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table

table是一个数据库控件,[1]主要用于在web页面上创建表格,其功能与Htmltable类似。不同的是,table控件可以用动态的内容以编程的方式来生成表格。
  • 1602数字时钟

    # include < reg52.h > # include < 24C02.h> # define uint unsigned int # define uchar unsigned char   sbit rs = P3^5;  //定义lcd1602的rs端 sbit lcden = P3^4;//定义lcd1602的lcden端口 sbit s1 = P3^0;//定义功能键s1 sbit s2 = P3^1;//定义功能键s2 sbit s3 = P3^2;//定义功能键s3   sbit beep = P2^3;//定义蜂鸣器   uchar count, s1num; char miao,fen,shi; uchar code table[] = "Designer:X_ZL ";//定义初始上电时液晶默认显示状态     void delay_ms( xms )   //定义延时函数 { uint i,j; for( i = xms ; i > 0 ; i --) for( j = 110 ; j > 0 ; j --); }  

    标签: 1602 数字时钟程序

    上传时间: 2016-07-28

    上传用户:游戏好吗

  • CCS样式选择符设计

    CCS样式选择符,初学者,设计,DW,网页制作,大一作业 部分预览: <!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Transitional//EN" "http://www.w3.org/TR/xhtml1/DTD/xhtml1-transitional.dtd"> <html xmlns="http://www.w3.org/1999/xhtml"> <head> <meta http-equiv="Content-Type" content="text/html; charset=utf-8" /> <title>CSS样式选择符</title> <style type="text/css">  body  { background-image:url(images/%E8%83%8C%E6%99%AF%E5%9B%BE%E7%89%87.jpg); background-repeat:repeat;  }    .class1  { text-align:center; font-weight:bolder;  }  .class2  { font-family:"仿宋"; text-indent:8em;  }    .class3  { font-size:18px; font-family:"宋体"; text-indent:4em;  }    #id1  { font-family:Zombie, Verdana, "Comic Sans MS"; font-style:oblique; font-size:64px;  }    #id2  { font-family:"黑体"; font-size:36px;  }  #id3  { color:#F69; font-weight:bolder; text-shadow:#FCC;  } </style> </head> <body>  <table width="780" height="1555" border="0" cellspacing="0" align="center" bgcolor="#FFFFFF">   <tr height="30">    <td align="center"><img src="images/顶部图片.jpg" /></td>   </tr>

    标签: CCS 网页设计

    上传时间: 2017-12-07

    上传用户:圈圈Ace

  • MSP430G2553

    DESCRIPTION The Texas Instruments MSP430 family of ultra-low-power microcontrollers consists of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with five low-power modes, is optimized to achieve extended battery life in portable measurement applications. The device features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows wake-up from low-power modes to active mode in less than 1 μs. The MSP430G2x13 and MSP430G2x53 series are ultra-low-power mixed signal microcontrollers with built-in 16- bit timers, up to 24 I/O capacitive-touch enabled pins, a versatile analog comparator, and built-in communication capability using the universal serial communication interface. In addition the MSP430G2x53 family members have a 10-bit analog-to-digital (A/D) converter. For configuration details see table 1. Typical applications include low-cost sensor systems that capture analog signals, convert them to digital values, and then process the data for display or for transmission to a host system.

    标签: G2553 2553 430G MSP 430

    上传时间: 2018-12-25

    上传用户:ygyh

  • python爬虫获取大量免费有效代理ip--有效防止ip被封

    以后再也不用担心写爬虫ip被封,不用担心没钱买代理ip的烦恼了 在使用python写爬虫时候,你会遇到所要爬取的网站有反爬取技术比如用同一个IP反复爬取同一个网页,很可能会被封。如何有效的解决这个问题呢?我们可以使用代理ip,来设置代理ip池。 现在教大家一个可获取大量免费有效快速的代理ip方法,我们访问西刺免费代理ip网址 这里面提供了许多代理ip,但是我们尝试过后会发现并不是每一个都是有效的。所以我们现在所要做的就是从里面提供的筛选出有效快速稳定的ip。 以下介绍的免费获取代理ip池的方法: 优点:免费、数量多、有效、速度快 缺点:需要定期筛选 主要思路: 从网址上爬取ip地址并存储 验证ip是否能使用-(随机访问网址判断响应码) 格式化ip地址 代码如下: 1.导入包 import requests from lxml import etree import time 1 2 3 2.获取西刺免费代理ip网址上的代理ip def get_all_proxy():     url = 'http://www.xicidaili.com/nn/1'     headers = {         'User-Agent': 'Mozilla/5.0 (Windows NT 6.1; Win64; x64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/68.0.3440.106 Safari/537.36',     }     response = requests.get(url, headers=headers)     html_ele = etree.HTML(response.text)     ip_eles = html_ele.xpath('//table[@id="ip_list"]/tr/td[2]/text()')     port_ele = html_ele.xpath('//table[@id="ip_list"]/tr/td[3]/text()')     proxy_list = []     for i in range(0,len(ip_eles)):         proxy_str = 'http://' + ip_eles[i] + ':' + port_ele[i]         proxy_list.append(proxy_str)     return proxy_list 1 2 3 4 5 6 7 8 9 10 11 12 13 14 3.验证获取的ip def check_all_proxy(proxy_list):     valid_proxy_list = []     for proxy in proxy_list:         url = 'http://www.baidu.com/'         proxy_dict = {             'http': proxy         }         try:             start_time = time.time()             response = requests.get(url, proxies=proxy_dict, timeout=5)             if response.status_code == 200:                 end_time = time.time()                 print('代理可用:' + proxy)                 print('耗时:' + str(end_time - start_time))                 valid_proxy_list.append(proxy)             else:                 print('代理超时')         except:             print('代理不可用--------------->'+proxy)     return valid_proxy_list 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 4.输出获取ip池 if __name__ == '__main__':     proxy_list = get_all_proxy()     valid_proxy_list = check_all_proxy(proxy_list)     print('--'*30)     print(valid_proxy_list) 1 2 3 4 5 技术能力有限欢迎提出意见,保证积极向上不断学习 ———————————————— 版权声明:本文为CSDN博主「彬小二」的原创文章,遵循 CC 4.0 BY-SA 版权协议,转载请附上原文出处链接及本声明。 原文链接:https://blog.csdn.net/qq_39884947/article/details/86609930

    标签: python ip 代理 防止

    上传时间: 2019-11-15

    上传用户:fygwz1982

  • 1 Seismic response control using electromagnetic

    This paper presents a new type of electromagnetic damper with rotating inertial mass that has been devel oped to control the vibrations of structures subjected to earthquakes. The electromagnetic inertial mass damper (EIMD) consists of a ball screw that converts axial oscillation of the rod end into rotational motion of the internal flflywheel and an electric generator that is turned by the rotation of the inner rod. The EIMD is able to generate a large inertial force created by the rotating flflywheel and a variable damping force devel oped by the electric generator. Device performance tests of reduced-scale and full-scale EIMDs were under taken to verify the basic characteristics of the damper and the validity of the derived theoretical formulae. Shaking table tests of a three-story structure with EIMDs and earthquake response analyses of a building with EIMDs were conducted to demonstrate the seismic response control performance of the EIMD. The EIMD is able to reduce story drifts as well as accelerations and surpasses conventional types of dampers in reducing acceleration responses.

    标签: electromagnetic response Seismic control using

    上传时间: 2021-11-04

    上传用户:a1293065

  • Code Craft: the practice of writing excellent code

    This book addresses programmer attitudes, but it’s not some kind of psychology textbook. We’ll investigate many topics, including: Source code presentation Defensive coding techniques How to debug programs effectively Good teamworking skills Managing your source code Take a quick glance through the table of contents to see exactly what’s covered. What is the rationale behind my selection of topics? I’ve been mentor- ing trainee programmers for many years, and these are the topics that have come up time and time again. I’ve also worked in the software factory for long enough to have seen the recurring problems—I address these too. If you can conquer all of these programming demons, you’ll progress from an apprentice coder to a real code craftsman.

    标签: excellent practice writing Craft Code code the of

    上传时间: 2021-11-09

    上传用户:danix800

  • 矩阵式键盘

    include<reg52.h> #define uint unsigned int #define uchar unsigned char uint temp,aa,wang,qian,bai,shi,ge; sbit dula=P2^6; sbit wela=P2^7; uchar code table[]={ 0x3f,0x06,0x5b,0x4f, 0x66,0x6d,0x7d,0x07, 0x7f,0x6f,0x77,0x7c, 0x39,0x5e,0x79,0x71}; void display( uint wang,uint qian,uint bai,uint shi,uint ge); void delay(uint z); void init(); void main() { init();//初始化子程序 while(1) { if(aa==20)   { aa=0; temp++; if(temp==99999)    { temp=0;    } wang=temp/10000; qian=(temp-wang*10000)/1000; bai=(temp-wang*10000-qian*1000)/100; shi=(temp-wang*10000-qian*1000-bai*100)/10; ge=temp%10;   } display(wang,qian, bai,shi,ge); } }   void delay(uint z) { uint x,y; for(x=z;x>0;x--) for(y=110;y>0;y--); }   void display(uint wang,uint qian,uint bai,uint shi,uint ge) {         dula=1; P0=table[wang]; dula=0; P0=0xff; wela=1; P0=0xfe; wela=0; delay(1);   dula=1; P0=table[qian]; dula=0; P0=0xff; wela=1; P0=0xfd; wela=0; delay(1);           dula=1; P0=table[bai]; dula=0; P0=0xff; wela=1; P0=0xfb; wela=0; delay(1);   dula=1; P0=table[shi]; dula=0; P0=0xff; wela=1; P0=0xf7; wela=0; delay(1);   dula=1; P0=table[ge]; dula=0; P0=0xff; wela=1; P0=0xef; wela=0; delay(1); }   void init() { wela=0; dula=0; temp=0; TMOD=0x01; TH0=(65536-50000)/256; TL0=(65536-50000)%256; EA=1; ET0=1; TR0=1; }   void timer0() interrupt 1 { TH0=(65536-50000)/256; TL0=(65536-50000)%256; aa++; } include<reg52.h> #define uint unsigned int #define uchar unsigned char uint temp,aa,wang,qian,bai,shi,ge; sbit dula=P2^6; sbit wela=P2^7; uchar code table[]={ 0x3f,0x06,0x5b,0x4f, 0x66,0x6d,0x7d,0x07, 0x7f,0x6f,0x77,0x7c, 0x39,0x5e,0x79,0x71}; void display( uint wang,uint qian,uint bai,uint shi,uint ge); void delay(uint z); void init(); void main() { init();//初始化子程序 while(1) { if(aa==20)   { aa=0; temp++; if(temp==99999)    { temp=0;    } wang=temp/10000; qian=(temp-wang*10000)/1000; bai=(temp-wang*10000-qian*1000)/100; shi=(temp-wang*10000-qian*1000-bai*100)/10; ge=temp%10;   } display(wang,qian, bai,shi,ge); } }   void delay(uint z) { uint x,y; for(x=z;x>0;x--) for(y=110;y>0;y--); }   void display(uint wang,uint qian,uint bai,uint shi,uint ge) {         dula=1; P0=table[wang]; dula=0; P0=0xff; wela=1; P0=0xfe; wela=0; delay(1);   dula=1; P0=table[qian]; dula=0; P0=0xff; wela=1; P0=0xfd; wela=0; delay(1);           dula=1; P0=table[bai]; dula=0; P0=0xff; wela=1; P0=0xfb; wela=0; delay(1);   dula=1; P0=table[shi]; dula=0; P0=0xff; wela=1; P0=0xf7; wela=0; delay(1);   dula=1; P0=table[ge]; dula=0; P0=0xff; wela=1; P0=0xef; wela=0; delay(1); }   void init() { wela=0; dula=0; temp=0; TMOD=0x01; TH0=(65536-50000)/256; TL0=(65536-50000)%256; EA=1; ET0=1; TR0=1; }   void timer0() interrupt 1 { TH0=(65536-50000)/256; TL0=(65536-50000)%256; aa++; } include<reg52.h> #define uint unsigned int #define uchar unsigned char uint temp,aa,wang,qian,bai,shi,ge; sbit dula=P2^6; sbit wela=P2^7; uchar code table[]={ 0x3f,0x06,0x5b,0x4f, 0x66,0x6d,0x7d,0x07, 0x7f,0x6f,0x77,0x7c, 0x39,0x5e,0x79,0x71}; void display( uint wang,uint qian,uint bai,uint shi,uint ge); void delay(uint z); void init(); void main() { init();//初始化子程序 while(1) { if(aa==20)   { aa=0; temp++; if(temp==99999)    { temp=0;    } wang=temp/10000; qian=(temp-wang*10000)/1000; bai=(temp-wang*10000-qian*1000)/100; shi=(temp-wang*10000-qian*1000-bai*100)/10; ge=temp%10;   } display(wang,qian, bai,shi,ge); } }   void delay(uint z) { uint x,y; for(x=z;x>0;x--) for(y=110;y>0;y--); }   void display(uint wang,uint qian,uint bai,uint shi,uint ge) {         dula=1; P0=table[wang]; dula=0; P0=0xff; wela=1; P0=0xfe; wela=0; delay(1);   dula=1; P0=table[qian]; dula=0; P0=0xff; wela=1; P0=0xfd; wela=0; delay(1);           dula=1; P0=table[bai]; dula=0; P0=0xff; wela=1; P0=0xfb; wela=0; delay(1);   dula=1; P0=table[shi]; dula=0; P0=0xff; wela=1; P0=0xf7; wela=0; delay(1);   dula=1; P0=table[ge]; dula=0; P0=0xff; wela=1; P0=0xef; wela=0; delay(1); }   void init() { wela=0; dula=0; temp=0; TMOD=0x01; TH0=(65536-50000)/256; TL0=(65536-50000)%256; EA=1; ET0=1; TR0=1; }   void timer0() interrupt 1 { TH0=(65536-50000)/256; TL0=(65536-50000)%256; aa++; }

    标签: 矩阵式键盘

    上传时间: 2021-12-18

    上传用户:2590813506

  • DDR4标准 JESD79_4

    1. Scope ......................................................................................................................................................................... 12. DDR4 SDRAM Package Pinout and Addressing ....................................................................................................... 22.1 DDR4 SDRAM Row for X4,X8 and X16 ................................................................................................................22.2 DDR4 SDRAM Ball Pitch........................................................................................................................................22.3 DDR4 SDRAM Columns for X4,X8 and X16 ..........................................................................................................22.4 DDR4 SDRAM X4/8 Ballout using MO-207......................................................................................................... 22.5 DDR4 SDRAM X16 Ballout using MO-207.............................................................................................................32.6 Pinout Description ..................................................................................................................................................52.7 DDR4 SDRAM Addressing.....................................................................................................................................73. Functional Description ...............................................................................................................................................83.1 Simplified State Diagram ....................................................................................................................................83.2 Basic Functionality..................................................................................................................................................93.3 RESET and Initialization Procedure .....................................................................................................................103.3.1 Power-up Initialization Sequence .............................................................................................................103.3.2 Reset Initialization with Stable Power ......................................................................................................113.4 Register Definition ................................................................................................................................................123.4.1 Programming the mode registers .............................................................................................................123.5 Mode Register ......................................................................................................................................................134. DDR4 SDRAM Command Description and Operation ............................................................................................. 244.1 Command Truth table ..........................................................................................................................................244.2 CKE Truth table ...................................................................................................................................................254.3 Burst Length, Type and Order ..............................................................................................................................264.3.1 BL8 Burst order with CRC Enabled .........................................................................................................264.4 DLL-off Mode & DLL on/off Switching procedure ................................................................................................274.4.1 DLL on/off switching procedure ...............................................................................................................274.4.2 DLL “on” to DLL “off” Procedure ..............................................................................................................274.4.3 DLL “off” to DLL “on” Procedure ..............................................................................................................284.5 DLL-off Mode........................................................................................................................................................294.6 Input Clock Frequency Change ............................................................................................................................304.7 Write Leveling.......................................................................................................................................................314.7.1 DRAM setting for write leveling & DRAM termination function in that mode ............................................324.7.2 Procedure Description .............................................................................................................................334.7.3 Write Leveling Mode Exit .........................................................................................................................34

    标签: DDR4

    上传时间: 2022-01-09

    上传用户:

  • MDK527中文版 汉化版 keil5

    请先安装最新版的MDK527后再将此文件替换进去 MDK527官方下载地址:http://www.keil.com/files/eval/MDK527.EXE Tips:官网下载速度可能较慢,自行选择高速的方式 MDK527官方更新说明 http://www.keil.com/update/whatsnew.asp?p=MDK&v=5.27 将UV4.exe 替换到安装路径.\Keil_v5\UV4\UV4.exe即可 替换前建议将原版UV4.exe备份 汉化说明 汉化工具:VS2017 社区版 汉化仅仅修改了String table ,并未添加其他任何东西(本人也不会ε=ε=ε=(~ ̄▽ ̄)~) 理论上说,完全不影响使用,不会产生运行异常 如果你非要将此版本汉化替换到旧版本里,可能运行异常,自行测试 汉化时间:2019年3月24日 作者:蒙蒙Plus 汉化日志: 2019年3月24日 完成String table 中英文替换 大量窗口内的文字未替换(重点是太麻烦) 估计不做汉化更新,毕竟我也不用汉化的

    标签: mdk527 keil5

    上传时间: 2022-07-12

    上传用户:xsr1983

  • MT7628手册(英文版)

    The following table covers the main features offered by the MT7628KN and MT7628AN. Overall, the MT7628KN supports the requirements of an entry level AP/router, while the more advanced MT7628AN supports a number of interfaces together with a large maximum RAM capacity.Features· Embedded MIPS24KEc (575/580 MHz) with 64KBl-Cache and 32KB D-Cache·2T2R 2.4GHz with 300 Mbps PHY data rate· Legacy 802.11b/g and HT 802.11n modes·20/40 MHz channel bandwidth· Reverse Data Grant(RDG)· Maximal Ratio Combining(MRC)· Space Time Block Coding(STBC)· MCM 8 Mbytes DDR1 KGD(MT7628KN)·16-bit DDR1/2 up to 128/256 Mbytes(MT7628AN/KN)· SPI/SD-XC/eMMC·x1 USB 2.0 Host,x1 Ple Root Complex·5-port 10/100 FE PHY

    标签: mt7628

    上传时间: 2022-07-25

    上传用户: