................................................274.4.3 DLL “off” to DLL “on” Procedure ..............................................................................................................284.5 DLL-off Mode........................................................................................................................................................294.6 Input Clock Frequency Change ............................................................................................................................304.7 Write Leveling.......................................................................................................................................................314.7.1 DRAM setting for write leveling & DRAM termination function in that mode ............................................324.7.2 Procedure Description .............................................................................................................................334.7.3 Write Leveling Mode Exit .........................................................................................................................34

    标签: DDR4

    上传时间: 2022-01-09

    上传用户:

  • 电池管理和均衡MCU 智能锂电池管理芯片 SH39F003A 手册

    产品特性介绍AFE 特性■ 集成硬件过充电保护功能     -  独立PF管脚输出低电平■ 集成硬件放电短路保护功能■ 集成平衡开关■ 集成充电器检测功能■ 集成负载检测功能■ 集成充放电状态检测功能■ 集成小电流唤醒功能■ 集成WatchDog/Reset功能■ 集成Alarm功能■ 集成负端NMOS驱动(放电PWM调控)■ 支持电芯乱序上电■ 2通道温度采集■ 12-bit VADC电压采集■ 13-bit  Ʃ-∆ CADC电流采集■ 集成LDO模块:3.3V/25mA@MAX■ 集成TWI通讯(CRC-8,10KHz~400KHz)■ 低功耗模式     - 正常模式≤70uA@25℃     - PowerDown模式≤1uA@25℃■ 工作电压     - 8V~50V(VBAT端口)MCU 特性■ 基于8051指令流水线结构的8位单片机     - CPU机器周期:1个振荡周期■ Flash ROM:64K字节■ RAM:内部256字节,外部2816字节■ 类EEPROM:最大4096字节(代码选项可选)■ 内部RC振荡器:24MHz(±1%)/128K(±10%)■ I/O内建上拉电阻(30kΩ)■ 1个16位定时器/计数器T3■ 3个16位PCA0、PCA1、PCA2各含2个比较/捕捉单元■ 3路12位PWM定时器■ SPI接口(主从模式)■ TWI接口(主从模式)■ 内建数字逻辑可配置模块(LCM)■ 3路增强型UART(3V/5V通讯)(自带波特率的uart通讯)■ 11通道12位模数转换器(ADC)■ 内建CRC校验模块,校验空间大小可选■ 看门狗定时器(WDT)■ 预热计数器■ 中断源     - 定时器3,PCA0-2,外部中断1-2,外部中断4:6输入     - ADC,EUART,SPI,PWM,SCM,CRC,TWI,LPD■ 低功耗工作模式:空闲模式/掉电模式■ 工作电压:VDD = 2.7V - 5.5V■ 封装:     - LQFP 64L

    标签: 锂电池管理芯片 mcu

    上传时间: 2022-03-24

    上传用户:qingfengchizhu

  • 基于MIPI+CSI-2协议的摄像头芯片数据发送端接口设计

    随着手机摄像头和数码相机性能的提升,增加摄像头设备到平台处理器之间的传输带宽变越来越有必要,传统的DVP接口已经不能适应现在的科技发展。在这样的大形势下MIPI联盟应运而生,它制定了一个通用的标准来规范高性能移动终端的接口,而它的子协议MIPI CSI-2则完美的解决了摄像头设备与平台处理器之间高速通信的难题,提供了一种标准化、强大、可靠、低功耗的传输方式。MPI CSI-2接口采用差分信号线,确保了高速数据在传输时不易受到外界的干扰,而其采用的ECC编码和CRC编码则从一定程度上减少了个别错误数据对于整体数据的影响,又由于自身处于MIPI大家族协议之中,它自身也很容易兼容应用MIPI家族协议的其他设备。本文详细的介绍了MIPI CSI-2协议数字部分RTL的实现,模拟部分的实现,以及后续的测试分析。在设计中RTL的设计、纠错以及模块的时序分析在Linux平台上进行。而模拟部分的实现以及整体的动态测试在FPGA平台上进行。通过这样的分工可以更全面的发挥两个平台的长处,更具体的来说,在Linux阶段的设计时充分的利用了modelsim与verdi配合的优势,从而更好的设计代码、分析代码和测试代码。而在综合时又利用Design Compile与Prime time充分的对设计做了资源分析和时序分析,保证了设计的质量。而在FPGA阶段设计时,充分的利用了FPGA灵活而且可以动态测试的优势来验证模块的正确性,此外在FPGA上还可以使用商用接收端来接收最后产生的MIPI数据,这样的验证方法更权威也更有说服力。在设计方法上,在数字部分的RTL设计中充分的应用了模块化的思想,不仅实现了协议的要求,而且灵活的适应了MIPI CSI-2协议在实际应用时的一些变通的需求。而在模拟部分的物理层设计中则大胆的做了尝试和创新,成功的在没有先例参照的情况下自主设计了FPGA下的物理层部分,并且最后成功的被商用接收端验证。总的来说在整个设计过程中遇到了阻碍和很多难题,但是经过不懈的努力最终克服了技术上的种种困难,最终也获得了阶段性的成果和自身的技术提高。

    标签: mipi 摄像头 接口

    上传时间: 2022-05-30

    上传用户:kingwide

  • 基于51单片机的modbus-rtu通讯与仿真

    基于51单片机的modbus-rtu通讯与仿真,通过mcgs与单片机通讯,实现MODBUS功能,主要用于测试CRC校验。

    标签: 51单片机 modbus

    上传时间: 2022-06-13

    上传用户:zhanglei193