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差分<b>进化</b>

  • ARK-8017DHI 16位8路差分模拟量输入模块

    为提高产品的可靠性、设计和功能,本文所有信息若有变更,恕不提前通知。本文信息也不作为厂商的任何承诺。 任何情况下,包括已警告了的各种损坏的可能性,厂商均不负责直接的、非直接的、特殊的或偶然的因不正当使用本产品或文件所造成的损坏。 本文包含受版权保护的信息,版权所有。未经厂商书面同意,不得以机械的、电子的或其它任何方式进行复制。

    标签: 8017 ARK DHI 8路

    上传时间: 2013-10-14

    上传用户:坏坏的华仔

  • 一种增益增强型套筒式运算放大器的设计

    设计了一种用于高速ADC中的全差分套筒式运算放大器.从ADC的应用指标出发,确定了设计目标,利用开关电容共模反馈、增益增强等技术实现了一个可用于12 bit精度、100 MHz采样频率的高速流水线(Pipelined)ADC中的运算放大器.基于SMIC 0.13 μm,3.3 V工艺,Spectre仿真结果表明,该运放可以达到105.8 dB的增益,单位增益带宽达到983.6 MHz,而功耗仅为26.2 mW.运放在4 ns的时间内可以达到0.01%的建立精度,满足系统设计要求.

    标签: 增益 增强型 运算放大器

    上传时间: 2013-10-16

    上传用户:563686540

  • CMOS模拟开关工作原理

    开关在电路中起接通信号或断开信号的作用。最常见的可控开关是继电器,当给驱动继电器的驱动电路加高电平或低电平时,继电器就吸合或释放,其触点接通或断开电路。CMOS模拟开关是一种可控开关,它不象继电器那样可以用在大电流、高电压场合,只适于处理幅度不超过其工作电压、电流较小的模拟或数字信号。 一、常用CMOS模拟开关引脚功能和工作原理  1.四双向模拟开关CD4066  CD4066 的引脚功能如图1所示。每个封装内部有4个独立的模拟开关,每个模拟开关有输入、输出、控制三个端子,其中输入端和输出端可互换。当控制端加高电平时,开关导通;当控制端加低电平时开关截止。模拟开关导通时,导通电阻为几十欧姆;模拟开关截止时,呈现很高的阻抗,可以看成为开路。模拟开关可传输数字信号和模拟信号,可传输的模拟信号的上限频率为40MHz。各开关间的串扰很小,典型值为-50dB。

    标签: CMOS 模拟开关 工作原理

    上传时间: 2013-10-27

    上传用户:bibirnovis

  • LVDS和M-LVDS电路实施指南

    低电压差分信号(LVDS)是一种高速点到点应用通信标准。多点LVDS (M-LVDS)则是一种面向多点应用的类似标准。LVDS和M-LVDS均使用差分信号,通过这种双线式通信方法,接收器将根据两个互补电信号之间的电压差检测数据。这样能够极大地改善噪声抗扰度,并将噪声辐射降至最低。

    标签: M-LVDS LVDS 电路

    上传时间: 2013-11-22

    上传用户:fhjdliu

  • Pads Router布线技巧分享

        当设计高速信号PCB或者复杂的PCB时,常常需要考虑信号的干扰和抗干扰的问题,也就是设计这样的PCB时,需要提高PCB的电磁兼容性。为了实现这个目的,除了在原理图设计时增加抗干扰的元件外,在设计PCB时也必须考虑这个问题,而最重要的实现手段之一就是使用高速信号布线的基本技巧和原则。   高速信号布线的基本技巧包括控制走线长度、蛇形布线、差分对布线和等长布线,使用这些基本的布线方法,可以大大提高高速信号的质量和电磁兼容性。下面分别介绍这些布线方法的设置和操作。

    标签: Router Pads 布线技巧

    上传时间: 2013-11-08

    上传用户:座山雕牛逼

  • PCB布线知识面试题_PCB工程师必备

    本内容汇总了近30个PCB布线知识面试题是PCB工程师必备的知识点总结,也是面试者需要的知识。如何处理实际布线中的一些理论冲突的问题,在高速设计中,如何解决信号的完整性问题?差分布线方式是如何实现的?对于只有一个输出端的时钟信号线,如何实现差分布线?等问题

    标签: PCB 布线 工程师 面试题

    上传时间: 2013-12-15

    上传用户:asdfasdfd

  • LVDS与高速PCB设计

    LVDS(低压差分信号)标准ANSI/TIA /E IA26442A22001广泛应用于许多接口器件和一些ASIC及FPGA中。文中探讨了LVDS的特点及其PCB (印制电路板)设计,纠正了某些错误认识。应用传输线理论分析了单线阻抗、双线阻抗及LVDS差分阻抗计算方法,给出了计算单线阻抗和差分阻抗的公式,通过实际计算说明了差分阻抗与单线阻抗的区别,并给出了PCB布线时的几点建议。关键词: LVDS, 阻抗分析, 阻抗计算, PCB设计 LVDS (低压差分信号)是高速、低电压、低功率、低噪声通用I/O接口标准,其低压摆幅和差分电流输出模式使EM I (电磁干扰)大大降低。由于信号输出边缘变化很快,其信号通路表现为传输线特性。因此,在用含有LVDS接口的Xilinx或Altera等公司的FP2GA及其它器件进行PCB (印制电路板)设计时,超高速PCB设计和差分信号理论就显得特别重要。

    标签: LVDS PCB

    上传时间: 2013-11-19

    上传用户:水中浮云

  • 信号完整性知识基础(pdf)

    现代的电子设计和芯片制造技术正在飞速发展,电子产品的复杂度、时钟和总线频率等等都呈快速上升趋势,但系统的电压却不断在减小,所有的这一切加上产品投放市场的时间要求给设计师带来了前所未有的巨大压力。要想保证产品的一次性成功就必须能预见设计中可能出现的各种问题,并及时给出合理的解决方案,对于高速的数字电路来说,最令人头大的莫过于如何确保瞬时跳变的数字信号通过较长的一段传输线,还能完整地被接收,并保证良好的电磁兼容性,这就是目前颇受关注的信号完整性(SI)问题。本章就是围绕信号完整性的问题,让大家对高速电路有个基本的认识,并介绍一些相关的基本概念。 第一章 高速数字电路概述.....................................................................................51.1 何为高速电路...............................................................................................51.2 高速带来的问题及设计流程剖析...............................................................61.3 相关的一些基本概念...................................................................................8第二章 传输线理论...............................................................................................122.1 分布式系统和集总电路.............................................................................122.2 传输线的RLCG 模型和电报方程...............................................................132.3 传输线的特征阻抗.....................................................................................142.3.1 特性阻抗的本质.................................................................................142.3.2 特征阻抗相关计算.............................................................................152.3.3 特性阻抗对信号完整性的影响.........................................................172.4 传输线电报方程及推导.............................................................................182.5 趋肤效应和集束效应.................................................................................232.6 信号的反射.................................................................................................252.6.1 反射机理和电报方程.........................................................................252.6.2 反射导致信号的失真问题.................................................................302.6.2.1 过冲和下冲.....................................................................................302.6.2.2 振荡:.............................................................................................312.6.3 反射的抑制和匹配.............................................................................342.6.3.1 串行匹配.........................................................................................352.6.3.1 并行匹配.........................................................................................362.6.3.3 差分线的匹配.................................................................................392.6.3.4 多负载的匹配.................................................................................41第三章 串扰的分析...............................................................................................423.1 串扰的基本概念.........................................................................................423.2 前向串扰和后向串扰.................................................................................433.3 后向串扰的反射.........................................................................................463.4 后向串扰的饱和.........................................................................................463.5 共模和差模电流对串扰的影响.................................................................483.6 连接器的串扰问题.....................................................................................513.7 串扰的具体计算.........................................................................................543.8 避免串扰的措施.........................................................................................57第四章 EMI 抑制....................................................................................................604.1 EMI/EMC 的基本概念..................................................................................604.2 EMI 的产生..................................................................................................614.2.1 电压瞬变.............................................................................................614.2.2 信号的回流.........................................................................................624.2.3 共模和差摸EMI ..................................................................................634.3 EMI 的控制..................................................................................................654.3.1 屏蔽.....................................................................................................654.3.1.1 电场屏蔽.........................................................................................654.3.1.2 磁场屏蔽.........................................................................................674.3.1.3 电磁场屏蔽.....................................................................................674.3.1.4 电磁屏蔽体和屏蔽效率.................................................................684.3.2 滤波.....................................................................................................714.3.2.1 去耦电容.........................................................................................714.3.2.3 磁性元件.........................................................................................734.3.3 接地.....................................................................................................744.4 PCB 设计中的EMI.......................................................................................754.4.1 传输线RLC 参数和EMI ........................................................................764.4.2 叠层设计抑制EMI ..............................................................................774.4.3 电容和接地过孔对回流的作用.........................................................784.4.4 布局和走线规则.................................................................................79第五章 电源完整性理论基础...............................................................................825.1 电源噪声的起因及危害.............................................................................825.2 电源阻抗设计.............................................................................................855.3 同步开关噪声分析.....................................................................................875.3.1 芯片内部开关噪声.............................................................................885.3.2 芯片外部开关噪声.............................................................................895.3.3 等效电感衡量SSN ..............................................................................905.4 旁路电容的特性和应用.............................................................................925.4.1 电容的频率特性.................................................................................935.4.3 电容的介质和封装影响.....................................................................955.4.3 电容并联特性及反谐振.....................................................................955.4.4 如何选择电容.....................................................................................975.4.5 电容的摆放及Layout ........................................................................99第六章 系统时序.................................................................................................1006.1 普通时序系统...........................................................................................1006.1.1 时序参数的确定...............................................................................1016.1.2 时序约束条件...................................................................................1066.2 源同步时序系统.......................................................................................1086.2.1 源同步系统的基本结构...................................................................1096.2.2 源同步时序要求...............................................................................110第七章 IBIS 模型................................................................................................1137.1 IBIS 模型的由来...................................................................................... 1137.2 IBIS 与SPICE 的比较.............................................................................. 1137.3 IBIS 模型的构成...................................................................................... 1157.4 建立IBIS 模型......................................................................................... 1187.4 使用IBIS 模型......................................................................................... 1197.5 IBIS 相关工具及链接..............................................................................120第八章 高速设计理论在实际中的运用.............................................................1228.1 叠层设计方案...........................................................................................1228.2 过孔对信号传输的影响...........................................................................1278.3 一般布局规则...........................................................................................1298.4 接地技术...................................................................................................1308.5 PCB 走线策略............................................................................................134

    标签: 信号完整性

    上传时间: 2014-05-15

    上传用户:dudu1210004

  • 高速PCB基础理论及内存仿真技术(经典推荐)

    第一部分 信号完整性知识基础.................................................................................5第一章 高速数字电路概述.....................................................................................51.1 何为高速电路...............................................................................................51.2 高速带来的问题及设计流程剖析...............................................................61.3 相关的一些基本概念...................................................................................8第二章 传输线理论...............................................................................................122.1 分布式系统和集总电路.............................................................................122.2 传输线的RLCG 模型和电报方程...............................................................132.3 传输线的特征阻抗.....................................................................................142.3.1 特性阻抗的本质.................................................................................142.3.2 特征阻抗相关计算.............................................................................152.3.3 特性阻抗对信号完整性的影响.........................................................172.4 传输线电报方程及推导.............................................................................182.5 趋肤效应和集束效应.................................................................................232.6 信号的反射.................................................................................................252.6.1 反射机理和电报方程.........................................................................252.6.2 反射导致信号的失真问题.................................................................302.6.2.1 过冲和下冲.....................................................................................302.6.2.2 振荡:.............................................................................................312.6.3 反射的抑制和匹配.............................................................................342.6.3.1 串行匹配.........................................................................................352.6.3.1 并行匹配.........................................................................................362.6.3.3 差分线的匹配.................................................................................392.6.3.4 多负载的匹配.................................................................................41第三章 串扰的分析...............................................................................................423.1 串扰的基本概念.........................................................................................423.2 前向串扰和后向串扰.................................................................................433.3 后向串扰的反射.........................................................................................463.4 后向串扰的饱和.........................................................................................463.5 共模和差模电流对串扰的影响.................................................................483.6 连接器的串扰问题.....................................................................................513.7 串扰的具体计算.........................................................................................543.8 避免串扰的措施.........................................................................................57第四章 EMI 抑制....................................................................................................604.1 EMI/EMC 的基本概念..................................................................................604.2 EMI 的产生..................................................................................................614.2.1 电压瞬变.............................................................................................614.2.2 信号的回流.........................................................................................624.2.3 共模和差摸EMI ..................................................................................634.3 EMI 的控制..................................................................................................654.3.1 屏蔽.....................................................................................................654.3.1.1 电场屏蔽.........................................................................................654.3.1.2 磁场屏蔽.........................................................................................674.3.1.3 电磁场屏蔽.....................................................................................674.3.1.4 电磁屏蔽体和屏蔽效率.................................................................684.3.2 滤波.....................................................................................................714.3.2.1 去耦电容.........................................................................................714.3.2.3 磁性元件.........................................................................................734.3.3 接地.....................................................................................................744.4 PCB 设计中的EMI.......................................................................................754.4.1 传输线RLC 参数和EMI ........................................................................764.4.2 叠层设计抑制EMI ..............................................................................774.4.3 电容和接地过孔对回流的作用.........................................................784.4.4 布局和走线规则.................................................................................79第五章 电源完整性理论基础...............................................................................825.1 电源噪声的起因及危害.............................................................................825.2 电源阻抗设计.............................................................................................855.3 同步开关噪声分析.....................................................................................875.3.1 芯片内部开关噪声.............................................................................885.3.2 芯片外部开关噪声.............................................................................895.3.3 等效电感衡量SSN ..............................................................................905.4 旁路电容的特性和应用.............................................................................925.4.1 电容的频率特性.................................................................................935.4.3 电容的介质和封装影响.....................................................................955.4.3 电容并联特性及反谐振.....................................................................955.4.4 如何选择电容.....................................................................................975.4.5 电容的摆放及Layout ........................................................................99第六章 系统时序.................................................................................................1006.1 普通时序系统...........................................................................................1006.1.1 时序参数的确定...............................................................................1016.1.2 时序约束条件...................................................................................1063.2 高速设计的问题.......................................................................................2093.3 SPECCTRAQuest SI Expert 的组件.......................................................2103.3.1 SPECCTRAQuest Model Integrity .................................................2103.3.2 SPECCTRAQuest Floorplanner/Editor .........................................2153.3.3 Constraint Manager .......................................................................2163.3.4 SigXplorer Expert Topology Development Environment .......2233.3.5 SigNoise 仿真子系统......................................................................2253.3.6 EMControl .........................................................................................2303.3.7 SPECCTRA Expert 自动布线器.......................................................2303.4 高速设计的大致流程...............................................................................2303.4.1 拓扑结构的探索...............................................................................2313.4.2 空间解决方案的探索.......................................................................2313.4.3 使用拓扑模板驱动设计...................................................................2313.4.4 时序驱动布局...................................................................................2323.4.5 以约束条件驱动设计.......................................................................2323.4.6 设计后分析.......................................................................................233第四章 SPECCTRAQUEST SIGNAL EXPLORER 的进阶运用..........................................2344.1 SPECCTRAQuest Signal Explorer 的功能包括:................................2344.2 图形化的拓扑结构探索...........................................................................2344.3 全面的信号完整性(Signal Integrity)分析.......................................2344.4 完全兼容 IBIS 模型...............................................................................2344.5 PCB 设计前和设计的拓扑结构提取.......................................................2354.6 仿真设置顾问...........................................................................................2354.7 改变设计的管理.......................................................................................2354.8 关键技术特点...........................................................................................2364.8.1 拓扑结构探索...................................................................................2364.8.2 SigWave 波形显示器........................................................................2364.8.3 集成化的在线分析(Integration and In-process Analysis) .236第五章 部分特殊的运用...............................................................................2375.1 Script 指令的使用..................................................................................2375.2 差分信号的仿真.......................................................................................2435.3 眼图模式的使用.......................................................................................249第四部分:HYPERLYNX 仿真工具使用指南............................................................251第一章 使用LINESIM 进行前仿真.......................................................................2511.1 用LineSim 进行仿真工作的基本方法...................................................2511.2 处理信号完整性原理图的具体问题.......................................................2591.3 在LineSim 中如何对传输线进行设置...................................................2601.4 在LineSim 中模拟IC 元件.....................................................................2631.5 在LineSim 中进行串扰仿真...................................................................268第二章 使用BOARDSIM 进行后仿真......................................................................2732.1 用BOARDSIM 进行后仿真工作的基本方法...................................................2732.2 BoardSim 的进一步介绍..........................................................................2922.3 BoardSim 中的串扰仿真..........................................................................309

    标签: PCB 内存 仿真技术

    上传时间: 2014-04-18

    上传用户:wpt

  • 计算FR4上的差分阻抗(PDF)

    Calculation of the Differential Impedance of Tracks on FR4 substrates There is a discrepancy between calculated and measured values of impedance for differential transmission lineson FR4. This is especially noticeable in the case of surface microstrip configurations. The anomaly is shown tobe due to the nature of the substrate material. This needs to be considered as a layered structure of epoxy resinand glass fibre. Calculations, using Boundary Element field methods, show that the distribution of the electricfield within this layered structure determines the apparent dielectric constant and therefore affects theimpedance. Thus FR4 cannot be considered to be uniform dielectric when calculating differential impedance.

    标签: FR4 计算 差分阻抗

    上传时间: 2014-12-24

    上传用户:DE2542