飞思卡尔单片机的识别路线系统,针对DG128系列飞思卡尔单片机。
上传时间: 2013-10-26
上传用户:leehom61
前公司产品涉及到消费电子类、工业用电器、光电、太阳能、航天、运输、交通能源、军工等广泛领域。 法拉电容、超级电容器 特点:小体积、大容量、优良的电压保持特性。快速充电应用,几秒钟充电,几分钟放电、小电流,长时间持续放电在需要更高效更可靠电源的新技术领域中逐渐崭露头角 作为CMOS、RAM、VCR、收音机、电视、电话、智能仪器仪表、电子钟表、LED手电筒、LED灯饰照明、智能家电、时钟芯片、静态随机存贮器、数据传输系统、数码相机、掌上电脑、电子门锁、智能电表、远程抄表系统、程控交换机、税控机、无绳电话、玩具电动机、语音IC、LED发光器等理想的后备电源。
上传时间: 2013-11-17
上传用户:璇珠官人
介绍各种电容的作用
标签: 电容的作用
上传时间: 2013-11-05
上传用户:Amygdala
简单的电阻、电容、电感测量
上传时间: 2013-11-02
上传用户:kr770906
单片机-电子元器件识别(含图片),会不断上传的敬请关注。
上传时间: 2013-11-20
上传用户:zhangyigenius
这个应用报告讨论了如何用MSP430微处理器来设计单接触电容传感器接口的问题。采用具有超低功耗特性和集成外围设备的MSP430,单接触用户接口可以很轻松地实现。这个应用报告提供了技术概述,系统关注的细节和使用MSP430系列进行电容传感器设计不同方法的技术细节。
上传时间: 2013-11-03
上传用户:sjy1991
为解决电致变色器件的颜色变化受外界环境颜色控制的问题,设计了一种基于单片机的便携式颜色自适应识别电路。与传统颜色识别电路相比较,该电路利用数字式的颜色传感器来获取外界环境颜色,产生的数字颜色信号易于单片机进行处理。在电路中,下位机部分主要负责获取电致变色器件变色参数及控制电致变色器件的颜色变化;而上位机部分主要负责把下位机获取的电致变色器件变色参数进行电压到颜色的曲线拟合,并通过蓝牙通信把拟合曲线参数传递给下位机。结果表明,该电路能自动根据环境颜色提供-4~4 V范围步进为0.1 V的电压来驱动电致变色器件的颜色显示,与传统的颜色识别电路设计相比,识别的精度和速度都得到了明显改善。 Abstract: In this paper, a portable adaptive circuit for color identification(PACCI) based on MCU was designed. Compared to the traditional color identification circuit, the PACCI adopts digital sensor to detect the color data from external environment and further generate digital color data, which can be processed easily by MCU. In PACCI, the slave is mainly responsible for detecting the color parameters of the corresponding elcreochromic device and further driving it. For the master, which is mainly responsible for the color curve fitting based on the parameters of the electrochromic device, and transmits the fitting parameters to the slave through the bluetooth device. The results show that the PACCI can provide the basis voltage range from -4V to 4V automatically based on the colors of external environment with step as 0.1V to drive the corresponding electrochromic device. Compared to the traditional color recognition circuit, the recognition accuracy and speed of PACCI have been improved significantly.
上传时间: 2013-11-09
上传用户:franktu
为提高电容测量精度,针对电容式传感器的工作原理设计了基于PIC16LF874单片机电容测量模块。简单阐述了电容测量电路的应用背景和国内外研究现状,介绍了美国Microchip公司PIC16LF874单片机的特性。电容式传感器输出的动态微弱电容信号通过PS021型电容数字转换器把模拟量数据转换成数字量数据,所测数据由PIC16LF874单片机应用程序进行处理、显示和保存。实验结果表明,固定电容标称值为10~20 pF 的测量值相对误差在1%以内,同时也可知被测电容容值越大,测量值和标称值相对误差越小。 Abstract: To improve the accuracy of capacitance measurement,aimed at the principle of work of mercury capacitance acceleration transducer,the design of micro capacitance measurement circuit is based on the key PIC16LF874 chip. Briefly discusses the application of the capacitance measuring circuit for the background and status of foreign researchers,focusing on the United States PIC16LF874 microcontroller features. Capacitive sensor outputed signal through the dynamics of weak PS021-chip capacitors (capacitancedigital converter) to convert analog data into digital data,the measured data from the PIC16LF874 microcontroller application process, display and preservation. Experimental results show that the fixed capacitor 10pF ~ 20pF nominal value of the measured value of relative error is within 1%,but also it canbe seen the value of the measured capacitance larger,measuring value and the nominal value of relative error smaller.
上传时间: 2013-10-29
上传用户:wojiaohs
介绍一种简单射频识别系统设计。该设计包括阅读器、应答器和线圈3部分。由单片机控制阅读器向应答器发射无线信号,并接收应答器回送的信号,再通过分析回送信号识别物品。阅读器和应答器之间以半双工通信方式通信。 Abstract: A simple design of radio frequency identification system is given in this paper.The design includes reader,responder and winding.Through MCU,signals are sent to responder from reader,then corresponding signals are sent back. According to the analysis of the signals sent back,the objects can be identified.Half-duplex communication is adopted? between? reader? and? responder.
上传时间: 2013-10-11
上传用户:plsee
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