0
  • 聊天消息
  • 系统消息
  • 评论与回复
登录后你可以
  • 下载海量资料
  • 学习在线课程
  • 观看技术视频
  • 写文章/发帖/加入社区
创作中心

完善资料让更多小伙伴认识你,还能领取20积分哦,立即完善>

3天内不再提示

PCB设计中怎样消除反射噪声

PCB线路板打样 来源:ct 2019-08-17 20:31 次阅读

什么是反射噪声?反射噪声会对你的PCB性能产生什么影响?如何能够做到尽可能低的反射噪声?

这是网站“Allaboutcircuits()”上的一篇英文文章,在此分享给大家,供有志于用英语阅读技术文章的朋友参考。

What Is Reflection Noise?

Whenever we send a signal from one digital integrated circuit to another on our PCBs, we change the state of a signal line. That change in state and the accompanying changes in the electromagnetic fields can be described as a wave as it moves through the circuit. Waves are phenomena that transfer energy from one location to another, with conductors guiding the path of propagation.

PCB设计中怎样消除反射噪声

This is an artistic impression of magnetic energy surrounding a wire as the potential of the wire changes.

Reflection noise results when an electromagnetic wave encounters a boundary from one medium to the next. When the wave meets the boundary, part of the energy is transmitted as signal and part of it is reflected.

PCB设计中怎样消除反射噪声

This animation illustrates that, when waves travel from one medium to another, not all energy is transmitted—a portion of the energy is reflected back to its source.

For electrical engineers, the medium where this boundary occurs is usually described in terms of its electrical impedance; that is, the boundary is where impedance changes.

Impedance is composed of resistive and reactive elements. Resistors dissipate a circuit’s energy as heat. The recoverable energy in a circuit exists in the electromagnetic fields that permeate and surround conductors, inductors, and capacitors.

Whenever the impedance changes in a circuit, some amount of reflection will occur. The reflected wave will travel back to the next boundary (the location where there is a change in impedance) and reflect again.

PCB设计中怎样消除反射噪声

This 1D wave illustration shows a wave pulse reflected between two points. The energy is attenuated over time/distance.

The process will continue indefinitely until the energy is absorbed by the circuit or dissipated into the environment.

Why Is Reflection Noise a Problem?

For signal lines, there will be reflection points at your driver and receiver. The job of the engineer is to minimize the amount of reflected signal and maximize the amount of transmitted signal through impedance matching.

If that is not possible, the additional energy will need to be dissipated before it accumulates and drowns out a signal with noise.

If the energy of the reflected pulse does not dissipate before the next pulse is generated, the energy will accumulate and add in a phenomenon called superposition. Fortunately, signals attenuate as they pass through resistive elements. So a simple series resistor will eliminate most ringing.

Assessing Noise in Digital Signals

Fourier’s theorem teaches that any wave or wave-pulse can be decomposed into a series of sine and/or cosine waves. If you'd like more insight into this concept, I recommend this video on the harmonic analyzer with Bill Hammack of the University of Illinois.

If you have a sufficiently small rise/fall time, a single pulse can hold in it dozens of small-amplitude waves.

In the image below, you can see an undamped digital signal switching logic states from low to high.

PCB设计中怎样消除反射噪声

An undamped digital signal (yellow, channel 1) captured on a TI Lightcrafter as it switches logic states from low to high.

Now check out the image below, where the left-hand image shows a composite wave pulse created through the successive superposition of decreasing amplitude odd-harmonics of the original wave. For signals of practical interest, we can decompose the waveform into a series of sine waves.

PCB设计中如何消除反射噪声?

As the above figures show, a real digital signal has a large bandwidth and any portion of that energy might create a resonance in your circuit. This is in contrast to RF signals that have very narrow bandwidth with easy to calculate resonances.

If you do manage to create standing waves, you will create enormous sources of noise that can overwhelm any signal line in the vicinity.

PCB设计中怎样消除反射噪声

This gif shows that a wave (orange) reflected at a particular wavelength can combine with its reflection (blue) to create a high amplitude standing wave (green). This phenomenon will happen at odd-integer multiples of ½ wavelength, where the wavelength is twice the length of your trace.

How to Reduce Reflection Noise

There are several methods you can use to manage reflection noise in your design. Here's an overview of some of the techniques at your disposal.

声明:本文内容及配图由入驻作者撰写或者入驻合作网站授权转载。文章观点仅代表作者本人,不代表电子发烧友网立场。文章及其配图仅供工程师学习之用,如有内容侵权或者其他违规问题,请联系本站处理。 举报投诉
  • pcb
    pcb
    +关注

    关注

    4220

    文章

    22469

    浏览量

    385702
  • 华强pcb线路板打样

    关注

    5

    文章

    14629

    浏览量

    42574
收藏 人收藏

    评论

    相关推荐

    什么是PCB扇孔,PCB设计中对PCB扇孔有哪些要求

    一站式PCBA智造厂家今天为大家讲讲 PCB扇孔什么意思?PCB设计中对PCB扇孔的要求及注意事项。什么是PCB扇孔?PCB设计中对
    的头像 发表于 04-08 09:19 230次阅读

    PCB设计阻抗不连续的原因及解决方法

    的因素。阻抗不连续可能会导致信号衰减、噪声增加以及信号完全失真。因此,在PCB设计过程中确保阻抗的连续性非常关键。接下来深圳PCBA厂家为大家介绍如何解决PCB设计中的阻抗不连续问题。 了解P
    的头像 发表于 03-21 09:32 163次阅读

    PCB设计中,如何避免串扰?

    PCB设计中,如何避免串扰? 在PCB设计中,避免串扰是至关重要的,因为串扰可能导致信号失真、噪声干扰及功能故障等问题。 一、了解串扰及其原因 在开始讨论避免串扰的方法之前,我们首先需要
    的头像 发表于 02-02 15:40 706次阅读

    EMC之PCB设计技巧

    和设计工程师头痛。 EMC与电磁能的产生、传播和接收密切相关,PCB设计不希望出现EMC。电磁能来自多个源头,它们混合在一起,因此必须特别小心,确保不同的电路、走线、过孔和PCB材料协同工作时,各种
    发表于 12-19 09:53

    信号反射是怎么产生的?终端电阻如何消除信号反射

    信号反射是怎么产生的?终端电阻如何消除信号反射? 信号反射是指信号在传输线上的传播过程中遇到障碍物或者过渡接口时,由于介质的特性不一致,产生部分信号被反向传播的现象。主要是由于阻抗不匹
    的头像 发表于 11-23 09:53 889次阅读

    FSPI的PCB设计

    FSPI的PCB设计
    的头像 发表于 11-23 09:04 292次阅读
    FSPI的<b class='flag-5'>PCB设计</b>

    如何在PCB设计中克服放大器的噪声干扰?

    如何在PCB设计中克服放大器的噪声干扰? 在PCB设计中,放大器的噪声干扰是一个常见的问题。噪声干扰会对系统的性能产生负面影响,降低信号质量
    的头像 发表于 11-09 10:08 410次阅读

    PowerPCB在PCB设计中的应用解析

    原理图设计正确,印制电路板设计不当,也会对电子产品的可靠性产生不利影响。例如,如果印制板两条细平行线靠得很近,则会形成信号波形的延迟,在传输线的终端形成反射噪声。因此,在设计印制电路板的时候,应注意采用正确的方法,遵守PCB设计
    发表于 08-17 09:29 580次阅读

    PCB设计中铜厚和线宽的选择

    PCB设计中,铜厚和线宽是两个关键参数,它们对电路板的性能和功能有重要影响。以下是如何使用铜厚和线宽进行PCB设计的一些建议。
    发表于 08-09 09:28 2002次阅读

    PCB设计中降低噪声与电磁干扰的一些经验

    电子设备的灵敏度越来越高,这要求设备的抗干扰能力也越来越强,因此PCB设计也变得更加困难,如何提高PCB的抗干扰能力成为众多工程师们关注的重点问题之一。本文将介绍PCB设计中降低噪声
    的头像 发表于 07-28 10:33 396次阅读

    10个PCB设计技巧帮你减少EMC

    今天主要是关于: EMC,PCB设计中如何降低EMC? 一、EMC是什么? 在PCB设计中,主要的EMC问题包括3种: 传导干扰 、 串扰干扰 、 辐射干扰。 1、传导干扰 传导干扰 通过 引线
    的头像 发表于 07-26 19:40 876次阅读
    10个<b class='flag-5'>PCB设计</b>技巧帮你减少EMC

    降低PCB设计噪声与电磁干扰24条

    降低PCB设计噪声与电磁干扰24条
    的头像 发表于 07-04 16:57 351次阅读

    Xilinx FPGA pcb设计

    Xilinx FPGA pcb设计
    发表于 05-29 09:11 0次下载

    电源PCB设计实例

    今天给大家分享的是电源PCB设计
    的头像 发表于 05-05 15:53 1510次阅读
    电源<b class='flag-5'>PCB设计</b>实例

    PCB设计布局规则及技巧

      一站式PCBA智造厂家今天为大家讲讲PCB设计布局规则有哪些?PCB设计布局规则及技巧。
    的头像 发表于 05-04 09:05 1673次阅读