描述了NTC使用B值计算出实际温度与输出的电压之间的关系。
标签: ntc计算
上传时间: 2022-06-15
上传用户:
BC20-TE-B NB-Iot 评估板评估板原厂原理图V1.2。完整对应实物装置。
上传时间: 2022-06-17
上传用户:
ASR M08-B设置软件 V3.2 arduino 2560+ASRM08-B测试程序 arduino UNO+ASRM08-B测试程序语音控制台灯电路图及C51源码(不带校验码) 继电器模块设置。 ASR M08-B是一款语音识别模块。首先对模块添加一些关键字,对着该模块说出关键字,串口会返回三位的数,如果是返回特定的三位数字,还会引起ASR M08-B的相关引脚电平的变化。【测试】①打开“ASR M08-B设置软件 V3.2.exe”。②选择“串口号”、“打开串口”、点选“十六进制显示”。③将USB转串口模块连接到语音识别模块上。接线方法如下:语音模块TXD --> USB模块RXD语音模块RXD --> USB模块TXD语音模块GND --> USB模块GND语音模块3V3 --> USB模块3V3(此端为3.3V电源供电端。)④将模块的开关拨到“A”端,最好再按一次上面的大按钮(按一次即可,为了确保模块工作在正确的模式)。⑤对着模块说“开灯”、“关灯”模块会返回“0B”、“0A”,表示正常(注意:0B对应返回值010,0B对应返回值010,返回是16进制显示的嘛,设置的时候是10进制设置的)。
标签: ASR M08-B
上传时间: 2022-07-06
上传用户:aben
NCS8803 3.2.1 功能:是一颗将HDMI信号转EDP信号的转接芯片。其应用如下: 3.2.2产品特征 输入:HDMI 输出:Embedded-DisplayPort (eDP) EDP接口 1/2/4-lane eDP @ 1.62/2.7Gbps per lane HD to WQXGA (2560*1600) supported 内置EDP协议 HDMI Input HDMI 1.4a supported 支持RGB444/YCbCr444/YCbCr422 像素时钟: 340MHz 支持双通道音频输入; 参考时钟 任何频率,在19MHz到100MHz之间,单端时钟输入 内置5000 ppm SSC与否 通信方式 IIC 电源 1.2V core supply 2.5V or 3.3V IO supply 功耗:150Mw 封装:QFN-56 (7mm x 7mm) 3.2.4 应用产品:广告机,平板、医疗器械、车机、显示器、小电视、车载电视等 3.2.5 应用平台:RK、全志、M-star、炬力等 3.3.6 推广注意事项A:确认客户使用屏的分辨率,最常用的是1366x768@60Hz和1920x1080@60Hz BNCS8803支持4-lane DP / eDP输出通常支持WQXGA所需 (2560 * 1600)及以上60 hz的帧速率 C.确认客户的信号源,要是标准的HDMI信号,其他的都不行; D.此芯片支持缩放功能,分数缩放比例2:1至1:2; E、此芯片不是纯硬件转换芯片,需要通过IIC或者SPI进行初始化,初始化一般使用客户CPU进行,这样方便控制时序也节省成本,如果不使用客户CPU进行初始化就要另外加MCU进行配置。 设计注意事项: A、NCS8801S设计的时候要特别注意输入输出的走线问题,要做好屏蔽以免信号受到干扰。 B、注意电源滤波 C、设计的时候预留LVDS信号要预留阻抗匹配电阻 D、设计的时候复位脚最好由客户CPU的GPIO口进行控制,以便控制整个方案的时序,避免后面出现问题。
上传时间: 2022-07-08
上传用户:
Many complex systems—such as telecom equipment,memory modules, optical systems, networking equipment,servers and base stations—use FPGAs and otherdigital ICs that require multiple voltage rails that muststart up and shut down in a specific order, otherwise theICs can be damaged. The LTC®2924 is a simple andcompact solution to power supply sequencing in a 16-pinSSOP package (see Figures 1 and 2).
上传时间: 2013-10-29
上传用户:tonyshao
Once relegated to the hinterlands of low cost indicatorlights, the LED is again in the spotlight of the lightingworld. LED lighting is now ubiquitous, from car headlightsto USB-powered lava lamps. Car headlights exemplifyapplications that capitalize on the LED’s clear advantages—unwavering high quality light output, tough-assteelrobustness, inherent high effi ciency—while a USBlava lamp exemplifi es applications where only LEDs work.Despite these clear advantages, their requirement forregulated voltage and current make LED driver circuitsmore complex than the venerable light bulb, but some newdevices are closing the gap. For instance, the LTM®8040μModule™ LED driver integrates all the driver circuitryinto a single package, allowing designers to refocus theirtime and effort on the details of lighting design criticalto a product’s success.
上传时间: 2013-10-16
上传用户:togetsomething
In a recent discussion with a system designer, the requirementfor his power supply was to regulate 1.5Vand deliver up to 40A of current to a load that consistedof four FPGAs. This is up to 60W of power that must bedelivered in a small area with the lowest height profi lepossible to allow a steady fl ow of air for cooling. Thepower supply had to be surface mountable and operateat high enough effi ciency to minimize heat dissipation.He also demanded the simplest possible solution so histime could be dedicated to the more complex tasks. Asidefrom precise electrical performance, this solution had toremovethe heat generated during DC to DC conversionquickly so that the circuit and the ICs in the vicinity do notoverheat. Such a solution requires an innovative designto meet these criteria:
上传时间: 2013-11-24
上传用户:defghi010
As logic systems get larger and more complex, theirsupply current requirements continue to rise. Systemsrequiring 100A are fairly common. A high current powersupply to meet such requirements usually requires parallelingseveral power regulators to alleviate the thermalstress on the individual power components. A powersupply designer is left with the choice of how to drive theseparalleled regulators: brute-force single-phase or smartPolyPhaseTM.
上传时间: 2013-10-08
上传用户:zhqzal1014
为了改变目前电网现场作业管理的变电巡检、变电检修试验、输电线路巡检检修等管理系统各自独立运行,信息不能共享,功能、效率受限,建设和维护成本高的现状,提出了采用B/S+C/S构架模式,将各现场作业管理模块和生产MIS(管理系统)集成为一体的现场作业管理系统的设计方案,做到各子系统和生产MIS软硬资源共享,做到同一数据唯一入口、一处录入多处使用。各子系统设备人员等基础信息来源于生产管理系统,各子系统又是生产管理系统的作业数据、缺陷信息的重要来源。经过研究试用成功和推广应用,目前该系统已在江西电网220 kV及以上变电站全面应用。 Abstract: In order to improve the status that the substation field inspection system, substation equipments maintenance and testing system, power-line inspection and maintenance system are running independent with each other. They can?蒺t share the resource information which accordingly constrains their functions and efficiency, and their construction and maintenance costs are high. This paper introduces a field standardized work management system based on B/S+C/S mode, integrating all field work management systems based on MIS and share the equipments and employee?蒺s data of MIS,the field work data of the sub systems are the source information of MIS, by which the same single data resouce with one-time input can be utilized in multiple places. After the research and testing, this system is triumphantly using in all 220kV and above substations in Jiangxi grid.
上传时间: 2013-11-15
上传用户:han_zh
为了提高传统温度控制系统的性能,将PID控制理论与嵌入式系统相结合,采用瑞萨电子公司的H8S/2166作为核心处理器,AD公司的AD7705以及热敏电阻温度传感器作为温度检测单元,利用4×6小键盘、LCD显示器和S1D13305液晶控制器达到良好的人机交互,设计出了一个应用于化工领域的嵌入式实时温度控制系统。相比于传统温度控制系统,该系统提供了更强的计算能力和可扩展能力,采用增量PID控制算法实现复杂控制。通过实验,该系统能达到0.1 ℃的温度控制精度以及小于120 s的温度稳定时间。 Abstract: In order to improve the performance of conventional temperature control system, combining PID control theory with embedded systems, using the Renesas Electronics Corp. H8S/2166 micro-controller as a core processors, AD7705 and thermistor temperature sensor as a temperature detection unit and 4×6 small keyboard, LCD and S1D13305 LCD controller as a good human-computer interaction, this paper designed an embedded real-time temperature control system which is applied in chemical industry. Compared with conventional temperature control system, this system provides more computing power and extensibility, and adopts PID control algorithm for complex control. Through the experiment, the system can reach temperature control accuracy of 0.1 ℃ and temperature stabilization time of less than 120 seconds.
上传时间: 2014-12-26
上传用户:003030