{ "cells": [ { "cell_type": "markdown", "metadata": {}, "source": [ "
\n", "

Python Automation of Keysight Instruments

\n", "*Note: This app note assumes a CPython installation on a Windows machine and assumes some prior knowledge and installation of Python.*\n", "
\n", "

Contents

\n", "" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "

General SCPI Instrumentation Control

\n", "

\n", " Requirements:
\n", "

    \n", "
  1. Installation of a VISA library such as [Keysight's IO Libraries](http://www.keysight.com/find/iolibs)
    \n", "
  2. Installation of the [PyVISA](https://github.com/hgrecco/pyvisa) Python library
    \n", "
\n", "

\n", "

Example below uses [N8900A Infiniium Offline Oscilloscope software](www.keysight.com/find/N8900A):

" ] }, { "cell_type": "code", "execution_count": 1, "metadata": {}, "outputs": [ { "data": { "text/plain": [ "u'KEYSIGHT TECHNOLOGIES,N8900A,No Serial,05.20.0008\\n'" ] }, "execution_count": 1, "metadata": {}, "output_type": "execute_result" } ], "source": [ "import visa # Import the instrument function from the visa module\n", "rm = visa.ResourceManager()\n", "scope = rm.open_resource(\"TCPIP0::localhost::inst0::INSTR\") # Connect to the scope using the VISA address (see below)\n", "scope.query(\"*IDN?\") # Query the IDN properties of the scope" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "If using Keysight's IO Libraries to provide the VISA labraries you can get the VISA address from there:
\n", "" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "Now let's do something more interesting...\n", "\n", "Infiniium has a nice demo wizard which we can use to load an example setup and waveform. In this example we will use the Real-Time Eye example as shown below:
\n", "
\n", "How about a screenshot from the instrument to confirm that the demo example loaded?" ] }, { "cell_type": "code", "execution_count": 2, "metadata": {}, "outputs": [ { "name": "stderr", "output_type": "stream", "text": [ "C:\\Anaconda\\lib\\site-packages\\pyvisa\\ctwrapper\\functions.py:1569: VisaIOWarning: VI_SUCCESS_MAX_CNT (1073676294): The number of bytes transferred is equal to the requested input count. More data may be available.\n", " ret = library.viRead(session, buffer, count, byref(return_count))\n" ] }, { "data": { "image/png": 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9kF+sdX9gI42EavsfPc/ss9/+ZsHZ59bFPvvv37mNQIAnSb/IvVKL9g0AAAAA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\nCxfaX7YN9RFyhV7o+MgvxJ500knBNl/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kwFuxYoX9UYtKwjtBgIda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0Rum077Lza3TZcP0TYZuy+2ZBmZ1rFylpNpArzG8q8S7Ap7BV6ujlJ7fQ3o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OOQH9mpT5d/D89PwJ14zrgRI4zjGK93H5eA8TnMAzxhwaBFQbQVVXVzmDL8LglEFaDNqyutqj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\nyPYR1y9t+H7J9zLWixw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W+7INoOd4UUfoT/XsUy5QOT+UZJhPr482Ol+W1MXz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\nMrb2xhhjjDHGGGPONyWBhz+IX/SiF5U/ZrMkHJJtSMLhe6fQxh/P+KMUf1R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"text/plain": [ "" ] }, "execution_count": 2, "metadata": {}, "output_type": "execute_result" } ], "source": [ "scope.write(\"disp:data? png\")\n", "data = scope.read_raw() # Read back the raw binary data as a string\n", "hash_idx = data.find('#') # Find the start of the image data\n", "len_datalen = int(data[hash_idx+1]) # The 1st character after '#' indicates the length of the length field\n", "data_start_idx = hash_idx+len_datalen+2 # The binary image data starts here\n", "datalen = int(data[hash_idx+2:hash_idx+len_datalen+2]) # The length of the binary data\n", "img_data = data[data_start_idx:data_start_idx+datalen] # Extract just the image binary data\n", "\n", "from IPython.display import Image # Ipython has some nice tools to display image data.\n", "embed = Image(img_data)\n", "embed" ] }, { "cell_type": "code", "execution_count": 3, "metadata": {}, "outputs": [], "source": [ "target = open('screenshot.png','wb')\n", "target.write(img_data)\n", "target.close()" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "Now let's try pulling some waveform data from the scope. First we'll just grab the first 1000 samples so that we can plot them easily:" ] }, { "cell_type": "code", "execution_count": 4, "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "text": [ "Populating the interactive namespace from numpy and matplotlib\n" ] }, { "data": { "text/plain": [ "[]" ] }, "execution_count": 4, "metadata": {}, "output_type": "execute_result" }, { "data": { "image/png": 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HlhBTVWpMedtQxJXnU8pz9XQGlxJS2eYHyf5915gktT5X5ocg5dXDwb94ywYR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\n9vTwZ0kRHBg8+CQJaPVq7lMmxInpxz8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"text/plain": [ "" ] }, "metadata": {}, "output_type": "display_data" } ], "source": [ "import numpy as np\n", "import matplotlib.pyplot as plt\n", "# Allow plots to appear inline with the IPython notebook\n", "%pylab inline\n", "scope.read_termination = '\\n' # For ascii transfers the read is terminated with a newline character\n", "scope.write(\":WAV:SOUR WMEM1\")\n", "scope.write(\":WAV:FORMAT ASCII\")\n", "wfm_ascii = scope.query(\":WAV:DATA? 1, 1000\") # Get the first 1000 points of waveform data\n", "wfm_ascii = wfm_ascii[:-1] # Remove a trailing ','\n", "wfm = [float(s) for s in wfm_ascii.split(',')] # Convert the ascii list of strings to a list of floats\n", "x_inc = float(scope.query(\":WAV:XINC?\")) # Get the waveform's X increment\n", "x_or = float(scope.query(\":WAV:XOR?\")) # Get the waveform's X origin\n", "#mem_depth = float(scope.query(\":ACQ:POIN?\")) # Get the current memory depth\n", "#t = np.linspace(-mem_depth/sa_rate,mem_depth/sa_rate, len(wfm)) # Calculate the sample times of the waveform\n", "t = np.linspace(x_or, x_or+1001*x_inc, 1000) # Calculate the sample times of the waveform\n", "plt.plot(t,wfm) # Plot the waveform vs sample times" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "Now let's try grabbing the whole waveform. First we'll try using the method above using ascii just to see how slow the transfer is. We'll use the python time module to time the transfer:" ] }, { "cell_type": "code", "execution_count": 5, "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "text": [ "Number of Wfm Sample Points: 320230\n", "ASCII Transfer Time: 0.344186125457\n", "Time to grab ASCII wfm & convert to array: 0.570182696058\n", "Check size of wfm array :320230\n" ] }, { "data": { "text/plain": [ "[]" ] }, "execution_count": 5, "metadata": {}, "output_type": "execute_result" }, { "data": { "image/png": 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"text/plain": [ "" ] }, "metadata": {}, "output_type": "display_data" } ], "source": [ "import time\n", "num_pts = int(scope.query(\":WAV:POIN?\")) # Get the number of sample points in the waveform\n", "print (\"Number of Wfm Sample Points: \"+str(num_pts))\n", "start = time.clock() # Grab the current system time & store it\n", "wfm_ascii = scope.query(\":WAV:DATA?\") # Grab the whole waveform\n", "transfer_time = time.clock()-start # Calculate the time to transfer the waveform\n", "print(\"ASCII Transfer Time: \"+str(transfer_time))\n", "wfm_ascii = wfm_ascii[:-1] # Remove a trailing ','\n", "wfm = [float(s) for s in wfm_ascii.split(',')] # Convert the ascii list of strings to a list of floats\n", "wfm_array = np.array(wfm)\n", "wfm_to_array_time = time.clock()-start\n", "print(\"Time to grab ASCII wfm & convert to array: \"+str(wfm_to_array_time))\n", "print(\"Check size of wfm array :\"+str(len(wfm_array)))\n", "plt.plot(wfm_array)" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "We can greatly simplify & reduce the transfer time by using a binary format to transfer the data & the new query_binary_values function introduced in PyVISA 1.6.
\n", "[More information on reading & writing binary data with PyVISA](http://pyvisa.readthedocs.org/en/1.6/rvalues.html):" ] }, { "cell_type": "code", "execution_count": 6, "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "text": [ "Time to grab binary wfm & convert to array of integers: 0.0574108663971\n", "Time to grab binary wfm, convert to array of floats: 0.0606590857776\n", "Check size of wfm array :320230\n" ] }, { "data": { "text/plain": [ "[]" ] }, "execution_count": 6, "metadata": {}, "output_type": "execute_result" }, { "data": { "image/png": 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/TlBV8PvAzA4xsyVw23geyRUoom2fJX6gALd9vhNFoT1JP5vkGQD6AxhuZucm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\nFCIi4qVEISIiXkoUIiLipUQhIiJe/x8HRx3UlTRTvgAAAABJRU5ErkJggg==\n", "text/plain": [ "" ] }, "metadata": {}, "output_type": "display_data" } ], "source": [ "# The WORD format is the most accurate for Keysight Oscilloscopes. Data is transferred as signed 16bit integers in 2 bytes.\n", "scope.write(\":WAV:FORMAT WORD\")\n", "scope.write(\":WAV:BYTEORDER MSBF\") # Set the byte order to Big-Endian (default for Infinium oscilloscopes)\n", "scope.read_termination = None # Since we're transferring binary data we need to remove the newline read termination\n", "start = time.clock()\n", "wfm_array = scope.query_binary_values(\":WAV:DATA?\", 'h', is_big_endian = True, container = np.array)\n", "wfm_to_array_ints_time = time.clock()-start\n", "print(\"Time to grab binary wfm & convert to array of integers: \"+str(wfm_to_array_ints_time))\n", "y_inc = float(scope.query(\":WAV:YINC?\"))\n", "y_or = float(scope.query(\":WAV:YOR?\"))\n", "wfm_array = wfm_array*y_inc + y_or\n", "wfm_to_array_floats_time = time.clock()-start\n", "print(\"Time to grab binary wfm, convert to array of floats: \"+str(wfm_to_array_floats_time))\n", "print(\"Check size of wfm array :\"+str(len(wfm_array)))\n", "plt.plot(wfm_array)" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "
\n", "

Automation of Digital Test Applications

\n", "*You can find more information about our scope apps at: [www.keysight.com/find/scope-apps](http://www.keysight.com/find/scope-apps)*
\n", "
Requirements:
\n", "
    \n", "
  1. Installation of [PythonNet](https://github.com/pythonnet/pythonnet)
    \n", " Installation of PythonNet essentially involves putting the appropriate version of the files **clr.pyd** & **Python.Runtime.dll** where Python can access them. However care must be taken to match the appropriate versions (32/64 bit, Python 2.x, CLR 2.0/4.0). The source code is available at the link above if you're brave and want to build it yourself however if you have the Python package manager pip installed you should be able to install the appropriate version using
    \n", " *pip install pythonnet*
    \n", " This should copy the correct version of DLL's somewhere Python can access them (ex: C:\\Python27\\DLLS\\)
    \n", " **[Note: As of September 19th 2017 only version 2.0.0.0 of pythonnet is supported. This can be installed using pip install pythonnet==2.0.0.0]**\n", "
    \n", "
  2. Installation of the [Remote Programming Toolkit](http://www.keysight.com/find/rpi)
    \n", " * Note that with the transition from Agilent to Keysight there is a change in the Remote Toolkit naming conventions for Digital Test Apps. The user must select the appropriate version to use:
    \n", "
      \n", "
    • For control of **both** Agilent & Keysight branded apps the user should select the files in the folder \"Agilent-Keysight Transition\"
      \n", "
    • For control only of newer Keysight branded apps the user should use the files in the folder \"Keysight Apps Only\".*\n", "

    \n", " The user must either copy the .config/.dll/.xml files in the Tools directory to their Python DLL's directory or temporarily modify the PATH that python searches to find them (see example below)
    \n", "
    \n", "
  3. The Remote Programming Interface for the Infiniium Compliance Applications is built on a .NET API and requires a **LAN connection** to the scope.
    \n", "
\n", "\n", "Example using Keysight branded app:" ] }, { "cell_type": "code", "execution_count": 2, "metadata": {}, "outputs": [], "source": [ "# First set up the connection to the RPI DLL via the Python for .NET module\n", "import clr # Import the Common Runtime Library Python module\n", "import sys\n", "sys.path.append(\"C:\\ProgramData\\Keysight\\DigitalTestApps\\Remote Toolkit\\Version 3.30\\Keysight Apps Only\\Tools\")\n", "clr.AddReference(\"Keysight.DigitalTestApps.Framework.Remote\") # Create a reference from CLR to the Compliance App DLL\n", "from Keysight.DigitalTestApps.Framework.Remote import * # Import the entire compliance app namespace from the Compliance App DLL\n", "scopeIpAddress = \"localhost\"" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "Now we're ready to start..." ] }, { "cell_type": "code", "execution_count": 4, "metadata": {}, "outputs": [], "source": [ "scope.write(\":SYSTEM:LAUNCH 'U7231B/U7231C DDR3 Test App'\") # Launch the compliance app using the pyvisa instrument connection\n", "remoteAteOptions = GetRemoteAteOptions()\n", "remoteAteOptions.CloseStartupMessageBoxes = True # Kills any message boxes that may be launched on app startup\n", "remoteAteOptions.IpAddress = scopeIpAddress # Tells the Remote Interface where the scope app is running\n", "remoteAteOptions.ScopeAppAddressOrAlias = \"lan[localhost]:inst0\" # Tells the Remote Interface where the Digital Test App is running\n", "remoteAteOptions.TimeoutInSeconds = 60 # Sets the timeout for the Digital Test App to respond [s]\n", "remoteObj = RemoteAteUtilities.GetRemoteAteCustom(remoteAteOptions) # Connect the Remote Interface to the Digital Test App\n", "remoteApp = IRemoteAte(remoteObj)" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "First we must make some selections about the device we want to test.
\n", "If we want to take a look at the test ID's & test names currently available we can do that using the TestInfo type:" ] }, { "cell_type": "code", "execution_count": 5, "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "text": [ "100 tjit(CC) Rising Edge Measurements\n", "200 tCK(avg) Rising Edge Measurements\n", "300 tjit(per) Rising Edge Measurements\n", "400 terr(2per) Rising Edge Measurements\n", "500 terr(3per) Rising Edge Measurements\n", "600 terr(4per) Rising Edge Measurements\n", "700 terr(5per) Rising Edge Measurements\n", "800 terr(6per) Rising Edge Measurements\n", "900 terr(7per) Rising Edge Measurements\n", "1000 terr(8per) Rising Edge Measurements\n", "1100 terr(9per) Rising Edge Measurements\n", "1200 terr(10per) Rising Edge Measurements\n", "1300 terr(11per) Rising Edge Measurements\n", "1400 terr(12per) Rising Edge Measurements\n", "2000 tCH Average High Measurements\n", "2050 tCL Average Low Measurements\n", "2100 tjit(duty-high) Jitter Average High Measurements\n", "2150 tjit(duty-low) Jitter Average Low Measurements\n", "3000 terr(nper) Rising Edge Measurements\n", "2200 tCH(abs) Absolute clock HIGH pulse width\n", "2250 tCL(abs) Absolute clock LOW pulse width\n", "10313 VIH.DQ(AC)\n", "10314 VIH.DQ(DC)\n", "10323 VIL.DQ(AC)\n", "10324 VIL.DQ(DC)\n", "10353 Overshoot amplitude (Clock, Data, Strobe, Mask)\n", "10354 Overshoot area (Clock, Data, Strobe, Mask)\n", "10363 Undershoot amplitude (Clock, Data, Strobe, Mask)\n", "10364 Undershoot area (Clock, Data, Strobe, Mask)\n", "11311 VOH(AC)\n", "11312 VOH(DC)\n", "11321 VOL(AC)\n", "11322 VOL(DC)\n", "11341 SRQseR\n", "11342 SRQseF\n", "10331 VSEH(Strobe)\n", "10332 VSEL(Strobe)\n", "10333 VSEH(Clock)\n", "10334 VSEL(Clock)\n", "10411 VIHdiff.CK(AC)\n", "10412 VILdiff.CK(AC)\n", "10413 VIHdiff.DQS(AC)\n", "10414 VILdiff.DQS(AC)\n", "11411 VOHdiff(AC)\n", "11412 VOLdiff(AC)\n", "11413 SRQdiffR\n", "11414 SRQdiffF\n", "30101 tHZDQ\n", "30102 tLZDQ\n", "30103 tLZDQS\n", "30104 tDQSQ\n", "30105 tQH\n", "30106 tDQSS\n", "30107 tDQSH\n", "30108 tDQSL\n", "30109 tDSS\n", "30110 tDSH\n", "30111 tWPRE\n", "30112 tWPST\n", "30113 tRPRE\n", "30114 tRPST\n", "30115 tQSH\n", "30116 tQSL\n", "30301 tDS(base)\n", "30302 tDH(base)\n", "30303 tDS-Diff(derate)\n", "30304 tDH-Diff(derate)\n", "30305 tDIPW\n", "30021 tDQSCK\n", "30022 tDVAC(Clock)\n", "30117 tDVAC(Strobe)\n", "30306 tVAC(Data)\n" ] } ], "source": [ "remoteApp.SetConfig(\"DeviceType\", \"DDR3-1600\")\n", "remoteApp.SetConfig(\"TestMode\", \"Compliance\")\n", "remoteApp.SetConfig(\"BurstTrigMethod\", \"DQS-DQ Phase Difference\")\n", "remoteApp.SetConfig(\"AcLevels_DQ\", \"150\")\n", "remoteApp.SetConfig(\"AcLevels_CA\", \"150\")\n", "testsinfos = remoteApp.GetCurrentOptions(\"TestsInfo\")\n", "for test in testsinfos:\n", " print test.ID, test.Name" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "Now let's select some measurements & run some tests:" ] }, { "cell_type": "code", "execution_count": 9, "metadata": {}, "outputs": [], "source": [ "remoteApp.SuppressMessages = True # Suppress the GUI prompts\n", "# Set various Configuration Parameters\n", "remoteApp.SelectedTests = [10313, 10314, 10323, 10324] # Select the tests to run\n", "remoteApp.Run() # Run the selected tests\n", "# Set up the project save options & save it to disk\n", "saveOptions = SaveProjectOptions()\n", "saveOptions.BaseDirectory = \"c:\\\\temp\"\n", "saveOptions.Name = \"Demo\"\n", "saveOptions.OverwriteExisting = True\n", "projectFullPath = remoteApp.SaveProjectCustom(saveOptions)\n", "# Set up the project results options and then get the results\n", "resultOptions = ResultOptions()\n", "resultOptions.TestIds = [10313, 10314, 10323, 10324]\n", "resultOptions.IncludeCsvData = True\n", "customResults = remoteApp.GetResultsCustom(resultOptions)\n", "results = customResults.CsvResults\n", "#remoteApp.Exit(True,True) # Exit the application" ] }, { "cell_type": "code", "execution_count": 10, "metadata": {}, "outputs": [ { "data": { "text/html": [ "
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Test ID Test Name Measured Item Trial 1 Value
0 10313 VIH.DQ(AC) Worst VIH (See image)
1 10313 VIH.DQ(AC) Number of burst(s)... 1
2 10313 VIH.DQ(AC) Actual Value 1.088404000000
3 10313 VIH.DQ(AC) NumOfMeas 2.000
4 10313 VIH.DQ(AC) Margin 17.7
5 10313 VIH.DQ(AC) PUT DQ0
6 10313 VIH.DQ(AC) PUT Src Channel 3
7 10313 VIH.DQ(AC) Supporting Pin DQS0,/DQS0
8 10313 VIH.DQ(AC) Supporting Pin Src Channel 2
9 10313 VIH.DQ(AC) Chip Select Pin So... NaN
10 10313 VIH.DQ(AC) PassLimit Min (Vre... 0.925
11 10314 VIH.DQ(DC) Worst VIH (See image)
12 10314 VIH.DQ(DC) Number of burst(s)... 1
13 10314 VIH.DQ(DC) Actual Value 1.088398000000
14 10314 VIH.DQ(DC) NumOfMeas 2.000
15 10314 VIH.DQ(DC) Margin 36.7
16 10314 VIH.DQ(DC) PUT DQ0
17 10314 VIH.DQ(DC) PUT Src Channel 3
18 10314 VIH.DQ(DC) Supporting Pin DQS0,/DQS0
19 10314 VIH.DQ(DC) Supporting Pin Src Channel 2
20 10314 VIH.DQ(DC) Chip Select Pin So... NaN
21 10314 VIH.DQ(DC) PassLimit Min (Vre... 0.85
22 10314 VIH.DQ(DC) PassLimit Max (VDD... 1.500000000000
23 10323 VIL.DQ(AC) Worst VIL (See image)
24 10323 VIL.DQ(AC) Number of burst(s)... 1
25 10323 VIL.DQ(AC) Actual Value 0.4161437
26 10323 VIL.DQ(AC) NumOfMeas 2.000
27 10323 VIL.DQ(AC) Margin 27.6
28 10323 VIL.DQ(AC) PUT DQ0
29 10323 VIL.DQ(AC) PUT Src Channel 3
30 10323 VIL.DQ(AC) Supporting Pin DQS0,/DQS0
31 10323 VIL.DQ(AC) Supporting Pin Src Channel 2
32 10323 VIL.DQ(AC) Chip Select Pin So... NaN
33 10323 VIL.DQ(AC) PassLimit Max (Vre... 0.575
34 10324 VIL.DQ(DC) Worst VIL (See image)
35 10324 VIL.DQ(DC) Number of burst(s)... 1
36 10324 VIL.DQ(DC) Actual Value 0.4161437
37 10324 VIL.DQ(DC) NumOfMeas 2.000
38 10324 VIL.DQ(DC) Margin 36.0
39 10324 VIL.DQ(DC) PUT DQ0
40 10324 VIL.DQ(DC) PUT Src Channel 3
41 10324 VIL.DQ(DC) Supporting Pin DQS0,/DQS0
42 10324 VIL.DQ(DC) Supporting Pin Src Channel 2
43 10324 VIL.DQ(DC) Chip Select Pin So... NaN
44 10324 VIL.DQ(DC) PassLimit Max (Vre... 0.65
\n", "
" ], "text/plain": [ " Test ID Test Name Measured Item Trial 1 Value\n", "0 10313 VIH.DQ(AC) Worst VIH (See image)\n", "1 10313 VIH.DQ(AC) Number of burst(s)... 1\n", "2 10313 VIH.DQ(AC) Actual Value 1.088404000000\n", "3 10313 VIH.DQ(AC) NumOfMeas 2.000\n", "4 10313 VIH.DQ(AC) Margin 17.7\n", "5 10313 VIH.DQ(AC) PUT DQ0\n", "6 10313 VIH.DQ(AC) PUT Src Channel 3\n", "7 10313 VIH.DQ(AC) Supporting Pin DQS0,/DQS0\n", "8 10313 VIH.DQ(AC) Supporting Pin Src Channel 2\n", "9 10313 VIH.DQ(AC) Chip Select Pin So... NaN\n", "10 10313 VIH.DQ(AC) PassLimit Min (Vre... 0.925\n", "11 10314 VIH.DQ(DC) Worst VIH (See image)\n", "12 10314 VIH.DQ(DC) Number of burst(s)... 1\n", "13 10314 VIH.DQ(DC) Actual Value 1.088398000000\n", "14 10314 VIH.DQ(DC) NumOfMeas 2.000\n", "15 10314 VIH.DQ(DC) Margin 36.7\n", "16 10314 VIH.DQ(DC) PUT DQ0\n", "17 10314 VIH.DQ(DC) PUT Src Channel 3\n", "18 10314 VIH.DQ(DC) Supporting Pin DQS0,/DQS0\n", "19 10314 VIH.DQ(DC) Supporting Pin Src Channel 2\n", "20 10314 VIH.DQ(DC) Chip Select Pin So... NaN\n", "21 10314 VIH.DQ(DC) PassLimit Min (Vre... 0.85\n", "22 10314 VIH.DQ(DC) PassLimit Max (VDD... 1.500000000000\n", "23 10323 VIL.DQ(AC) Worst VIL (See image)\n", "24 10323 VIL.DQ(AC) Number of burst(s)... 1\n", "25 10323 VIL.DQ(AC) Actual Value 0.4161437\n", "26 10323 VIL.DQ(AC) NumOfMeas 2.000\n", "27 10323 VIL.DQ(AC) Margin 27.6\n", "28 10323 VIL.DQ(AC) PUT DQ0\n", "29 10323 VIL.DQ(AC) PUT Src Channel 3\n", "30 10323 VIL.DQ(AC) Supporting Pin DQS0,/DQS0\n", "31 10323 VIL.DQ(AC) Supporting Pin Src Channel 2\n", "32 10323 VIL.DQ(AC) Chip Select Pin So... NaN\n", "33 10323 VIL.DQ(AC) PassLimit Max (Vre... 0.575\n", "34 10324 VIL.DQ(DC) Worst VIL (See image)\n", "35 10324 VIL.DQ(DC) Number of burst(s)... 1\n", "36 10324 VIL.DQ(DC) Actual Value 0.4161437\n", "37 10324 VIL.DQ(DC) NumOfMeas 2.000\n", "38 10324 VIL.DQ(DC) Margin 36.0\n", "39 10324 VIL.DQ(DC) PUT DQ0\n", "40 10324 VIL.DQ(DC) PUT Src Channel 3\n", "41 10324 VIL.DQ(DC) Supporting Pin DQS0,/DQS0\n", "42 10324 VIL.DQ(DC) Supporting Pin Src Channel 2\n", "43 10324 VIL.DQ(DC) Chip Select Pin So... NaN\n", "44 10324 VIL.DQ(DC) PassLimit Max (Vre... 0.65" ] }, "execution_count": 10, "metadata": {}, "output_type": "execute_result" } ], "source": [ "# An example of how to manipulate and display results using the Pandas library\n", "import pandas as pd\n", "from StringIO import StringIO\n", "df_data = pd.read_csv(StringIO(results), sep=',', header=0, quotechar = '\"')\n", "pd.set_option('display.max_colwidth', 22)\n", "df_data" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "
\n", "

Automation of N5990A Automated Test Applications for Receiver Test

\n", "*More information about [N5990A solutions](http://www.keysight.com/en/pd-734301-pn-N5990A)*
\n", "
\n", "Requirements:
\n", "
    \n", "
  1. Installation of PythonNet (see above)\n", "
    \n", "
  2. The Valiframe dll’s that are needed are typically installed in the following directory: C:\\Program Files (x86)\\BitifEye\\ValiFrame\\PCI-Express3\n", "You can copy over the ones you need to a directory that Python looks in but the easiest way to reference them from your Python script is to add this directory to the sys.path variable which tells the Python interpreter where to look for modules and dll’s.
    \n", "
\n", "\n", "Example:" ] }, { "cell_type": "code", "execution_count": 3, "metadata": {}, "outputs": [], "source": [ "import sys \n", "sys.path.append('C:\\\\Program Files (x86)\\\\BitifEye\\\\ValiFrame\\\\PCI-Express3') # Add the location of the Valiframe dll's to the system path\n", "import clr # Import the Common Runtime Library Python module\n", "clr.AddReference(\"ValiFrameRemote\") # Create a reference from CLR to the Valiframe App DLL\n", "from BitifEye.ValiFrame.ValiFrameRemote import * # Import the entire valiframe app namespace from the DLL\n", "my_vf_pcie = ValiFrameRemote() # Creates an instance of the ValiFrameRemote class\n", "my_vf_pcie.InitApplication(\"PciExpress3\") # Initialize the application\n", "my_vf_pcie.LoadProject(\"my_pcie3_proj.vfp\")\n", "#my_vf_pcie.ConfigureApplication() # This method creates a GUI prompt" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "There are a couple of interesting things to be aware of when using .NET dll's in Python via the pythonnet module.
\n", "
    \n", "
  1. A .NET method may require the user to pass the variable name it wishes to modify as an argument. Python does not support \"pass by reference\" but the variable name must exist in python before it can be handed to the .NET method. The .NET method will simply point to the new instance.
    \n", " The example below shows how to handle this.\n", "
  2. .NET attributes can often return .NET collections such as Arrays. The object returned by python.net is indexed and iterable in Python but it is not a native Python collection object like a list.
    \n", " The example below shows a simple way to convert Arrays of Strings and Int32s to lists of strings & ints.\n", "
" ] }, { "cell_type": "code", "execution_count": 4, "metadata": {}, "outputs": [ { "name": "stdout", "output_type": "stream", "text": [ "300101 Random Jitter Calibration\n", "300103 De-Emphasis Calibration\n", "300104 Eye Height Calibration\n", "301101 Random Jitter Calibration\n", "301103 De-Emphasis Calibration\n", "301104 Eye Height Calibration\n", "302120 Equalization Preset Calibration\n", "302121 Equalization Custom Preset Calibration\n", "302122 Random Jitter Calibration\n", "302123 Sinusoidal Jitter Calibration\n", "302125 DM Sinusoidal Interference Calibration\n", "302126 Eye Height and Width Calibration\n", "302127 Compliance Eye Calibration\n", "310101 Compliance Test\n", "311101 Compliance Test\n", "312120 Preset Compliance Test\n", "312121 Compliance Test\n", "320101 Unit Interval \n", "320102 Template Tests \n", "320103 Median to Max Jitter \n", "320104 Eye-Width \n", "320105 Peak Differential Output Voltage (Transition)\n", "320106 Peak Differential Output Voltage (NonTransition)\n", "321140 Unit Interval \n", "321141 Template Tests -3.5dB \n", "321142 Peak Differential Output Voltage -3.5dB \n", "321143 Eye-Width -3.5dB with crosstalk \n", "321144 RMS Random Jitter -3.5dB with crosstalk \n", "321145 Maximum Deterministic Jitter -3.5dB with crosstalk \n", "321146 Total Jitter at BER-12 -3.5dB with crosstalk \n", "321147 Eye-Width -3.5dB without crosstalk \n", "321148 RMS Random Jitter -3.5dB without crosstalk \n", "321149 Maximum Deterministic Jitter -3.5dB without crosstalk \n", "321150 Total Jitter at BER-12 -3.5dB without crosstalk \n", "322160 Unit Interval \n", "322161 Template Tests \n", "322162 Eye-Width \n", "322163 Peak Differential Output Voltage \n" ] } ], "source": [ "procedureIDs = procedureNames = [] # The variable names must be assigned to something but are overwritten in the next call\n", "_, procedureIDs, procedureNames = my_vf_pcie.GetProcedures(procedureIDs, procedureNames)\n", "procedureIDs = [int(id) for id in procedureIDs] # Convert to a python list of integers\n", "procedureNames = [str(name) for name in procedureNames] # Convert to a python list of strings\n", "procs = zip(procedureIDs, procedureNames) # Zip the id's & names together. A dictionary may also be a useful way to store these.\n", "for proc_id,proc_name in procs:\n", " print proc_id, proc_name" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "Valiframe often uses dialog windows to give the user information or prompt the user to make a change to the setup.\n", "There are different ways to handle this in an automation environment. Below is a basic way to suppress all dialog windows but there is a more complete example of [how to handle messaging and events in Valiframe](N5990A_Python_Automation.ipynb)" ] }, { "cell_type": "code", "execution_count": 5, "metadata": {}, "outputs": [], "source": [ "my_vf_pcie.DialogPopUp += DialogShowEventHandler(VFDialogInformation()) # Register the Dialog event handler (suppresses all Dialogs)" ] }, { "cell_type": "code", "execution_count": 6, "metadata": {}, "outputs": [ { "data": { "text/plain": [ "(True,\n", " u'\\r\\n\\r\\n \\r\\n Eye-Width \\r\\n 320104\\r\\n Incomplete\\r\\n 11/13/2013 12:32:21 PM\\r\\n \\r\\n')" ] }, "execution_count": 6, "metadata": {}, "output_type": "execute_result" } ], "source": [ "eyewidth_result = str()\n", "my_vf_pcie.RunProcedure(320104, eyewidth_result)" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "Copyright © 2014 Keysight Technologies Inc. All rights reserved.\n", "\n", "You have a royalty-free right to use, modify, reproduce and distribute this content (and/or any modified version) in any way you find useful, provided that you agree that Keysight has no warranty, obligations or liability." ] } ], "metadata": { "css_file": "/custom.css", "kernelspec": { "display_name": "Python 2 (Spyder)", "language": "python2", "name": "python2" }, "language_info": { "codemirror_mode": { "name": "ipython", "version": 2 }, "file_extension": ".py", "mimetype": "text/x-python", "name": "python", "nbconvert_exporter": "python", "pygments_lexer": "ipython2", "version": "2.7.13" } }, "nbformat": 4, "nbformat_minor": 1 }