虫虫首页| 资源下载| 资源专辑| 精品软件
登录| 注册

kernel-Mode

  • 单片机控制的铅酸蓄电池充电电源

     为了有效地提升铅酸蓄电池的使用寿命,同时实现对充电过程的监控,设计出一种用单片机控制的36 V铅酸蓄电池充电电源。本电路采用反激式拓扑,连续电流工作模式,电源管理IC设计在电源的副边,由ELAN公司的EM78P258N单片机模拟,是用可编程器件模拟电源管理IC,实现智能电源低成本化的一次成功尝试,通过对单片机的软件设计实现了充电电源的状态显示、充电时间控制、报警、过温保护、过压保护、过流保护等功能。本充电器真正的实现了铅酸蓄电池的三段式充电过程,其最高输出功率可达90 W,效率约85%,成本不到20元,具有很高的市场竞争力。 Abstract:  In order to extend the life of lead-acid battery efficiently and supervise the charging process meanwhile, a 36V lead-acid battery charge powe supply controlled by microcontroller is designed. The charger is flyback switching power supply and works in CCM mode. A EM78P258N microcontroller made by ELAN microelectronics corporation is used as power management IC which is designed at the secondary circuit. The project is a successful attempt to low-cost intelligent power used microcontroller simulating power management IC. The charger also has the functions of the status reveal, charge time control, alarming, thermal protect, current limit and overvoltage protect by the software design. The circuit actually implements the three-step charge process, whose power is up to 90W and whose efficiency can get 85%. The net cost of this charger is less than 20 RMB, so that the charger is of powerful market competitiveness.    

    标签: 单片机控制 充电电源 铅酸蓄电池

    上传时间: 2013-11-16

    上传用户:cepsypeng

  • 基于C8051F020的触摸屏驱动控制

    C8051F020单片机通过SPI接口驱动四线电阻式触摸屏控制器TSC2046,利用中断方式驱动TSC2046设计软件。介绍了触摸屏的工作原理、TSC2046工作方式以及典型应用电路。 Abstract:  The C8051F020 MCU is connected with the TSC2046 which is a 4-wire touch screen controller. The TSC2046 is controlled by interrupt mode, the? operation principle of touch screen is introduced. The operation mode of TSC2046 and typical application circuit are also discussed.

    标签: C8051F020 触摸屏 驱动控制

    上传时间: 2014-12-27

    上传用户:hwl453472107

  • 基于AT89S52的汉字显示屏的设计

    介绍了一种基于AT89S52微处理器、键控显示模式、多汉字显示的显示模块设计方法。对AT89S52的内部功能及使用高128字节RAM时的寻址方式进行说明。给出了四汉字显示模块的硬件电路原理图、主程序流程图以及中断显示流程图。 Abstract:  The design method of display module base on the AT89S52 microcontroller,display mode controlled by keyboard and? showing several Chinese characterses are introduced in the paper.The internal function and the addressing mode for the high 128B RAM of the AT89S52 are explained.The basic circuit diagram,the main program flow chart and the display interrupt flow chart of four Chinese characterses display module are also given.

    标签: 89S S52 AT 89

    上传时间: 2014-01-23

    上传用户:咔乐坞

  • 基于STC12C5408AD的记忆示波器

    主要介绍构成记忆示波器的STC12C5408AD增强型单片机8通道10位模数转换功能的设置、应用和具体的汇编程序设计,以及PC机串行通讯和图形显示的高速汇编程序的设计要点,并列举实例说明其应用效果。 Abstract:  The configuration, applications and the designs for? compiling program of the memorial oscillograph of 10 bits A/D conversation are introduced. It’s bases on STC12C5408AD 8? channels? single-chip? computer? in? enhancement? mode. It also recommends the devising essentials of high speed compiling program for PC serial communication and graphics display, lists examples to explain its effects in using.

    标签: C5408 5408 STC 12C

    上传时间: 2013-10-10

    上传用户:adada

  • 基于C8051F系列单片机的无线收发电路设计

    基于幅移键控技术ASK(Amplitude-Shift Keying),以C8051F340单片机作为监测终端控制器,C8051F330D单片机作为探测节点控制器,采用半双工的通信方式,通过监控终端和探测节点的无线收发电路,实现数据的双向无线传输。收发电路采用直径为0.8 mm的漆包线自行绕制成圆形空心线圈天线,天线直径为(3.4±0.3)cm。试验表明,探测节点与监测终端的通信距离为24 cm,通过桥接方式,节点收发功率为102 mW时,节点间的通信距离可达20 cm。与传统无线收发模块相比,该无线收发电路在受体积、功耗、成本限制的场合有广阔的应用前景。 Abstract:  Based on ASK technology and with the C8051F340 and C8051F330D MCU as the controller, using half-duplex communication mode, this paper achieves bi-directional data transfer. Transceiver circuit constituted by enameled wire which diameter is 0.8mm and wound into a diameter (3.4±0.3) cm circular hollow coil antenna. Tests show that the communication distance between detection and monitoring of the terminal is 24cm,the distance is up to 20cm between two nodes when using the manner of bridging and the node transceiver power is 102mW. Compared with the conventional wireless transceiver modules, the circuit has wide application prospect in small size, low cost and low power consumption and other characteristics.

    标签: C8051F 单片机 无线收发 电路设计

    上传时间: 2013-10-19

    上传用户:xz85592677

  • S3C2410完全开发流程与源码

    本书面向由传统51单片机转向ARM嵌入式开发的硬件工程师、由硬件转嵌入式软件开发的工程师、没有嵌入式开发经验的软件工程师。分9个部分:1、开发环境建立2、S3C2410功能部件介绍与实验(含实验代码)3、bootloader vivi详细注释4、linux移植5、linux驱动6、yaffs文件系统详解7、调试工具8、GUI开发简介9、UC/OS移植通过学习第二部分,即可了解基于ARM CPU的嵌入式开发所需要的外围器件及其接口。对应的实验代码实现了对这些接口的操作,这可以让硬件工程师形成一个嵌入式硬件开发的概念。这部分也可以当作S3C2410的数据手册来使用。一个完整的嵌入式linux系统包含4部分内容:bootloader、parameters、kernel、root file system。3、4、5、6部分详细介绍了这4部分的内容,这是linux底层软件开发人员应该掌握的。通过学习这些章节,您可以详细了解到如何在一个裸板上裁减、移植linux,如何构造自己的根文件系统,如何编写适合客户需求的驱动程序——驱动程序这章将结合几个经典的驱动程序进行讲解。您还可以了解到在用在nand flash上的非常流行的yaffs文件系统是如何工作的,本书将结合yaffs代码详细介绍yaffs文件系统。第7部分介绍了嵌入式linux开发中使用gdb进行调试的详细过程。

    标签: S3C2410 开发流程 源码

    上传时间: 2013-10-31

    上传用户:yunfan1978

  • 基于IC卡的新型供暖计费系统设计

    将现行的供暖计费方式由按建筑面积计费变为按消耗的热能计费是供暖计费方式发展趋势,为了满足这一计费方式变化的需要,设计了基于IC卡的预付费式新型供暖计费系统,通过测量用户采暖系统进出口的温度和流量,计算用户消耗的热能,利用IC卡记录用户预付费的金额和当年热能的单价,根据热能消耗和当年热能的单价计算用户采暖费,根据实际发生的供暖费用和预付费金额控制供暖的开停,这一计费方式的变化使供暖计费更趋合理。 Abstract:  It is trend that the mode of heat charging is changed from billing by building area to by thermal energy. In order to meet the needs of heat charging mode changing, a new system of heat charging based on IC card is proposed. The user?蒺s energy consumption is calculated by measuring the user inlet and outlet temperature and flow,using the IC card to record the prepaid amount and the current price of heat. The user?蒺s heating costs is calculated according to energy consumption and current price, according to actual heating costs and prepaid amount,the system controls the heating opening or stopping. It is more reasonable that calculated heating costs by user heat consumption

    标签: IC卡 计费 系统设计

    上传时间: 2013-10-14

    上传用户:大融融rr

  • 基于OMAP1510的mp3播放器设计

      第一章 序論……………………………………………………………6   1- 1 研究動機…………………………………………………………..7   1- 2 專題目標…………………………………………………………..8   1- 3 工作流程…………………………………………………………..9   1- 4 開發環境與設備…………………………………………………10   第二章 德州儀器OMAP 開發套件…………………………………10   2- 1 OMAP介紹………………………………………………………10   2-1.1 OMAP是什麼?…….………………………………….…10   2-1.2 DSP的優點……………………………………………....11   2- 2 OMAP Architecture介紹………………………………………...12   2-2-1 OMAP1510 硬體架構………………………………….…12   2-2.2 OMAP1510軟體架構……………………………………...12   2-2.3 DSP / BIOS Bridge簡述…………………………………...13   2- 3 TI Innovator套件 -- OMAP1510 ……………………………..14   2-2.1 General Purpose processor -- ARM925T………………...14   2-2.2 DSP processor -- TMS320C55x …………………………15   2-2.3 IDE Tool – CCS …………………………………………15   2-2.4 Peripheral ………………………………………………..16   第三章 在OMAP1510上建構Embedded Linux System…………….17   3- 1 嵌入式工具………………………………………………………17   3-1.1 嵌入式程式開發與一般程式開發之不同………….….17   3-1.2 Cross Compiling的GNU工具程式……………………18   3-1.3 建立ARM-Linux Cross-Compiling 工具程式………...19   3-1.4 Serial Communication Program………………………...20   3- 2 Porting kernel………………………………………………….…21   3-2.1 Setup CCS ………………………………………….…..21   3-2.2 編譯及上傳Loader…………………………………..…23   3-2.3 編譯及上傳Kernel…………………………………..…24   3- 3 建構Root File System………………………………………..…..26   3-3.1 Flash ROM……………………………………………...26   3-3.2 NFS mounting…………………………………………..27   3-3.3 支援NFS Mounting 的kernel…………………………..27   3-3.4 提供NFS Mounting Service……………………………29   3-3.5 DHCP Server……………………………………………31   3-3.6 Linux root 檔案系統……………………………….…..32   3- 4 啟動及測試Innovator音效裝置…………………………..…….33   3- 5 建構支援DSP processor的環境…………………………...……34   3-5.1 Solution -- DSP Gateway簡介……………………..…34   3-5.2 DSP Gateway運作架構…………………………..…..35   3- 6 架設DSP Gateway………………………………………….…36   3-6.1 重編kernel……………………………………………...36   3-6.2 DEVFS driver…………………………………….……..36   3-6.3 編譯DSP tool和API……………………………..…….37   3-6.4 測試……………………………………………….…….37   第四章 MP3 Player……………………………………………….…..38   4- 1 MP3 介紹………………………………………………….…….38   4- 2 MP3 壓縮原理……………………………………………….….39   4- 3 Linux MP3 player – splay………………………………….…….41   4.3-1 splay介紹…………………………………………….…..41   4.3-2 splay 編譯………………………………………….…….41   4.3-3 splay 的使用說明………………………………….……41   第五章 程式改寫………………………………………………...…...42   5-1 程式評估與改寫………………………………………………...…42   5-1.1 Inter-Processor Communication Scheme…………….....42   5-1.2 ARM part programming……………………………..…42   5-1.3 DSP part programming………………………………....42   5-2 程式碼………………………………………………………..……43   5-3 雙處理器程式開發注意事項…………………………………...…47   第六章 效能評估與討論……………………………………………48   6-1 速度……………………………………………………………...48   6-2 CPU負載………………………………………………………..49   6-3 討論……………………………………………………………...49   6-3.1分工處理的經濟效益………………………………...49   6-3.2音質v.s 浮點與定點運算………………………..…..49   6-3.3 DSP Gateway架構的限制………………………….…50   6-3.4減少IO溝通……………….………………………….50   6-3.5網路掛載File System的Delay…………………..……51   第七章 結論心得…

    标签: OMAP 1510 mp3 播放器

    上传时间: 2013-10-14

    上传用户:a471778

  • SN65LBC170,SN75LBC170,pdf(TRIP

    The SN65LBC170 and SN75LBC170 aremonolithic integrated circuits designed forbidirectional data communication on multipointbus-transmission lines. Potential applicationsinclude serial or parallel data transmission, cabledperipheral buses with twin axial, ribbon, ortwisted-pair cabling. These devices are suitablefor FAST-20 SCSI and can transmit or receivedata pulses as short as 25 ns, with skew lessthan 3 ns.These devices combine three 3-state differentialline drivers and three differential input linereceivers, all of which operate from a single 5-Vpower supply.The driver differential outputs and the receiverdifferential inputs are connected internally to formthree differential input/output (I/O) bus ports thatare designed to offer minimum loading to the buswhenever the driver is disabled or VCC = 0. Theseports feature a wide common-mode voltage rangemaking the device suitable for party-lineapplications over long cable runs.

    标签: 170 LBC SN TRIP

    上传时间: 2013-10-13

    上传用户:ytulpx

  • 深度睡眠模式操作技术笔记

    LM3S系列单片机主要有3种工作模式:运行模式(Run-Mode)、睡眠模式(Sleep-Mode)、深度睡眠模式(Deep-Sleep-Mode)。某些型号还具有单独的极为省电的冬眠模块(Hibernation Module)。而对各个模式下的外设时钟选通以及系统时钟源的控制主要由表 2.1中的寄存器来完成。 运行模式是正常的工作模式,处理器内核将积极地执行代码。在睡眠模式下,系统时钟不变,但处理器内核不再执行代码(内核因不需要时钟而省电)。在深度睡眠模式下,系统时钟可变,处理器内核同样也不再执行代码。深度睡眠模式比睡眠模式更为省电。有关这3种工作模式的具体区别请参见表 2.2的描述。调用函数SysCtlSleep( )可使处理器立即进入睡眠模式,而调用函数SysCtlDeepSleep( )可使处理器立即进入深度睡眠模式。任一中断都可以将处理器从睡眠或深度睡眠模式唤醒,并使处理器恢复到睡眠前的运行状态。因此在进入睡眠或深度睡眠之前,必须配置某个片内外设的中断并允许其在睡眠或深度睡眠模式下继续工作,如果不这样,则只有复位或重新上电才能结束睡眠或深度睡眠状态。

    标签: 深度睡眠 模式 操作

    上传时间: 2013-11-08

    上传用户:ArmKing88