#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 }
上传时间: 2016-07-02
上传用户:184890962
4平方的铜线:4*6=24A 6平方的铜线:6*6=36A 10平方的铜线:10*6=60A 16平方的铜线:16*6=96A 4平方的铝线:4*5=20A 6平方的铝线:6*5=30A 10平方的铝线:10*5=00A 16平方的铝线:16*5=90A
标签: 电线
上传时间: 2016-12-28
上传用户:铁板上的牛排
注册码从序列号中选一个,不对就换一个,用压缩包里的Source Insight文件夹替换安装后我的文档里的文件夹
上传时间: 2017-03-25
上传用户:MXhandsome
ST-LINK V2 使用说明 ST LINK V2 使用说明....................................................................................................................3 1、功能简介.............................................................................................................................3 2、 接口定义...........................................................................................................................4 3、驱动及支持工具.................................................................................................................5 4、ST-LINK V2 驱动的安装..................................................................................................6 5、ST-LINK V2 固件的升级..................................................................................................7 6、使用 STM32 ST-LINK Utility 烧写目标板 hex............................................................... 8 7、使用 STVD 开发 STM8 教程.........................................................................................10 8、使用 IAR EWSTM8 开发 STM8 教程...........................................................................14 9、使用 MDK 进行 STM32 的开发教程............................................................................17 10、使用 IAR EWARM 进行 STM32 的开发教程....
上传时间: 2019-02-10
上传用户:airpipe
60个Android开发精典案例 Android软件源码:2-1(Activity生命周期)3-1(Button与点击监听器)3-10-1(列表之ArrayAdapter适配)3-10-2(列表之SimpleAdapter适配)3-11(Dialog对话框)3-12-5(Activity跳转与操作)3-12-6(横竖屏切换处理)3-3(ImageButton图片按钮)3-4(EditText文本编辑)3-5(CheckBox与监听)3-6(RadioButton与监听)3-7(ProgressBar进度条)3-8(SeekBar 拖动条)3-9(Tab分页式菜单)4-10(可视区域)4-11-1(Animation动画)4-11-2-1(动态位图)4-11-2-2(帧动画)4-11-2-3(剪切图动画)4-13(操作游戏主角)4-14-1(矩形碰撞)4-14-2(圆形碰撞)4-14-4(多矩形碰撞)4-14-5(Region碰撞检测)4-15-1(MediaPlayer音乐)4-15-2(SoundPool音效)4-16-1(游戏保存之SharedPreference)4-16-2(游戏保存之Stream)4-3(View游戏框架)4-4(SurfaceView游戏框架)4-7-1(贝塞尔曲线)4-7-2(Canvas画布)4-8(Paint画笔)4-9(Bitmap位图渲染与操作)5-1(飞行射击游戏实战)6-1(360°平滑游戏摇杆)6-10-1(Socket协议)6-10-2(Http协议)6-11(本地化与国际化)6-2(多触点缩放位图)6-3(触屏手势识别)6-4(加速度传感器)6-5(9patch工具)]6-6(截屏)6-8(游戏视图与系统组件)6-9(蓝牙对战游戏)7-10-1(遍历Body)7-10-2(Body的m_userData)7-11(为Body施加力)7-12(Body碰撞监听)7-13-1(距离关节)7-13-2(旋转关节)7-13-3(齿轮关节)7-13-4(滑轮关节)7-13-5-1(通过移动关节移动Body)7-13-5-2(通过移动关节绑定两个Body动作)7-13-6(鼠标关节-拖拽Body)7-14(AABB获取Body)7-4(Box2d物理世界)7-5在物理世界中添加矩形)7-7(添加自定义多边形)7-9(在物理世界中添加圆形)8-1(迷宫小球)8-2(堆房子)
标签: android
上传时间: 2021-11-30
上传用户:trh505
DHT11 MIC SHT11 VS1838B CHT8305 MQ-3 温湿度气体等传感器元件Altium封装库三维视图PCB封装库(3D封装库),PcbLibb后缀文件,封装列表如下:Component Count : 32Component Name-----------------------------------------------AHT10CHT8305DHT11DHT11 - duplicateGP1A52HRGP1A53HRI-LED-3MMI-LED-5MMMIC-4.5*1.9MIC-6*5.5mmMIC0622DIPMLX90614MQ-3MS5611OPT-3MMOPT-5MMRG5528ROC16S58SHT1X-8PSHT2XSHT3x-ARPSHT3x-DISST188TO-18TO-39TO-66TO-356VS1838B-AVS1838B-A_HVS1838B-BVS1838B-B_H
上传时间: 2021-12-21
上传用户:shjgzh
周立功RS485协议指南,RS485选型及应用指南。 1 章 RS-485 选型及应用指南 .........................................................................1 1.1 RS-232/422/485 标准 ...............................................................................................1 1.1.1 RS-232 标准 .....................................................................................................2 1.1.2 RS-422/485 标准 ..............................................................................................2 1.2 RS-485/RS-422 芯片................................................................................................5 1.2.1 增强型低功耗半双工 RS-485 收发器-SP481E/SP485E ..............................7 1.2.2 1/10 单位负载 RS-485 收发器-SP481R/SP485R .....................................10 1.2.3 +3.3V 低功耗半双工 RS-485 收发器-SP3481/SP3485..............................13 1.2.4 增强型低功耗全双工 RS-422 收发器-SP490E/SP491E ............................15 1.2.5 +3.3V 低功耗全双工 RS-422 收发器-SP3490/SP3491..............................20 1.3 RS-485 接口电路 ...................................................................................................22 1.3.1 基本 RS-485 电路...........................................................................................22 1.3.2 隔离 RS-485 电路...........................................................................................23 1.3.3 上电抑制电路.................................................................................................24 1.3.4 RS-485 自动换向电路....................................................................................24 1.4 RS-485 通讯协议 ...................................................................................................25 1.4.1 ModBus 协议(RTU 模式)...............................................................................25 1.4.2 多功能电能表通讯规约(DL/T645-1997) ......................................................27 1.5 RS-485 程序设计 ...................................................................................................28 1.5.1 RS-485 接口电路............................................................................................28 1.5.2 通讯规约.........................................................................................................28 1.5.3 程序设计流程图.............................................................................................29 1.5.4 数据接收部分.................................................................................................29 1.5.5 命令执行部分.................................................................................................29 1.5.6 数据发送部分.................................................................................................30 1.5.7 RS-485 程序清单............................................................................................31 1.6 RS-485 应用要点 ...................................................................................................38 1.6.1 合理选用芯片.................................................................................................38 1.6.2 终端匹配电阻.................................................................................................39 1.6.3 应用层通信协议.............................................................................................39 1.6.4 3V-5V 系统的连接.........................................................................................39 1.6.5 网络节点数.....................................................................................................40 1.6.6 节点与主干距离.............................................................................................40 1.6.7 RS-485 系统的常见故障及处理方法............................................................40 1.6.8 RS-422 与 RS-485 的网络拓朴 .....................................................................41 1.6.9 RS-422 与 RS-485 的接地问题 .....................................................................41 1.6.10 RS-422 与 RS-485 的瞬态保护 .....................................................................42 1.7 参考文献.................................................................................................................43 广州周立功单片机发展有限公司 Tel:(020)38730977 38730977 Fax:38730925 http://www.zlgmcu.通常的微处理器都集成有 1 路或多路硬件 UART 通道,可以非常方便地实现串行通讯。 在工业控制、电力通讯、智能仪表等领域中,也常常使用简便易用的串行通讯方式作为数据 交换的手段。 但是,在工业控制等环境中,常会有电气噪声干扰传输线路,使用 RS-232 通讯时经常 因外界的电气干扰而导致信号传输错误;另外,RS-232 通讯的最大传输距离在不增加缓冲 器的情况下只可以达到 15 米。为了解决上述问题,RS-485/422 通讯方式就应运而生了。 本章将详细介绍 RS-485/422 原理与区别、元件选择、参考电路、通讯规约、程序设计 等方面的应用要点,以及在产品实践中总结出的一些经验、窍门。
上传时间: 2022-04-27
上传用户:qingfengchizhu
按键按钮 Altium封装 AD封装库 2D+3D PCB封装库-10MB,Altium Designer设计的PCB封装库文件,集成2D和3D封装,可直接应用的到你的产品设计中。PCB库封装列表:LSW DIP-CHERRYTSW 3*6*4.3-S-WTSW 10x10x9-5Key-LSTSW DIP-3*6*4.3TSW DIP-3*6*4.3_VTSW DIP-3*6*5TSW DIP-3*6*5_VTSW DIP-6*6*4.3TSW DIP-6*6*4.3_VTSW DIP-6*6*5TSW DIP-6*6*5_VTSW DIP-6*6*6TSW DIP-6*6*6_VTSW DIP-6*6*7TSW DIP-6*6*7_VTSW DIP-6*6*8TSW DIP-6*6*8_VTSW DIP-6*6*9TSW DIP-6*6*9_VTSW DIP-6*6*10TSW DIP-6*6*10_VTSW DIP-6*6*11TSW DIP-6*6*11_VTSW DIP-6*6*12TSW DIP-6*6*12_VTSW DIP-6*6*13TSW DIP-6*6*14TSW DIP-6*6*15TSW DIP-12*12*4.3TSW DIP-12*12*5TSW DIP-12*12*6TSW DIP-12*12*7TSW DIP-12*12*8TSW DIP-12*12*9TSW DIP-12*12*10TSW DIP-12*12*11TSW DIP-12*12*12TSW DIP-12*12*13TSW SMD-3*6*2.5TSW SMD-3*6*4.3TSW SMD-3*6*5TSW SMD-4*4*1.5TSW SMD-6*6*4.3TSW SMD-6*6*5TSW SMD-6*6*6TSW SMD-6*6*7TSW SMD-6*6*8TSW SMD-6*6*9TSW SMD-6*6*10TSW SMD-6*6*11TSW SMD-6*6*12TSW SMD-6*6*13TSW SMD-6*6*14TSW SMD-6*6*15TSW SMD-12*12*4.3TSW SMD-12*12*5TSW SMD-12*12*6
标签: 按键 按钮 Altium designer
上传时间: 2022-05-05
上传用户:aben
mixly软件mixly米思齐程序arduino软件及样例程序arduino c语言代码声明.txt - 307bytes德飞莱智能车扩展板LY-RS001 电路图.pdf - 88.34KBArduino_Uno_Rev3-schematic.pdf - 81.39KBarduino-1.6.5-windows.zip - 139.61MB4-德飞莱智能小车-扩展3-德飞莱智能小车-提高2-德飞莱智能小车-进阶1-德飞莱智能小车-入门QXC_SmartCar.apk - 1.74MB
上传时间: 2022-06-05
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树莓派教程的PDF电子书.pdf - 文件:1.为你的树莓派准备一张 SD 卡 .................................................................................................. 31.1 概览 .................................................................................................................................... 31.2 你需要的............................................................................................................................. 31.3 下载一个镜像..................................................................................................................... 41.4 选择一个操作系统............................................................................................................. 41.5 选择一个发行版................................................................................................................. 41.6 制作一张操作系统 SD 卡 – Windows Vista/7 版 ............................................................. 51.6.1 步骤 1....................................................................................................................... 51.6.2 步骤 2....................................................................................................................... 51.6.3 步骤 3....................................................................................................................... 51.6.4 步骤 4....................................................................................................................... 51.6.5 步骤 5....................................................................................................................... 61.7 制作一张操作系统 SD 卡 – Mac 版.................................................................................. 71.7.1 步骤 1....................................................................................................................... 71.7.2 步骤 2................................................................
标签: 树莓派
上传时间: 2022-06-23
上传用户:kingwide