This document provides guidelines and describes how to easily port S60 2nd Edition C++ applications to S60 3rd Edition. The document has been written based on experiences of porting regular S60 2nd Edition applications, such as the S60 Platform: POP/IMAP Example [4] that can be downloaded from Forum Nokia. Code snippets from the example are shown in Chapter 8, “Application build changes,” and in Appendix A, “Code example." In addition, Appendix B, "Commonly used functions that require capabilities," and Appendix C, "Commonly used interfaces that have been changed or removed," provide useful information on some frequently used functions and interfaces in third-party applications.
标签: application guidelines describes document
上传时间: 2017-01-29
上传用户:wang5829
We analyze, both analytically and numerically, the effectiveness of cloaking an infinite cylinder from observations by electromagnetic waves in three dimensions. We show that, as truncated approximations of the ideal permittivity and permeability tensors tend towards the singular ideal cloaking fields, so that the anisotropy ratio tends to infinity, the D and B fields blow up near the cloaking surface. Since the metamaterials used to implement cloaking are based on effective medium theory, the resulting large variation in D and B will pose a challenge to the suitability of the field averaged characterization of " and 碌. We also consider cloaking with and without the SHS (softand- hard surface) lining, shown in [6] to be theoretically necessary for cloaking in the cylindrical geometry. We demonstrate numerically that cloaking is significantly improved by the SHS lining, with both the far field of the scattered wave significantly reduced and the blow up of D and B prevented.
标签: effectiveness analytically numerically cloaking
上传时间: 2017-03-30
上传用户:zxc23456789
Creating barcodes in Microsoft庐 Office has never been easier. With BarCodeWiz Toolbar you can add barcodes to Microsoft庐 Office applications with a click of a button. In Microsoft庐 Word, create single barcodes, pages of labels, or mail merge documents. In Microsoft庐 Excel庐, select a range of cells and automatically convert each cell to a barcode. In Microsoft庐 Access庐, create reports with barcodes based on your data tables.
标签: BarCodeWiz Microsoft Creating barcodes
上传时间: 2013-12-18
上传用户:asddsd
JavaServer Faces (JSF) is the “offcial” component-based view technology in the Java EE web tier. JSF includes a set of predefned UI components, an event-driven programming model, and the ability to add third-party components. JSF is designed to be extensible, easy to use, and toolable. This refcard describes the JSF development process, standard JSF tags, the JSF expression language, and the faces-confg.xml confguration fle.
标签: component-based JavaServer technology the
上传时间: 2014-01-12
上传用户:songyue1991
A design about 8051 (running at 12MHz) based system with 3 7-Seg displays and two buttons to implement the following functions. 1. When press the + button, the display C = A+B. 2. When press the button, the display C = A - B. “A” and “B” are 8-bit inputs when “C” is 9-bit output.
上传时间: 2015-05-05
上传用户:guoxiy
This edition updates and continues the series of books based on the residential courses on radiowave propagation organised by the IEE/IET. The first course was held in 1974, with lectures by H. Page, P. Matthews, D. Parsons, M.W. Gough, P.A. Watson, E. Hickin, T. Pratt, P. Knight, T.B. Jones, P.A. Bradley, B. Burgess and H. Rishbeth.
标签: Propagation Radiowaves edition 3rd of
上传时间: 2020-05-31
上传用户:shancjb
STM32 F1系列 MCU ATIUM AD集成库 原理图库 PCB 3D封装库文件,STM32F1XXXXX全系列原理图+PCB封装库文件,共209个器件型号,CSV text has been written to file : STM32 F1.csvLibrary Component Count : 209Name Description----------------------------------------------------------------------------------------------------STM32F100C4T6B STM32 ARM-based 32-bit MCU Value Line with 16 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 48-Pin LQFP, TraySTM32F100C4T7B STM32 ARM-based 32-bit MCU Value Line with 16 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +105癈 Temperature, 48-Pin LQFP, TraySTM32F100C6T6B STM32 ARM-based 32-bit MCU Value Line with 32 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 48-Pin LQFP, TraySTM32F100C6T6BTR STM32 ARM-based 32-bit MCU Value Line with 32 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 48-Pin LQFP, Tape and ReelSTM32F100C6T7B STM32 ARM-based 32-bit MCU Value Line with 32 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +105癈 Temperature, 48-Pin LQFP, TraySTM32F100C8T6B STM32 ARM-based 32-bit MCU Value Line with 64 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 48-Pin LQFP, TraySTM32F100C8T6BTR STM32 ARM-based 32-bit MCU Value Line with 64 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 48-Pin LQFP, Tape and ReelSTM32F100CBT6B STM32 ARM-based 32-bit MCU Value Line with 128 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 48-Pin LQFP, TraySTM32F100CBT7B STM32 ARM-based 32-bit MCU Value Line with 128 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +105癈 Temperature, 48-Pin LQFP, TraySTM32F100R4H6B STM32 ARM-based 32-bit MCU Value Line with 16 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin TFBGA, TraySTM32F100R4T6B STM32 ARM-based 32-bit MCU Value Line with 16 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100R4T6BTR STM32 ARM-based 32-bit MCU Value Line with 16 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, Tape and ReelSTM32F100R6H6B STM32 ARM-based 32-bit MCU Value Line with 32 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin TFBGA, TraySTM32F100R6T6 STM32 ARM-based 32-bit MCU Value Line with 32 kB Flash, 4 kB Internal RAM, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100R6T6B STM32 ARM-based 32-bit MCU Value Line with 32 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100R6T6BTR STM32 ARM-based 32-bit MCU Value Line with 32 kB Flash, 4 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin TFBGA, Tape and ReelSTM32F100R8H6B STM32 ARM-based 32-bit MCU Value Line with 64 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin TFBGA, TraySTM32F100R8T6B STM32 ARM-based 32-bit MCU Value Line with 64 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100R8T6BTR STM32 ARM-based 32-bit MCU Value Line with 64 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, Tape and ReelSTM32F100RBH6B STM32 ARM-based 32-bit MCU Value Line with 128 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin TFBGA, TraySTM32F100RBH6BTR STM32 ARM-based 32-bit MCU Value Line with 128 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin TFBGA, Tape and ReelSTM32F100RBT6B STM32 ARM-based 32-bit MCU Value Line with 128 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100RBT6BTR STM32 ARM-based 32-bit MCU Value Line with 128 kB Flash, 8 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, Tape and ReelSTM32F100RCT6B STM32 ARM-based 32-bit MCU Value Line with 256 kB Flash, 24 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100RDT6 STM32 ARM-based 32-bit MCU Value Line with 384 kB Flash, 32 kB Internal RAM, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100RDT6B STM32 ARM-based 32-bit MCU Value Line with 384 kB Flash, 32 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100RET6 STM32 ARM-based 32-bit MCU Value Line with 512 kB Flash, 32 kB Internal RAM, -40 to +85癈 Temperature, 64-Pin LQFP, TraySTM32F100RET6B STM32 ARM-based 32-bit MCU Value Line with 512 kB Flash, 32 kB Internal RAM, Internal Code B, -40 to +85癈 Temperature, 64-
上传时间: 2022-04-30
上传用户:jiabin
ASP.NET.2.0.XML.高级编程(第3版)
上传时间: 2013-06-26
上传用户:eeworm
近年来,随着多媒体技术、计算机网络与通信技术的的快速发展,传统的监控系统也不断向着新的发展方向进行着不断的更新与发展。进而随着嵌入式技术的出现以及人们对降低监控系统成本和提高可靠性的迫切需求,基于嵌入式系统的网络视频监控系统将成为新的研发热点。 本文的目的是把嵌入式技术与计算机网络技术相结合,构造一个性能稳定且具有较强处理能力的数字化远程视频监控系统。该监控系统以嵌入式Linux系统平台作为服务器端,服务器程序在其上以后台方式运行,等待监控系统环境中的客户机使用浏览器向其发送访问请求,实现在局域网乃至Internet网上对摄像头的远程控制。 文中把系统设计分为三大部分:系统硬件设计、嵌入式Linux在硬件平台的实现和系统软件设计。硬件设计部分首先提出了整个硬件系统的实现方案,接着详细介绍了S3C2410处理器与存储器、以太网控制器芯片以及USB和串口的接口电路设计;第二部分详细叙述了嵌入式Linux在本系统硬件平台的移植实现及应用程序的开发特点,重点讲述了本系统平台上Linux的引导加载程序Bootloader的设计过程;系统软件部分首先介绍了USB接口摄像头驱动在嵌入式Linux下的实现,重点讲述了Video4Linux下视频采集的实现,接着论述了如何实现图像的JPEG压缩,最后针对基于B/S模式的网络通信系统结构,详细阐述了网络通信的具体实现过程和方法。 最后在办公室局域网通过对系统测试,显示了系统运行结果,实现了利用局域网或Internet网对远程环境进行监控的功能。
上传时间: 2013-07-04
上传用户:lgnf
永磁同步发电机由于一系列高效节能的优点,在工农业生产、航空航天、国防和日常生活中得到广泛应用,并且受到许多学者的关注,其研究领域主要涉及永磁同步发电机的设计、精确性能分析、控制等方面。 本课题作为国家自然科学基金项目《无刷无励磁机谐波励磁的混合励磁永磁电机的研究》的课题,主要研究永磁电机的电磁场空载和负载计算,求出永磁电机的电压波形和电压调整率,为分段式转子的混合励磁永磁电机的研究奠定基础,主要做了以下工作: 首先介绍了永磁同步发电机的基本原理,包括永磁同步发电机的结构形式和永磁同步发电机的运行性能,采用传统解析理论给出了电压调整率的计算方法及外特性的计算模型;然后用有限元ANSYS对永磁同步发电机样机进行实体建模,经过定义分配材料、划分网格、加边界条件和载荷、求解计算等,得到矢量磁位Az、磁场强度H、磁感应强度B等结果,直观地看出电机内部的磁场分布情况。 其次根据电磁场计算结果,应用齿磁通法对其进行后处理。该方法求解转子在一个齿距内不同位置处的磁场,以定子齿的磁通为计算单位,根据绕组与齿的匝链关系,计算出磁链随时间的变化,进而得到永磁同步发电机空、负载时电压大小及波形。通过计算结果写实验结果对比,验证了齿磁通法的正确性,为计算永磁同步发电机各种性能特性提供有力工具。 最后,基于齿磁通法对永磁同步发电机的外特性进行了深入研究,定量分析了结构参数对外特性的影响规律,提出了有效降低电压调整率的方法的是:增加气隙长度g的同时,适当增加永磁体的磁化方向的长度hm;此外,要尽量的减少每相串联匝数N和增大导线面积以减小阻抗参数。通过改变电机的结构参数,对其电磁场进行计算,找到永磁电机电压调整率的变化规律,为加电励磁的混合励磁永磁电机做准备,达到稳定输出电压的目的。
上传时间: 2013-04-24
上传用户:15853744528