虫虫首页| 资源下载| 资源专辑| 精品软件
登录| 注册

Display

  • 透明音乐播放器

    [开源 绿色软件] [运行环境 Windows XP/7/8/10] [语言 简体/繁體/English/Unicode] A cool music player. Powered by Bass and BassVis. 极简本地音乐播放器,透明、纯文本界面。支持轻媒体库、歌词、可视化。最小化到托盘,占用资源少,适合边听音乐边工作。 应网友要求,加入了Tag编辑、自动切换列表、播放队列、鼠标手势、均衡器、音频设备选择、全局音量滚轮(托盘区域)、字体设置、极简模式、鼠标穿透、嵌入桌面、简单布局等功能。 homepage> mcool.appinn.me ==================================================== 音频格式APE、FLAC、WavPack、MP3、OGG、TTA、TAK、Musepack、AAC、AC3、WMA、Wav、CD、ALAC、Aiff、MOD、CUE ==================================================== 更新历史:     3336 -2016.3.25 点睛之笔:任意布局(追上foobar2000)。Arbitrary layout (all in one).     3330 -2016.3.10 一体布局之比例调节(初具foobar2000风貌)。Ratio adjust (all in one).     3308 -2015.11.28 歌词微调(在选项>常规>鼠标手势里设置)。Adds function of lyrics tuning.     3306 -2015.11.15 电台模式(整点时切换歌曲或列表,并非在线音乐),以及多声卡支持。Adds radio mode, and multi sound card support.     3300 -2015.10.15 完善细节,修复切歌卡住bug。完美版。Fixes some bugs.     3280 -2015.8.1   简单布局功能。Layout (all in one) function.     3260 -2015.6.1   Win10模式。Win10 mode.     3252 -2015.5.10  任务栏进度条。Taskbar progress Display.     3236 -2015.4.10  点睛之笔:透明度调节。Adds function of transparency tuning.     3232 -2015.3.25  自定义软件名(请在mcool.ini中手动修改)。Adds function of customizing app name.     3230 -2015.3.12  Airplay复刻界面。Airplay interface copy.     3218 -2015.1.20  桌面歌词。Desktop lyrics.     3216 -2015.1.12  一体化界面(学习Foobar2000和豆瓣FM)。All in one interface.     3212 -2015.1.6   新增Winamp音效插件支持(学习千千静听),以及滚轮穿透功能(学习Airplay3)。Adds Winamp DSP plugins support, and adds function of wheel transparent.     Winamp音效插件下载:http://uploadgeneration.info/Winamp/www.winamp.com/plugins/dsp-effect/5/top-rated.html     3210 -2014.12.28 重要更新:本地音量调节、自定义鼠标键/手势。Adds local volume control, and adds fuction of customizing mouse control / gesture.     3208 -2014.11.25 简化右键菜单,常规项目移到选项窗口。Simplifies the popup menu, moves the general items to option window.     3206 -2014.11.22 新增文本对齐选项,重新设计导航按钮。Adds option of text alignment, and redesigns the buttons of playback.     3202 -2014.11.10 新增播放记忆、片段循环(Hotkey: Ctrl+1/2)和贴边隐藏功能。Adds functions of playback memory, AB repeat and screen side hide.     3200 -2014.11.5  新增无界面选项(先去掉托盘图标,然后Ctrl+Alt+W隐藏界面,Ctrl+Alt+X关闭)。Adds option of no interface.     3191 -2014.8.26  嵌入桌面。Pins to desktop.     3190 -2014.8.19  音乐管理第一步:列表分组。Playlists grouping.     3186 -2014.8.10  基于列表的分级系统(Hotkey:0..5)。Rating system based on playlist.     3181 -2014.8.1   启用新图标(由虹吸墨作者BGLL友情制作)。Uses the new icon.     3180 -2014.7.22  新增Win7任务栏特效。Adds windows 7 taskbar effect.     3166 -2014.6.29  重要更新:自动下载专辑封面(源于歌词迷)。Downloads album covers from geci.me.     3160 -2014.6.1   重要更新:新增极简模式,以及OGG/Opus内置封面显示功能。Adds minimalist mode, and adds function of Displaying cover embedded in OGG/Opus.     3152 -2014.5.18  添加托盘右键菜单,新增MP4/M4A(ALAC)内置封面显示功能。Adds systray popup menu, and adds function of Displaying cover embedded in MP4/M4A(ALAC).     3151 -2014.5.1   重新设计可视化效果,新增示波器效果。Redesigns visual effects, and adds oscilloscope effect.     3150 -2014.4.20  采用歌词迷API下载歌词。Downloads lyrics from geci.me.     3136 -2014.3.30  加入可选的按钮,以及鼠标穿透功能。Adds function of transparent window.     3132 -2014.3.6   简化界面,向Foobar2K看齐;增加正在播放面板。Simplifies the interface, and adds now playing panel.     3130 -2014.2.26  重要更新:按照专辑分组。Grouping by album.     3120 -2014.2.18  优化字体渲染(Windows7/8下)。Optimizes font rendering in Windows 7/8.     3110 -2014.1.26  点睛之笔:自定义字体颜色。Adds function of customizing font color.     3108 -2013.11.16 Last.fm同步功能(请到主页下载插件)。Last.fm scrobbler support.     3106 -2013.11.8  可回溯的随机播放(学习Airplay 2)。Random playback can be traced back.     3103 -2013.10.12 优化右键菜单。Optimizes popup menu.     3102 -2013.9.30  修改滚动条样式,增加音频缓冲选项。Modifies style of scroll bar, and adds option of audio buffer length.     3100 -2013.9.10  无边框设计;迷你模式也可以不置顶(Hotkey:T)。Borderless designs.     3086 -2013.8.20  增加歌词面板功能。Adds function of lyrics panel.     3082 -2013.8.08  增加在可视化界面显示歌词功能。Adds function of Displaying lyrics on visual interface.     3080 -2013.8.01  新增设置字体功能,恢复简单的自动关机功能。Adds function of setting font, and re-adds simple function of auto shutdown.     3060 -2013.6.26  修复在迷你模式停止响应的Bug,去掉自动关机、歌词调整功能。Fixes bug of stop responding in mini mode, and removes functions of auto shutdown and lyrics trimming.     3050 -2013.5.23  增加手势功能。Adds gesture function.     3030 -2013.3.10  增加Aero磨砂玻璃效果[如需源码请联系我],XP/Win7/8无差别显示,按Insert键开启。Adds aero glass effect.     3020 -2013.2.23  增加简易Tag编辑功能(选中并单击即可,相当于资源管理器中的重命名,按照[歌手 - 歌名][专辑]格式进行编辑)。Adds function of editing audio tags (select and click, edit with [artist - title][album] format).     3010 -2013.1.23  应网友要求,加入读取内嵌CUE、歌词及专辑封面功能。Adds function of reading CUE, LRC and album cover built in media.     3002 -2012.11.03 无按钮设计;微调进度条尺寸。Buttonless design; modifies the size of the progress bar.     3001 -2012.10.15 重要改进,界面即按钮:单击 - 播放/暂停,按住 - 前进。Important update, the interface is a button: Click - Play/Pause, Hold Down - Next.     3000 -2012.9.28  增加Win8模式。Adds Win8 mode option.     2982 -2012.8.26  在Win8下使用微软雅黑字体。Uses Microsoft YaHei font in Windows 8 CHS.     2981 -2012.8.20  视频以插件提供(请到主页下载),增加单曲循环功能。Adds function of repeat track.     2980 -2012.7.26  简化代码,去掉视频和MIDI支持。Removes the video and MIDI support.     2970 -2012.7.20  增加媒体信息显示功能。Adds function of Displaying media info.     2960 -2012.6.28  增加专辑封面显示功能(Hotkey:Ins)。Adds function of Displaying album cover.     2956 -2012.6.01  再次简化界面。Simplifies the interface again.     2952 -2012.4.28  增加音频设备选择功能:DS、ASIO、WASAPI。Adds function of selecting playback device.     2950 -2012.3.30  *增加滚轮调节音量功能(在托盘,中键静音)和媒体键支持。Adds function of setting volume by mouse wheel (over systray, middle click to mute), and adds multimedia keys support.     2936 -2012.3.17  微调界面,修复物理删除失效的BUG。Fine-tunes the interface, and restores the physical delete function.     2930 -2012.2.27  增加TAK格式支持。Adds TAK format support.     2923 -2012.2.12  紧急修复上一版出现的字体模糊BUG(Vista/Win7下),增加在任务栏显/隐图标功能(Ctrl+T)。Fixes font vague bug for Vista/Win7, and adds showing/hiding icon on taskbar function.     2920 -2012.2.08  微调界面,优化CPU占用(启用背景图片时)。Fine-tunes the interface, and optimizes CPU utilization (while enable background image).     2912 -2012.1.12  增加播放队列功能。Adds playback queue function.     2910 -2011.12.25 改进迷你模式,增加查找功能。Improves mini mode, and adds find function.     *注:此功能对杀毒软件过敏,开启方法:按F1进入选项,勾选全局快捷键。The feature is allergic to the anti-virus software.

    标签: 透明 音乐播放器

    上传时间: 2016-06-10

    上传用户:fanghua

  • 红外遥控RGB

    #include "STC90.h" #include < intrins.h > #define uchar unsigned char #define uint unsigned int #define led_port P1 sbit IR_RE = P3^2; sbit led_r = P1^3; sbit led_g = P1^4; sbit led_b = P1^5; sbit led_wd = P1^7; sbit K1 =P3^0 ; //增加键 sbit K2 =P3^1 ; //减少键 sbit BEEP =P3^7 ; //蜂鸣器 uchar temp,temp1; bit k=0; //红外解码判断标志位,为0则为有效信号,为1则为无效 bit Flag2; uchar date[4]={0,0,0,0}; //date数组为存放地址原码,反码,数据原码,反码 uint lade_1,lade_2,lade_3,lade_4; uint num; uchar date_ram,ee_temp,ee_temp1; uchar WDT_NUM=0; uchar const dofly[]={0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f};// 显示段码值01234567 uchar code seg[]={7,6,5,4,3,2,1,0};//分别对应相应的数码管点亮,即位码 unsigned long disp_date; void fade(); void fade1(); /*************************** 看门狗子程序*************************/ void watchdog_timer() { if(WDT_NUM==5) { WDT_NUM=0; led_wd=!led_wd; } WDT_NUM++; WDT_CONTR=0x3f; } /******************************************************************/ void delay(unsigned int cnt) { while(--cnt); } /*--------------------------延时1ms程子程序-----------------------*/ void delay_1ms(uint z) { uint x,y; for(x=z;x>0;x--) for(y=126;y>0;y--); } /*--------------------------延时1ms程子程序-----------------------*/ delay1000() { uchar i,j; i=5; do{j=95; do{j--;} while(j); i--; } while(i); } /*---------------------------延时882us子程序-----------------------*/ delay882() { uchar i,j; i=6; do{j=71; do{j--;} while(j); i--; }while(i); } /*--------------------------延时2400us程子程序-----------------------*/ delay2400() { uchar i,j; i=5; do{j=237; do{j--;} while(j); i--; }while(i); } /**********************************************************************/ /* void Display() { uchar i; for(i=0;i<8;i++) { P0=dofly[disp_date%10];//取显示数据,段码 P2=seg[i]; //取位码 delay_1ms(1); disp_date/=10; } } */ /*********************************************************************/ uchar EEPROM_read(uint addr)//EEPROM字节读 { ISP_CONTR=0x83; //系统时钟<12M时,对ISP_CONTR寄存器设置的值,本电路为11.0592M ISP_CMD=1; //字节读 ISP_ADDRH=(addr&0xff00)>>8; ISP_ADDRL=addr&0x00ff; ISP_TRIG=0x46; ISP_TRIG=0xb9; _nop_(); _nop_(); return ISP_DATA; } //-------------------------------------------------------------------- void EEPROM_write(uint addr,uchar dat)//EEPROM字节写 { ISP_CONTR=0x83; //系统时钟<12M时,对ISP_CONTR寄存器设置的值,本电路为11.0592M ISP_CMD=2; //字节编程 ISP_ADDRH=(addr&0xff00)>>8; ISP_ADDRL=addr&0x00ff; ISP_DATA=dat; ISP_TRIG=0x46; ISP_TRIG=0xb9; _nop_(); _nop_(); } //-------------------------------------------------------------------- void EEPROM_ERASE(uint addr)//EEPROM扇区擦除 { ISP_CONTR=0x83; //系统时钟<12M时,对ISP_CONTR寄存器设置的值,本电路为11.0592M ISP_CMD=3; //扇区擦除 ISP_ADDRH=(addr&0xff00)>>8; ISP_ADDRL=addr&0x00ff; ISP_TRIG=0x46; ISP_TRIG=0xb9; _nop_(); _nop_(); } //************************************************************** /*----------------------------------------------------------*/ /*-----------------------红外解码程序(核心)-----------------*/ /*----------------------------------------------------------*/ void IR_decode() { uchar i,j; while(IR_RE==0); delay2400(); if(IR_RE==1) //延时2.4ms后如果是高电平则是新码 { delay1000(); delay1000(); for(i=0;i<4;i++) { for(j=0;j<8;j++) { while(IR_RE==0); //等待地址码第1位高电平到来 delay882(); //延时882us判断此时引脚电平 ///CY=IR_RE; if(IR_RE==0) { date[i]>>=1; date[i]=date[i]|0x00; } else if(IR_RE==1) { delay1000(); date[i]>>=1; date[i]=date[i]|0x80; } } //1位数据接收结束 } //32位二进制码接收结束 } } /* void LED_PWM() { lade_2=num; //384 lade_4=num; //384 while(lade_2!=0&Flag2==1) { for(lade_3=512;lade_3>lade_4;lade_3--) //512 { led_port=0x00; delay(1); } lade_3=512; //512 lade_4--; for(lade_1=0;lade_1<lade_2;lade_1++) { led_port=0x38; //c7 delay(1); } lade_1=0; lade_2--; if(temp!=0x0c&Flag2==1) { lade_2=0; } lade_2=num; //384 lade_4=num; //384 } } */ void calc() { EEPROM_read(0x2000); ee_temp1=ISP_DATA; ee_temp=ee_temp1&0x0f; //************************************* 1 /* if(date[3]==0xff&Flag2==1) { if(num>=20) { num=num-80; } //else num=1; LED_PWM(); } if(date[3]==0xfe&Flag2==1) { if(num<=500) { num=num+80; } // else num=511; LED_PWM(); } if(ee_temp1==0xfd) { led_port=0x00; watchdog_timer(); } if(ee_temp1==0xfc) { led_port=0x00; led_r=1; led_g=1; led_b=1; watchdog_timer(); } */ //********************************************** 2 if(ee_temp1==0xfb) { led_port=0x00; led_r=1; watchdog_timer(); } if(ee_temp1==0xfa) { led_port=0x00; led_g=1; watchdog_timer(); } if(ee_temp1==0xf9) { led_port=0x00; led_b=1; watchdog_timer(); } if(ee_temp1==0xf8) { led_port=0x00; led_r=1; led_g=1; led_b=1; watchdog_timer(); } //************************************** 3 if(ee_temp1==0xf7) { uint fade_1,fade_2,fade_3,fade_4; fade_2=448; //384 fade_4=448; //384 while(fade_2!=0&ee_temp==0x07) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x10; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x08; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x07) { fade_2=0; } watchdog_timer(); fade_2=448; //384 fade_4=448; //384 } } if(ee_temp1==0xf6) { uint fade_1,fade_2,fade_3,fade_4; fade_2=448; //384 fade_4=448; //384 while(fade_2!=0&ee_temp==0x06) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x20; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x10; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x06) { fade_2=0; } watchdog_timer(); fade_2=448; //384 fade_4=448; //384 } } if(ee_temp1==0xf5) { uint fade_1,fade_2,fade_3,fade_4; fade_2=448; //384 fade_4=448; //384 while(fade_2!=0&ee_temp==0x05) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x08; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x20; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x05) { fade_2=0; } watchdog_timer(); fade_2=448; //384 fade_4=448; //384 } } if(ee_temp1==0xf4) { while(ee_temp==4) { led_port=0x00; led_r=1; delay_1ms(200); led_port=0x00; led_r=1; led_g=1; delay_1ms(200); led_port=0x00; led_g=1; delay_1ms(200); watchdog_timer(); led_port=0x00; led_g=1; led_b=1; delay_1ms(200); led_port=0x00; led_b=1; delay_1ms(200); led_port=0x00; led_b=1; led_r=1; delay_1ms(200); watchdog_timer(); } } //************************************** 4 if(ee_temp1==0xf3) { uint fade_1,fade_2,fade_3,fade_4; fade_2=416; //384 fade_4=416; //384 while(fade_2!=0&ee_temp==0x03) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x10; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x08; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x03) { fade_2=0; } watchdog_timer(); fade_2=416; //384 fade_4=416; //384 } } if(ee_temp1==0xf2) { uint fade_1,fade_2,fade_3,fade_4; fade_2=384; //384 fade_4=384; //384 while(fade_2!=0&ee_temp==0x02) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x20; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x10; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x02) { fade_2=0; } watchdog_timer(); fade_2=384; //384 fade_4=384; //384 } } if(ee_temp1==0xf1) { uint fade_1,fade_2,fade_3,fade_4; fade_2=348; //384 fade_4=348; //384 while(fade_2!=0&ee_temp==0x01) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x08; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x20; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x01) { fade_2=0; } watchdog_timer(); fade_2=348; //384 fade_4=348; //384 } } if(ee_temp1==0xf0) { while(ee_temp==0) { led_port=0x00; led_r=1; delay_1ms(500); watchdog_timer(); led_port=0x00; led_g=1; delay_1ms(500); led_port=0x00; led_b=1; delay_1ms(500); watchdog_timer(); } } //******************************************** 5 if(ee_temp1==0xef) { uint fade_1,fade_2,fade_3,fade_4; fade_2=384; //384 fade_4=384; //384 while(fade_2!=0&ee_temp==0x0f) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x10; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x08; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x0f) { fade_2=0; } watchdog_timer(); fade_2=384; //384 fade_4=384; //384 } } if(ee_temp1==0xee) { uint fade_1,fade_2,fade_3,fade_4; fade_2=320; //384 fade_4=320; //384 while(fade_2!=0&ee_temp==0x0e) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x20; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x10; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x0e) { fade_2=0; } watchdog_timer(); fade_2=320; //384 fade_4=320; //384 } } if(ee_temp1==0xed) { uint fade_1,fade_2,fade_3,fade_4; fade_2=320; //384 fade_4=320; //384 while(fade_2!=0&ee_temp==0x0d) { for(fade_3=512;fade_3>fade_4;fade_3--) //512 { led_port=0x08; delay(1); } fade_3=512; //512 fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x20; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x0d) { fade_2=0; } watchdog_timer(); fade_2=320; //384 fade_4=320; //384 } } if(ee_temp1==0xec) fade(); //******************************************* 6 if(ee_temp1==0xeb) { led_port=0x00; led_r=1; led_g=1; watchdog_timer(); } if(ee_temp1==0xea) { led_port=0x00; //led_r=0; led_g=1; led_b=1; watchdog_timer(); } if(ee_temp1==0xe9) { led_port=0x00; led_r=1; //led_g=0; led_b=1; watchdog_timer(); } if(ee_temp1==0xe8) fade1(); } void fade() { // uchar i; uint fade_1,fade_2,fade_3,fade_4; fade_2=512; fade_4=511; while(fade_2!=0&ee_temp==0x0c) { for(fade_3=512;fade_3>fade_4;fade_3--) { led_port=0x10; delay(1); } fade_3=512; fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x08; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x0c) { fade_2=0; } } watchdog_timer(); fade_2=512; fade_4=511; while(fade_2!=0&ee_temp==0x0c) { if(ee_temp!=0x0c) { fade_2=0; } for(fade_3=512;fade_3>fade_4;fade_3--) { led_port=0x20; delay(1); // watchdog_timer(); } fade_3=512; fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x10; delay(1); // watchdog_timer(); } fade_1=0; fade_2--; } watchdog_timer(); fade_2=512; fade_4=511; while(fade_2!=0&ee_temp==0x0c) { if(ee_temp!=0x0c) { fade_2=0; } for(fade_3=512;fade_3>fade_4;fade_3--) { led_port=0x08; delay(1); watchdog_timer(); } fade_3=512; fade_4--; watchdog_timer(); for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x20; delay(1); watchdog_timer(); } fade_1=0; fade_2--; } watchdog_timer(); } void fade1() { // uchar i; uint fade_1,fade_2,fade_3,fade_4; fade_2=128; fade_4=127; while(fade_2!=0&ee_temp==0x08) { for(fade_3=128;fade_3>fade_4;fade_3--) { led_port=0x10; delay(1); } fade_3=128; fade_4--; for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x08; delay(1); } fade_1=0; fade_2--; if(ee_temp!=0x08) { fade_2=0; } } watchdog_timer(); fade_2=128; fade_4=127; while(fade_2!=0&ee_temp==0x08) { if(ee_temp!=0x08) { fade_2=0; } for(fade_3=128;fade_3>fade_4;fade_3--) { led_port=0x20; delay(1); } fade_3=128; fade_4--; for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x10; delay(1); } fade_1=0; fade_2--; } watchdog_timer(); fade_2=128; fade_4=127; while(fade_2!=0&ee_temp==0x08) { if(ee_temp!=0x08) { fade_2=0; } for(fade_3=128;fade_3>fade_4;fade_3--) { led_port=0x08; delay(1); } fade_3=128; fade_4--; for(fade_1=0;fade_1<fade_2;fade_1++) { led_port=0x20; delay(1); } fade_1=0; fade_2--; } watchdog_timer(); } void init() { led_port=0x00; /* led_r=1; delay_1ms(500); led_port=0x00; led_g=1; delay_1ms(500); led_port=0x00; led_b=1; delay_1ms(500); led_port=0x00; */ delay_1ms(2); WDT_CONTR=0x3f; delay_1ms(500); } //******************************** void main() { init(); Flag2=0; SP=0x60; //堆栈指针 EX0=1; //允许外部中断0,用于检测红外遥控器按键 EA=1; num=255; while(1) { calc(); } } //******************************************************************** /*------------------------外部中断0程序-------------------------*/ /*------------------主要用于处理红外遥控键值--------------------*/ void int0() interrupt 0 { uchar i; Flag2=0; /////// k=0; EX0=0; //检测到有效信号关中断,防止干扰 for(i=0;i<4;i++) { delay1000(); if(IR_RE==1){k=1;} //刚开始为9ms的引导码. } led_port=0x00; if(k==0) { IR_decode(); //如果接收到的是有效信号,则调用解码程序 if(date[3]>=0xe8) { if(date[3]<=0xfb) { temp1=date[3]; EEPROM_ERASE(0x2000); //STC_EEROM_0X2000 temp1 EEPROM_write(0x2000,temp1); EEPROM_read(0x2000); ee_temp1=ISP_DATA; ee_temp=ee_temp1&0x0f; /* temp=date[3]&0x0f; EEPROM_ERASE(0x2004); //STC_EEROM_0X2004 temp EEPROM_write(0x2004,temp); */ } else { EEPROM_read(0x2000); ee_temp1=ISP_DATA; ee_temp=ee_temp1&0x0f; } } delay2400(); delay2400(); delay2400(); delay_1ms(500); } EX0=1; //开外部中断,允许新的遥控按键 }

    标签: RGB 红外遥控

    上传时间: 2016-07-02

    上传用户:184890962

  • 学生管理啊

    #include <iostream.h> #include <string.h> #include <iomanip.h> #include "Stud.h" Stud::Stud(){} char *Stud::getno()              //获取学号 { return no; } char *Stud::getname()            //获取姓名 { return name; } char *Stud::getsex()             //获取性别 { return sex; } char *Stud::getminzu()           //获取民族 { return minzu; } char *Stud::getaddress()         //获取出生地 { return address; } char *Stud::getbirth()           //获取出生年月 { return birth; } int Stud::gettag()               //获取姓名 { return tag; } void Stud::changeno(char n[])                 //设置学号 { strcpy(no,n); } void Stud::changename(char na[])              //设置姓名 { strcpy(name,na); } void Stud::changesex(char s[])                //设置性别 { strcpy(sex,s); } void Stud::changeminzu(char m[])               //设置民族 { strcpy(minzu,m); } void Stud::changeaddress(char a[])             //设置出生地 { strcpy(address,a); } void Stud::changebirth(char b[])               //设置出生年月 { strcpy(birth,b); } void Stud::addstudent(char *rn,char *rna)      //增加学生 {     strcpy(no,rn); strcpy(name,rna); } void Stud::addstudent(char *rn,char *rna,char *rs,char *rm,char *ra,char *rb)    //增加学生 { tag=0; strcpy(no,rn); strcpy(name,rna); strcpy(sex,rs); strcpy(minzu,rm); strcpy(address,ra); strcpy(birth,rb); } void Stud::delstud()                         //设置删除标记 { tag=1; } void Stud::disp()                            //输出学生信息 { cout<<setw(15)<<no<<setw(10)<<name<<setw(10)<<sex<<setw(10)<<minzu<<setw(10)<<address<<setw(10)<<birth<<endl; } void Stud::Display()                         //输出学生信息 {     cout<<setw(15)<<no<<setw(10)<<name; }

    标签: 学生

    上传时间: 2016-12-29

    上传用户:767483511

  • c#简单计算器

    // 学生管理.cpp : Defines the entry point for the application. // #include "stdafx.h" #include "resource.h" #define MAX_LOADSTRING 100 // Global Variables: HINSTANCE hInst; // current instance TCHAR szTitle[MAX_LOADSTRING]; // The title bar text TCHAR szWindowClass[MAX_LOADSTRING]; // The title bar text // Foward declarations of functions included in this code module: ATOM MyRegisterClass(HINSTANCE hInstance); BOOL InitInstance(HINSTANCE, int); LRESULT CALLBACK WndProc(HWND, UINT, WPARAM, LPARAM); LRESULT CALLBACK About(HWND, UINT, WPARAM, LPARAM); struct person {   char name[10];   int ID;   int cj_yw;   int cj_sx;   struct person* next;   struct person* pro; }per; int APIENTRY WinMain(HINSTANCE hInstance,                      HINSTANCE hPrevInstance,                      LPSTR     lpCmdLine,                      int       nCmdShow) {   // TODO: Place code here. MSG msg; HACCEL hAccelTable; // Initialize global strings LoadString(hInstance, IDS_APP_TITLE, szTitle, MAX_LOADSTRING); LoadString(hInstance, IDC_MY, szWindowClass, MAX_LOADSTRING); MyRegisterClass(hInstance); // Perform application initialization: if (!InitInstance (hInstance, nCmdShow))  { return FALSE; } hAccelTable = LoadAccelerators(hInstance, (LPCTSTR)IDC_MY); // Main message loop: while (GetMessage(&msg, NULL, 0, 0))  { if (!TranslateAccelerator(msg.hwnd, hAccelTable, &msg))  { TranslateMessage(&msg); DispatchMessage(&msg); } } return msg.wParam; } // //  FUNCTION: MyRegisterClass() // //  PURPOSE: Registers the window class. // //  COMMENTS: // //    This function and its usage is only necessary if you want this code //    to be compatible with Win32 systems prior to the 'RegisterClassEx' //    function that was added to Windows 95. It is important to call this function //    so that the application will get 'well formed' small icons associated //    with it. // ATOM MyRegisterClass(HINSTANCE hInstance) { WNDCLASSEX wcex; wcex.cbSize = sizeof(WNDCLASSEX);  wcex.style = CS_HREDRAW | CS_VREDRAW; wcex.lpfnWndProc = (WNDPROC)WndProc; wcex.cbClsExtra = 0; wcex.cbWndExtra = 0; wcex.hInstance = hInstance; wcex.hIcon = LoadIcon(hInstance, (LPCTSTR)IDI_MY); wcex.hCursor = LoadCursor(NULL, IDC_ARROW); wcex.hbrBackground = (HBRUSH)(COLOR_WINDOW+1); wcex.lpszMenuName = (LPCSTR)IDC_MY; wcex.lpszClassName = szWindowClass; wcex.hIconSm = LoadIcon(wcex.hInstance, (LPCTSTR)IDI_SMALL); return RegisterClassEx(&wcex); } // //   FUNCTION: InitInstance(HANDLE, int) // //   PURPOSE: Saves instance handle and creates main window // //   COMMENTS: // //        In this function, we save the instance handle in a global variable and //        create and Display the main program window. // BOOL InitInstance(HINSTANCE hInstance, int nCmdShow) {    HWND hWnd;    hInst = hInstance; // Store instance handle in our global variable    hWnd = CreateWindow(szWindowClass, szTitle, WS_OVERLAPPEDWINDOW,       CW_USEDEFAULT, 0, CW_USEDEFAULT, 0, NULL, NULL, hInstance, NULL);    if (!hWnd)    {       return FALSE;    }    ShowWindow(hWnd, nCmdShow);    UpdateWindow(hWnd);    return TRUE; } // //  FUNCTION: WndProc(HWND, unsigned, WORD, LONG) // //  PURPOSE:  Processes messages for the main window. // //  WM_COMMAND - process the application menu //  WM_PAINT - Paint the main window //  WM_DESTROY - post a quit message and return // // LRESULT CALLBACK WndProc(HWND hWnd, UINT message, WPARAM wParam, LPARAM lParam) { int wmId, wmEvent; PAINTSTRUCT ps; HDC hdc; TCHAR szHello[MAX_LOADSTRING]; LoadString(hInst, IDS_HELLO, szHello, MAX_LOADSTRING); switch (message)  { case WM_COMMAND: wmId    = LOWORD(wParam);  wmEvent = HIWORD(wParam);  // Parse the menu selections: switch (wmId) { case IDM_ABOUT:   DialogBox(hInst, (LPCTSTR)IDD_ABOUTBOX, hWnd, (DLGPROC)About);   break; case IDM_EXIT:   DestroyWindow(hWnd);   break; default:   return DefWindowProc(hWnd, message, wParam, lParam); } break; case WM_PAINT: hdc = BeginPaint(hWnd, &ps); // TODO: Add any drawing code here... RECT rt; GetClientRect(hWnd, &rt); DrawText(hdc, szHello, strlen(szHello), &rt, DT_CENTER); EndPaint(hWnd, &ps); break; case WM_DESTROY: PostQuitMessage(0); break; default: return DefWindowProc(hWnd, message, wParam, lParam);    }    return 0; } // Mesage handler for about box. LRESULT CALLBACK About(HWND hDlg, UINT message, WPARAM wParam, LPARAM lParam) { switch (message) { case WM_INITDIALOG: return TRUE; case WM_COMMAND: if (LOWORD(wParam) == IDOK || LOWORD(wParam) == IDCANCEL)  { EndDialog(hDlg, LOWORD(wParam)); return TRUE; } break; }     return FALSE; }

    标签: 计算器 学生

    上传时间: 2016-12-29

    上传用户:767483511

  • 简单的计算器

    // 学生管理.cpp : Defines the entry point for the application. // #include "stdafx.h" #include "resource.h" #define MAX_LOADSTRING 100 // Global Variables: HINSTANCE hInst; // current instance TCHAR szTitle[MAX_LOADSTRING]; // The title bar text TCHAR szWindowClass[MAX_LOADSTRING]; // The title bar text // Foward declarations of functions included in this code module: ATOM MyRegisterClass(HINSTANCE hInstance); BOOL InitInstance(HINSTANCE, int); LRESULT CALLBACK WndProc(HWND, UINT, WPARAM, LPARAM); LRESULT CALLBACK About(HWND, UINT, WPARAM, LPARAM); struct person {   char name[10];   int ID;   int cj_yw;   int cj_sx;   struct person* next;   struct person* pro; }per; int APIENTRY WinMain(HINSTANCE hInstance,                      HINSTANCE hPrevInstance,                      LPSTR     lpCmdLine,                      int       nCmdShow) {   // TODO: Place code here. MSG msg; HACCEL hAccelTable; // Initialize global strings LoadString(hInstance, IDS_APP_TITLE, szTitle, MAX_LOADSTRING); LoadString(hInstance, IDC_MY, szWindowClass, MAX_LOADSTRING); MyRegisterClass(hInstance); // Perform application initialization: if (!InitInstance (hInstance, nCmdShow))  { return FALSE; } hAccelTable = LoadAccelerators(hInstance, (LPCTSTR)IDC_MY); // Main message loop: while (GetMessage(&msg, NULL, 0, 0))  { if (!TranslateAccelerator(msg.hwnd, hAccelTable, &msg))  { TranslateMessage(&msg); DispatchMessage(&msg); } } return msg.wParam; } // //  FUNCTION: MyRegisterClass() // //  PURPOSE: Registers the window class. // //  COMMENTS: // //    This function and its usage is only necessary if you want this code //    to be compatible with Win32 systems prior to the 'RegisterClassEx' //    function that was added to Windows 95. It is important to call this function //    so that the application will get 'well formed' small icons associated //    with it. // ATOM MyRegisterClass(HINSTANCE hInstance) { WNDCLASSEX wcex; wcex.cbSize = sizeof(WNDCLASSEX);  wcex.style = CS_HREDRAW | CS_VREDRAW; wcex.lpfnWndProc = (WNDPROC)WndProc; wcex.cbClsExtra = 0; wcex.cbWndExtra = 0; wcex.hInstance = hInstance; wcex.hIcon = LoadIcon(hInstance, (LPCTSTR)IDI_MY); wcex.hCursor = LoadCursor(NULL, IDC_ARROW); wcex.hbrBackground = (HBRUSH)(COLOR_WINDOW+1); wcex.lpszMenuName = (LPCSTR)IDC_MY; wcex.lpszClassName = szWindowClass; wcex.hIconSm = LoadIcon(wcex.hInstance, (LPCTSTR)IDI_SMALL); return RegisterClassEx(&wcex); } // //   FUNCTION: InitInstance(HANDLE, int) // //   PURPOSE: Saves instance handle and creates main window // //   COMMENTS: // //        In this function, we save the instance handle in a global variable and //        create and Display the main program window. // BOOL InitInstance(HINSTANCE hInstance, int nCmdShow) {    HWND hWnd;    hInst = hInstance; // Store instance handle in our global variable    hWnd = CreateWindow(szWindowClass, szTitle, WS_OVERLAPPEDWINDOW,       CW_USEDEFAULT, 0, CW_USEDEFAULT, 0, NULL, NULL, hInstance, NULL);    if (!hWnd)    {       return FALSE;    }    ShowWindow(hWnd, nCmdShow);    UpdateWindow(hWnd);    return TRUE; } // //  FUNCTION: WndProc(HWND, unsigned, WORD, LONG) // //  PURPOSE:  Processes messages for the main window. // //  WM_COMMAND - process the application menu //  WM_PAINT - Paint the main window //  WM_DESTROY - post a quit message and return // // LRESULT CALLBACK WndProc(HWND hWnd, UINT message, WPARAM wParam, LPARAM lParam) { int wmId, wmEvent; PAINTSTRUCT ps; HDC hdc; TCHAR szHello[MAX_LOADSTRING]; LoadString(hInst, IDS_HELLO, szHello, MAX_LOADSTRING); switch (message)  { case WM_COMMAND: wmId    = LOWORD(wParam);  wmEvent = HIWORD(wParam);  // Parse the menu selections: switch (wmId) { case IDM_ABOUT:   DialogBox(hInst, (LPCTSTR)IDD_ABOUTBOX, hWnd, (DLGPROC)About);   break; case IDM_EXIT:   DestroyWindow(hWnd);   break; default:   return DefWindowProc(hWnd, message, wParam, lParam); } break; case WM_PAINT: hdc = BeginPaint(hWnd, &ps); // TODO: Add any drawing code here... RECT rt; GetClientRect(hWnd, &rt); DrawText(hdc, szHello, strlen(szHello), &rt, DT_CENTER); EndPaint(hWnd, &ps); break; case WM_DESTROY: PostQuitMessage(0); break; default: return DefWindowProc(hWnd, message, wParam, lParam);    }    return 0; } // Mesage handler for about box. LRESULT CALLBACK About(HWND hDlg, UINT message, WPARAM wParam, LPARAM lParam) { switch (message) { case WM_INITDIALOG: return TRUE; case WM_COMMAND: if (LOWORD(wParam) == IDOK || LOWORD(wParam) == IDCANCEL)  { EndDialog(hDlg, LOWORD(wParam)); return TRUE; } break; }     return FALSE; }

    标签: 学生 计算器

    上传时间: 2016-12-29

    上传用户:767483511

  • MATLAB fsolve求解非线性方程组源程序代码

    对于非线性方程组F(X)=0,用fsolve函数求其数值解。fsolve函数的调用格式为: X=fsolve('fun',X0,option) 其中X为返回的解,fun是用于定义需求解的非线性方程组的函数文件名,X0是求根过程的初值,option为最优化工具箱的选项设定。最优化工具箱提供了20多个选项,用户可以使用optimset命令将它们显示出来。如果想改变其中某个选项,则可以调用optimset()函数来完成。例如,Display选项决定函数调用时中间结果的显示方式,其中‘off’为不显示,‘iter’表示每步都显示,‘final’只显示最终结果。optimset(‘Display’,‘off’)将设定Display选项为‘off’。

    标签: MATLAB fsolve 非线性 方程 代码 源程序

    上传时间: 2017-07-31

    上传用户:ChrisQQQ

  • 台湾合泰HT9B92 TSSOP48 LCD液晶驱动芯片

      产品型号:HT9B92  产品品牌:HOLTEK/合泰 封装形式:TSSOP48/LQFP48   产品年份:新年份 原厂直销,工程服务,技术支持,价格更具优势!   RAM 映射 36×4 LCD 显示驱动器 概述 HT9B92 是一款存储器映射和多功能LCD控制驱动芯片。该芯片显示模式有144 点(36×4 )。 HT9B92 软件配置特性使得它适用于多种LCD应用,包括LCD 模块和显示子系统。HT9B92 通过双线双向 I2C 接口与大多数微处理器/ 微控制器进行通信。 功能特点 ● 工作电压:2.4V~5.5V ● 内部集成振荡电路 ● Bias: 1/2 or 1/3; Duty: 1/4 ● 带电压跟随器的内部LCD 偏置发生器 ● 提供VLCD 引脚来调整LCD 工作电压 ● I2C接口 ● 可选 LCD 帧频率 ● 多达36×4 位RAM 用来存储显示数据 ● 最大显示模式36×4:36 SEGs 和4 COMs ● 多种闪烁模式:不闪烁,0.5Hz,1Hz,2Hz ● 写地址自动增加 ● 低功耗省电模式 ● 采用硅栅极CMOS 制造工艺 ● 封装类型:48-pin TSSOP/LQFP ● 市面可兼容型号:元泰VINTEK:VKL44A TSSOP48封装,VKL144B QFN48(6MM*6MM)封装,VKL128 LQFP44封装,VKL060 SSOP24封装 ------ 同种脚位可以任意切换,少脚位更具性价比高,方便设计等特点。 ●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●   产品型号:VKL144A 产品品牌:VINTEK/元泰 封装形式:TSSOP48 产品年份:新年份 原厂直销,工程服务,技术支持,价格更具优势!   超低功耗液晶LCD显示驱动芯片 概述 VKL144A是一款性能优越的字段式液晶显示驱动芯片,由于其驱动段位多达144段和超低功耗的工艺设计特点。还具有性能稳定和低价格优势、供货稳定,目前被业界广泛应用在众多的仪器仪表的产品上。比如手持式仪表、费率表、工控仪表、医疗仪器、专用测量仪表头等等设备上使用 功能特点 ● 液晶驱动输出: Common 输出4线 Segment 输出36线 ● 内置Display data RAM (DDRAM) 内置RAM容量:36*4 =144 bit ● 液晶驱动的电源电路 1/2 ,1/3 Bias ,1/4 Duty 内置Buffer AMP I2C串行接口(SCL, SDA) ● 内置振荡电路 ● 不需要外围部件 ● 低功耗设计 ● 搭载等待模式 ● 内置Power-on Reset电路 ● 搭载闪烁功能 ● 工作电源电压: 2.5-5.5V ★应用推荐: 各种费率表,电表、水表、气表、热表、各种计量专用表头。 ●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●●● 产品型号:VKL144B   产品品牌:VINTEK/元泰 封装形式:QFN48L(6MM*6MM) 产品年份:新年份 原厂直销,工程服务,技术支持,价格更具优势!   超低功耗液晶LCD显示驱动芯片 概述 VKL144B是一款性能优越的字段式液晶显示驱动芯片,由于其驱动段位多达144段和超低功耗的工艺设计特点。还具有性能稳定和低价格优势、供货稳定,目前被业界广泛应用在众多的仪器仪表的产品上。比如手持式仪表、费率表、工控仪表、医疗仪器、专用测量仪表头等等设备上使用 功能特点 ● 液晶驱动输出: Common 输出4线 Segment 输出36线 ● 内置Display data RAM (DDRAM) 内置RAM容量:36*4 =144 bit ● 液晶驱动的电源电路 1/2 ,1/3 Bias ,1/4 Duty 内置Buffer AMP I2C串行接口(SCL, SDA) ● 内置振荡电路 ● 不需要外围部件 ● 低功耗设计 ● 搭载等待模式 ● 内置Power-on Reset电路 ● 搭载闪烁功能 ● 工作电源电压: 2.5-5.5V ★应用推荐: 各种费率表,电表、水表、气表、热表、各种计量专用表头。 HOLTEK合泰全系列产品 芯片介绍如下: 一.LCD液晶显示驱动控制器              HT1620   HT1620G   HT1621   HT1621B   HT1621G   HT1622   HT1622G   HT1623  HT1625   HT1626    HT16C21   HT16C22   HT16C23   HT16C24  HT1620   HT16220  HT1647   HT1650   HT1660    HT1670   HT16K23   HT9B92   HT9B92G    HT9B95A    HT9B95B   HT9B95C   HT16LK24  HT16L21  HT16L23   HT1611C  HT1613C  HT1616C (全部封装、规格形式 均有海量现货!)   二:LED/VFD控制、驱动器 HT16506   HT16511   HT16512   HT16515   HT16514   HT16561 HT16562  HT16565  HT16566  HT16523  HT16525  HT1632C   HT16K33  HT16K33  HT16528-001  HT16528-002  HT16528-003 (全部封装、规格形式 均有海量现货!)         三.Touch Key触摸按键电路/ I/O Flash MCU             BS801B/C   BS802B/C   BS804B/C   BS804B/C  BS806B/C   BS808B/C BS812A-1   BS813A-1   BS814A-1   BS814A-2  BS816A-1   BS818A-2 BS8112A-3   BS8116A-3    BS83A02A-4    BS83A04A-3   BS83A04A-4 BS83B04A-4  BS83B08A-3   BS83B08A-4   BS83B12A-3   BS83B12A-4 (全部封装、规格形式 均有海量现货!) 四.HT7XXX全系列 微功耗LDO              HT1015-1  HT71xx-1  HT71xx-2 HT71xx-3 HT71xx-3   HT75xx-1   HT75xx-2  HT75xx-3 HT73xx  HT72xx   HT78xx   Power management(电源LDO稳压管理IC) HT71**为30MA稳压芯片 产品:HT7130,HT7133,HT7136,HT7144,HT7150 HT75**为100MA稳压芯片 产品:HT7530,HT7533,HT7536,HT7544,HT7550 HT73**为300MA稳压芯片 产品:HT7318,HT7325,HT7327,HT7330,HT7333,HT7335,HT7350 HT70**为电压检测芯片 产品:HT7022,HT7024,HT7027,HT7033,HT7039,HT7044,HT7050 HT77::为升压DC-DC芯片 产品:HT7727,HT7730,HT7733,HT7737,HT7750 LDO与探测器和数据收发:HT71DXX     高电源抑制比300mA双LDO稳压器:HT72Dxxxx      高电源抑制比300mA LDO稳压器:HT72BXX   高电源抑制比 150mA LDO稳压器:HT75BXX 高电源抑制比 500mA LDO稳压器:HT78BXX    3SOT89 T/R         电压检测器系列(小功率):HT70xxA-1   HT70xxA-2   HT70xxA-3       PFM升压DC-DC变换器:HT77xx   HT77xxA   HT77S10   HT77S11           PFM同步升压直流/直流转换器:HT77xxS   HT77xxSA        LED照明驱动:HT7L4811   HT7L4091  HT7L4091   HT7L2102   HT7L2103   HT7L2103        白光LED背光驱动:HT7936  HT7937  HT7938  HT7938A  HT7939  HT7943   HT7945        降压直流-直流转换器:HT7465   HT7466         AC/DC PWM变换器:HT7A3942   HT7A6002   HT7A6003   HT7A4016    充电泵直流/直流转换器:HT7660   (全部封装、规格形式 均有海量现货!)   五:时钟IC及其他消费类IC              HT1380   HT1380A   HT1381   HT1381A   HT1382  HT9200A   HT9170  HT9172   HT9032   HT8970   HT9247   HT82V731   HT82V736   HT6221 HT6222   HT62104   HT12A\E   HT12D\F (全部封装、规格形式 均有海量现货!)   六.电可擦除只读存储器              HT2201   HT24LC02  HT24LC02A  HT24LC04  HT24LC08  HT24LC16  HT24LC32         HT24LC64   HT24LC128   HT24LC256   HT93LC46   HT93LC66   HT93LC86 (全部封装、规格形式 均有海量现货!)   七.各类编码/射频/解码器 HT12D   HT12E   HT12F   HT6010   HT6012   HT6014   HT6026   HT6030 HT6032   HT6034   HT600   HT604L   HT6207   HT680   HT6P20B   HT6P20D    HT6P40B2    HT6P40C2   HT6P40D2   HT6P40E2   HT6P40B2T3    HT6P40C2T3 HT6P40D2T3   HT6P40E2T3    HT6P423A   HT6P423A   HT6P427A   HT6P433A        HT6P437A   HT12C2T3   HT12C2T4   HT12E2T3   HT12E2T4   HT12E2T4       HT16C2T3   HT16C2T4   HT16E2T3   HT16E2T4   HT16G2T3   HT16G2T4   HT9831   HT7610A   HT7611A/B   HT7612   HT7612B (全部封装、规格形式 均有海量现货!)           八.MCU(微控IC) HT48 系列 应用于遥控,电扇/电灯控制,洗衣机控制,电子秤,玩具及各种系统控制. 产品:HT48R05,HT48R06,HT48R30,HT48R50 HT49系列 应用于多种LCD DI低功耗应用,如电子秤,休闲产品,高阶的家用电器 产品:HT49R30,HT49R50 HT46带A/D系列 适用于充电器控制,电磁炉等 产品:HT46R47,HT46R22,HT46R23,HT46R24,HT46R51 HT46带A/D及LCD系列 适用于洗衣机控制器,相机控制器和带LCD显示的家用电器系列 产品:HT46R62,HT46R63,HT46R64 HT48RA系列适用于红外遥控器以及各种电子系统的控制器 (全部封装、规格形式 均有海量现货!)     九.放大器/音频放大器 /DA转换器              HT9231  HT9232  HT9234  HT9251  HT9252  HT9254  HT9274  HT9291  HT9292  HT9294 HT82V732  HT82V733  HT82V735  HT82V736  HT82V736       HT82V739   HT82V73   HT82V731   HT82V737   HT82V738 (全部封装、规格形式 均有海量现货!)         十.音调IC/发生器 /接收器              HT9200A   HT9200B   HT9170B   HT9170D   HT9172   HT8970   HT8972 (全部封装、规格形式 均有海量现货!)     IC型号众多,未能一一收录。    芯片主要应用领域如下:  ★显示模块:电子秤、无线麦克风、录音笔、影音多媒体、小家电周边 ★家电类:电风扇、电饭煲、玩具、冷气机、暖风机、空调扇、饮水机、抽油烟机、消毒柜、电热水器、面包机、豆浆机、咖啡壶、电冰箱、洗衣机控制器、空调控制板等。 ★通讯类:来电显示电话、无绳电话、IC电话、投币电话、对讲机等 ★玩具游戏类:无线遥控车、PS游戏机、跳舞毯、方向盘、手柄、电子枪、PS开机IC等。 ★计算机周边:显示器控制、PC-MOUSE、单/双滚、遥控MOUSE、键盘、手写板等。 ★智能卡类:IC卡煤气表、电能表、水表、IC读写器、IC卡门禁系统等。 ★汽车及防盗类:机车防盗器、********器、汽车天线控制器、里程表、汽车日历等。 ★医用保健类:电子针灸器、甩脂机、智能体温计、LCD显示血压计、跑步机、按摩器、按摩垫、按摩椅   等。 ★仪表类:电压表、瓦斯表、电池电压检测器、频率计、计数器、电度表、水位检测器等。 ★其它类:充电器、照相机、电子万年钟、自动给皂机、路灯控制器、呼叫服务器等    

    标签: TSSOP B92 HT9 LCD HT 9B 92 48 合泰 液晶驱动

    上传时间: 2018-12-07

    上传用户:shubashushi66

  • 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

  • 定义雇员类Employee

    定义雇员类Employee,包含string型成员变量m_Name(姓名)和m_No(编号),int型成员变量m_Department(部门号),成员函数SetName(string),SetNo(string),SetDept(int)分别用来设置姓名、编号和部门号,Display()函数用来输出雇员信息,还包含一个构造函数Employee(string,string,int)。定义一个经理类Manager,派生于雇员类Employee,新增成员变量m_Level表示级别和成员函数SetLevel(int)用来设置m_Level。

    标签: Employee 定义

    上传时间: 2020-05-03

    上传用户:coisini

  • The RF in RFID

    To a quantum mechanic the whole universe is one godawful big interacting wavefunction ? but to the rest of us, it’s a world full of separate and distinguishable objects that hurt us when we kick them. At a few months of age, human children recognize objects, expect them to be permanent and move continuously, and Display surprise when they aren’t or don’t. We associate visual, tactile, and in some cases audible and olfactory sensations with identifiable physical things. We’re hardwired to understand our environment as being composed of separable things with specific properties and locations. We understand the world in terms of what was where when.

    标签: RFID The RF in

    上传时间: 2020-06-08

    上传用户:shancjb