Source code for RsFsw.Implementations.Calculate.Marker.Function.Summary.StandardDev.Average.Result

from ........Internal.Core import Core
from ........Internal.CommandsGroup import CommandsGroup
from ........Internal import Conversions
from ........ import repcap


# noinspection PyPep8Naming,PyAttributeOutsideInit,SpellCheckingInspection
[docs]class ResultCls: """Result commands group definition. 1 total commands, 0 Subgroups, 1 group commands""" def __init__(self, core: Core, parent): self._core = core self._cmd_group = CommandsGroup("result", core, parent)
[docs] def get(self, window=repcap.Window.Default, marker=repcap.Marker.Default) -> float: """SCPI: CALCulate<n>:MARKer<m>:FUNCtion:SUMMary:SDEViation:AVERage:RESult \n Snippet: value: float = driver.calculate.marker.function.summary.standardDev.average.result.get(window = repcap.Window.Default, marker = repcap.Marker.Default) \n Queries the average standard deviation of the time domain power. The query is only possible if averaging has been activated previously using method RsFsw.Calculate.Marker.Function.Summary.Average.set. To get a valid result, you have to perform a complete measurement with synchronization to the end of the measurement before reading out the result. This is only possible for single sweep mode. See also method RsFsw.Applications.K10x_Lte.Initiate.Continuous.set. \n :param window: optional repeated capability selector. Default value: Nr1 (settable in the interface 'Calculate') :param marker: optional repeated capability selector. Default value: Nr1 (settable in the interface 'Marker') :return: standard_deviation: Standard deviation of the signal during the measurement time.""" window_cmd_val = self._cmd_group.get_repcap_cmd_value(window, repcap.Window) marker_cmd_val = self._cmd_group.get_repcap_cmd_value(marker, repcap.Marker) response = self._core.io.query_str(f'CALCulate{window_cmd_val}:MARKer{marker_cmd_val}:FUNCtion:SUMMary:SDEViation:AVERage:RESult?') return Conversions.str_to_float(response)