变压器与电感器设计手册-第三版(中文)
上传时间: 2014-12-24
上传用户:raron1989
提出了一种利用耦合输出电感的新型次级箝位零电压、零电流开关-脉宽调制(ZVZCS-PWM)全桥变换器。它采用无损耗元件及有源开关的简单辅助电路,实现了滞后桥臂的零电流开关。与传统的ZVZCS-PWM全桥变换器相比,这种新型变换器具有电路结构简单,整机效率高,以及轻载时能根据负载情况自动调整箝位电容的充放电电流。因而非常适合用于IGBT 作为主开关的高压、大功率应用场合。详细分析了该变换器的工作原理及电路设计;在一台功率为1kW的工程样机上测出了实际运行时的波形及变换器效率。实验结果证明,该变换器能在任意负载下实现滞后桥臂的零电流开关,且满载时的效率最高达到92%。关键词: 变换器;控制/软开关
上传时间: 2014-12-24
上传用户:wujijunshi
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
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
串行编程器源程序(Keil C语言)//FID=01:AT89C2051系列编程器//实现编程的读,写,擦等细节//AT89C2051的特殊处:给XTAL一个脉冲,地址计数加1;P1的引脚排列与AT89C51相反,需要用函数转换#include <e51pro.h> #define C2051_P3_7 P1_0#define C2051_P1 P0//注意引脚排列相反#define C2051_P3_0 P1_1#define C2051_P3_1 P1_2#define C2051_XTAL P1_4#define C2051_P3_2 P1_5#define C2051_P3_3 P1_6#define C2051_P3_4 P1_7#define C2051_P3_5 P3_5 void InitPro01()//编程前的准备工作{ SetVpp0V(); P0=0xff; P1=0xff; C2051_P3_5=1; C2051_XTAL=0; Delay_ms(20); nAddress=0x0000; SetVpp5V();} void ProOver01()//编程结束后的工作,设置合适的引脚电平{ SetVpp5V(); P0=0xff; P1=0xff; C2051_P3_5=1; C2051_XTAL=1;} BYTE GetData()//从P0口获得数据{ B_0=P0_7; B_1=P0_6; B_2=P0_5; B_3=P0_4; B_4=P0_3; B_5=P0_2; B_6=P0_1; B_7=P0_0; return B;} void SetData(BYTE DataByte)//转换并设置P0口的数据{ B=DataByte; P0_0=B_7; P0_1=B_6; P0_2=B_5; P0_3=B_4; P0_4=B_3; P0_5=B_2; P0_6=B_1; P0_7=B_0;} void ReadSign01()//读特征字{ InitPro01(); Delay_ms(1);//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 C2051_P3_3=0; C2051_P3_4=0; C2051_P3_5=0; C2051_P3_7=0; Delay_ms(20); ComBuf[2]=GetData(); C2051_XTAL=1; C2051_XTAL=0; Delay_us(20); ComBuf[3]=GetData(); ComBuf[4]=0xff;//----------------------------------------------------------------------------- ProOver01();} void Erase01()//擦除器件{ InitPro01();//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 C2051_P3_3=1; C2051_P3_4=0; C2051_P3_5=0; C2051_P3_7=0; Delay_ms(1); SetVpp12V(); Delay_ms(1); C2051_P3_2=0; Delay_ms(10); C2051_P3_2=1; Delay_ms(1);//----------------------------------------------------------------------------- ProOver01();} BOOL Write01(BYTE Data)//写器件{//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 //写一个单元 C2051_P3_3=0; C2051_P3_4=1; C2051_P3_5=1; C2051_P3_7=1; SetData(Data); SetVpp12V(); Delay_us(20); C2051_P3_2=0; Delay_us(20); C2051_P3_2=1; Delay_us(20); SetVpp5V(); Delay_us(20); C2051_P3_4=0; Delay_ms(2); nTimeOut=0; P0=0xff; nTimeOut=0; while(!GetData()==Data)//效验:循环读,直到读出与写入的数相同 { nTimeOut++; if(nTimeOut>1000)//超时了 { return 0; } } C2051_XTAL=1; C2051_XTAL=0;//一个脉冲指向下一个单元//----------------------------------------------------------------------------- return 1;} BYTE Read01()//读器件{ BYTE Data;//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 //读一个单元 C2051_P3_3=0; C2051_P3_4=0; C2051_P3_5=1; C2051_P3_7=1; Data=GetData(); C2051_XTAL=1; C2051_XTAL=0;//一个脉冲指向下一个单元//----------------------------------------------------------------------------- return Data;} void Lock01()//写锁定位{ InitPro01();//先设置成编程状态//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 if(ComBuf[2]>=1)//ComBuf[2]为锁定位 { C2051_P3_3=1; C2051_P3_4=1; C2051_P3_5=1; C2051_P3_7=1; Delay_us(20); SetVpp12V(); Delay_us(20); C2051_P3_2=0; Delay_us(20); C2051_P3_2=1; Delay_us(20); SetVpp5V(); } if(ComBuf[2]>=2) { C2051_P3_3=1; C2051_P3_4=1; C2051_P3_5=0; C2051_P3_7=0; Delay_us(20); SetVpp12V(); Delay_us(20); C2051_P3_2=0; Delay_us(20); C2051_P3_2=1; Delay_us(20); SetVpp5V(); }//----------------------------------------------------------------------------- ProOver01();} void PreparePro01()//设置pw中的函数指针,让主程序可以调用上面的函数{ pw.fpInitPro=InitPro01; pw.fpReadSign=ReadSign01; pw.fpErase=Erase01; pw.fpWrite=Write01; pw.fpRead=Read01; pw.fpLock=Lock01; pw.fpProOver=ProOver01;}
上传时间: 2013-11-12
上传用户:gut1234567
电子元器件 任何一个电子电路,都是由电子元器件组合而成。了解常用元器件的性能、型号规格、组成分类及识别方法,用简单测试的方法判断元器件的好坏,是选择、使用电子元器件的基础,是组装、调试电子电路必须具备的技术技能。下面我们首先分别介绍电阻器、电容器、电感器、继电器、晶体管、光电器件、集成电路等元器件的基本知识1 .电阻器电阻器在电路中起限流、分流、降压、分压、负载、匹配等作用。1.1电阻器的分类电阻器按其结构可分为三类,即固定电阻器、可变电阻器(电位器)和敏感电阻器。按组成材料的不同,又可分为炭膜电阻器、金属膜电阻器、线绕电阻器、热敏电阻器、压敏电阻器等。常用电阻器的外形图如图1.1 1.2 电阻器的参数及标注方法电阻器的参数很多,通常考虑的有标称阻值、额定功率和允许偏差等。(1)、标称阻值和允许误差 电阻器的标称阻值是指电阻器上标出的名义阻值。而实际阻值与标称阻值之间允许的最大偏差范围叫做阻值允许偏差,一般用标称阻值与实际阻值之差除以标称阻值所得的百分数表示,又称阻值误差。普通电阻器阻值误差分三个等级:允许误差小于±5﹪的称Ⅰ级,允许误差小于±10﹪的称Ⅱ级,允许误差小于±20﹪的称Ⅲ级。表示电阻器的阻值和误差的方法有两种:一是直标法,二是色标法。直标法是将电阻的阻值直接用数字标注在电阻上;色标法是用不同颜色的色环来表示电阻器的阻值和误差,其规定如表1.1(a)和(b)。 用色标法表示电阻时,根据阻值的精密情况又分为两种:一是普通型电阻,电阻体上有四条色环,前两条表示数字,第三条表示倍乘,第四条表示误差。二是精密型电阻,电阻体上有五条色环,前三条表示数字,第四条表示倍乘,第五条表示误差。通用电阻器的标称阻值系列如表1.2所示,任何电阻器的标称阻值都应为表1.2所列数值乘以10nΩ,其中n为整数。(2)、电阻器的额定功率 电阻器的额定功率指电阻器在直流或交流电路中,长期连续工作所允许消耗的最大功率。常用的额定功率有1/8W、1/4W、1/2W、1W、2W、5W、10W、25W等。电阻器的额定功率有两种表示方法,一是2W以上的电阻,直接用阿拉伯数字标注在电阻体上,二是2W以下的炭膜或金属膜电阻,可以根据其几何尺寸判断其额定功率的大小如表1.3。3 电阻器的简单测试 电阻器的好坏可以用仪表测试,电阻器阻值的大小也可以用有关仪器、仪表测出,测试电阻值通常有两种方法,一是直接测试法,另一种是间接测试法。(1).直接测试法就是直接用欧姆表、电桥等仪器仪表测出电阻器阻值的方法。通常测试小于1Ω的小电阻时可用单臂电桥,测试1Ω到1MΩ电阻时可用电桥或欧姆表(或万用表),而测试1MΩ以上大电阻时应使用兆欧表。
上传时间: 2013-10-26
上传用户:windwolf2000
一、台达变频器的超级密码 -B系列的 :57522 -H系列的:33582 S1系列变频的万能密码:575222、 二、欧瑞变频器(也就是之前的惠丰变频器)超级密码是: 18881500-G 1500-P 1000-G 200-G的都是通用的。 三、烁普变频高级菜单P301输入321A000输入11,刷新程序; P301输入321A000输入9,进菜单E001,输入机器G; PE002额定电压,E003额定电流,E004电压校正,E005不动,E006电流校正。 四、普传PI2000刷新设定方法:
上传时间: 2013-11-11
上传用户:macarco
GDCM型绕线共模电感器 一 特征 绕线贴片结构,尺寸小 对高频共模噪声具有良好的抑制效果 良好的可焊接性和耐焊接性,无铅符合ROSE 二 用途 PC机及周边外设的USB接口、LCD的LVDS线 三 外观尺寸 四 规格命名
上传时间: 2013-11-14
上传用户:18752787361
介绍了以PLC为控制单元,变频器为执行单元的控制系统及其在烟支输送储存系统中的应用,并给出了系统的组成、硬件的配置及具体的实现方法。关键词 : PLC 变频器输送储存系统 Ab str ac t;T hisp aperi ntroducest hec ontrols ystem whichc onsistso fP LCa ndf requencyc onvertera ndi ts application in the buffer conveyor for cigarettes. The system constitute, hardware disposal and realization method are also presented in detail.Keywords:PLC f requencyc onverter b ufferc onveyor
上传时间: 2013-10-22
上传用户:ouyang426
一个简单好用的B+树算法实现
上传时间: 2015-01-04
上传用户:缥缈