支持IEEE1149.4標準的芯片資料
上傳時間: 2013-11-11
上傳用戶:dianxin61
各種集成芯片的封裝尺寸,學習PCB的必備材料
上傳時間: 2013-11-07
上傳用戶:zczc
最全的芯片封裝方式(圖文對照)
上傳時間: 2013-11-21
上傳用戶:sssnaxie
PCB 被動組件的隱藏特性解析 傳統上,EMC一直被視為「黑色魔術(black magic)」。其實,EMC是可以藉由數學公式來理解的。不過,縱使有數學分析方法可以利用,但那些數學方程式對實際的EMC電路設計而言,仍然太過復雜了。幸運的是,在大多數的實務工作中,工程師并不需要完全理解那些復雜的數學公式和存在于EMC規(guī)范中的學理依據,只要藉由簡單的數學模型,就能夠明白要如何達到EMC的要求。本文藉由簡單的數學公式和電磁理論,來說明在印刷電路板(PCB)上被動組件(passivecomponent)的隱藏行為和特性,這些都是工程師想讓所設計的電子產品通過EMC標準時,事先所必須具備的基本知識。導線和PCB走線導線(wire)、走線(trace)、固定架……等看似不起眼的組件,卻經常成為射頻能量的最佳發(fā)射器(亦即,EMI的來源)。每一種組件都具有電感,這包含硅芯片的焊線(bond wire)、以及電阻、電容、電感的接腳。每根導線或走線都包含有隱藏的寄生電容和電感。這些寄生性組件會影響導線的阻抗大小,而且對頻率很敏感。依據LC 的值(決定自共振頻率)和PCB走線的長度,在某組件和PCB走線之間,可以產生自共振(self-resonance),因此,形成一根有效率的輻射天線。在低頻時,導線大致上只具有電阻的特性。但在高頻時,導線就具有電感的特性。因為變成高頻后,會造成阻抗大小的變化,進而改變導線或PCB 走線與接地之間的EMC 設計,這時必需使用接地面(ground plane)和接地網格(ground grid)。導線和PCB 走線的最主要差別只在于,導線是圓形的,走線是長方形的。導線或走線的阻抗包含電阻R和感抗XL = 2πfL,在高頻時,此阻抗定義為Z = R + j XL j2πfL,沒有容抗Xc = 1/2πfC存在。頻率高于100 kHz以上時,感抗大于電阻,此時導線或走線不再是低電阻的連接線,而是電感。一般而言,在音頻以上工作的導線或走線應該視為電感,不能再看成電阻,而且可以是射頻天線。
上傳時間: 2013-10-09
上傳用戶:時代將軍
現代的電子設計和芯片制造技術正在飛速發(fā)展,電子產品的復雜度、時鐘和總線頻率等等都呈快速上升趨勢,但系統的電壓卻不斷在減小,所有的這一切加上產品投放市場的時間要求給設計師帶來了前所未有的巨大壓力。要想保證產品的一次性成功就必須能預見設計中可能出現的各種問題,并及時給出合理的解決方案,對于高速的數字電路來說,最令人頭大的莫過于如何確保瞬時跳變的數字信號通過較長的一段傳輸線,還能完整地被接收,并保證良好的電磁兼容性,這就是目前頗受關注的信號完整性(SI)問題。本章就是圍繞信號完整性的問題,讓大家對高速電路有個基本的認識,并介紹一些相關的基本概念。 第一章 高速數字電路概述.....................................................................................51.1 何為高速電路...............................................................................................51.2 高速帶來的問題及設計流程剖析...............................................................61.3 相關的一些基本概念...................................................................................8第二章 傳輸線理論...............................................................................................122.1 分布式系統和集總電路.............................................................................122.2 傳輸線的RLCG 模型和電報方程...............................................................132.3 傳輸線的特征阻抗.....................................................................................142.3.1 特性阻抗的本質.................................................................................142.3.2 特征阻抗相關計算.............................................................................152.3.3 特性阻抗對信號完整性的影響.........................................................172.4 傳輸線電報方程及推導.............................................................................182.5 趨膚效應和集束效應.................................................................................232.6 信號的反射.................................................................................................252.6.1 反射機理和電報方程.........................................................................252.6.2 反射導致信號的失真問題.................................................................302.6.2.1 過沖和下沖.....................................................................................302.6.2.2 振蕩:.............................................................................................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 差分線的匹配.................................................................................392.6.3.4 多負載的匹配.................................................................................41第三章 串擾的分析...............................................................................................423.1 串擾的基本概念.........................................................................................423.2 前向串擾和后向串擾.................................................................................433.3 后向串擾的反射.........................................................................................463.4 后向串擾的飽和.........................................................................................463.5 共模和差模電流對串擾的影響.................................................................483.6 連接器的串擾問題.....................................................................................513.7 串擾的具體計算.........................................................................................543.8 避免串擾的措施.........................................................................................57第四章 EMI 抑制....................................................................................................604.1 EMI/EMC 的基本概念..................................................................................604.2 EMI 的產生..................................................................................................614.2.1 電壓瞬變.............................................................................................614.2.2 信號的回流.........................................................................................624.2.3 共模和差摸EMI ..................................................................................634.3 EMI 的控制..................................................................................................654.3.1 屏蔽.....................................................................................................654.3.1.1 電場屏蔽.........................................................................................654.3.1.2 磁場屏蔽.........................................................................................674.3.1.3 電磁場屏蔽.....................................................................................674.3.1.4 電磁屏蔽體和屏蔽效率.................................................................684.3.2 濾波.....................................................................................................714.3.2.1 去耦電容.........................................................................................714.3.2.3 磁性元件.........................................................................................734.3.3 接地.....................................................................................................744.4 PCB 設計中的EMI.......................................................................................754.4.1 傳輸線RLC 參數和EMI ........................................................................764.4.2 疊層設計抑制EMI ..............................................................................774.4.3 電容和接地過孔對回流的作用.........................................................784.4.4 布局和走線規(guī)則.................................................................................79第五章 電源完整性理論基礎...............................................................................825.1 電源噪聲的起因及危害.............................................................................825.2 電源阻抗設計.............................................................................................855.3 同步開關噪聲分析.....................................................................................875.3.1 芯片內部開關噪聲.............................................................................885.3.2 芯片外部開關噪聲.............................................................................895.3.3 等效電感衡量SSN ..............................................................................905.4 旁路電容的特性和應用.............................................................................925.4.1 電容的頻率特性.................................................................................935.4.3 電容的介質和封裝影響.....................................................................955.4.3 電容并聯特性及反諧振.....................................................................955.4.4 如何選擇電容.....................................................................................975.4.5 電容的擺放及Layout ........................................................................99第六章 系統時序.................................................................................................1006.1 普通時序系統...........................................................................................1006.1.1 時序參數的確定...............................................................................1016.1.2 時序約束條件...................................................................................1066.2 源同步時序系統.......................................................................................1086.2.1 源同步系統的基本結構...................................................................1096.2.2 源同步時序要求...............................................................................110第七章 IBIS 模型................................................................................................1137.1 IBIS 模型的由來...................................................................................... 1137.2 IBIS 與SPICE 的比較.............................................................................. 1137.3 IBIS 模型的構成...................................................................................... 1157.4 建立IBIS 模型......................................................................................... 1187.4 使用IBIS 模型......................................................................................... 1197.5 IBIS 相關工具及鏈接..............................................................................120第八章 高速設計理論在實際中的運用.............................................................1228.1 疊層設計方案...........................................................................................1228.2 過孔對信號傳輸的影響...........................................................................1278.3 一般布局規(guī)則...........................................................................................1298.4 接地技術...................................................................................................1308.5 PCB 走線策略............................................................................................134
標簽: 信號完整性
上傳時間: 2014-05-15
上傳用戶:dudu1210004
第一部分 信號完整性知識基礎.................................................................................5第一章 高速數字電路概述.....................................................................................51.1 何為高速電路...............................................................................................51.2 高速帶來的問題及設計流程剖析...............................................................61.3 相關的一些基本概念...................................................................................8第二章 傳輸線理論...............................................................................................122.1 分布式系統和集總電路.............................................................................122.2 傳輸線的RLCG 模型和電報方程...............................................................132.3 傳輸線的特征阻抗.....................................................................................142.3.1 特性阻抗的本質.................................................................................142.3.2 特征阻抗相關計算.............................................................................152.3.3 特性阻抗對信號完整性的影響.........................................................172.4 傳輸線電報方程及推導.............................................................................182.5 趨膚效應和集束效應.................................................................................232.6 信號的反射.................................................................................................252.6.1 反射機理和電報方程.........................................................................252.6.2 反射導致信號的失真問題.................................................................302.6.2.1 過沖和下沖.....................................................................................302.6.2.2 振蕩:.............................................................................................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 差分線的匹配.................................................................................392.6.3.4 多負載的匹配.................................................................................41第三章 串擾的分析...............................................................................................423.1 串擾的基本概念.........................................................................................423.2 前向串擾和后向串擾.................................................................................433.3 后向串擾的反射.........................................................................................463.4 后向串擾的飽和.........................................................................................463.5 共模和差模電流對串擾的影響.................................................................483.6 連接器的串擾問題.....................................................................................513.7 串擾的具體計算.........................................................................................543.8 避免串擾的措施.........................................................................................57第四章 EMI 抑制....................................................................................................604.1 EMI/EMC 的基本概念..................................................................................604.2 EMI 的產生..................................................................................................614.2.1 電壓瞬變.............................................................................................614.2.2 信號的回流.........................................................................................624.2.3 共模和差摸EMI ..................................................................................634.3 EMI 的控制..................................................................................................654.3.1 屏蔽.....................................................................................................654.3.1.1 電場屏蔽.........................................................................................654.3.1.2 磁場屏蔽.........................................................................................674.3.1.3 電磁場屏蔽.....................................................................................674.3.1.4 電磁屏蔽體和屏蔽效率.................................................................684.3.2 濾波.....................................................................................................714.3.2.1 去耦電容.........................................................................................714.3.2.3 磁性元件.........................................................................................734.3.3 接地.....................................................................................................744.4 PCB 設計中的EMI.......................................................................................754.4.1 傳輸線RLC 參數和EMI ........................................................................764.4.2 疊層設計抑制EMI ..............................................................................774.4.3 電容和接地過孔對回流的作用.........................................................784.4.4 布局和走線規(guī)則.................................................................................79第五章 電源完整性理論基礎...............................................................................825.1 電源噪聲的起因及危害.............................................................................825.2 電源阻抗設計.............................................................................................855.3 同步開關噪聲分析.....................................................................................875.3.1 芯片內部開關噪聲.............................................................................885.3.2 芯片外部開關噪聲.............................................................................895.3.3 等效電感衡量SSN ..............................................................................905.4 旁路電容的特性和應用.............................................................................925.4.1 電容的頻率特性.................................................................................935.4.3 電容的介質和封裝影響.....................................................................955.4.3 電容并聯特性及反諧振.....................................................................955.4.4 如何選擇電容.....................................................................................975.4.5 電容的擺放及Layout ........................................................................99第六章 系統時序.................................................................................................1006.1 普通時序系統...........................................................................................1006.1.1 時序參數的確定...............................................................................1016.1.2 時序約束條件...................................................................................1063.2 高速設計的問題.......................................................................................2093.3 SPECCTRAQuest SI Expert 的組件.......................................................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 仿真子系統......................................................................2253.3.6 EMControl .........................................................................................2303.3.7 SPECCTRA Expert 自動布線器.......................................................2303.4 高速設計的大致流程...............................................................................2303.4.1 拓撲結構的探索...............................................................................2313.4.2 空間解決方案的探索.......................................................................2313.4.3 使用拓撲模板驅動設計...................................................................2313.4.4 時序驅動布局...................................................................................2323.4.5 以約束條件驅動設計.......................................................................2323.4.6 設計后分析.......................................................................................233第四章 SPECCTRAQUEST SIGNAL EXPLORER 的進階運用..........................................2344.1 SPECCTRAQuest Signal Explorer 的功能包括:................................2344.2 圖形化的拓撲結構探索...........................................................................2344.3 全面的信號完整性(Signal Integrity)分析.......................................2344.4 完全兼容 IBIS 模型...............................................................................2344.5 PCB 設計前和設計的拓撲結構提取.......................................................2354.6 仿真設置顧問...........................................................................................2354.7 改變設計的管理.......................................................................................2354.8 關鍵技術特點...........................................................................................2364.8.1 拓撲結構探索...................................................................................2364.8.2 SigWave 波形顯示器........................................................................2364.8.3 集成化的在線分析(Integration and In-process Analysis) .236第五章 部分特殊的運用...............................................................................2375.1 Script 指令的使用..................................................................................2375.2 差分信號的仿真.......................................................................................2435.3 眼圖模式的使用.......................................................................................249第四部分:HYPERLYNX 仿真工具使用指南............................................................251第一章 使用LINESIM 進行前仿真.......................................................................2511.1 用LineSim 進行仿真工作的基本方法...................................................2511.2 處理信號完整性原理圖的具體問題.......................................................2591.3 在LineSim 中如何對傳輸線進行設置...................................................2601.4 在LineSim 中模擬IC 元件.....................................................................2631.5 在LineSim 中進行串擾仿真...................................................................268第二章 使用BOARDSIM 進行后仿真......................................................................2732.1 用BOARDSIM 進行后仿真工作的基本方法...................................................2732.2 BoardSim 的進一步介紹..........................................................................2922.3 BoardSim 中的串擾仿真..........................................................................309
上傳時間: 2014-04-18
上傳用戶:wpt
減小電磁干擾的印刷電路板設計原則 內 容 摘要……1 1 背景…1 1.1 射頻源.1 1.2 表面貼裝芯片和通孔元器件.1 1.3 靜態(tài)引腳活動引腳和輸入.1 1.4 基本回路……..2 1.4.1 回路和偶極子的對稱性3 1.5 差模和共模…..3 2 電路板布局…4 2.1 電源和地…….4 2.1.1 感抗……4 2.1.2 兩層板和四層板4 2.1.3 單層板和二層板設計中的微處理器地.4 2.1.4 信號返回地……5 2.1.5 模擬數字和高壓…….5 2.1.6 模擬電源引腳和模擬參考電壓.5 2.1.7 四層板中電源平面因該怎么做和不應該怎么做…….5 2.2 兩層板中的電源分配.6 2.2.1 單點和多點分配.6 2.2.2 星型分配6 2.2.3 格柵化地.7 2.2.4 旁路和鐵氧體磁珠……9 2.2.5 使噪聲靠近磁珠……..10 2.3 電路板分區(qū)…11 2.4 信號線……...12 2.4.1 容性和感性串擾……...12 2.4.2 天線因素和長度規(guī)則...12 2.4.3 串聯終端傳輸線…..13 2.4.4 輸入阻抗匹配...13 2.5 電纜和接插件……...13 2.5.1 差模和共模噪聲……...14 2.5.2 串擾模型……..14 2.5.3 返回線路數目..14 2.5.4 對板外信號I/O的建議14 2.5.5 隔離噪聲和靜電放電ESD .14 2.6 其他布局問題……...14 2.6.1 汽車和用戶應用帶鍵盤和顯示器的前端面板印刷電路板...15 2.6.2 易感性布局…...15 3 屏蔽..16 3.1 工作原理…...16 3.2 屏蔽接地…...16 3.3 電纜和屏蔽旁路………………..16 4 總結…………………………………………17 5 參考文獻………………………17
上傳時間: 2013-10-24
上傳用戶:18165383642
IR2110是IR公司的橋式驅動集成電路芯片,它采用高度集成的電平轉換技術,大大簡化了邏輯電路對功率器件的控制要求,同時提高了驅動電路的可靠性[1]。對于我設計的含有ZCS環(huán)節(jié)的單相光伏逆變電路中有6個IGBT,只需要3片芯片即可驅動,通過dsp2812控制實現軟開關和逆變的功能,同時只需要提供3.3 V,12 V的基準電壓即可工作,在工程上大大減少了控制變壓器體積和電源數目,降低了產品成本,提高了系統可靠性。
上傳時間: 2014-01-05
上傳用戶:tom_man2008
M3KK升壓芯片。
上傳時間: 2013-11-21
上傳用戶:nanfeicui
USB充電自動識別芯片,支持Apple手機,電流可達2A。
上傳時間: 2013-11-25
上傳用戶:dancnc