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内核微控制器

  • 深入讨论HCS08的内部时钟源模块

    本文档将深入介绍内部时钟源模块(Internal ClockSource, ICS),该模块可以在部分HCS08 系列微控制器中找到。对HCS08 MCU 来说, ICS 模块不但是一个非常灵活的时钟源,而且对于该系列中更小、更低成本的MCU来说非常经济。ICS 包括锁频环、内部时钟参考、外部振荡器和时钟选择子模块。这些子模块组合可以提供多种时钟模式和频率,以满足任何应用的需要。本应用笔记详细描述ICS 的7 种工作模式、ICS 模块与其他HCS08 MCU 的内部时钟发生器(Internal ClockGenerator, ICG)模块作比较、ICS 模块从不同低功耗模式下恢复的特性及内部时钟参考的校准方法。

    标签: HCS 08 时钟源 模块

    上传时间: 2013-11-08

    上传用户:zhuoying119

  • 使用软件程序仿真C500微控制器系列SSC(同步串行通道)功

    The solution presented in this paper and in the attached source files emulates the mostimportant SSC functions by using SW routines implemented in C. The code is focused onthe SAB C513, but will fit to all C500 derivatives.Beyond the low level software drivers a test shell is delivered. This shell allows a quicktest of the software drivers by an emulator or a starter kit demo board.

    标签: C500 SSC 软件 程序

    上传时间: 2013-11-24

    上传用户:363186

  • 用外部设备设置32位微控制器TriCore的中断的指令及方法

    The Infineon TriCore provides an Interrupt System with a high safety standard. Thisdocument contains some instructions on how to initiate an Interrupt from an externaldevice. First it will show you how to trigger an Interrupt Service Request by an impulseon Port 0 or Port 1. Then in the second part of the document you can find hints how todebounce impulses to enable the use of a simple switch as input device.Authors: Thomas Bliem, CQ Nguyen / Infineon SMI MD Apps

    标签: TriCore 外部设备 中断 微控制器

    上传时间: 2013-11-05

    上传用户:uuuuuuu

  • 介绍C16x系列微控制器的输入信号升降时序图及特性

    All inputs of the C16x family have Schmitt-Trigger input characteristics. These Schmitt-Triggers are intended to always provide proper internal low and high levels, even if anundefined voltage level (between TTL-VIL and TTL-VIH) is externally applied to the pin.The hysteresis of these inputs, however, is very small, and can not be properly used in anapplication to suppress signal noise, and to shape slow rising/falling input transitions.Thus, it must be taken care that rising/falling input signals pass the undefined area of theTTL-specification between VIL and VIH with a sufficient rise/fall time, as generally usualand specified for TTL components (e.g. 74LS series: gates 1V/us, clock inputs 20V/us).The effect of the implemented Schmitt-Trigger is that even if the input signal remains inthe undefined area, well defined low/high levels are generated internally. Note that allinput signals are evaluated at specific sample points (depending on the input and theperipheral function connected to it), at that signal transitions are detected if twoconsecutive samples show different levels. Thus, only the current level of an input signalat these sample points is relevant, that means, the necessary rise/fall times of the inputsignal is only dependant on the sample rate, that is the distance in time between twoconsecutive evaluation time points. If an input signal, for instance, is sampled throughsoftware every 10us, it is irrelevant, which input level would be seen between thesamples. Thus, it would be allowable for the signal to take 10us to pass through theundefined area. Due to the sample rate of 10us, it is assured that only one sample canoccur while the signal is within the undefined area, and no incorrect transition will bedetected. For inputs which are connected to a peripheral function, e.g. capture inputs, thesample rate is determined by the clock cycle of the peripheral unit. In the case of theCAPCOM unit this means a sample rate of 400ns @ 20MHz CPU clock. This requiresinput signals to pass through the undefined area within these 400ns in order to avoidmultiple capture events.

    标签: C16x 微控制器 输入信号 时序图

    上传时间: 2014-04-02

    上传用户:han_zh

  • 基于P87C591的CAN总线系统智能节点设计

    基于P87 C591的CAN总线系统智能节点设计Design of CAN System Intelligent Node Based on P87C591 给出了基于带CAN控制器的单片8位微控制器P87C591的智能节点的硬件电路及软件结构,详细介绍了设计中的难点及实现过程中应注意的问题。关键词:CAN总线;智能节点 Abstract:A h ardc ircuita nds oftw arec onfigurationo fth ei ntelligentnode based on a microcontroller with CAN controller P87C591 arepresented.E speciallyt hec ruxi nd esigninga ndt hep roblemst hatshould be paid attention in realizing are discussed in details.Keyw ords:C AN;in telligentn ode CA N 总线 是德国Bosch从20世纪80年代初为解决现代汽车中众多的控制与测试仪器之间的数据交换而开发的一种串行数据通信协议,它是一种多主总线,通信介质可以是双绞线、同轴电缆或光导纤维。由于CAN总线具有较强的纠错能力,支持差分收发,因而适合高噪声环境。并具有较远的传输距离,适用于许多领域的分布式测控系统。目前已在工业自动化、建筑物环境控制、医疗设备等许多领域得到广泛的应用。CAN已成为国际标准化组织IS011898标准。

    标签: P87C591 CAN 总线系统 智能节点

    上传时间: 2013-10-30

    上传用户:xymbian

  • 87C576微控制器的在线编程

    The 87C576 includes two separate methods of programming theEPROM array, the traditional modified Quick-Pulse method, and anew On-Board Programming technique (OBP).Quick Pulse programming is a method using a number of devicepins in parallel (see Figure 1) and is the traditional way in which87C51 family members have been programmed. The Quick-Pulsemethod supports the following programming functions:– program USER EPROM– verify USER EPROM– program KEY EPROM– program security bits– verify security bits– read signature bytesThe Quick-Pulse method is quite easily suited to standardprogramming equipment as evidenced by the numerous vendors of87C51 compatible programmers on the market today. Onedisadvantage is that this method is not well suited to programming inthe embedded application because of the large number of signallines that must be isolated from the application. In addition, parallelsignals from a programmer would need to be cabled to theapplication’s circuit board, or the application circuit board wouldneed to have logic built-in to perform the programming functions.These requirements have generally made in-circuit programmingusing the modified Quick Pulse method impractical in almost all87C51 family applications.

    标签: 87C576 微控制器 编程

    上传时间: 2013-10-21

    上传用户:xiaozhiqban

  • 单片机外围线路设计

    当拿到一张CASE单时,首先得确定的是能用什么母体才能实现此功能,然后才能展开对外围硬件电路的设计,因此首先得了解每个母体的基本功能及特点,下面大至的介绍一下本公司常用的IC:单芯片解决方案• SN8P1900 系列–  高精度 16-Bit  模数转换器–  可编程运算放大器 (PGIA)•  信号放大低漂移: 2V•  放大倍数可编程: 1/16/64/128  倍–  升压- 稳压调节器 (Charge-Pump Regulator)•  电源输入: 2.4V ~ 5V•  稳压输出: e.g. 3.8V at SN8P1909–  内置液晶驱动电路 (LCD Driver)–  单芯片解决方案 •  耳温枪  SN8P1909 LQFP 80 Pins• 5000 解析度量测器 SN8P1908 LQFP 64 Pins•  体重计  SN8P1907 SSOP 48 Pins单芯片解决方案• SN8P1820 系列–  精确的12-Bit  模数转换器–  可编程运算放大器 (PGIA)• Gain Stage One: Low Offset 5V, Gain: 16/32/64/128• Gain Stage One: Low Offset 2mV, Gain: 1.3 ~ 2.5–  升压- 稳压调节器•  电源输入: 2.4V ~ 5V•  稳压输出: e.g. 3.8V at SN8P1829–  内置可编程运算放大电路–  内置液晶驱动电路 –  单芯片解决方案 •  电子医疗器 SN8P1829 LQFP 80 Pins 高速/低功耗/高可靠性微控制器• 最新SN8P2000 系列– SN8P2500/2600/2700 系列– 高度抗交流杂讯能力• 标准瞬间电压脉冲群测试 (EFT): IEC 1000-4-4• 杂讯直接灌入芯片电源输入端• 只需添加1颗 2.2F/50V 旁路电容• 测试指标稳超 4000V (欧规)– 高可靠性复位电路保证系统正常运行• 支持外部复位和内部上电复位• 内置1.8V 低电压侦测可靠复位电路• 内置看门狗计时器保证程序跳飞可靠复位– 高抗静电/栓锁效应能力– 芯片工作温度有所提高: -200C ~ 700C     工规芯片温度: -400C ~ 850C 高速/低功耗/高可靠性微控制器• 最新 SN8P2000 系列– SN8P2500/2600/2700 系列– 1T  精简指令级结构• 1T:  一个外部振荡周期执行一条指令•  工作速度可达16 MIPS / 16 MHz Crystal–  工作消耗电流 < 2mA at 1-MIPS/5V–  睡眠模式下消耗电流 < 1A / 5V额外功能• 高速脉宽调制输出 (PWM)– 8-Bit PWM up to 23 KHz at 12 MHz System Clock– 6-Bit PWM up to 93 KHz  at 12 MHz System Clock– 4-Bit PWM up to 375 KHz  at 12 MHz System Clock• 内置高速16 MHz RC振荡器 (SN8P2501A)• 电压变化唤醒功能• 可编程控制沿触发/中断功能– 上升沿 / 下降沿 / 双沿触发• 串行编程接口

    标签: 单片机 线路设计

    上传时间: 2013-10-21

    上传用户:jiahao131

  • CAN总线与USB的转接技术

    简要介绍了CAN总线技术与USB总线技术的特点,给出了通过将两特点相结合,并选用微控制器AT89C52尧USB控制芯片CH372和独立CAN控制芯片SJA1000实现USB-CAN数据传输系统的设计方案遥该系统不但能实现CAN总线与USB总线之间的数据转化,并可在两台主机配合下完成两个节点之间数据的透明传输。关键词 通用串行总线USB CAN总线 数据通信

    标签: CAN USB 总线 转接技术

    上传时间: 2013-10-15

    上传用户:plsee

  • 照明应用中的51LPC微控制器

    特性• 一系列方法支持不同的照明概念/原理UHP CCFL等• 快速执行标准80C51 器件的两倍• 工作范围宽2.7V~6.0V 而且在125 仍可工作• 带晶振/谐振器和RC 的用户可配置振荡器不要求外部元件• 低电流操作• 丰富的特性集包括UART和I2C 串行通讯低电压检测和上电复位• 两个比较器• 在系统可编程ISP• 专用的模拟和数字外围设备• ADC 快速PWM 和DAC特殊控制的专用外围设备• PFC 功率因素修正• 带软开关PWM 的半桥和全桥控制• 使用ADC 和比较器进行照明管理• 与几乎所有远程协议接口DALI IR RF 等• 带镇流ASIC 带DAC 或PWM 的快速控制回路• 与存储设备的I2C 接口

    标签: LPC 51 照明应用 微控制器

    上传时间: 2014-03-24

    上传用户:ming529

  • 单片机综合应用

    单片机综合应用技术 1.1 单片机技术的发展与单片机应用的广泛选择 1.2 带A/D转换的8位微控制器PIC12C67X?? 1.3 SPI串行总线在8031单片机应用系统中的实现?? 1.4 单总线技术在测控系统中的应用?? 1.5 多任务机制在单片机系统中的应用?? 1.6 软件实现的8031单片微机中断多优先级研究?? 1.7 单片机汇编语言程序设计的变量取值表技术?? 1.8 单片机的代码优化方法?? 1.9 由微机复位引出的问题?? 1.10 一种快速CRC差错校验技术?? 1.11 基于单片机的Chebyshev神经网络硬件设计?? 1.12 二维条形码(PDF417)及其应用?? 1.13 EDA技术的应用?? 1.14 CPLD/FPGA在电子设计中的应用前景?? 1.15 现场可编程模拟ASIC与电子系统设计?? 1.16 用单片PLD器件ispLSI1016实现数显频率计

    标签: 单片机

    上传时间: 2014-05-05

    上传用户:daxigua