Linux 默认情况下,PC 喇叭发出的嘟嘟声音警告(System Beep). 本程序可以让你随意控制蜂鸣器
标签: Linux
上传时间: 2014-08-29
上传用户:开怀常笑
VB遥控播放器红外遥控解码 #include <regX52.h> #define c(x) (x*110592/120000) sbit Ir_Pin=P3^2 sbit Beep=P2^1 //sbit RELAY=P2^0 #define INBUF_LEN 4 //数据长度 unsigned char inbuf1[INBUF_LEN]={ 0 , 0 , 0 , 0 } //发送缓冲区 unsigned char inbuf2[50] //接收缓冲区 unsigned char count3 void init_serialcomm( void ) { SCON = 0x50 //SCON: serail mode 1, 8-bit UART, enable ucvr T2CON=0x30 TH2=0x00 TL2=0x00 RCAP2H=0xFF RCAP2L=0xDC TR2=1 } //向串口发送一个字符 void send_char_com( unsigned char ch) { SBUF=ch while (TI== 0 ) TI= 0
标签: include 110592 120000 define
上传时间: 2013-12-21
上传用户:yph853211
#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
# 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 --); }
上传时间: 2016-07-28
上传用户:游戏好吗
STM8单片机开发板资料STM8S208RB DEMO软件源码+例程讲解+开发板原理图+芯片资料:'stm8板原理图.pdf使用说明文件开发板介绍.pdf相关例程讲解相关芯片资料相关辅助软件软件源码程序AD(寄存器操作,连续转换模式)ADC_OLEDBeep 寄存器操作BEPPCAN For STVDCLKDS18B20EXTII2C_24C02I2C_24C64IWDG独立看门狗KEYLCD1602LEDRADIOTIME1_pwmTime4_1Time4_2USART1AD应用.pdfGPIO口操作.pdfI2C应用.pdfIWDG_独立看门狗.pdfMMA7455例程简单介绍.pdfSPI.pdfTIME1-PWM应用.pdfTIME4应用.pdfUSART应用.pdf时钟.pdf蜂鸣器应用.pdf
标签: stm8 单片机 开发板 stm8s208rb demo
上传时间: 2021-10-25
上传用户:qdxqdxqdxqdx
STM32F429_F746_F767核心板+开发底板AD+PADS格式(原理图库+PCB封装库):核心板原理图库:Library Component Count : 28Name Description----------------------------------------------------------------------------------------------------2X28PIN_DIP3.0MM 40P-FPC-0.5BAT54CCJA1117B-3.3CRYSTAL_25MHZ_3225 C_0.1UF_0402 C_0.1UF_0603 C_10P_0402 C_10UF_0603 C_2.2UF_0402C_22P_0402 GZ1005D601TF IS42S16400J KEY_3X6 LED_BLUE_0603 LED_RED_0603 NC R_0R_0402 R_10K_0402R_1K_0402 R_2.2K_0402R_33R_0402STM32F767IGT6 USB_MICRO_DIP W25Q128FVSGXH2.54-5P XTAL_32.768KHZ核心板PCB库:Component Count : 18Component Name-----------------------------------------------2X28X2.54MM3.0MM_4.540P-FPC-0.532153225C_0603C_1206LED_0603LQFP176MICRO_USB_5SSC0402SOT-23SOT-89-3LSR0402SW3$2F$6-SMDTSOP-54W25Q128XH2.54-5P_NS开发板封装库:Component Count : 52Component Name-----------------------------------------------1_DIP1X2PIN_SMD2X6P_SMD2X19X2.54MM2X28X2.54MM3.0MM20PIN_2.54_DIP_BOT20PIN-JTAG06031206C3225AVX_B_3528-21BATERYBeep-9.5X5.5C_0603C_1206CON_2PINDB9DC-005DIODE_SOPDO-214EC_47UF_6.5X6.5EC_220UF_6.5X6.5EMW1062GDCD4532HDR1X3HDR1X4LED_0603LED_RGB_5MMMAX485MAX3232MIC_6X2.2PJ-3001SQFN24QFN24AQFN32R_0603R-3X3R5MMRJ45RT7272SOP8SOP16SOT-23SOT-353SW6.2$2F$6.2-DIPASW13_6TF_CARDTO-252-2LUSB-AF90USB-MINIXTAL_SMD
上传时间: 2021-12-08
上传用户:hxd
STM32L475开发板PDF原理图+AD集成3D封装库+主要器件技术手册,集成封装库型号列表如下:Library Component Count : 44Name Description----------------------------------------------------------------------------------------------------ANT-2.4G ANT,2.4G,PCB天线ATK-TEST-1*4-2.54mm 测试点ATK_MODULE 单排母,1*6,2.54mmBeep 3.3V有源蜂鸣器BUTTON_DIP3 拨动开关SS-12F44C-0402-SMD C-0603-SMD C-CAP-SMD-220uF/10V C-CEP-220uF/16V D-1N4148 Header-1*3-2.54mm 单排针-2.54mmHeader-2*10-2.54mm 双排针-2.54mmHeader-2*2-2.54mm 双排针-2.54mmHeader-2*3-2.54mm 双排针-2.54mmHeader-2*4-2.54mm 双排座-2.54mmIR-LED 1206红外发射管(侧)IR-LF0038GKLL-1 红外接收管SMDJ-MICRO-USB-5S Micro USB 5.9有柱脚长1.25加长针L-0420-4.7uH 电感,4.7uH,3ALCD-TFT-H13TS38A LCD,TFT,1.3'240*240,禹龙LED-0603-RED 发光二极管-红色LED-RGB-1615-0603 RGB,共阳,1615,0603MIC-6022 MICMotor-SMD 电机,SMDPhone-3-M 耳机座,三节R-0402-SMD 贴片电阻R-0805-SMD 贴片电阻RT9193-3.3S-KEY-SMD-324225 KEY,SMD,324225S8050-SMD SD-MICRO-TF SD,MICRO,TFU-AHT10 Sensor,温湿度传感器U-AP3216C Sensor.光照/距离U-AP6181 WIFI Module,SDIOU-ES8388 AUDIO,2-ch DAC,2-ch ADCU-ICM-20608 三轴陀螺仪/三轴加速度计,U-L9110S 电机驱动,800mAU-RT9013-3.3 LDO,500mAU-STM32F103C8T6 U-STM32L475VET6 MCU,LQFP100,512K FLASH,128K RAMU-W25Q128 SPI FLASH,16MY-12M-SMD 晶振 - 12M贴片Y-3215-32.768K XTAL,3215,32.768KY-3215-8M XTAL,3215,8MHz
上传时间: 2021-12-15
上传用户:2431247090
STM32F407单片机开发板PDF原理图+AD集成封装库+主要器件技术手册资料:AD集成封装库列表:Library Component Count : 54Name Description----------------------------------------------------------------------------------------------------24C256 AMS1117ATK-HC05 ATK-HC05BAT Beep BUTTONC CAPCH340G USB2UARTDDB9 DHT11 数字温湿度传感器HEAD2HEAD2*22 HR911105 HS0038Header 16 Header, 16-PinHeader 2 Header, 2-PinHeader 2X2 Header, 2-Pin, Dual rowHeader 3X2 Header, 3-Pin, Dual rowHeader 4 Header, 4-PinHeader 9X2 Header, 9-Pin, Dual rowIS62WV51216 JTAG KEY_M L LAN8720 ETH PHYLED2 Typical RED, GREEN, YELLOW, AMBER GaAs LEDLSENS LIGHT SENSL_SOP MAX3232 MAX3485 MIC MOS-P IRLML6401/SI2301MP2359 DC DC Step Down ICMPU6050 9轴运动处理传感器NPN 8050/BCW846/BCW847NRF24L01 PHONE_M PNP 8550/BCW68POW R SMBJ TVSSN65HVD230D STM32F407ZET6 STM32F407ZET6TEST-POINT 测试点TFT_LCD TPAD ALIENTEK TPADUSB5USB_A_90 USB-A-90W25X16
上传时间: 2021-12-15
上传用户:ttalli
STM32F407开发板ALTIUM设计原理图+AD集成封装库文件,Altium Designer 设计的工程文件,包括原理图和未布局布线的PCB文件,可作为你产品设计的参考。集成库器件型号列表如下:Library Component Count : 46Name Description----------------------------------------------------------------------------------------------------1N4106 12V/0.5W稳压管1N4148 高速开关二极管24Cxx 外置EEPROM5向按键 8050-SMD 高频放大-NPN型AMS1117 三端稳压芯片Beep 蜂鸣器C 无极性贴片电容C-CAP 直插电解电容CR-3V 微型电池DB9 9针串口DP83848IVDS18B20 数字温度计FU 5x20 5*20保险丝HS0038 Header 10X2 10*2P接插件Header 13X2 13*2P接插件Header 18X2 18*2P接插件Header 2 2P接插件Header 2X2 2*2P接插件Header 3X2 3*2P接插件Header 4 4P接插件Header 4X2 4*2P接插件Header 6 6P接插件Header 9X2 9*2P接插件IS62WV51216 JATG L 小功率贴片电感LED-5MM 5mm插件LEDMAX232 MAX232MAX485 MP2359 P-DC 低压电源接口R 贴片电阻RJ45 SDCARD-M TF卡槽SS14 肖特基二极管SSW-2P 2路波动开关STM32F407ZGT6TFTLCD TJA1050 USB OTGUSB-5P 微型USB母座W25Qxx 外置FlashXTALXTAL-2 2脚晶振
上传时间: 2021-12-17
上传用户:zhaiyawei
VIP专区-嵌入式/单片机编程源码精选合集系列(72)资源包含以下内容:1. STC89C58RD+ FLASH-ISP-IAP.2. c51programe的程序可能有你想要的.3. ARM和CPLD的JTAG的原理图.4. MIPS Assembly Language Programming.5. 一个已经在使用的16位DAC8830的源码,有用的,欢迎下载.6. C51-CPLD联合开发板的原理图。以调试通过.7. 美国豪威OmniVision生产的COMS SENSOR 读写程序.8. 2232接收 232接收 232接收.9. minigui实例源代码.10. 本程序使用一个定时器和任意的2个I/O口模拟一个串口通信。可以直接调用。.11. 仿真实例大集合收集的仿真实例免费为大家提供.12. 仿真实例大集合收集的仿真实例免费为大家提供.13. 仿真实例大集合收集的仿真实例免费为大家提供.14. 8051AD,use keil to program this code..15. 51DEVTest use keil to program this code..16. Beep use keil to program this code..17. use keil to program this code..18. use keil to program this code..19. 适合KS8695X.20. KS8695的无线部分.21. ks8695的SOHO应用中的tftp部分.22. ks8695 SOHO应用中的iptable.23. 也是ks8695 soho中的文件.24. 此程序为ds18b20温度采集芯片的keil c 程序没有加入显示的部分,但已调试过.可用.25. 红外模块的控制程序实现.26. 模数转换模块ad7416的控制程序.27. 利用keil 51实现温湿度模块的控制程序.28. 一些关于Nios II学习的好资料.29. 文档中给出了使用VHDL编写的频率的精确测量方法的代码,同时还有cPLD与e2rom等的接口代码.30. c程序开发嵌入式工程模板,适用于进行arm7开发.在s3c44b0x进行开发时,需要包含必要的库文件,初始化文件等,这些文件为公共码,不需修改,用户只需在模板中编写main.c.31. MARS-7128-S CPLD开发板VHDL 源码.32. c51 uc/os源程序.33. ZigBee技术手册.34. 8051工作于11.0592MHZ,RAM扩展为128KB的628128,FlashRom扩展为128KB的AT29C010A 128KB的RAM分成4个区(Bank) 地址分配为0x0000-0.35. 用CPLD实现NAND FLASH接口的VHDL源码.36. 音频编解码芯片 LM4930的测试程序.37. 串行通信源程序.38. UC/OS2 的源码 北航大学出版社的那个版本 邵贝贝翻译的.39. CPLD/FPGA设计中的时钟应用讲解 及其实例.40. 本程序实现了7279键盘驱动芯片的使用和金鹏公司生产的液晶显示功能.
上传时间: 2013-06-01
上传用户:eeworm