6 List Sequence Measurements
List Sequence Measurements
[:SENSe]:LSEQuencer:WLAN: DEMod:ACT20: GINTerval:LENGth?
For Radio Standard 802.11ac 160MHz,
[:SENSe]:LSEQuencer:WLAN:DEMod:AC160:GINTerval:LENGth <real>
[:SENSe]:LSEQuencer:WLAN: DEMod:AC160: GINTerval:LENGth?
parameter_table_23.53758
52.93301
Help Map ID
0
Remote Setup
There are 3 ways of setting up the Sequence.
1. Using a TAB delimited file to input the Sequence setup in table format. The TAB delimited file also
contains the source setup, to allow coordination of the source and analyzer sequencers in one entry
format. Both modules have separate SCPI commands, so that they can each be set up separately. The
loading in of the TAB delimited file in this mode is parsed and each of the modules are set up. Only the
Sequence setup parameters can be loaded in via this method. The individual measurement setup
parameters and other parameters associated with the entire Sequence different from the default values
need to be sent via SCPI. A recall state can be used to reinstate all parameters.
2. Setting up the sequence directly, using SCPI.
3. Using U9066A Sequence Studio, a PC application that is used to build and download sequences for the
test set. It can also be used to upload sequences from the test set for modification and read back and
display results.
The number of analysis steps that are supported in a Sequence is 1000. There is a limit to 512 acquisitions
(HW states/changes). Within those two limits, you can build up combinations of steps with and without
change of acquisition. You are constrained by the capture depth of the test set’s Analyzer and the sweep
capability of the test set’s Source list.
Tab Delimited File Setup
Importing a Sequence into the List Sequencer can be done using a TAB delimited file. This file type is used
instead of a comma separated value (CSV) file, because the latter would be incompatible with some of the
data that is included in the sequence.
The TAB delimited file can contain any of the following:
1. An analyzer sequence only. This would include the analyzer table.
2. A source sequence only. This would include the source table.
3. A dual sequence, including both the source table and the analyzer table.
Combining the two types of tables into one file makes it possible to define a complete sequence for the test
set as a whole. The source and analyzer tables each represent a separate piece of hardware on the test
set (its internal signal generator and its internal signal analyzer).
The 2 tables are all contained in the one file as 2 tables one below the other. The order is:
370
Sequence Analyzer User's & Programmer's Reference
Содержание E6650A EXF
Страница 34: ...1 About the Test Set Mouse and Keyboard Control 34 Sequence Analyzer User s Programmer s Reference...
Страница 94: ...2 Programming the Test Set Common Commands 94 Sequence Analyzer User s Programmer s Reference...
Страница 129: ...4 Mode Functions Undefined variable Primary ProductName Sequence Analyzer User s Programmer s Reference 129...
Страница 145: ...5 System Functions Undefined variable Primary ProductName Sequence Analyzer User s Programmer s Reference 145...
Страница 206: ...5 System Functions System 206 Sequence Analyzer User s Programmer s Reference...
Страница 214: ...6 List Sequence Measurements File File See File on page 146 214 Sequence Analyzer User s Programmer s Reference...
Страница 474: ...6 List Sequence Measurements Mode Mode See Mode on page 130 474 Sequence Analyzer User s Programmer s Reference...
Страница 478: ...6 List Sequence Measurements Print Print See Print on page 151 478 Sequence Analyzer User s Programmer s Reference...
Страница 642: ...6 List Sequence Measurements System System See System on page 152 642 Sequence Analyzer User s Programmer s Reference...