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  • 单片机12864液晶时钟显示程序

    12864液晶时钟显示程序 LCD 地址变量 ;**************变量的定义***************** RS             BIT      P2.0            ;LCD数据/命令选择端(H/L) RW             BIT      P2.1          ;LCD读/写选择端(H/L) EP             BIT      P2.2            ;LCD使能控制 PSB        EQU P2.3 RST        EQU P2.5 PRE            BIT      P1.4            ;调整键(K1) ADJ            BIT      P1.5            ;调整键(K2) COMDAT         EQU P0 LED        EQU P0.3 YEAR           DATA      18H            ;年,月,日变量 MONTH          DATA      19H DATE           DATA      1AH WEEK           DATA      1BH HOUR           DATA      1CH            ;时,分,秒,百分之一秒变量 MIN            DATA      1DH SEC            DATA      1EH SEC100         DATA      1FH STATE          DATA      23H LEAP           BIT      STATE.1            ;是否闰年标志1--闰年,0--平年 KEY_S          DATA      24H            ;当前扫描键值 KEY_V          DATA      25H            ;上次扫描键值 DIS_BUF_U0      DATA      26H            ;LCD第一排显示缓冲区 DIS_BUF_U1      DATA      27H DIS_BUF_U2      DATA      28H DIS_BUF_U3      DATA      29H DIS_BUF_U4      DATA      2AH DIS_BUF_U5      DATA      2BH DIS_BUF_U6      DATA      2CH DIS_BUF_U7      DATA      2DH DIS_BUF_U8      DATA      2EH DIS_BUF_U9      DATA      2FH DIS_BUF_U10     DATA      30H DIS_BUF_U11     DATA      31H DIS_BUF_U12     DATA      32H DIS_BUF_U13     DATA      33H DIS_BUF_U14     DATA      34H DIS_BUF_U15     DATA      35H DIS_BUF_L0      DATA      36H            ;LCD第三排显示缓冲区 DIS_BUF_L1      DATA      37H DIS_BUF_L2      DATA      38H DIS_BUF_L3      DATA      39H DIS_BUF_L4      DATA      3AH DIS_BUF_L5      DATA      3BH DIS_BUF_L6      DATA      3CH DIS_BUF_L7      DATA      3DH DIS_BUF_L8      DATA      3EH DIS_BUF_L9      DATA      3FH DIS_BUF_L10     DATA      40H DIS_BUF_L11     DATA      41H DIS_BUF_L12     DATA      42H DIS_BUF_L13     DATA      43H DIS_BUF_L14     DATA      44H DIS_BUF_L15     DATA      45H FLAG            DATA      46H ;1-年,2-月,3-日,4-时,5-分,6-秒,7-退出调整。 DIS_H           DATA      47H DIS_M           DATA      48H DIS_S           DATA      49H

    标签: 12864 单片机 液晶时钟 显示程序

    上传时间: 2013-11-09

    上传用户:xingisme

  • Foundation入门—仿真

    Explain how to open the Waveform Viewer for Verification ? State how to insert nodes into the Waveform Viewer ? Tell how to assign Stimulus with the Stimulator Selector

    标签: Foundation 仿真

    上传时间: 2013-11-05

    上传用户:gps6888

  • XAPP143-利用Verilog来创建CPLD设计

    This Application Note covers the basics of how to use Verilog as applied to ComplexProgrammable Logic Devices. Various combinational logic circuit examples, such asmultiplexers, decoders, encoders, comparators and adders are provided. Synchronous logiccircuit examples, such as counters and state machines are also provided.

    标签: Verilog XAPP CPLD 143

    上传时间: 2013-11-11

    上传用户:y13567890

  • XAPP806 -决定DDR反馈时钟的最佳DCM相移

    This application note describes how to build a system that can be used for determining theoptimal phase shift for a Double Data Rate (DDR) memory feedback clock. In this system, theDDR memory is controlled by a controller that attaches to either the OPB or PLB and is used inan embedded microprocessor application. This reference system also uses a DCM that isconfigured so that the phase of its output clock can be changed while the system is running anda GPIO core that controls that phase shift. The GPIO output is controlled by a softwareapplication that can be run on a PowerPC® 405 or Microblaze™ microprocessor.

    标签: XAPP 806 DDR DCM

    上传时间: 2014-11-26

    上传用户:erkuizhang

  • WP369可扩展式处理平台-各种嵌入式系统的理想解决方案

    WP369可扩展式处理平台-各种嵌入式系统的理想解决方案 :Delivering unrivaled levels of system performance,flexibility, scalability, and integration to developers,Xilinx's architecture for a new Extensible Processing Platform is optimized for system power, cost, and size. Based on ARM's dual-core Cortex™-A9 MPCore processors and Xilinx’s 28 nm programmable logic,the Extensible Processing Platform takes a processor-centric approach by defining a comprehensive processor system implemented with standard design methods. This approach provides Software Developers a familiar programming environment within an optimized, full featured,powerful, yet low-cost, low-power processing platform.

    标签: 369 WP 扩展式 处理平台

    上传时间: 2013-10-18

    上传用户:cursor

  • 数字与模拟电路设计技巧

    数字与模拟电路设计技巧IC与LSI的功能大幅提升使得高压电路与电力电路除外,几乎所有的电路都是由半导体组件所构成,虽然半导体组件高速、高频化时会有EMI的困扰,不过为了充分发挥半导体组件应有的性能,电路板设计与封装技术仍具有决定性的影响。 模拟与数字技术的融合由于IC与LSI半导体本身的高速化,同时为了使机器达到正常动作的目的,因此技术上的跨越竞争越来越激烈。虽然构成系统的电路未必有clock设计,但是毫无疑问的是系统的可靠度是建立在电子组件的选用、封装技术、电路设计与成本,以及如何防止噪讯的产生与噪讯外漏等综合考虑。机器小型化、高速化、多功能化使得低频/高频、大功率信号/小功率信号、高输出阻抗/低输出阻抗、大电流/小电流、模拟/数字电路,经常出现在同一个高封装密度电路板,设计者身处如此的环境必需面对前所未有的设计思维挑战,例如高稳定性电路与吵杂(noisy)性电路为邻时,如果未将噪讯入侵高稳定性电路的对策视为设计重点,事后反复的设计变更往往成为无解的梦魇。模拟电路与高速数字电路混合设计也是如此,假设微小模拟信号增幅后再将full scale 5V的模拟信号,利用10bit A/D转换器转换成数字信号,由于分割幅宽祇有4.9mV,因此要正确读取该电压level并非易事,结果造成10bit以上的A/D转换器面临无法顺利运作的窘境。另一典型实例是使用示波器量测某数字电路基板两点相隔10cm的ground电位,理论上ground电位应该是零,然而实际上却可观测到4.9mV数倍甚至数十倍的脉冲噪讯(pulse noise),如果该电位差是由模拟与数字混合电路的grand所造成的话,要测得4.9 mV的信号根本是不可能的事情,也就是说为了使模拟与数字混合电路顺利动作,必需在封装与电路设计有相对的对策,尤其是数字电路switching时,ground vance noise不会入侵analogue ground的防护对策,同时还需充分检讨各电路产生的电流回路(route)与电流大小,依此结果排除各种可能的干扰因素。以上介绍的实例都是设计模拟与数字混合电路时经常遇到的瓶颈,如果是设计12bit以上A/D转换器时,它的困难度会更加复杂。

    标签: 数字 模拟电路 设计技巧

    上传时间: 2014-02-12

    上传用户:wenyuoo

  • 开关电源EMI设计(英文版)

    Integrated EMI/Thermal Design forSwitching Power SuppliesWei ZhangThesis submitted to the Faculty of theVirginia Polytechnic Institute and State Universityin partial fulfillment of the requirements for the degree of Integrated EMI/Thermal Design forSwitching Power SuppliesWei Zhang(ABSTRACT)This work presents the modeling and analysis of EMI and thermal performancefor switch power supply by using the CAD tools. The methodology and design guidelinesare developed.By using a boost PFC circuit as an example, an equivalent circuit model is builtfor EMI noise prediction and analysis. The parasitic elements of circuit layout andcomponents are extracted analytically or by using CAD tools. Based on the model, circuitlayout and magnetic component design are modified to minimize circuit EMI. EMI filtercan be designed at an early stage without prototype implementation.In the second part, thermal analyses are conducted for the circuit by using thesoftware Flotherm, which includes the mechanism of conduction, convection andradiation. Thermal models are built for the components. Thermal performance of thecircuit and the temperature profile of components are predicted. Improved thermalmanagement and winding arrangement are investigated to reduce temperature.In the third part, several circuit layouts and inductor design examples are checkedfrom both the EMI and thermal point of view. Insightful information is obtained.

    标签: EMI 开关电源 英文

    上传时间: 2013-11-16

    上传用户:萍水相逢

  • 基于EKF的异步电机直接转矩控制系统

    为了提高直接转矩控制(DTC)系统定子磁链估计精度,降低电流、电压测量的随机误差,提出了一种基于扩展卡尔曼滤波(EKF)实现异步电机转子位置和速度估计的方法。扩展卡尔曼滤波器是建立在基于旋转坐标系下由定子电流、电压、转子转速和其它电机参量所构成的电机模型上,将定子电流、定子磁链、转速和转子角位置作为状态变量,定子电压为输入变量,定子电流为输出变量,通过对磁链和转速的闭环控制提高定子磁链的估计精度,实现了异步电机的无速度传感器直接转矩控制策略,仿真结果验证了该方法的可行性,提高了直接转矩的控制性能。 Abstract:  In order to improve the Direct Torque Control(DTC) system of stator flux estimation accuracy and reduce the current, voltage measurement of random error, a novel method to estimate the speed and rotor position of asynchronous motor based on extended Kalman filter was introduced. EKF was based on d-p axis motor and other motor parameters (state vector: stator current, stator flux linkage, rotor angular speed and position; input: stator voltage; output: staror current). EKF was designed for stator flux and rotor speed estimation in close-loop control. It can improve the estimated accuracy of stator flux. It is possible to estimate the speed and rotor position and implement asynchronous motor drives without position and speed sensors. The simulation results show it is efficient and improves the control performance.

    标签: EKF 异步电机 直接转矩 控制系统

    上传时间: 2015-01-02

    上传用户:qingdou

  • 逻辑分析仪中timing state的应用

    标签: timing state 逻辑分析仪

    上传时间: 2013-11-01

    上传用户:ouyang426

  • SL811开发资料_包含源程序_电路图_芯片资料

    SL811开发资料_包含源程序_电路图_芯片资料:SL811HS Embedded USB Host/Slave Controller.The SL811HS is an Embedded USB Host/Slave Controller capable of communicate with either full-speed or low-speed USB peripherals. The SL811HS can interface to devices such as microprocessors, microcontrollers, DSPs, or directly to a variety of buses such as ISA, PCMCIA, and others. The SL811HS USB Host Controller conforms to USB Specification 1.1.The SL811HS USB Host/Slave Controller incorporates USB Serial Interface functionality along with internal full-/low-speed transceivers.The SL811HS supports and operates in USB full-speed mode at 12 Mbps, or at low-speed 1.5-Mbps mode.The SL811HS data port and microprocessor interface provide an 8-bit data path I/O or DMA bidirectional, with interrupt support to allow easy interface to standard microprocessors or microcontrollers such as Motorola or Intel CPUs and many others. Internally,the SL811HS contains a 256-byte RAM data buffer which is used for control registers and data buffer.The available package types offered are a 28-pin PLCC (SL811HS) and a 48-pin TQFP package (SL811HST-AC). Both packages operate at 3.3 VDC. The I/O interface logic is 5V-tolerant.

    标签: 811 SL 开发资料 源程序

    上传时间: 2013-12-22

    上传用户:a82531317