色哟哟视频在线观看-色哟哟视频在线-色哟哟欧美15最新在线-色哟哟免费在线观看-国产l精品国产亚洲区在线观看-国产l精品国产亚洲区久久

電子發(fā)燒友App

硬聲App

0
  • 聊天消息
  • 系統(tǒng)消息
  • 評論與回復(fù)
登錄后你可以
  • 下載海量資料
  • 學(xué)習(xí)在線課程
  • 觀看技術(shù)視頻
  • 寫文章/發(fā)帖/加入社區(qū)
會員中心
創(chuàng)作中心

完善資料讓更多小伙伴認識你,還能領(lǐng)取20積分哦,立即完善>

3天內(nèi)不再提示
創(chuàng)作
電子發(fā)燒友網(wǎng)>電子資料下載>類型>參考設(shè)計>CN0510用戶指南

CN0510用戶指南

2021-03-23 | pdf | 396.74KB | 次下載 | 2積分

資料介紹

This version (27 Jan 2021 22:38) was approved by Robin Getz.The Previously approved version (14 Jan 2021 05:12) is available.Diff

CN0510 User Guide

Overview

The CN0510 circuit is an electrochemical impedance spectroscopy (EIS) measurements system for characterizing Lithium Ion and other types of secondary batteries. EIS is a non-destructive perturbation technique used to examine processes occurring inside electrochemical systems. The system measures the impedance of the battery cell over a range of frequencies. The data can determine the state of health (SOH) and State of Charge (SOC) of a battery. This system is designed to excite and measure a battery’s current, voltage or impedance response utilizing an ultralow power analog front end (AFE) system.

Ageing leads to performance degradation and irreversible changes in the battery’s chemistry. Impedance increases linearly with the decline in capacity. Monitoring the increase in impedance of a battery using EIS can determine the SOH and if the battery needs replacing, resulting in reduced system downtime and lower maintenance costs.

Batteries require a current excitation, not voltage, and the impedance values are small, in the milliohm range. This system includes the necessary circuitry to inject a current into the battery and allows for calibration and sensing of the small impedances found in batteries.

Required Equipment

Documents Needed

Software Needed

Hardware Needed

  • EVAL-ADICUP3029 circuit board.
  • EVAL-AD5941BATZ Battery Measurement Board.
  • PC with a USB port and Windows? 7 (32-bit) or higher.
  • USB type A to USB micro cable.
  • BNC cables.
  • Battery for measurement.

—-

General Setup

Ensure the boards are powered before connecting the battery to avoid a short circuit.

Hardware

  1. Connect the EVAL-AD5941BATZ to the EVAL-ADICUP3029 via the Arduino headers.
  2. Plug in BNC cables.
  3. Power the boards by connecting the micro USB cable into P10 on the EVAL-ADICUP3029 and the other end of the USB cable to your computer.
  4. Connect the battery as shown in figure above.
    • Connect F+ and S+ leads to the positive terminal of the battery.
    • Connect S- and F- to the negative terminal of the battery.Connect red BNC wires of J1 and J2 to the positive terminal of the battery.

Software

  1. Download one of the supported IDE environments IAR Embedded Workbench or Keil.
  2. Download the AD5940 Source Code from GitHub.
    • Note, there is a shared library for the AD5940 and AD5941 products.
  3. Navigate to the ad5940-examples and open the AD5940_BATImpedance example.
  4. Configure the default measurement parameters to your requirements.
    • Use the AD5940BATStructInit(void) function.
    • The data structure AppBATCfg_Type contains the configurable parameters for the application.
    • Note, the hardware is optimized for frequencies above 1Hz. Measurements below this value are noisier due in part to the 1/f noise of the external amplifiers.
  5. Build and compile the example project into a .BIN or .HEX file that can be used to flash the embedded target.

Serial Terminal Output

The measurement results are sent to the PC via UART. To establish connection over UART, connect the Micro-USB cable to the PC and to the EVAL-ADICUP3029 board. A serial terminal program is required to display the results. The following is the UART configuration:

  Select COM Port
  Baud rate: 230400
  Data: 8 bit
  Parity: none
  Stop: 1 bit
  Flow Control: none

A serial terminal is an application that runs on a PC or laptop that is used to display data and interact with a connected device (including many of the Circuits from the Lab reference designs). The device's UART peripheral is most often connected to a UART to USB interface IC, which appears as a traditional COM port on the host PC/ laptop. (Traditionally, the device's UART port would have been connected to an RS-232 line driver / receiver and connected to the PC via a 9-pin or 25-pin serial port.) There are many open-source applications, and while there are many choices, typically we use one of the following:

Before continuing, please make sure you download and install one of the above programs.

There are several parameters on all serial terminal programs that must be setup properly in order for the PC and the connected device to communicate. Below are the common settings that must match on both the PC side and the connected UART device.

  1. COM Port - This is the physical connection made to your PC or Laptop, typically made through a USB cable but can be any serial communications cable. You can determine the COM port assigned to your device by visiting the device manager on your computer. Another method for identifying which COM port is associated with a USB-based device is to look at which COM ports are present before plugging in your device, then plug in your device, and look for a new COM port.
  2. Baud Rate - This is the speed at which data is being transferred from the connected device to your PC. These parameters must be the same on both devices or data will be corrupted. The default setting for most of the reference designs in 115200.
  3. Data Bits - The number of data bits per transfer. Typically UART transmits ASCII codes back to the serial port so by default this is almost always set to 8-Bits.
  4. Stop Bits - The number of “stop” conditions per transmission. This usually set to 1, but can be set to 2 for redundancy.
  5. Parity - Is a way to check for errors during the UART transmission. Unless otherwise specified, set parity to “none”.
  6. Flow Control - Is a way to ensure that data lose between fast and slow devices on the same UART bus are not lost during transmission. This is typically not implemented in a simple system, and unless otherwise specified, set to “none”.

In many instances there are other options that each of the different serial terminal applications provide, such as local line echo or local line editing, and features like this can be turned on or off depending on your preferences. This setup guide will not go over all the options of each tool, but just the minor features that will make it easier to read back data from the connected devices.

Example setup using Putty

  1. Plug in your connected device using a USB cable or other serial cable.
  2. Wait for the device driver of the connected device to install on your PC or Laptop.
  3. Open your device manager, and find out which COM port was assigned to your device.
  4. Open up your serial terminal program (Putty for this example)
  5. Click on the serial configuration tab or window, and input the settings to match the requirements of your connected device. The default baud rate for most of the reference designs is 115200. Make sure that is the selected baud rate as well.
  6. Ensure that local echo and line editing are enabled, so that you can see what you type and are able to correct mistakes. (Some devices may echo typed characters - if so, you will see each typed character twice. If this happens, turn off local echo.)
  7. Click on the open button, and as long as your connected device and serial terminal program are setup the same, than you should see data displaying.
Hint: If you see nothing in the serial terminal, try hitting the reset button on the embedded development board.

Battery Test and Results

Below is an example of the Nyquist plot obtained for a Lithium Ion battery measured using the EVAL-AD5941BATZ.

Schematic, PCB Layout, Bill of Materials

EVAL-AD5941BATZ Design & Integration Files

  • Schematics
  • PCB Layout
  • Bill of Materials
  • Allegro project

End of Document

評論

查看更多

下載排行

本周

  1. 1AN-1267: 使用ADSP-CM408F ADC控制器的電機控制反饋采樣時序
  2. 1.41MB   |  3次下載  |  免費
  3. 2AN158 GD32VW553 Wi-Fi開發(fā)指南
  4. 1.51MB   |  2次下載  |  免費
  5. 3AN148 GD32VW553射頻硬件開發(fā)指南
  6. 2.07MB   |  1次下載  |  免費
  7. 4AN-1154: 采用恒定負滲漏電流優(yōu)化ADF4157和ADF4158 PLL的相位噪聲和雜散性能
  8. 199.28KB   |  次下載  |  免費
  9. 5AN-960: RS-485/RS-422電路實施指南
  10. 380.8KB   |  次下載  |  免費
  11. 6EE-249:使用VisualDSP在ADSP-218x DSP上實現(xiàn)軟件疊加
  12. 60.02KB   |  次下載  |  免費
  13. 7AN-1111: 使用ADuCM360/ADuCM361時的降低功耗選項
  14. 306.09KB   |  次下載  |  免費
  15. 8AN-904: ADuC7028評估板參考指南
  16. 815.82KB   |  次下載  |  免費

本月

  1. 1ADI高性能電源管理解決方案
  2. 2.43 MB   |  450次下載  |  免費
  3. 2免費開源CC3D飛控資料(電路圖&PCB源文件、BOM、
  4. 5.67 MB   |  138次下載  |  1 積分
  5. 3基于STM32單片機智能手環(huán)心率計步器體溫顯示設(shè)計
  6. 0.10 MB   |  130次下載  |  免費
  7. 4使用單片機實現(xiàn)七人表決器的程序和仿真資料免費下載
  8. 2.96 MB   |  44次下載  |  免費
  9. 5美的電磁爐維修手冊大全
  10. 1.56 MB   |  24次下載  |  5 積分
  11. 6如何正確測試電源的紋波
  12. 0.36 MB   |  18次下載  |  免費
  13. 7感應(yīng)筆電路圖
  14. 0.06 MB   |  10次下載  |  免費
  15. 8萬用表UT58A原理圖
  16. 0.09 MB   |  9次下載  |  5 積分

總榜

  1. 1matlab軟件下載入口
  2. 未知  |  935121次下載  |  10 積分
  3. 2開源硬件-PMP21529.1-4 開關(guān)降壓/升壓雙向直流/直流轉(zhuǎn)換器 PCB layout 設(shè)計
  4. 1.48MB  |  420062次下載  |  10 積分
  5. 3Altium DXP2002下載入口
  6. 未知  |  233088次下載  |  10 積分
  7. 4電路仿真軟件multisim 10.0免費下載
  8. 340992  |  191367次下載  |  10 積分
  9. 5十天學(xué)會AVR單片機與C語言視頻教程 下載
  10. 158M  |  183335次下載  |  10 積分
  11. 6labview8.5下載
  12. 未知  |  81581次下載  |  10 積分
  13. 7Keil工具MDK-Arm免費下載
  14. 0.02 MB  |  73810次下載  |  10 積分
  15. 8LabVIEW 8.6下載
  16. 未知  |  65988次下載  |  10 積分
主站蜘蛛池模板: 国产激情视频在线观看 | 黄色片网站下载 | 国产精品久久久久久亚洲影视 | 色姐妹久久综合在线av | 国内精品免费久久影院 | HEYZO精品无码一区二区三区 | 国产成人久久精品AV | 成人国产在线看不卡 | 免费看片A级毛片免费看 | 午夜性爽视频男人的天堂在线 | 国产大片51精品免费观看 | 5g在线视讯年龄确认海外禁止进入 | 国产亚洲精品久久久999密臂 | 亚洲AV无码专区国产精品麻豆 | 欧美内射AAAAAAXXXXX | 国产精品一库二库三库 | 久久精品国产99欧美精品亚洲 | 欧美性爱 成人 | 久久re6热在线视频 久久er国产免费精品 | 色欲AV久久综合人妻蜜桃 | 国产成人综合在线观看网站 | 国产看午夜精品理论片 | 女教师跟黑人男朋友激情过后 | 亚洲 日本 欧美 中文字幕 | 高清视频在线观看SEYEYE | 高清无码色大片中文 | 手机观看毛片 | 动漫美女禁区图 | 国产精品一区第二页 | 国产成人cao在线 | 亚洲日本欧美产综合在线 | 快穿做妓女好爽H | 久久精品热播在线看 | 快播电影官方网站 | 精品久久综合1区2区3区激情 | 色久悠悠无码偷拍自怕 | 男人插女人动态图 | 中文字幕在线视频网站 | 欧美日韩永久久一区二区三区 | 国产精品青草久久福利不卡 | 动漫成年美女黄漫网站 |