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  • LTC1325电池管理IC的使用

      For a variety of reasons, it is desirable to charge batteriesas rapidly as possible. At the same time, overchargingmust be limited to prolong battery life. Such limitation ofovercharging depends on factors such as the choice ofcharge termination technique and the use of multi-rate/multi-stage charging schemes. The majority of batterycharger ICs available today lock the user into one fixedcharging regimen, with at best a limited Number ofcustomization options to suit a variety of application needsor battery types. The LTC®1325 addresses these shortcomingsby providing the user with all the functionalblocks needed to implement a simple but highly flexiblebattery charger (see Figure 1) which not only addressesthe issue of charging batteries but also those of batteryconditioning and capacity monitoring.

    标签: 1325 LTC IC的 电池管理

    上传时间: 2013-10-19

    上传用户:royzhangsz

  • 基于HITAG读写芯片HTRC110的读写设备设计

    Designing read/write device (RWD) units for industrial RF-Identification applications is strongly facilitated by the NXP Semiconductors HITAG Reader Chip HTRC110. All needed function blocks, like the antenna driver, modulator demodulator and antenna diagnosis unit, are integrated in the HTRC110. Therefore only a minimum Number of additional passive components are required for a complete RWD. This Application Note describes how to design an industrial RF-Identification system with the HTRC110. The major focus is dimensioning of the antenna, all other external components including clock and power supply, as well as the demodulation principle and its implementatio

    标签: HITAG HTRC 110 读写芯片

    上传时间: 2013-10-22

    上传用户:zhengjian

  • 基于AVR单片机的闭环控制系统

      针对科研实验中对拉压千斤顶加载过程控制的需要,采用ATmega128单片机控制步进电机进而实现对执行系统的电动泵站实行自动控制。对力和位移的数据采集与处理及用步进电机控制电动泵站手柄的技术细节作了重点描述。通过单片机的A/D变换器对AMP放大模块采集的电桥信号作量化处理,千斤顶的操控手柄位置依电动油泵阀门开启的方向和大小作若干定位,单片机根据力或位移传感器信号,实时控制步进电机驱动手柄旋转到相应操控位置。   Abstract:   This article describes the use of ATmega128 AVR microcontroller series of DBS electric pumping stations and QF100/200 separate twoway hydraulic jack to automate the process of manipulating the work of the technical content. Articles on force and displacement data acquisition and processing, and stepper motor control electric pump with the handle of the key technical details were described. Through the MCU’s A / D converter module is collected on the AMP amplification quantify the signal bridge, jack handle position control valve opening according to the direction of electric pumps for a Number of positioning and size of the microcontroller based on force or displacement sensor signals, real-time control stepper motor drive control handle rotate to the appropriate location.  

    标签: AVR 单片机 闭环控制

    上传时间: 2014-01-16

    上传用户:hasan2015

  • AVR32801: UC3A3 Schematic Chec

    AVR32801: UC3A3 Schematic Checklist Features •  Power circuit •  Reset circuit •  USB connection •  External bus interface •  ABDAC sound DAC interface •  JTAG and Nexus debug ports •  Clocks and crystal oscillators •  MMC, SD-card, SDHC, SDIO and CE-ATA interface 1 Introduction A good hardware design comes from a proper schematic. Since UC3A3 devices have a fair Number of pins and functions, the schematic for these devices can be large and quite complex. This application note describes a common checklist which should be used when starting and reviewing the schematics for a UC3A3 design.

    标签: Schematic 32801 UC3A3 Chec

    上传时间: 2014-12-26

    上传用户:DXM35

  • 单片机Flash存储器坏块自动检测

    在深入了解Flash存储器的基础上,采用单片机自动检测存储器无效块。主要通过读取每一块的第1、第2页内容,判断该块的好坏,并给出具体的实现过程,以及部分关键的电路原理图和C语言程序代码。该设计最终实现单片机自动检测Flash坏块的功能,并通过读取ID号检测Flash的性能,同时该设计能够存储和读取1GB数据。 Abstract:  On the basis of in-depth understanding the Flash chips,this paper designs a new program which using the SCM to detect the invalid block.Mainly through reading the data of the first and second page to detect the invalid block.Specific implementation procedure was given,and the key circuit schematic diagram and C language program code was introduced.This design achieved the function of using the MCU checks the invalid block finally,and increased the function by reading the ID Number of Flash to get the performance of the memory.And the design also can write and read1GB data

    标签: Flash 单片机 存储器 自动检测

    上传时间: 2013-10-25

    上传用户:taozhihua1314

  • 基于AT89C52单片机的智能呼救系统设计

    从系统硬件设计和软件构成上,介绍一种以AT89C52单片机为核心,通过无线遥控方法实现对预设电话自动拨号报警的智能呼救系统。系统提供了患者在紧急情况下无法使用电话报警时的一种报警手段。由用户预设的多组电话号码作为语音报警对象,预录可长达20 s的语音信号来说明患者所处地点及病情,并通知患者家人。 Abstract:  This paper introduces a intelligent alarming system which is realized by wireless remote control system.This system chiefly consists of AT89C51 the system can processor.User can input several groups of telephone Number regarded as alarming objects,The system can record some information 20 seconds to tell the site of the patient.And notice the rokonok of the patient.

    标签: 89C C52 AT 89

    上传时间: 2013-11-19

    上传用户:wd450412225

  • MAX7456在可视倒车雷达中的应用

    为解决传统可视倒车雷达视频字符叠加器结构复杂,可靠性差,成本高昂等问题,在可视倒车雷达设计中采用视频字符发生器芯片MAX7456。该芯片集成了所有用于产生用户定义OSD,并将其插入视频信号中所需的全部功能,仅需少量的外围阻容元件即可正常工作。给出了以MAX7456为核心的可视倒车雷达的软、硬件实现方案及设计实例。该方案具有电路结构简单、价格低廉、符合人体视觉习惯的特点。经实际装车测试,按该方案设计的可视倒车雷达视场清晰、提示字符醒目、工作可靠,可有效降低驾驶员倒车时的工作强度、减少倒车事故的发生。 Abstract:  A new video and text generation chip,MAX7456,was used in the design of video parking sensor in order to simplify system structure,improve reliability and reduce cost. This chip included all the necessary functions to generate user-defined OSDs and to add them into the video signals. It could be put into work with addition of just a small Number of resistances and capacitors. This paper provided software and hardware implementation solutions and design example based on the chip. The system had the characteristics of simplicity in circuit structure,lower cost,and comfort for the nature of human vision. Loading road test demonstrates high video and text display quality and reliable performance,which makes the driver easy to see backward and reduces chance of accidents.

    标签: 7456 MAX 可视倒车 中的应用

    上传时间: 2013-12-10

    上传用户:qiaoyue

  • ARM处理器的工作模式

    ARM处理器的工作模式 ARM处理器状态    ARM微处理器的工作状态一般有两种,并可在两种状态之间切换:第一种为ARM状态,此时处理器执行32位的字对齐的ARM指令;第二种为Thumb状态,此时处理器执行16位的、半字对齐的Thumb指令。在程序的执行过程中,微处理器可以随时在两种工作状态之间切换,并且,处理器工作状态的转变并不影响处理器的工作模式和相应寄存器中的内容。但ARM微处理器在开始执行代码时,应该处于ARM状态。  ARM处理器状态    进入Thumb状态:当操作数寄存器的状态位(位0)为1时,可以采用执行BX指令的方法,使微处理器从ARM状态切换到Thumb状态。此外,当处理器处于Thumb状态时发生异常(如IRQ、FIQ、Undef、Abort、SWI等),则异常处理返回时,自动切换到Thumb状态。    进入ARM状态:当操作数寄存器的状态位为0时,执行BX指令时可以使微处理器从Thumb状态切换到ARM状态。此外,在处理器进行异常处理时,把PC指针放入异常模式链接寄存器中,并从异常向量地址开始执行程序,也可以使处理器切换到ARM状态。ARM处理器模式    ARM微处理器支持7种运行模式,分别为:用户模式(usr):ARM处理器正常的程序执行状态。快速中断模式(fiq):用于高速数据传输或通道处理。外部中断模式(irq):用于通用的中断处理。管理模式(svc):操作系统使用的保护模式。数据访问终止模式(abt):当数据或指令预取终止时进入该模式,可用于虚拟存储及存储保护。系统模式(sys):运行具有特权的操作系统任务。定义指令中止模式(und):当未定义的指令执行时进入该模式,可用于支持硬件协处理器的软件仿真。ARM处理器模式    ARM微处理器的运行模式可以通过软件改变,也可以通过外部中断或异常处理改变。大多数的应用程序运行在用户模式下,当处理器运行在用户模式下时,某些被保护的系统资源是不能被访问的。    除用户模式以外,其余的所有6种模式称之为非用户模式,或特权模式;其中除去用户模式和系统模式以外的5种又称为异常模式,常用于处理中断或异常,以及需要访问受保护的系统资源等情况。ARM寄存器    ARM处理器共有37个寄存器。其中包括:31个通用寄存器,包括程序计数器(PC)在内。这些寄存器都是32位寄存器。以及6个32位状态寄存器。 关于寄存器这里就不详细介绍了,有兴趣的人可以上网找找,很多这方面的资料。异常处理    当正常的程序执行流程发生暂时的停止时,称之为异常,例如处理一个外部的中断请求。在处理异常之前,当前处理器的状态必须保留,这样当异常处理完成之后,当前程序可以继续执行。处理器允许多个异常同时发生,它们将会按固定的优先级进行处理。当一个异常出现以后,ARM微处理器会执行以下几步操作:进入异常处理的基本步骤:将下一条指令的地址存入相应连接寄存器LR,以便程序在处理异常返回时能从正确的位置重新开始执行。将CPSR复制到相应的SPSR中。根据异常类型,强制设置CPSR的运行模式位。强制PC从相关的异常向量地址取下一条指令执行,从而跳转到相应的异常处理程序处。如果异常发生时,处理器处于Thumb状态,则当异常向量地址加载入PC时,处理器自动切换到ARM状态。 ARM微处理器对异常的响应过程用伪码可以描述为: R14_ = Return LinkSPSR_= CPSRCPSR[4:0] = Exception Mode NumberCPSR[5] = 0 ;当运行于 ARM 工作状态时If == Reset or FIQ then;当响应 FIQ 异常时,禁止新的 FIQ 异常CPSR[6] = 1PSR[7] = 1PC = Exception Vector Address异常处理完毕之后,ARM微处理器会执行以下几步操作从异常返回:将连接寄存器LR的值减去相应的偏移量后送到PC中。将SPSR复制回CPSR中。若在进入异常处理时设置了中断禁止位,要在此清除。

    标签: ARM 处理器 工作模式

    上传时间: 2013-11-15

    上传用户:hanbeidang

  • AT89C2051驱动步进电机的电路和源码

    AT89C2051驱动步进电机的电路和源码:AT89C2051驱动步进电机的电路和源码 程序:stepper.c stepper.hex/* * STEPPER.C * sweeping stepper's rotor cw and cww 400 steps * Copyright (c) 1999 by W.Sirichote */#i nclude c:\mc5151io.h /* include i/o header file */ #i nclude c:\mc5151reg.hregister unsigned char j,flag1,temp; register unsigned int cw_n,ccw_n;unsigned char step[8]={0x80,0xc0,0x40,0x60,0x20,0x30,0x10,0x90} #define n 400/* flag1 mask byte 0x01 run cw() 0x02 run ccw() */main(){ flag1=0; serinit(9600); disable(); /* no need timer interrupt */ cw_n = n; /* initial step Number for cw */ flag1 |=0x01; /* initial enable cw() */while(1){ { tick_wait(); /* wait for 10ms elapsed */energize(); /* round-robin execution the following tasks every 10ms */ cw(); ccw(); } }}cw(){ if((flag1&0x01)!=0) { cw_n--; /* decrement cw step Number */ if (cw_n !=0) j++; /* if not zero increment index j */ else {flag1&=~0x01; /* disable cw() execution */ ccw_n = n; /* reload step Number to ccw counter */ flag1 |=0x02; /* enable cww() execution */ } }

    标签: C2051 2051 89C AT

    上传时间: 2013-11-21

    上传用户:boyaboy

  • DTMF Decoding with a PIC16xxx

    This application note describes how to decode standard DTMF tones using the minimum Number of external discrete components and a PIC. The two examples use a PIC which has an 8 bit timer and either a comparator or an ADC, although it can be modified for use on a PIC which has only digital I/O. The Appendices have example code for the 16C662 (with comparator) and 16F877 (using the ADC). As the majority of the Digital Signal Processing is done in software, little is required in the way of external signal conditioning. Software techniques are used to model the individual elements of a DTMF Decoder IC.

    标签: Decoding DTMF with PIC

    上传时间: 2013-11-21

    上传用户:zhaoke2005