当你认为你已经掌握了PCB 走线的特征阻抗Z0,紧接着一份数据手册告诉你去设计一个特定的差分阻抗。令事情变得更困难的是,它说:“……因为两根走线之间的耦合可以降低有效阻抗,使用50Ω的设计规则来得到一个大约80Ω的差分阻抗!”这的确让人感到困惑!这篇文章向你展示什么是差分阻抗。除此之外,还讨论了为什么是这样,并且向你展示如何正确地计算它。 单线:图1(a)演示了一个典型的单根走线。其特征阻抗是Z0,其上流经的电流为i。沿线任意一点的电压为V=Z0*i( 根据欧姆定律)。一般情况,线对:图1(b)演示了一对走线。线1 具有特征阻抗Z11,与上文中Z0 一致,电流i1。线2具有类似的定义。当我们将线2 向线1 靠近时,线2 上的电流开始以比例常数k 耦合到线1 上。类似地,线1 的电流i1 开始以同样的比例常数耦合到线2 上。每根走线上任意一点的电压,还是根据欧姆定律,
标签: 差分阻抗
上传时间: 2013-10-20
上传用户:lwwhust
磁芯电感器的谐波失真分析 摘 要:简述了改进铁氧体软磁材料比损耗系数和磁滞常数ηB,从而降低总谐波失真THD的历史过程,分析了诸多因数对谐波测量的影响,提出了磁心性能的调控方向。 关键词:比损耗系数, 磁滞常数ηB ,直流偏置特性DC-Bias,总谐波失真THD Analysis on THD of the fer rite co res u se d i n i nductancShi Yan Nanjing Finemag Technology Co. Ltd., Nanjing 210033 Abstract: Histrory of decreasing THD by improving the ratio loss coefficient and hysteresis constant of soft magnetic ferrite is briefly narrated. The effect of many factors which affect the harmonic wave testing is analysed. The way of improving the performance of ferrite cores is put forward. Key words: ratio loss coefficient,hysteresis constant,DC-Bias,THD 近年来,变压器生产厂家和软磁铁氧体生产厂家,在电感器和变压器产品的总谐波失真指标控制上,进行了深入的探讨和广泛的合作,逐步弄清了一些似是而非的问题。从工艺技术上采取了不少有效措施,促进了质量问题的迅速解决。本文将就此热门话题作一些粗浅探讨。 一、 历史回顾 总谐波失真(Total harmonic distortion) ,简称THD,并不是什么新的概念,早在几十年前的载波通信技术中就已有严格要求<1>。1978年邮电部公布的标准YD/Z17-78“载波用铁氧体罐形磁心”中,规定了高μQ材料制作的无中心柱配对罐形磁心详细的测试电路和方法。如图一电路所示,利用LC组成的150KHz低通滤波器在高电平输入的情况下测量磁心产生的非线性失真。这种相对比较的实用方法,专用于无中心柱配对罐形磁心的谐波衰耗测试。 这种磁心主要用于载波电报、电话设备的遥测振荡器和线路放大器系统,其非线性失真有很严格的要求。 图中 ZD —— QF867 型阻容式载频振荡器,输出阻抗 150Ω, Ld47 —— 47KHz 低通滤波器,阻抗 150Ω,阻带衰耗大于61dB, Lg88 ——并联高低通滤波器,阻抗 150Ω,三次谐波衰耗大于61dB Ld88 ——并联高低通滤波器,阻抗 150Ω,三次谐波衰耗大于61dB FD —— 30~50KHz 放大器, 阻抗 150Ω, 增益不小于 43 dB,三次谐波衰耗b3(0)≥91 dB, DP —— Qp373 选频电平表,输入高阻抗, L ——被测无心罐形磁心及线圈, C ——聚苯乙烯薄膜电容器CMO-100V-707APF±0.5%,二只。 测量时,所配用线圈应用丝包铜电磁线SQJ9×0.12(JB661-75)在直径为16.1mm的线架上绕制 120 匝, (线架为一格) , 其空心电感值为 318μH(误差1%) 被测磁心配对安装好后,先调节振荡器频率为 36.6~40KHz, 使输出电平值为+17.4 dB, 即选频表在 22′端子测得的主波电平 (P2)为+17.4 dB,然后在33′端子处测得输出的三次谐波电平(P3), 则三次谐波衰耗值为:b3(+2)= P2+S+ P3 式中:S 为放大器增益dB 从以往的资料引证, 就可以发现谐波失真的测量是一项很精细的工作,其中测量系统的高、低通滤波器,信号源和放大器本身的三次谐波衰耗控制很严,阻抗必须匹配,薄膜电容器的非线性也有相应要求。滤波器的电感全由不带任何磁介质的大空心线圈绕成,以保证本身的“洁净” ,不至于造成对磁心分选的误判。 为了满足多路通信整机的小型化和稳定性要求, 必须生产低损耗高稳定磁心。上世纪 70 年代初,1409 所和四机部、邮电部各厂,从工艺上改变了推板空气窑烧结,出窑后经真空罐冷却的落后方式,改用真空炉,并控制烧结、冷却气氛。技术上采用共沉淀法攻关试制出了μQ乘积 60 万和 100 万的低损耗高稳定材料,在此基础上,还实现了高μ7000~10000材料的突破,从而大大缩短了与国外企业的技术差异。当时正处于通信技术由FDM(频率划分调制)向PCM(脉冲编码调制) 转换时期, 日本人明石雅夫发表了μQ乘积125 万为 0.8×10 ,100KHz)的超优铁氧体材料<3>,其磁滞系数降为优铁
上传时间: 2014-12-24
上传用户:7891
用AVR单片机实现快速跳频
上传时间: 2013-10-23
上传用户:cicizoe
/*--------- 8051内核特殊功能寄存器 -------------*/ sfr ACC = 0xE0; //累加器 sfr B = 0xF0; //B 寄存器 sfr PSW = 0xD0; //程序状态字寄存器 sbit CY = PSW^7; //进位标志位 sbit AC = PSW^6; //辅助进位标志位 sbit F0 = PSW^5; //用户标志位0 sbit RS1 = PSW^4; //工作寄存器组选择控制位 sbit RS0 = PSW^3; //工作寄存器组选择控制位 sbit OV = PSW^2; //溢出标志位 sbit F1 = PSW^1; //用户标志位1 sbit P = PSW^0; //奇偶标志位 sfr SP = 0x81; //堆栈指针寄存器 sfr DPL = 0x82; //数据指针0低字节 sfr DPH = 0x83; //数据指针0高字节 /*------------ 系统管理特殊功能寄存器 -------------*/ sfr PCON = 0x87; //电源控制寄存器 sfr AUXR = 0x8E; //辅助寄存器 sfr AUXR1 = 0xA2; //辅助寄存器1 sfr WAKE_CLKO = 0x8F; //时钟输出和唤醒控制寄存器 sfr CLK_DIV = 0x97; //时钟分频控制寄存器 sfr BUS_SPEED = 0xA1; //总线速度控制寄存器 /*----------- 中断控制特殊功能寄存器 --------------*/ sfr IE = 0xA8; //中断允许寄存器 sbit EA = IE^7; //总中断允许位 sbit ELVD = IE^6; //低电压检测中断控制位 8051
上传时间: 2013-10-30
上传用户:yxgi5
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
介绍了用单片机C 语言实现无功补偿中电容组循环投切的基本原理和算法,并举例说明。关键词:循环投切;C51;无功补偿中图分类号: TM76 文献标识码: BAbstract: This paper introduces the aplication of C51 in the controlling of capacitorsuits cycle powered to be on and off in reactive compensation.it illustrate thefondamental principle and algorithm with example.Key words: cycle powered to be on and off; C51; reactive compensation 为提高功率因数,往往采用补偿电容的方法来实现。而电容器的容量是由实时功率因数与标准值进行比较来决定的,实时功率因数小于标准值时,需投入电容组,实时功率因数大于标准值时,则需切除电容组。投切方式的不合理,会对电容器造成损坏,现有的控制器多采用“顺序投切”方式,在这种投切方式下排序在前的电容器组,先投后切;而后面的却后投先切。这不仅使处于前面的电容组经常处于运行状态,积累热量不易散失,影响其使用寿命,而且使后面的投切开关经常动作,同样减少寿命。合理的投切方式应为“循环投切”。这种投切方式使先投入的运行的电容组先退出,后投的后切除,从而使各组电容及投切开关使用机率均等,降低了电容组的平均运行温度,减少了投切开关的动作次数,延长了其使用寿命。
上传时间: 2014-12-27
上传用户:hopy
引言 在数字信息传输中,基带数字信号通常要经过调制器调制,将频率搬移到适合信息传输的频段上。2FSK就是用数字信号去调制载波的频率(移频键控),由于它具有方法简单、易于实现、抗噪声和抗衰落性能较强等优点,因此在现代数字通信系统的低、中速数据传输中得到了广泛应用。 直接数字频率合成技术(DDS)将先进的数字处理技术与方法引入信号合成领域。DDS器件采用高速数字电路和高速D/A转换技术,具备频率转换时间短、频率分辨率高、频率稳定度高、输出信号频率和相位可快速程控切换等优点,可以实现对信号的全数字式调制。
上传时间: 2014-12-27
上传用户:1427796291
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
HT49 MCU的可编程分频器(PFD)使用指南 本文主要介绍 HT49 单片机可编程分频器(PFD)的使用及注意事项。
上传时间: 2013-11-03
上传用户:crazyer