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清华大学模式识别第二次大作业
1. 仍然使用第一次作业中收集的数据作为训练集(注意:不得超过20+20 例样本),采用身高和体重为特征进行性别分类,训练SVM 分类器,在测试数据dataset1.txt 上测试分类效果。SVM 中分别使用线性核和高斯核,参数自己确定。2. 使用一个较大的数据集(dataset2.txt)作训练样本,采用身高和体重为特征进行性别分类,在正态分布假设下估计概率密度,建立最小错误率贝叶斯分类器,写出得到的决策规则;把分类器应用到dataset1.txt 上,计算测试错误率。(自行决定采用什么先验概率。)3. 将样本和两次作业中得到的多个分类面画到由身高和体重组成的二维平面上,尝
- 2021-05-06下载
- 积分:1
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PreScan罗技方向联合控制仿真教程
prescan、罗技方向盘、simulink联合自动驾驶DIL仿真教程。山≥凵的|8电题||m幽的歌舞囝弟DeleteVelocty I/sFind Reference var ablasDesig vernerFietu-Puint Tuul,Lincar Ang k,>Signal g Seap. Manag-Prrt snal marissRackoroind colorunder no masle of -h eclactad slack辆动力学模块如下图所示:包含发动机、传动系统、底盘系统、换挡逻辑等几个模块。基本的车辆状态参数都已包含在输出信号中(wx,rpm,gear, ax, ay, auto/manual shift throttle brake, ENgine, PDrive roll, pitchwy),其他信号可从相应的模块白由调用回回Ele E1t View Simulation Format Iols上C|c母电|→计|(nifn多|國同多ImpEllEr onLE INnea:: Au. uRiEldes
- 2020-11-28下载
- 积分:1
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数字信号处理2由西电阔永红改编上课需要的课件
由西电阔永红 改编,上课需要的课件,以及课后题
- 2020-11-29下载
- 积分:1
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labvIEW 数据采集与保存 源程序
自己写的一个labvIEW 数据采集与保存的源程序,可以作为参考
- 2020-12-05下载
- 积分:1
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OSTU matlab图像分割源程序
OSTU阈值化处理, 图像分割 ,matlab
- 2020-12-09下载
- 积分:1
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MIPI Alliance Specification for D-PHY
MIPI Alliance Specification for D-PHY Version 1.00.00 – 14 May 2009配合“MIPI Alliance Specification for Camera Serial Interface 2 (CSI-2)“ 一起看。http://download.csdn.net/detail/micro_st/4242724Version1.00.0014-May-2009MIPI Alliance Specification for D-PHY2 The material contained herein is not a license, either expressly or impliedly, to any IPR owned or3 controlled by any of the authors or developers of this material or MIPl. The material contained herein is4 provided on an"as iS basis and to the maximum extent permitted by applicable law, this material is5 provided AS IS AND WITH ALL FAULTS, and the authors and developers of this material and MIP6 hereby disclaim all other warranties and conditions, either express, implied or statutory, including, but not7 limited to, any (ifany)inplied warranties, duties or conditions of merchantability, of fitness for a8 particular purpose, of accuracy or completeness of responses, of results, of workmanlike effort, of lack of9 viruses, and of lack of negligence10 All materials contained herein are protected by copyright laws, and may not be reproduced, republisheddistributed, transmitted, displayed, broadcast or otherwise exploited in any manner without the express12 prior written permission of MIPI Alliance. MIPl, MIPI Alliance and the dotted rainbow arch and all related3 trademarks, tradenames, and other intellectual property are the exclusive property of MIPI Alliance and14 cannot be used without its express prior written permission15 ALSO, THERE IS NO WARRANTY OF CONDITION OF TITLE, QUIET ENJOYMENT, QUIET16 POSSESSION. CORRESPONDENCE TO DESCRIPTION OR NON-INFRINGEMENT WITH17 REGARD TO THIS MATERIAL OR THE CONTENTS OF THIS DOCUMENT.IN NO EVENT WILLI8 ANY AUTHOR OR DEVELOPER OF THIS MATERIAL OR THE CONTENTS OF THIS DOCUMENT9 OR MIPI BE LIABLE TO ANY OTHER PARTY FOR THE COST OF PROCURING SUBSTITUTE20 GOODS OR SERVICES. LOST PROFITS. LOSS OF USE. LOSS OF DATA OR ANY INCIDENTAL.21 CONSEQUENTIAL, DIRECT, INDIRECT, OR SPECIAL DAMAGES WHETHER UNDER22 CONTRACT TORT WARRANTY OR OTHERWISE ARISING IN ANY WAY OUT OF THIS OR23 ANY OTHER AGREEMENT SPECIFICATION OR DOCUMENT RELATING TO THIS MATERIAL24 WHETHER OR NOT SUCH PARTY HAD ADVANCE NOTICE OF THE POSSIBILITY OF SUCH25 DAMAGES26 Without limiting the generality of this Disclaimer stated above, the user of the contents of this Document is27 further notified that MIPI: (a)does not evaluate, test or verify the accuracy, soundness or credibility of the28 contents of this Document;(b)does not monitor or enforce compliance with the contents of this Document29 and (c)does not certify, test, or in any manner investigate products or services or any claims of compliance30 with the contents of this Document. The use or implementation of the contents of this Document may31 involve or require the use of intellectual property rights ("IPR")including(but not limited to) patents32 patent applications, or copyrights owned by one or more parties, whether or not Members of MIPIMIPI33 does not make any search or investigation for IPR, nor does miPi require or request the disclosure of any34 IPR or claims of IPR as respects the contents of this document or otherwise35 Questions pertaining to this document, or the terms or conditions of its provision, should be addressed36 MIPI Alliance. Inc37 c/o IEEE-ISTO38 445 Hoes lane39 Piscataway, NJ0885440 Alin: Board SecretaryCopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialVersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY42 Contents43 Draft Version 1.00.00-14 May 2009441 Overview1451.2 Purpose.…..,.,.,,.,..472 Terminology…2.1 Definitions162.2 Abbreviations…172.3 Acronyms51 3 D-PHY Introduction523.1 Summary of Phy functionality533.2 Mandatory Functionality················2054 4 Architecture21554.1 Lane modules…564.2 Master and slave2254.3 High Frequency Clock Generation22584.4 Clock lane data lanes and the phy-Protocol interface.224.5 Selectable Lane Options·;····················234.6 Lane Module Types4.6.1 Unidirectional Data Lane…264.6.2 Bi-directional data lanes26634.6.3 Clock lane.274.7 Configurations….7654.7.1 Unidirectional Configurations............664.7.2Bi-Dal Half-Duplex Configurations674.7.3 Mixed Data Lane configurations32Copyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member Confidential111Ⅴ ersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY695.1Transmission Data Structure,………………………∴335.1.1Data unitsa勹5.1.2 Bit order Serialization and De-Serialization33725.1.3 Encoding and decoding735.1.4 Data Buffering,33745.2 Lane States and Line levels755.3 Operating Modes: Control, High-Speed, and Escape5. 4 High-Speed Data Transmission··········;·5. 41 Burst payload data785.4.2 Start-of-Transmission795.4.3End-of-transmission805.4.4 HS Data Transmission burst.365.5 Bi-directional data Lane turnaround5.6 Escape Mode41835.6.1Remote triggers42845.6.2 Low-Power data Transmission43855.6.3 Ultra-Low Power State865.6.4 Escape Mode State Machine43875.7 High-Speed Clock Transmission885. 8 Clock lane Ultra-Low Power State50959 Global Operation Timing Parameters.……5.10 System Power States56915.11 Initialization56925.12 Calibration5.13 Global Operation Flow Diagram57945.14 Data Rate Dependent Parameters(informative)955. 14.1 Parameters Containing Only UI values965. 14.2 Parameters Containing Time and Ul values59Copyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialVersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY5.14.3 Parameters Containing Only Time Values…………5.14.4 Parameters Containing Only Time Values That Are Not Data Rate Dependent6 Fault detection611006.1 Contention detection1016.2 Sequence Error Detection.……611026.2.1 SoT Error621036.2.2 SOT Sync Error1046.2.3 EoT Sync Error1056.2. 4 Escape Mode Entry Command error.1066.2.5 LP Transmission Sync error621076.2.6 False Control error1086.3 Protocol Watchdog Timers(informative)62l096.3.1 HS RX Timeout6.3.2HS TX Timeout………………·················+···:··:·················∴62l116.3.3Escape mode timeout62l126.3. 4 Escape Mode Silence Timeout6.3.5 Turnaround errors114 7 Interconnect and Lane Configuration.641157.1 Lane configuration1167.2 Boundary Conditions.....…647.3 Definitions………64l187.4S- parameter Specifications………….651197.5 Characterization Conditions207.6 nterconnect Specifications………1217.6.1 Differential characteristics1227. 6.2 Common-mode characteristics671237.6.3 Intra-Lane Cross-Coupling1247. 6. 4 Mode-Conversion limitsCopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialVersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY1257.6.5 Inter-Lane Cross-Coupling671267. 6.6 Inter-Lane static skew1277.7 Driver and receiver Characteristics1287.7.1 Differential Characteristics1297. 7.2 Common-Mode characteristics1307.7.3 Mode-Conversion Limits1317.7.4 Inter-Lane Matching132 8 Electrical Characterislics701338.1 Driver characteristics1348.1.1 High-Speed Transmitter1358.1.2 Low-Power Transmitter1368.2 Receiver Characteristic·…············…·······…8301378.2.1 High-Speed Receiver801388.2.2Low- Power receiver.................….….821398.3 Line contention detection1408.4 Input Characteristics8441 9 High-Speed Data-Clock Timing1429.1 High-Speed Clock Timing861439.2 Forward High-Speed Data Transmission Timing871449.2.1 Data-Clock Timing Specifications1459.3 Reverse High-Speed Data Transmission Timing89146 10 Regulatory Requirements91147 Annex A Logical PHY-Protocol Inter face Description(informative)92148A 1 Signal Description149A 2 High-Speed Transmit from the Master Side150A3 High-Speed receive at the slave Sidel00151A 4 High-Speed Transmit from the Slave side152A.5 High-Speed Receive at the Master SideIOICopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialVersion1.00.0014-May-2009MIPI Alliance Specification for D-PHY153A6 Low-Power Data Transmission102154A7 Low-Power Data Reception.103155A 8 Turn-around156 Annex B Interconnect Design Guidelines (informative)105157B. 1 Practical distances105158B 2 RF Frequency Bands: Interference.105B3 Transmission Line design160B4 Reference Layer.106161B 5 Printed-Circuit board106162B6 Flex-foils106163B 7 Series resistance106164B 8 Connectors106165 Annex C 8b9b Line Coding for D-PHY(normative)107166C 1 Line Coding Features...·············108167C.1.1Enabled Features for the Protocol108l68C 1. 2 Enabled Features for the Phy108169C2 Coding scheme170C 2.1 8b9b Coding Properties.....108171C 2.2 Data Codes: Basic Code Set……….109C.2.3 Comma Codes: Unique Exception Codes110173C 2.4 Control Codes: Regular Exception Codes…10174C.2.5 Complete Coding Scheme………175C 3 Operation with the D-PhY…11117yload: Data and Control177C.3.2 Details for Hs transmission………112178C.3.3 Details for LP Transmissionl12179C 4 Error Signal180C5 Extended PplCopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member ConfidentialⅤ ersion1.00.0014-May-2009MIPI Alliance Specification for D-PHYl81C.6 Complete Code Set.….….l15182Copyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member Confidentialv111Version1.00.0014-May-2009MIPI Alliance Specification for D-PHYl83Figures184 Figure 1 Universal Lane Module functions21185 Figure2 Two Data Lane PHY Configuration.…………23186 Figure 3 Option Selection Flow Graph4187 Figure 4 Universal Lane Module Architecture25188 Figure 5 Lane Symbol Macros and Symbols Legend189 Figure 6 All Possible Data Lane Types and a basic Unidirectional Clock lane190 Figure 7 Unidirectional Single Data Lane Configuration30191 Figure 8 Unidirectional Multiple Data Lane Configuration without LPDT∴.30192 Figure 9 Two Directions Using Two Independent Unidirectional PHYs without LPDT.........31193 Figure 10 Bidirectional Single Data Lane Configuration31194 Figure 1l Bi-directional Multiple Data Lane Configuration......32195 Figure 12 Mixed Type multiple data Lane Configuration32196 Figure 13 Line level34197 Figure 14 High-Speed Data Transmission in Bursts36198 Figure 15 TX and rX State Machines for High-Speed Data Transmission37Figure16 Turnaround Procedure.……39200 Figure 17 Turnaround State Machine40201 Figure 18 Trigger-Reset Command in Escape Mode202 Figure 19 Two Data Byte Low-Power Data Transmission Example203 Figure 20 Escape Mode State Machine204 Figure2 I Switching the Clock Lane between Clock Transmission and low- Power mode………….47205 Figure 22 High-Speed Clock Transmission State Machine49206 Figure 23 Clock Lane Ultra-Low Power State State Machine········+·+···+·4···207 Figure 24 Data Lane Module State Diagram57208 Figure 25 Clock Lane Module state diagram58209 Figure 26 Point-to-point InterconnectCopyright C 2007-2009 MIPl Alliance, Inc. All rights reservedMIPI Alliance Member Confidential
- 2020-12-08下载
- 积分:1
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pspice编程技术
学习pspice的入门资料,很适合初学者。EDA工具应用丛书Spice/ PSpice绵程技术高燕梅房蔓楠编A995B9電子工業出版Publishing House of Electronics industry北京· BEIJIⅠNG内容简介在众多的计算机辅助设计(CAD〕工具软件中,pie程序是精度最高、最受欢迎的软件丁具许多EDA系统软件的电路模我都分都是用ice序来完成的。本书系统讲述spie/ PSpice編程技术,并提供大量的编程仿良实例。全书分为7章1第1章介绍Spie程序的功能和特点;第2章和第3章分别介绍 PSpice Is版和wnws版的编程电路图绘制电路分析及波形处理方法;第4章介绍元器件的spce模型及参数;第5章介绍各种spre数学宏模型和系统宏模型;第6章绘出常用电路的仿真实例;第7章讲述运行 Spice序时可能出现的不收敛现象以及克服不收敛问题的方法本书可作为大中专院校电子类专业的教材或实验考书,也可供屯了系统设计、开发人员和电路设计爱好者参考a未经许叮,个得以任何方式复制或抄袋本书之部分或全内容。版权所有,侵权必究图书在版编目【CP}数据Spic:e/FSpice编釋技术/高燕悔房蔓楠编著.—北京:电子工业出版社,2002.6(EDA|县应用丛书sN7553691RI.S…〗.①高…②房…Ⅲ.电子电路一计算机辅助设计一应用软件, pice/Pspice-程序设计tY. TNI02屮国版本图书馆CP数据核字(2002)第035519号责任編辑:张来盛印刷:北京大宇星印圳出版发行:电了工业出版社htp://ww.phei. Com.cn引京市海淀区万寿路173信箱邮编100035经销:各地新华书店于本:787×10921/16印张:1925字数:4928千字版次:2002年6月第1版2002年6月第1次印刷印数:6000册定价:2800元凡购买旦子L业出版社的至书,如有缺损问题请向购买书店调换。若书店售缺请与本社发行部联系联系电话:(C0)68279077臃着计箅机技术的飞速发展,计算杋辅助设计(CA门)技术已成为屯路设计工程师不吁缺少的有力工具。国内外电子线路CA软件的相继推出与版本更新,使CA技术的应用渗透到电子线路与系统设计的各个领域,如电路图的绘制、模拟电路仿真、逻辑电路分析、优化设计、印刷电路版的布线等。CAD技术的发展使得电子线路设计的速度、质量和精度得以保证在众多的CAD工具软件中,Spce程序是精度最高最受欢迎的软件T具,许多EDA系统软件的电路模拟部分是应用 Spice程序来完成的。Ppie是Spce程序应用在P!上的程序,它的主要算法与 pire相同。由于 PSpice A/程序集成了模拟与数字电路的仿真运算法,它不仅订以仿真单一的模拟电路或数字电路,而H可以有效、完善地仿真模拟和数字混合电路。经过多年的改版, PSpice AD以其强大的功能炇高度的集成性而成为现今最受欢理的电路仿真软件。 PSpice程序已被另一家在FDA领哦的大公司 OCAD并购,更名为 OrAD PSpice A/D,版本升级为v。根据多件来对 Spice程序的学习和讲究我们认为,然pice程序不断升级,各种版本的编辑窗口变化多端而豆新功能不断发展,令初学者眼花缭乱,但如果能首先掌握Spie程序的基本编程语言,即 pice pos版的編程方法,了解Spi程序的基木计算方法和常用模型,就掌握了pice程序的真谛,任何版本的pice程序都能轻松驾驭。基于这一点,衣编群本书时,我们以 PSpice的0s版为例,详细讲解 Spice的基本编程语言,由浅入深,求消晰易懂。这是本书与其他Psce程序书籍不同的重要特点,希望读者在使用木书时会有深刻体径杯书内容分为7章。第1章概要介绍$pe序的功能和特点;第2章详细介绍PpieDOS版的编程方法和各种分析功能对各种元器件及电路给出了编程示例使得初学者很容易掌握;第3章洋细介绍 ISpice Windows版应用轶件的电路图绘制和电路分析、数据波形处理方法;第4章详细介绍二极管丑r晶体管、MOS场效应管等器件的模型电路及参数,并有详尽的图形公式讲解;第5章介绍应用 PSpice程序编程功能实现的各种数学宏模型和系统宏模型,这些宏模型可以内置于电路系统中,代替部分电路模块的功能或作为测试源,乜可以代替不需设计的屯路部介,使得电系统的分析测试简化,精度提髙;第6章给出·些常用电路的仿真实例;第7章介绍运行spie程序时可能出现的不收敛现象和克服不收敛问题的方法本书的主要特点(1)适用于初学者。本书对DO版的ppie程序作了详细约介绍,给出了各种电路的编程举例;对 Windows版 PSpice程序的各种菜单命令给出了详细的说明,使初学者能很快学会绘制电路图的方法,并应用各种指令进行分析,打印输出结果。(2)适用干木科、专科学牛和电路设计爱好者。学优布学会应用spic程序后,可以随时方使地利用 Spice软件检查作业,完成电路设计编程和课程设计任务如果他们对电路的基木理论不清楚,就不会有正确的运算步骤也不能从程序中得到正确的解答,这时学生就需要修改稆序。这种反复运算的过程是教会学生本理论的有效方法。电路教学实践表明,孜科书中的与颞没钌作一的题,最好的解答往社是越出常规的。理论学习好的学生,往往不一定能解决实际的工程问题,从而不能话应激烈的市场竞争的需要。实际的工程问题必狐通过反复设计实践来解决。应用 spice程进行设计,能够培养学竺的创造性思绁。(3)Spie序是实验师的好帮手。粗通计算机技术的教帅可以通过本迅速地掌握ice编程技术将其应川于实验教学,既可以鼓助学牛进行创造性的实验活动,可以桰助学生加深理解理论分析的步骤和结果。在应用实际元器件和仪表进行实验时,由于元器件、设备和时间的限制,学生只能徹一些确定的实验:而应用spce教件进行设计,学生可以进行多种电路实验,将多种设计方案输入计算机,用 Spice软件调测设计电路,比较改进设计结果些实际也路的成功设计,可以更加激发同学们的创造热情,迅速提高他们的电路设计能力(4)为1程技术人员提供了详尽的模型资料和有效的宏模型。读者在设计电路时,可根楞设计需要选定模型参数,在调测屯电路时可以通过修改模型参数来得到最设计结果。由于编著者水平有限加之吋问仓促;书中难免有不妥之处,敬请读者批评指正:。编著者202年1月目录第1章论…(l)第2章 PSpice DOS版编程…看司即甲4p■即甲p甲唱自即看■口口申d『p自11■■督會血血血11■2.概述111……………,……………………(4)版 PSpice的组成2.]2 PSpice的装与运行翻山酯■口鲁鲁■一口即……………(5)2.2屯路描述…………(5)221电路描述语句自■中中■山2.2.2分柝指令格式………2.2.3输出指令格式中·中·P…(10)2.24简单程序举例…………(10)2.3元器件描述………(11)23.1元件描述语付………23.2器件描述语句……………………………………………………………………(20)2.3.3屯源描述语句■■L■昌L山昌山▲(49)4分析指令(55)4.1直流分忻指令……■■卜■P■鲁■自曾血自自血自血自■自血■■血■■血自鲁自■血b曲會血………(55242交流分析指令(57)24.3噪声分析指令57)244膦态分析指令………………亠郾·■·▲·↓↓↓↓中·dpc+■鲁■q(582.4.5傅里叶分析■■■58)2.5输出指令■日「■■■早,■■『卩q卜■↓■4晋b量b………(59)2.s.1数据打印评句……………………(59)2.5.2文本绘图语句…………………f6l2.5.3图形后处理程序(62)2.5.4打印宽枣话何62)2.6其他功能描述语句P·14昌山如■+--中『甲中即『『日『日4d『‘(63)2.0.1任选唤培句4聊ψψ■中φPp中p白pq◆F(63)26,2结束语句……(64)2.6.3包含话句………………………(64)2.7子电路与库函数日申曾·曾平4甲·個■■冒PPPP■宁■4■b■個自自■鲁血自鲁d咖·■卩聊即p聊(64)2.7.l器件模型语句 MODEL〔65)2.7.2库函数调用语句UIB65)2..3子电路调用语句SHKT…………s…………*(66)28数字电路模拟■■■■冒P冒4bb■凸山……………………(6)8.1概述662.8.2数字电路器件………………678.3数宁信号游72)2.8,4数电路的 P=pice分析·督■■『■冒?冒■會4會■1■■■■‘‘■t76第3章 PSpice Windows版编程833.1概述(833.2绘制电路原理图■■冒冒冒■1冒冒■■■『■冒■■■曾■■■■■■■833.2.1打开 Schematics程序项3.22绘图窗计的址能建84)3.2.3绘图常用命令顶853.3电路分析司口■■■◆■●■血曲(92)3.3.1打开Fps耙序项鲁血■923.3.2 PSpic:e常用角令项…923.4杳看输出波形…………………………………(933.4.1打开Prb程序项(933.42Pmhe窗冂的功能键…(3343Prhe常用命令项■■■■■■P■血l自自■L自·_甲■唱司·■■……………(953.5建立元件库……9?3.5.L打开Pats程予项……;………3.52元件库窗口的功能键冒士14■+■b93.5.3Pars常用命仝项……甲甲郾·!···』■▲--rT……(99)3,6激励源编辑器……(1033.6.1打开激励源绢辑窗口,……s"…""………(1033.6.2激源编辑窗口的功能键(104)激动源编器常用命令项3.7设汁举例卜:4幽■山■■■▲甲曾番甲晋P晋量青↓dd画晶1103.7.谩计一个数字电路……(LlO3.7.2温度分析实例………■音鲁白中中P中甲甲P『TPP■個◆自冒t(1I537.3噪声分析实例…(1203.7.4傅甲叶分析实例…;;…7.5多数分析实例………………(124)3.7.6 Mante Carlo分析与性能分析…………………(127)37.7最荣悟况分析;q■■T■■■■(l3第4章Spce元件模型与模型参数…………………(1344. I Spice二极管模刑■冒■1■■中1344.1.Ⅰ大注人电流的-极管静态DC模型(]364.1.2极管信号模型…■■■■■■■I38极管的温度模型1384.2双极型晶体管模型和参数提取……(1394.2.上BT模型慨述∴……………………"…(l39)4.2.2lrs-M钏l模型…(14l)4.2.3 Gummel-Pon模型p:4日由·亠‘(1454.3MGS场效应管(MOET)模型参数和提取(150)4.3.1 MOSFET的Sice一级静态镆型(150)4.3.2 MOSFET_·级静态模型·(1524.3.3M0SFET_级静态模型·A.·.日.B4L日.BB昌吾4↓bh如昌4吾山聶如亠↓4亠(154)4.3.4 MOSFET Spice棋型的比较■1■‘』中中中中中中中山十啬4鲁山平『■+一(155)44结型场效应晶体管(JFFT)模型和参数提取………………………………(157)4.4]N沟道JFF静态模型…■血■函■幽血………(158)4.4.2JEY大信号模型(159)4.5砷化镓金属≯导体场效应晶体管( GaAs mesfet)模型1自中……(160)4.6数字器件模型(161)4.6.l逻辑门电路………………………………**……(1614.6.2融漫平卩■甲P甲↓甲罾↓晋甲■■!甲青罾晉甲■■『卜鲁昏■晋}■_■■d晋d矗啬(16446.3可编程逻辑器件(PLA……(167)4.6.4数字UO接口子电路……………………………;……"(]70)4.6.57400系列TT和CMOS模型库(173)4.66CM84000系列模型库(184)4.6.7数字器件型举例………r…………………(187)第5章Spce数学宏横型(192)5.1数学功能宏模型……………………………………………………(192)5.L.电压加法器太模型T平■■『冒■■■■■■■■昌…(192)5.1.2电压乘法器宏模型…■甲qF『冒PP■曾………s…s……s………:(193)5.1.3电生除状器宏模型(195)5L4电压平方室模型(196)5..5理想变压宏模型h■甲甲普平罾甲甲■p■■b▲pt(197)5.L.6电压求平主根宏模型………………(198)5..7三角波/弦波转换器(20)5..8电压柑移电路(202)5l.9电压积分器宏模型看号『冒晋■■血dq·号司鲁■■■唱自血◆血■■自■■■p甲聊要L4↓(204)s.上,10电压徽分宏模型…;(206)5.].1电压绝对连宏模型…■■■矗■bt(207)5.].12电压峰值深测器宏模型LL山L山(2105.1.13频率乘法………………∴…(2lt)s.1.14频率除法据……(213)5.1.15频率加法据减法器……(215)5.].16相泣探测器(217)5.1.17传输线宏嫫型…号P■甲↓【■冒h219)5.1.18施密特触发器宏模型……;………………………………………(220)5.1.19电压取样一保持电路宏模型4■郾司郾■4L晶………………………(223)5.].2咏冲宽变调制器宏模芈…………(2245.1.21电压填度调制器宏模型……(226)5.L.22电压对数放大器宏模型■■■(228)5.1,23N次根提取电路宏模型…(229)5.1.24拉氏变换宏模型…………………(232)5.2系统方程去模型…(232)52.]微分方程纤的积分型模拟法……………………………(232)5.2.2微分方程组的微分型模拟法………(236)5.23网络函数的Sice电路模型…(238)53非线性器件的Srie模型…………………,…………(246)5.3.1传感器件的Sice瞬念分析…:(246)5.3.2负值电慼和电容的Spie宏模型T?冒■T冒P250533运算放大器的Spe宏模型…………………(252第6章常用电路编程实刨…………………………………………………………(259)第7章 Spice的收斂问题(290)7.1什么是收敛问题鱼山d山血d血血dp血■■p甲1甲4·甲"qP+P290)7.2如何解决收敛问题……bdd■d…(290)7.2.]解次不收敛问题的思路……(290)7,2.2解决不收敛问题的可行力法…………(291)7.2-3解袂不收问题的条件参数和指令…(2927.3常见的错误信息…………甲甲司罪郾甲【即着L着4■■d·4画斗香山4·…(293)參考文献………………………(299)
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