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  • You can call MsgBoxEx instead of MsgBox MsgBoxEx will return the same vbMsgBoxResults as MsgBox, b

    You can call MsgBoxEx instead of MsgBox MsgBoxEx will return the same vbMsgBoxResults as MsgBox, but adds the frm, Left, and Top parameters.

    标签: MsgBoxEx MsgBox vbMsgBoxResults instead

    上传时间: 2013-12-22

    上传用户:zycidjl

  • The XML Toolbox converts MATLAB data types (such as double, char, struct, complex, sparse, logical)

    The XML Toolbox converts MATLAB data types (such as double, char, struct, complex, sparse, logical) of any level of nesting to XML format and vice versa. For example, >> project.name = MyProject >> project.id = 1234 >> project.param.a = 3.1415 >> project.param.b = 42 becomes with str=xml_format(project, off ) "<project> <name>MyProject</name> <id>1234</id> <param> <a>3.1415</a> <b>42</b> </param> </project>" On the other hand, if an XML string XStr is given, this can be converted easily to a MATLAB data type or structure V with the command V=xml_parse(XStr).

    标签: converts Toolbox complex logical

    上传时间: 2016-02-12

    上传用户:a673761058

  • This material is not only up-to-date, it defines up-to-date. It is truly cutting-edge. As the only b

    This material is not only up-to-date, it defines up-to-date. It is truly cutting-edge. As the only book on the subject, Rootkits will be of interest to any Windows security researcher or security programmer. It s detailed, well researched and the technical information is excellent. The level of technical detail, research, and time invested in developing relevant examples is impressive.

    标签: up-to-date only cutting-edge material

    上传时间: 2017-07-09

    上传用户:comua

  • Computing and the way people use C for doing it keeps changing as years go by. So overwhelming has b

    Computing and the way people use C for doing it keeps changing as years go by. So overwhelming has been the response to all the previous editions of “Let Us C” that I have now decided that each year I would come up with a new edition of it so that I can keep the readers abreast with the way C is being used at that point in time.

    标签: overwhelming Computing changing people

    上传时间: 2013-12-23

    上传用户:epson850

  • sd asd ad as das asd sa dasd as dasd asd as dad asd as dsad adsa

    sd asd ad as das asd sa dasd as dasd asd as dad asd as dsad adsa

    标签: asd as dasd adsa

    上传时间: 2013-12-18

    上传用户:hongmo

  • 电子产品老化相关资料及标准合集

    GBT2423.51-2000 电工电子产品环境试验第2部分 试验方法试验ke 流动混合气体腐蚀试验.pdf 535KB2019-03-29 13:34 GBT2423.50-1999 电工电子产品环境试验第2部分 试验方法试验cy 恒定湿热主要用于元件的加速试验.pdf 319KB2019-03-29 13:34 GBT2423.49-1997 电工电子产品环境试验第2部分 试验方法试验fe 振动--正弦拍频法.pdf 832KB2019-03-29 13:34 GBT2423.48-1997 电工电子产品环境试验第2部分 试验方法试验ff 振动--时间历程法.pdf 708KB2019-03-29 13:34 GBT2423.47-1997 电工电子产品环境试验第2部分 试验方法试验fg 声振.pdf 773KB2019-03-29 13:34 GBT2423.46-1997 电工电子产品环境试验第2部分:试验方法试验ef:撞击摆锤.pdf 423KB2019-03-29 13:34 GBT2423.45-1997 电工电子产品环境试验第2部分:试验方法试验zabdm:气候顺序.pdf 418KB2019-03-29 13:34 GBT2423.44-1995 电工电子产品环境试验第二部分 试验方法试验eg 撞击弹簧锤.pdf 356KB2019-03-29 13:34 GBT2423.43-1995 电工电子产品环境试验第二部分 试验方法元件、设备和其他产品在冲击,碰撞,振动,和稳态加速度,等动力学试验中的安装要求和导则.pdf 496KB2019-03-29 13:34 GBT2423.42-1995 工电子产品环境试验低温低气压振动(正弦)综合试验方法.pdf 246KB2019-03-29 13:34 GBT2423.41-1994 电工电子产品基本环境试验规程风压试验方法.pdf 213KB2019-03-29 13:34 GBT2423.40-1997 电工电子产品环境试验第2部分试验方法试验cx 未饱和高压蒸汽恒定湿热.pdf 532KB2019-03-29 13:34 GBT2423.39-1990 电工电子产品基本环境试验规程试验ee 弹跳试验方法.pdf 331KB2019-03-29 13:34 GBT2423.38-1990 电工电子产品基本环境试验规程试验r 水试验方法.pdf 357KB2019-03-29 13:34 GBT2423.37-1989 电工电子产品基本环境试验规程试验l砂尘试验方法.pdf 236KB2019-03-29 13:34 GBT2423.36-1986 电工电子产品基本环境试验规程试验zbfc 散热和非散热样品的高温振动(正弦)综合试验方法.pdf 273KB2019-03-29 13:34 GBT2423.35-1986 电工电子产品基本环境试验规程试验zafc 散热和非散热试验样品的低温振动(正弦)综合试验方法.pdf 270KB2019-03-29 13:34 GBT2423.34-1986 电工电子产品基本环境试验规程试验zad 温度湿度组合循环试验方法.pdf 290KB2019-03-29 13:34 GBT2423.33-1989 电工电子产品基本环境试验规程试验kca 高浓度二氧化硫试验方法.pdf 146KB2019-03-29 13:34 GBT2423.32-1985 电工电子产品基本环境试验规程润湿称量法可焊性试验方法.pdf 172KB2019-03-29 13:34 GBT2423.31-1985 电工电子产品基本环境试验规程倾斜和摇摆试验方法.pdf 143KB2019-03-29 13:34 GBT2423.30-1999 电工电子产品环境试验第2部分试验方法试验xa 和导则在清洗剂中浸渍.pdf 104KB2019-03-29 13:34 GBT2423.29-1999 电工电子产品环境试验第2部分试验方法试验u 引出端及整体安装件强度.pdf 421KB2019-03-29 13:34 GBT2423.28-1982 电工电子产品基本环境试验规程试验t 锡焊试验方法.pdf 697KB2019-03-29 13:34 GBT2423.27-1981 电工电子产品基本环境试验规程试验zamd 低温低气压湿热连续综合试验方法.pdf 128KB2019-03-29 13:34 GBT2423.26-1992 电工电子产品基本环境试验规程试验zbm 高温低气压综合试验.pdf 211KB2019-03-29 13:34 GBT2423.25-1992 电工电子产品基本环境试验规程试验zam 低温低气压综合试验.pdf 202KB2019-03-29 13:34 GBT2423.24-1995 电工电子产品环境试验第二部分 试验方法试验sa 模拟地面上的太阳辐射.pdf 176KB2019-03-29 13:34 GBT2423.23-1995 电工电子产品环境试验试验q 密封.pdf 1.2M2019-03-29 13:34 GBT2423.22-2002 电工电子产品环境试验第2部分试验方法试验n 温度变化.pdf 302KB2019-03-29 13:34 GBT2423.21-1991 电工电子产品基本环境试验规程试验m 低气压试验方法.pdf 107KB2019-03-29 13:34 GBT2423.20-1981 电工电子产品基本环境试验规程试验kd 接触点和连接件的硫化氢试验方法.pdf 140KB2019-03-29 13:34 GBT2423.19-1981 电工电子产品基本环境试验规程试验kc 接触点和连接件的二氧化硫试验方法.pdf 145KB2019-03-29 13:34 GBT2423.18-2000 电工电子产品环境试验第二部分 试验--试验kb 盐雾,交变(氯化钠溶液).pdf 163KB2019-03-29 13:34 GBT2423.17-1993 电工电子产品基本环境试验规程试验ka 盐雾试验方法.pdf 105KB2019-03-29 13:34 GBT2423.16-1999 电工电子产品环境试验第2部分 试验方法试验j和导则长霉.pdf 531KB2019-03-29 13:34 GBT2423.15-1995 电工电子产品环境试验第2部分 试验方法试验ga和导则稳态加速度.pdf 297KB2019-03-29 13:34 GBT2423.14-1997 电工电子产品环境试验第2部分 试验方法试验fdc宽频带随机振动低再现性.pdf 444KB2019-03-29 13:34 GBT2423.13-1997 电工电子产品环境试验第2部分 试验方法试验fdb宽频带随机振动中再现性.pdf 805KB2019-03-29 13:34 GBT2423.12-1997 电工电子产品环境试验第2部分 试验方法试验fda宽频带随机振动--高再现性.pdf 842KB2019-03-29 13:34 GBT2423.11-1997 电工电子产品环境试验第2部分 试验方法试验fd宽频带随机振动--一般要求 .pdf 635KB2019-03-29 13:34 GBT2423.10-1995 电工电子产品环境试验第2部分 试验方法试验fc和导则振动(正弦).pdf 1M2019-03-29 13:34 GBT2423.09-2001 电工电子产品环境试验第2部分 试验方法试验cb设备用恒定湿热.pdf 149KB2019-03-29 13:34 GBT2423.08-1995 电工电子产品环境试验第2部分 试验方法试验ed自由跌落.pdf 301KB2019-03-29 13:34 GBT2423.07-1995 电工电子产品环境试验第2部分 试验方法试验ec和导则倾跌与翻倒(主要用于设备型样品).pdf 237KB2019-03-29 13:34 GBT2423.06-1995 电工电子产品环境试验第2部分 试验方法试验eb和导则:碰撞.pdf 545KB2019-03-29 13:34 GBT2423.05-1995 电工电子产品环境试验第2部分:试验方法试验ea和导则冲击.pdf 892KB2019-03-29 13:34 GBT2423.04-1993 电工电子产品基本环境试验规程试验db 交变湿热试验方法.pdf 192KB2019-03-29 13:34 GBT2423.03-1993 电工电子产品基本环境试验规程试验ca 恒定湿热试验方法.pdf 124KB2019-03-29 13:34 GBT2423.02-2001 电工电子产品环境试验第2部分 试验方法试验b高温.pdf 744KB2019-03-29 13:34 GBT2423.01-2001 电工电子产品环境试验第2部分 试验方法试验a低温.pdf 499KB2019-03-29 13:34 GB2421-89 电工电子产品基本环境试验规程总则.pdf

    标签: 线切割 机床加工 角度 零件

    上传时间: 2013-06-08

    上传用户:eeworm

  • 基于自适应时频分析方法的心音信号分析研究.rar

    心音信号是人体最重要的生理信号之一,包含心脏各个部分如心房、心室、大血管、心血管及各个瓣膜功能状态的大量生理病理信息。心音信号分析与识别是了解心脏和血管状态的一种不可缺少的手段。本文针对目前该研究领域中存在的分析方法问题和分类识别技术难点展开了深入的研究,内容涉及心音构成的分析、心音信号特征向量的提取、正常心音信号(NM)和房颤(AF)、主动脉回流(AR)、主动脉狭窄(AS)、二尖瓣回流(MR)4种心脏杂音信号的分类识别。本文的工作内容包括以下5个方面: a)心音信号采集与预处理。本文采用自行研制的带有录音机功能的听诊器实现对心音信号的采集。通过对心音信号噪声分析,选用小波降噪作为心音信号的滤波方法。根据实验分析,选择Donoho阈值函数结合多级阈值的方法作为心音信号预处理方案。 b)心音信号时频分析方法。文中采用5种时频分析方法分别对心音信号进行了时频谱特性分析,结果表明:不同的时频分析方法与待分析心音信号的特性有密切关系,即需要在小的交叉项干扰与高的时频分辨率之间作综合的考虑。鉴于此,本文提出了一种自适应锥形核时频(ATF)分析方法,通过实验验证该分布能较好地反映心音信号的时频结构,其性能优于一般锥形核分布(CKD)以及Choi-Williams分布(CWD)、谱图(SPEC)等固定核时频分析方法,从而选择自应锥形核时频分析方法进行心音信号分析。 c)心音信号特征向量提取。根据对3M Littmann() Stethoscopes[31]数据库中标准心音信号的时频分析结果,提取8组特征数据,通过Fihser降维处理方法提取出了实现分类可视化,且最易于分类的心音信号的2维特征向量,作为心音信号分类的特征向量。 d)心音信号分类方法。根据心音信号特征向量组成的散点图,研究了支持向量机核函数、多分类支持向量机的选取方法,同时,基于分类的目的 性和可信性,本文提出以分类精度最大为判断准则的核函数参数与松弛变量的优化方法,建立了心音信号分类的支持向量机模型,选取标准数据库中NM、AF、AR、AS、MR每类心音信号的80组2维特征向量中每类60组数据作为支持向量机的学习样本,对余下的每类20组数据进行测试,得到每类的分类精度(Ar)均为100%,同时对临床上采集的与上述4种同类心脏杂音信号和正常心音信号中每类24个心动周期进行分类实测,分类精度分别为:NM、AF、MR的分类精度均为100%,而AR、AS均为95.83%,验证了该方法的分类有效性。 e)心音信号分析与识别的软件系统。本文以MATLAB语言的可视化功能实现了心音信号分析与识别的软件运行平台构建,可完成对心音信号的读取、预处理,绘制时-频、能量特性的三维图及两维等高线图;同时,利用MATLAB与EXCEL的动态链接,实现对心音信号分析数据的存储以及统计功能;最后,通过对心音信号2维特征向量的分析,实现心音信号的自动识别功能。 本文的研究特色主要体现在心音信号特征向量提取的方法以及多分类支持向量机模型的建立两方面。 综上所述,本文从理论与实践两方面对心音信号进行了深入的研究,主要是采用自适应锥形核时频分析方法提取心音信号特征向量,根据心音信号特征向量组成的散点图,建立心音信号分类的支持向量机模型,并对正常心音信号和4种心脏杂音信号进行了分类研究,取得了较为满意的分类结果,但由于用于分类的心脏杂音信号种类及数据量尚不足,因此,今后的工作重点是采集更多种类的心脏杂音信号,进一步提高心音信号分类精度,使本文研究成果能最终应用于临床心脏量化听诊。 关键词:心音信号,小波降噪,非平稳信号,心脏杂音,信号处理,时频分析,自适应,支持向量机

    标签: 时频 分析方法

    上传时间: 2013-04-24

    上传用户:weixiao99

  • PCA9549 Octal bus switch with

    The PCA9549 provides eight bits of high speed TTL-compatible bus switching controlledby the I2C-bus. The low ON-state resistance of the switch allows connections to be madewith minimal propagation delay. Any individual A to B channel or combination of channelscan be selected via the I2C-bus, determined by the contents of the programmable Controlregister. When the I2C-bus bit is HIGH (logic 1), the switch is on and data can flow fromPort A to Port B, or vice versa. When the I2C-bus bit is LOW (logic 0), the switch is open,creating a high-impedance state between the two ports, which stops the data flow.An active LOW reset input (RESET) allows the PCA9549 to recover from a situationwhere the I2C-bus is stuck in a LOW state. Pulling the RESET pin LOW resets the I2C-busstate machine and causes all the bits to be open, as does the internal power-on resetfunction.

    标签: switch Octal 9549 with

    上传时间: 2014-11-22

    上传用户:xcy122677

  • Input Signal Rise and Fall Tim

    All inputs of the C16x family have Schmitt-Trigger input characteristics. These Schmitt-Triggers are intended to always provide proper internal low and high levels, even if anundefined voltage level (between TTL-VIL and TTL-VIH) is externally applied to the pin.The hysteresis of these inputs, however, is very small, and can not be properly used in anapplication to suppress signal noise, and to shape slow rising/falling input transitions.Thus, it must be taken care that rising/falling input signals pass the undefined area of theTTL-specification between VIL and VIH with a sufficient rise/fall time, as generally usualand specified for TTL components (e.g. 74LS series: gates 1V/us, clock inputs 20V/us).The effect of the implemented Schmitt-Trigger is that even if the input signal remains inthe undefined area, well defined low/high levels are generated internally. Note that allinput signals are evaluated at specific sample points (depending on the input and theperipheral function connected to it), at that signal transitions are detected if twoconsecutive samples show different levels. Thus, only the current level of an input signalat these sample points is relevant, that means, the necessary rise/fall times of the inputsignal is only dependant on the sample rate, that is the distance in time between twoconsecutive evaluation time points. If an input signal, for instance, is sampled throughsoftware every 10us, it is irrelevant, which input level would be seen between thesamples. Thus, it would be allowable for the signal to take 10us to pass through theundefined area. Due to the sample rate of 10us, it is assured that only one sample canoccur while the signal is within the undefined area, and no incorrect transition will bedetected. For inputs which are connected to a peripheral function, e.g. capture inputs, thesample rate is determined by the clock cycle of the peripheral unit. In the case of theCAPCOM unit this means a sample rate of 400ns @ 20MHz CPU clock. This requiresinput signals to pass through the undefined area within these 400ns in order to avoidmultiple capture events.For input signals, which do not provide the required rise/fall times, external circuitry mustbe used to shape the signal transitions.In the attached diagram, the effect of the sample rate is shown. The numbers 1 to 5 in thediagram represent possible sample points. Waveform a) shows the result if the inputsignal transition time through the undefined TTL-level area is less than the time distancebetween the sample points (sampling at 1, 2, 3, and 4). Waveform b) can be the result ifthe sampling is performed more than once within the undefined area (sampling at 1, 2, 5,3, and 4).Sample points:1. Evaluation of the signal clearly results in a low level2. Either a low or a high level can be sampled here. If low is sampled, no transition willbe detected. If the sample results in a high level, a transition is detected, and anappropriate action (e.g. capture) might take place.3. Evaluation here clearly results in a high level. If the previous sample 2) had alreadydetected a high, there is no change. If the previous sample 2) showed a low, atransition from low to high is detected now.

    标签: Signal Input Fall Rise

    上传时间: 2013-10-23

    上传用户:copu

  • MPC7400l零件号码规范说明

    This document describes part number speciÞc changes to recommended operating conditions and revised electrical speciÞcations,as applicable, from those described in the generalMPC7400 Hardware SpeciÞcations.SpeciÞcations provided in this Part Number SpeciÞcation supersede those in theMPC7400 Hardware SpeciÞcationsdated 9/99(order #: MPC7400EC/D) for these part numbers only; speciÞcations not addressed herein are unchanged. This document isfrequently updated, refer to the website at http://www.mot.com/SPS/PowerPC/ for the latest version.Note that headings and table numbers in this data sheet are not consecutively numbered. They are intended to correspond to theheading or table affected in the general hardware speciÞcation.Part numbers addressed in this document are listed in Table A. For more detailed ordering information see Table B.

    标签: 7400l 7400 MPC 零件

    上传时间: 2013-11-19

    上传用户:qiaoyue