· 摘要: MATLAB是一种建立在向量、数组、矩阵基础上,面向科学和工程计算的高级语言,为科学研究和工程计算提供了一个方便有效的工具.该文简要介绍了B样条和B样条小波的构成,并利用MATLAB语言编写了绘制任意阶B样条和B样条小波图形的程序.
上传时间: 2013-04-24
上传用户:sqq
苏泊尔C21S02-B电磁炉电路图,红线标注,重点模块说明!
上传时间: 2013-06-22
上传用户:huangzr5
制作基于PIC Mcu 的ADS-B接收机的全套资料,包括SCH、PCB、源码和PC端软件。
上传时间: 2013-04-24
上传用户:cx111111
2012TI杯陕西赛题H题,2012TI杯陕西赛题B题--频率补偿电路.
上传时间: 2013-10-07
上传用户:ysystc670
TLC2543是TI公司的12位串行模数转换器,使用开关电容逐次逼近技术完成A/D转换过程。由于是串行输入结构,能够节省51系列单片机I/O资源;且价格适中,分辨率较高,因此在仪器仪表中有较为广泛的应用。 TLC2543的特点 (1)12位分辩率A/D转换器; (2)在工作温度范围内10μs转换时间; (3)11个模拟输入通道; (4)3路内置自测试方式; (5)采样率为66kbps; (6)线性误差±1LSBmax; (7)有转换结束输出EOC; (8)具有单、双极性输出; (9)可编程的MSB或LSB前导; (10)可编程输出数据长度。 TLC2543的引脚排列及说明 TLC2543有两种封装形式:DB、DW或N封装以及FN封装,这两种封装的引脚排列如图1,引脚说明见表1 TLC2543电路图和程序欣赏 #include<reg52.h> #include<intrins.h> #define uchar unsigned char #define uint unsigned int sbit clock=P1^0; sbit d_in=P1^1; sbit d_out=P1^2; sbit _cs=P1^3; uchar a1,b1,c1,d1; float sum,sum1; double sum_final1; double sum_final; uchar duan[]={0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f}; uchar wei[]={0xf7,0xfb,0xfd,0xfe}; void delay(unsigned char b) //50us { unsigned char a; for(;b>0;b--) for(a=22;a>0;a--); } void display(uchar a,uchar b,uchar c,uchar d) { P0=duan[a]|0x80; P2=wei[0]; delay(5); P2=0xff; P0=duan[b]; P2=wei[1]; delay(5); P2=0xff; P0=duan[c]; P2=wei[2]; delay(5); P2=0xff; P0=duan[d]; P2=wei[3]; delay(5); P2=0xff; } uint read(uchar port) { uchar i,al=0,ah=0; unsigned long ad; clock=0; _cs=0; port<<=4; for(i=0;i<4;i++) { d_in=port&0x80; clock=1; clock=0; port<<=1; } d_in=0; for(i=0;i<8;i++) { clock=1; clock=0; } _cs=1; delay(5); _cs=0; for(i=0;i<4;i++) { clock=1; ah<<=1; if(d_out)ah|=0x01; clock=0; } for(i=0;i<8;i++) { clock=1; al<<=1; if(d_out) al|=0x01; clock=0; } _cs=1; ad=(uint)ah; ad<<=8; ad|=al; return(ad); } void main() { uchar j; sum=0;sum1=0; sum_final=0; sum_final1=0; while(1) { for(j=0;j<128;j++) { sum1+=read(1); display(a1,b1,c1,d1); } sum=sum1/128; sum1=0; sum_final1=(sum/4095)*5; sum_final=sum_final1*1000; a1=(int)sum_final/1000; b1=(int)sum_final%1000/100; c1=(int)sum_final%1000%100/10; d1=(int)sum_final%10; display(a1,b1,c1,d1); } }
上传时间: 2013-11-19
上传用户:shen1230
PSHLY-B回路电阻测试仪介绍
上传时间: 2013-11-05
上传用户:木子叶1
针对目前使用的RS232接口数字化B超键盘存在PC主机启动时不能设置BIOS,提出一种PS2键盘的设计方法。基于W78E052D单片机,采用8通道串行A/D转换器设计了8个TGC电位器信息采集电路,电位器位置信息以键盘扫描码序列形式发送,正交编码器信号通过XC9536XL转换为单片机可接收的中断信号,软件接收到中断信息后等效处理成按键。结果表明,在满足开机可设置BIOS同时,又可实现超声特有功能,不需要专门设计驱动程序,接口简单,成本低。 Abstract: Aiming at the problem of the digital ultrasonic diagnostic imaging system keyboard with RS232 interface currently used couldn?蒺t set the BIOS when the PC boot, this paper proposed a design method of PS2 keyboards. Based on W78E052D microcontroller,designed eight TGC potentiometers information acquisition circuit with 8-channel serial A/D converter, potentiometer position information sent out with keyboard scan code sequentially.The control circuit based on XC9536 CPLD is used for converting the mechanical actions of the encoders into the signals that can be identified by the MCU, software received interrupt information and equivalently treatmented as key. The results show that the BIOS can be set to meet the boot, ultrasound specific functionality can be achieved at the same time, it does not require specially designed driver,the interface is simple and low cost.
上传时间: 2013-10-10
上传用户:asdfasdfd
PIC 单片机的组成习题解答 解答部分1. PIC 单片机指令的执行过程遵循着一种全新哈佛总线体系结构的原则,充分利用了计算机系统在程序存储器和数据存储器之间地址空间的相互独立性,取指过程和执行指令过程可以流水线操作同时进行。因此,当PIC 时钟频率为4MHZ时,执行一条非转移类指令需要4 个系统时钟周期,即1us,但其指令执行的真实时间应为2us(在执行n—1 条指令时取第n 条指令,然后执行第n 条指令)。所以选项B 正确2. 端口RE 共有3 个引脚RE0~RE2,它们除了用做普通I/O 引脚和第5~7 路模拟信号输入引脚外,还依次分别承担并行口读出/写入/片选控制端引脚。A. 对。读出/写入(REO~RE1)。B.错。同步串行的相关引脚与端口C 有关。C.错。通用异步/同步串行的相关引脚与端口C有关。D. 错。CCP模块的相关引脚也是与端口C有关。所以选项A正确。3. 上电延时电路能提供一个固定的72ms 上电延时,从而使VDD有足够的时间上繁荣昌盛到单片机合适的工作电压。所以选项B 正确。
上传时间: 2013-11-09
上传用户:glxcl
I/O 型单片机使用手册 目录 间接寻址寄存器 – IAR, IAR0, IAR1 .............................................35间接寻址指针 – MP, MP0, MP1 ......................................................35存储区指针 – BP .........................................................................36累加器 – ACC...................................................................................37程序计数器低字节寄存器 – PCL....................................................37表格寄存器 – TBLP,TBHP,TBLH....................................................37看门狗定时寄存器 – WDTS............................................................38状态寄存器 – STATUS.....................................................................38中断控制寄存器 – INTC,INTC0,INTC1 .........................................39定时/计数寄存器...............................................................................39输入/输出端口和控制寄存器...........................................................40UART 寄存器 .USR,UCR1,UCR2,TXR/RXR,BRG.......................40输入/输出端口..........................................................................................41上拉电阻............................................................................................41PA 口的唤醒......................................................................................41输入/输出端口控制寄存器...............................................................41引脚共享功能....................................................................................42编程注意事项....................................................................................45定时/计数器..............................................................................................46配置定时/计数器输入时钟源...........................................................47定时/计数寄存器 – TMR, TMR0,TMR0L/TMR0H,TMR1L/TMR1H,TMR2.....................................................................49定时/计数控制寄存器 – TMRC,TMR0C,TMR1C,TMR2C............50定时器模式........................................................................................53事件计数器模式................................................................................53脉冲宽度测量模式............................................................................54可编程分频器(PFD)和蜂鸣器的应用..............................................55预分频器(Prescaler)...........................................................................56输入/输出接口...................................................................................56编程注意事项....................................................................................57定时/计数器应用范例.......................................................................57中断............................................................................................................59中断寄存器........................................................................................59中断优先权........................................................................................62外部中断............................................................................................63定时/计数器中断...............................................................................64UART 中断........................................................................................64编程注意事项....................................................................................65复位和初始化............................................................................................66复位....................................................................................................66目录iii异步串行口——UART............................................................................74UART 特性..........................................................................................74UART 外部引脚..................................................................................74数据发送.............................................................................................75UART 状态控制寄存器......................................................................75波特率发生器.....................................................................................79UART 设置与控制..............................................................................81UART 发送器......................................................................................83UART 接收器......................................................................................84接收错误处理.....................................................................................85接收中断图解.....................................................................................86地址检测模式.....................................................................................86暂停模式下的UART 功能.................................................................87UART 应用范例.................................................................................87振荡器........................................................................................................89系统时钟配置....................................................................................89系统晶体/陶瓷振荡器.......................................................................89系统电阻电容振荡器........................................................................90内部系统电阻电容振荡器................................................................90RTC 振荡器........................................................................................91看门狗定时振荡器............................................................................91暂停和唤醒................................................................................................92暂停.....................................................................................................92进入暂停.............................................................................................92静态电流.............................................................................................92唤醒....................................................................................................92看门狗定时器............................................................................................94掩膜选项....................................................................................................96应用电路....................................................................................................97第二部份 程序语言.....................................................................99第二章 指令集介绍.................................................................................101指令集......................................................................................................101指令周期..........................................................................................101数据的传送......................................................................................101算术运算..........................................................................................102逻辑和移位运算..............................................................................102分支和控制的转换..........................................................................102位运算..............................................................................................102查表运算..........................................................................................103其它运算..........................................................................................103指令设定一览表......................................................................................104惯例..................................................................................................104I/O 型单片机使用手册iv第三章 指令定义.....................................................................................107第四章 汇编语言和编译器.....................................................................121常用符号..................................................................................................121语句语法..................................................................................................122名称..................................................................................................122操作项..............................................................................................122操作数项..........................................................................................122注解..................................................................................................122编译伪指令..............................................................................................123条件编译伪指令..............................................................................123文件控制伪指令..............................................................................124程序伪指令......................................................................................126数据定义伪指令..............................................................................130宏指令..............................................................................................132汇编语言指令..........................................................................................136名称..................................................................................................136助记符..............................................................................................136操作数、运算子和表达式..............................................................136其它..........................................................................................................139前置引用..........................................................................................139局部标号..........................................................................................139汇编语言保留字..............................................................................140编译器选项..............................................................................................141编译列表文件格式..................................................................................141源程序列表......................................................................................141编译总结..........................................................................................142其它..................................................................................................142第三部份 开发工具................................................................... 145第五章 单片机开发工具.........................................................................147HT-IDE 集成开发环境............................................................................147盛群单片机仿真器(HT-ICE) ..................................................................149HT-ICE 接口卡.................................................................................149OTP 烧写器.....................................................................................149OTP 适配卡.....................................................................................149系统配置..................................................................................................150HT-ICE 接口卡设置........................................................................151安装..........................................................................................................153系统要求..........................................................................................153硬件安装..........................................................................................153软件安装..........................................................................................154目录v第六章 快速开始.....................................................................................159步骤一:建立一个新项目..............................................................159步骤二:将源程序文件加到项目中..............................................159步骤三:编译项目..........................................................................159步骤四:烧写OTP 单片机.............................................................160步骤五:传送程序与掩膜选项单至Holtek ..................................160附录............................................................................................... 161附录A 特性曲线图...................................................................................163附录B 封装信息.......................................................................................173
上传时间: 2013-10-18
上传用户:blacklee
8051单片机系统扩展与接口技术:第一节 8051 单片机系统扩展概述第二节 单片机外部存储器扩展第三节 单片机输入输出(I/O)口扩展及应用第四节 LED显示器接口电路及显示程序第五节 单片机键盘接口技术第六节 单片机与数模(D/A)及模数(A/D)转换1、地址总线(Address Bus,简写为AB)地址总线可传送单片机送出的地址信号,用于访问外部存储器单元或I/O端口。A 地址总线是单向的,地址信号只是由单片机向外发出。B 地址总线的数目决定了可直接访问的存储器单元的数目。例如N位地址,可以产生2N个连续地址编码,因此可访问2N个存储单元,即通常所说的寻址范围为 2N个地址单元。MCS—51单片机有十六位地址线,因此存储器展范围可达216 = 64KB地址单元。C 挂在总线上的器件,只有地址被选中的单元才能与CPU交换数据,其余的都暂时不能操作,否则会引起数据冲突。2、数据总线(Data Bus,简写为DB)数据总线用于在单片机与存储器之间或单片机与I/O端口之间传送数据。A 单片机系统数据总线的位数与单片机处理数据的字长一致。例如MCS—51单片机是8位字长,所以数据总线的位数也是8位。B 数据总线是双向的,即可以进行两个方向的数据传送。3、控制总线(Control Bus,简写为CB)控制总线实际上就是一组控制信号线,包括单片机发出的,以及从其它部件送给单片机的各种控制或联络信号。对于一条控制信号线来说,其传送方向是单向的,但是由不同方向的控制信号线组合的控制总线则表示为双向的。总线结构形式大大减少了单片机系统中连接线的数目,提高了系统的可靠性,增加了系统的灵活性。此外,总线结构也使扩展易于实现,各功能部件只要符合总线规范,就可以很方便地接入系统,实现单片机扩展。
上传时间: 2013-10-18
上传用户:assef