電子發(fā)燒友App

硬聲App

0
  • 聊天消息
  • 系統(tǒng)消息
  • 評(píng)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(huì)員中心
創(chuàng)作中心

完善資料讓更多小伙伴認(rèn)識(shí)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(jì)>CN0507用戶指南

CN0507用戶指南

2021-03-23 | pdf | 2.64MB | 次下載 | 2積分

資料介紹

This version (14 Jan 2021 05:19) was approved by Robin Getz.The Previously approved version (07 Jan 2020 09:17) is available.Diff

CN-0507: A Complete 2-Port Network Analyzer on an Arduino Shield

This reference design implements a complete 2-Port radio frequency (RF) Network Analyzer using a low-cost zero intermediate frequency (ZIF) architecture in an Arduino form factor, which is designed to plug into EVAL-ADICUP3029.


Setting Up the Hardware

  1. Mount the CN-0507 shield over the EVAL-ADICUP3029.
  2. Connect the EVAL-ADICUP3029 to the Laptop using a micro USB cable.
  3. Connect a 6V DC power supply capable of supplying 1.5A to the CN-0507

Software GUI Setup

Firmware

To use the software GUI, the firmware must first be loaded onto the EVAL-ADICUP3029.

  1. Download the hex file from the CN-0507 product page.
  2. If running an operating system older than Windows 10, install serial driver as in 1. Install mBed windows serial driver...
  3. You should see DAPLINK in your list of drives.
  4. Copy the hex file to the DAPLINK drive to load the firmware to the EVAL-ADICUP3029. Note that the DAPLINK drive will disappear for a moment, then reappear after loading the firmware.

GUI

  1. Download the GUI zip archive from the CN-0507 product page.
  2. Extract the zip file to your PC.
  3. Look inside the extracted files and launch the adi-vna-app.exe executable.

The Software GUI

The included software GUI can be used for performing S-parameter measurements using the CN-0507 shield. The important parts of software GUI is shown in this figure.

How to use the GUI

Connection

After launching the software GUI. The connection window will be first shown. It lists all the available serial ports. To start using the GUI, choose the COM port of the EVAL-ADICUP3029 used. Have the baud rate set to the default, 115200, then click Connect . The connection window will automatically close after a successful connection.

Performing a Sweep

First, make sure that port 1 and port 2 of the CN-0507 shield is already connected to the DUT. To perform a sweep, just click the Start Sweep button. This figure shows the magnitude plot from an open sweep with the default sweep setting values.

The default settings have it set at 25 steps, with a start frequency of 1700 MHz, and a stop frequency of 3400 MHz. This range is set because this is the frequency range that the CN-0507 can handle. The number of steps can be chosen between the available value of 25, 50, 100, 500, and 1000 steps. The expected time per sweep is indicated at the right of the steps box. The S-parameters that will be plotted may also be selected at the Sweep Settings card. It is recommended to have all the S-parameters checked since it is also possible to hide a plot by clicking its legend at the top. By default, the magnitude plot is shown. To view the phase plot, click on the Phase option at the top.

The Y-axis of the magnitude plot view can be adjusted using the Adjust Y buttons in Plot Settings located on the lower right of the GUI. Below that is the Export Plots button which will save the magnitude and phase values into a standard touchstone .S2P file.

Averaging multiple sweeps can be enabled by checking the Averaging checkbox. The Sweep Count value determines how many sweeps to average. Take note that averaging multiple sweeps will take a longer time to finish.

A calibrated sweep can also be performed by checking the Use Calibration checkbox. The appropriate calibration file must also be loaded after clicking the Choose File button. The sweep settings (start frequency, stop frequency, step size) of the calibration file must be the same with the sweep settings that will be performed. The next section discusses how to generate a calibration file.

Generating a Calibration File

Generating a calibration file is necessary to perform calibrated sweeps. First, click the menu button located in the upper right corner of the GUI. Select the Calibration option to open the calibration window.

The first tab, Calibration Constants, contains calibration kit constants and the sweep settings of the calibration file to be generated. These constants must be changed depending on the value of the calibration kit. A previously generated calibration file can also be loaded to fill the constants by clicking Constants→Load From File. When all the fields are filled out correctly, click the Use Calibration Constants button then go to the next tab.

The second tab, DC Offsets is used for the IQ demodulator DC offset correction. Click the Measure button to measure the DC offset voltages of the IQ demodulators. Wait for it to finish. After it is performed, go to the next tab.

The third tab, Calibrate Port 1 is for calibrating port 1. Follow the instructions shown in that tab. For reflection measurements, connect an open terminator to port 1 then click the corresponding Calibrate button. Do this again for short and 50-ohm load terminators. For the isolation measurement, connect a 50-ohm load terminator on each port then click the corresponding Calibrate button. For the through measurement, connect port 1 and port using a thru then click the corresponding Calibrate button. Do this again for port 2 on the fourth tab, Calibrate Port 2. After all of these are performed, go to the fifth tab.

The fifth tab, Save is for saving all the performed calibration measurements with the sweep settings and the calibration constants used to a single file. After the things done on the previous tabs, the badges below Port 1 Calibration and Port 2 Calibration must be Ready and color green. With this, click the Save Calibration Values to save it into a JSON file. This file can now be used to perform a calibrated sweep.

評(píng)論

查看更多

下載排行

本周

  1. 1HFSS電磁仿真設(shè)計(jì)應(yīng)用詳解PDF電子教程免費(fèi)下載
  2. 24.30 MB   |  128次下載  |  1 積分
  3. 2雷達(dá)的基本分類方法
  4. 1.25 MB   |  4次下載  |  4 積分
  5. 3電感技術(shù)講解
  6. 827.73 KB  |  2次下載  |  免費(fèi)
  7. 4從 MSP430? MCU 到 MSPM0 MCU 的遷移指南
  8. 1.17MB   |  2次下載  |  免費(fèi)
  9. 5有源低通濾波器設(shè)計(jì)應(yīng)用說明
  10. 1.12MB   |  2次下載  |  免費(fèi)
  11. 6RA-Eco-RA2E1-48PIN-V1.0開發(fā)板資料
  12. 35.59 MB  |  2次下載  |  免費(fèi)
  13. 7面向熱插拔應(yīng)用的 I2C 解決方案
  14. 685.57KB   |  1次下載  |  免費(fèi)
  15. 8愛普生有源晶體振蕩器SG3225EEN應(yīng)用于儲(chǔ)能NPC、新能源
  16. 317.46 KB  |  1次下載  |  免費(fèi)

本月

  1. 12024年工控與通信行業(yè)上游發(fā)展趨勢和熱點(diǎn)解讀
  2. 2.61 MB   |  763次下載  |  免費(fèi)
  3. 2HFSS電磁仿真設(shè)計(jì)應(yīng)用詳解PDF電子教程免費(fèi)下載
  4. 24.30 MB   |  128次下載  |  1 積分
  5. 3繼電保護(hù)原理
  6. 2.80 MB   |  36次下載  |  免費(fèi)
  7. 4正激、反激、推挽、全橋、半橋區(qū)別和特點(diǎn)
  8. 0.91 MB   |  32次下載  |  1 積分
  9. 5labview實(shí)現(xiàn)DBC在界面加載配置
  10. 0.57 MB   |  21次下載  |  5 積分
  11. 6在設(shè)計(jì)中使用MOSFET瞬態(tài)熱阻抗曲線
  12. 1.57MB   |  15次下載  |  免費(fèi)
  13. 7GBT 4706.1-2024家用和類似用途電器的安全第1部分:通用要求
  14. 7.43 MB   |  14次下載  |  免費(fèi)
  15. 8AD18學(xué)習(xí)筆記
  16. 14.47 MB   |  8次下載  |  2 積分

總榜

  1. 1matlab軟件下載入口
  2. 未知  |  935113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(jì)
  4. 1.48MB  |  420061次下載  |  10 積分
  5. 3Altium DXP2002下載入口
  6. 未知  |  233084次下載  |  10 積分
  7. 4電路仿真軟件multisim 10.0免費(fèi)下載
  8. 340992  |  191360次下載  |  10 積分
  9. 5十天學(xué)會(huì)AVR單片機(jī)與C語言視頻教程 下載
  10. 158M  |  183329次下載  |  10 積分
  11. 6labview8.5下載
  12. 未知  |  81578次下載  |  10 積分
  13. 7Keil工具M(jìn)DK-Arm免費(fèi)下載
  14. 0.02 MB  |  73804次下載  |  10 積分
  15. 8LabVIEW 8.6下載
  16. 未知  |  65985次下載  |  10 積分