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Re-Initialization

  • 关于VFP的加密

    Vfp语言易学好用,其排序、检索速度之快,是VB和DELPHI所不及的,但其保密性差是也大家公认的。只要稍为懂一定数据库知识的人,一打开数据表,其内容便一目了然,且可任意更改,其保密性和安全性可想而知,这还只是其一。其二:随着UNFOXpro.exe和Refox7.exe等的出现,你辛辛苦苦编的程序,即使编译成EXE文件,一经UN或RE则你煞费苦心设置的版权符、验证关、口令、密码等都如同虚设。那么Vfp的保密性差的弱点就没办法避免吗?NO !办法肯定有,这里就先谈谈“数据表的加密问题”,以下就是我的一点粗浅看法,请网友们踊跃讨论。

    标签: Vfp加密解密

    上传时间: 2020-06-28

    上传用户:a46213599

  • Tcl_and_The_Tk_Toolkit

    This manuscript is a partial draft of a book to be published in early 1994 by AddisonWesley (ISBN 0-201-63337-X). Addison-Wesley has given me permission to make drafts of the book available to the Tcl community to help meet the need for introductory documentation on Tcl and Tk until the book becomes available. Please observe the restrictions set forth in the copyright notice above: you’re welcome to make a copy for yourself or a friend but any sort of large-scale reproduction or reproduction for profit requires advance permission from Addison-Wesley

    标签: Toolkit

    上传时间: 2020-07-05

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  • 轮机英语期末答案

    )Armature windings of the electric motor for NO.2 deck cargo winch found low insulation. Windings re-winded,painted and baked dry. (2) NO.1 main air compressor failed to build up pressure.The machine disassembled, cleaned and inspected. The discharge valve plate found broken. The valve palte renewed and running trials tested after being reassembled. 

    标签: 答案

    上传时间: 2020-07-14

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  • MiniCore

    An Arduino core for the ATmega328, ATmega168, ATmega88, ATmega48 and ATmega8, all running a [custom version of Optiboot for increased functionality](#write-to-own-flash). This core requires at least Arduino IDE v1.6.2, where v1.8.5+ is recommended. <br/> **This core gives you two extra IO pins if you're using the internal oscillator!** PB6 and PB7 is mapped to [Arduino pin 20 and 21](#pinout).<br/> If you're into "generic" AVR programming, I'm happy to tell you that all relevant keywords are being highlighted by the IDE through a separate keywords file. Make sure to test the [example files](https://github.com/MCUdude/MiniCore/tree/master/avr/libraries/AVR_examples/examples) (File > Examples > AVR C code examples). Try writing a register name, <i>DDRB</i> for instance, and see for yourself!

    标签: MiniCore

    上传时间: 2021-02-22

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  • 如何从PCB设计考虑解决EMC的学习课件

    EMC定义电磁兼容性EMC(ElectroMagneTIcCompaTIbility),在国际电工委员会标准IEC对电磁兼容的定义为:系统或设备在所处的电磁环境中能正常工作,同时不会对其他系统和设备造成干扰。EMC:(ElectromagneTIccompaTIbility)电磁兼容性EMI:(Electromagneticinterference)电磁干扰EMI(ElectroMagneticInterference):指设备在正常运行过程中对所在环境产生的电磁干扰不能超过一定的限值;EMS:(Electromagneticsusceptibility)电磁敏感度EMS(ElectroMagneticSusceptibility):指器具对所在环境中存在的电磁干扰具有一定程度的抗扰度,即电磁敏感性。RE:(Radiatedemission)辐射骚扰(EMI)辐射骚扰:主要是指能量以电磁波的形式由源发射到空间,或能量以电磁波形式在空间传播的现象CE:(Conductedemission)传导骚扰(EMI)传导骚扰:传导干扰是指通过导电介质把一个电网络上的信号耦合(谐波干扰)到另一个电网络CS:(Conductedsusceptibility)传导骚扰抗扰度(EMS)传导骚扰抗扰度:指抵抗导电介质上干扰的一种能力RS:(Radiatedsusceptibility)射频电磁场辐射抗扰度(EMS)射频电磁场辐射抗扰度:指各种装置、设备或系统,在存在辐射的情况下,抵抗辐射的一种能力ESD:(Electrostaticdischarge)静电放电(EMS)静电放电:指具有不同静电电位的物体互相靠近或直接接触引起的电荷转移EFT/B:(Electricalfasttransientburst)电快速瞬变脉冲群(EMS)电快速瞬变脉冲群:指数量有限且清晰可辨的脉冲序列或持续时间有限的振荡,脉冲群中的单个脉冲有特定的重复周期、电压幅值,上升时间,脉宽。

    标签: pcb emc

    上传时间: 2021-11-07

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  • 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

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  • Ansoft0MaxwellV12电机瞬态分析教程

    This Getting Started Guide is written for Maxwell beginners and experienced users who would like to quickly re familiarize themselves with the capabilities of MaxwelL.This guide leads you step-by-step through solving and analyzing the results of a rotational actuator magnetostatic problem with motion By following the steps in this guide, you will learn how to perform the following tasks Modify a models design parameters y Assign variables to a model's design parameters.Specify solution settings for a design Validate a designs setupRun a maxwell simulation v Plot the magnetic flux density vecto v Include motion in the simulation本《入门指南》是为希望快速重新熟悉MaxwelL功能的Maxwell初学者和有经验的用户编写的。本指南将引导您逐步解决和分析旋转致动器静运动问题的结果。按照本指南中的步骤,您将学习如何执行以下任务。修改模型设计参数y将变量分配给模型的设计参数。指定设计的解决方案设置验证设计设置运行maxwell模拟v绘制磁通密度vecto v在模拟中包含运动

    标签: ansoft maxwell

    上传时间: 2022-03-10

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  • 基于PSIM仿真的开关电源Boost电路的设计

    基于PSIM仿真软件,分析了Boost电路拓扑结构,设定了参数要求进行电路仿真设计,通过电路仿真软件PSIM对Boost电路工作在CCM模式下,合理设置占空比参数。实验结果表明理论分析与仿真的一致性和参数设计的正确性,输出电压和电流参数稳定,Boost电路输出效率高。This design is based on PSIM simulation software,analyzes the topology of Boost circuit,sets the parameter re- quirements for circuit simulation design,and reasonably sets the duty cycle parameters for Boost circuit working in CCM mode through PSIM simulation software.The experimental results show that the theoretical analysis and simulation are consis- tent and the parameter design is correct,the output voltage and current parameters are stable.

    标签: psim 开关电源 boost

    上传时间: 2022-05-04

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  • 升压型电源管理电路内部ldo设计

    文章首先阐述了整个方案的工作原理,给出LDO设计的指标要求;其次,依据系统方案的指标要求和制造1艺约束,实现包含误差放大器、基准源和保护电路等了模块在内的电压调整器:此外,文章还着重探讨了“如何利用放大器驱动100pF数量级的大电容负载"的问题;最后,给出整个模块总体电路的仿真验证结果。LDO的架构分析和设计以及基准源的设计是本文的核心内容。在LDO架构设计部分,文章基于对三种不同LDO拓扑的分析,选择并实现了含缓冲器级的LDO./设计中通过改进反馈网络,采用反馈电容,实现对LDO的环路补偿。同时,为提高误差放大器驱动功率管的能力、适应LDO低功耗发展的需求,文章探讨了如何使用放大器驱动大负载电容的问题,基于密勒定理和根轨迹原理,本文通过研究密勒电容的作用,采用MPC(Miller-Path-Compersation)结构,实践了两级放大器驱动大负载电容的方案,并把MPC补偿技术推广到三级放大器的设计中。文章设计的CRF(CRF:Current Re ference controlled by Feedback)电流基准是基于对传统自启动基准电流源的改进实现的。CRF基准电流源架构中存在一条阻性的电流道路,确保其在加载电源电压的过程中能够实现快速启动,响应速度达到1ps:而传统自启动基准电流源在相同的设计参数下,响应速度长达120us.CRF基准电流源突破了响应速度对其应用的限制。

    标签: 电源管理 LDO

    上传时间: 2022-06-23

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  • GB-T 18655-2018 车辆、船和内燃机 无线电骚扰特性 用于保护车载接收机的限值和测量方法

    1、汽车电子类EMC标准要求。全面说明了RE、CE方面的限值要求及测试方法。方便在项目开发前做好评估准备。2、最新版国标。文档为最新版本说明。节约不必要的时间成本。3、高清PDF文档。免去各种扫描版无法查找定位的问题。提高可阅读性及可查找性。4、非加密文档。非加密文件,可以放心打印。不用反复查找破解软件,省心省力。5、本标准,对应CISPR:25-2016最新版本。6、下载要求不高。我只需要赚一点点积分,用于下载其他自己需求的标准资料。互通有无

    标签: 无线电

    上传时间: 2022-06-26

    上传用户:fliang