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Rohde & Schwarz SMAB-K24 - Page 235

Rohde & Schwarz SMAB-K24
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Improving Level Performance
R&S
®
SMA100B
233User Manual 1178.3834.02 ─ 05
Remote command:
:SENSe[:POWer]:SWEep:FREQuency:STEPs on page 467
:SENSe[:POWer]:SWEep:POWer:STEPs on page 480
:SENSe[:POWer]:SWEep:TIME:STEPs on page 485
Timing - Power Analysis
Selects the timing mode.
This parameter is only available for Configure Measurement > "Frequency"/"Power".
"Fast"
Fast measurement with an integration time of 2 ms for each measure-
ment step.
"Normal"
A longer but more precise measurement (integration time is 20 ms/
step).
"High Preci-
sion"
Responds with the highest possible accuracy, however, requires
higher integration time for each step.
Remote command:
:SENSe[:POWer]:SWEep:FREQuency:TIMing[:MODE] on page 468
:SENSe[:POWer]:SWEep:POWer:TIMing[:MODE] on page 481
Average - Power Analysis
Selects the averaging factor.
The factor determines how many measurement cycles are used to form a measure-
ment result. Higher averaging counts reduce noise but increase the measurement
time. Averaging requires a stable trigger event so that the measurement cycles have
the same timing. If factor 1 is selected, no averaging is performed.
This parameter is only available for Configure Measurement > "Time".
Remote command:
:SENSe[:POWer]:SWEep:TIME:AVERage[:COUNt] on page 483
Spacing - Power Analysis
Sets the mode for calculating the sweep steps.
In power versus frequency mode, selection between linear and logarithmic spacing is
possible.
"Linear"
Power versus frequency
In a linear sweep, the frequency is swept in equidistant steps over
the continuous frequency range. The x-axis is a linear frequency
axis.
Power versus power
The sweeps are performed at constant frequency but with vari-
able generator power that is swept in linear, equidistant steps
over a continuous range. The x-axis is a dB-linear power axis.
Power versus time
The sweeps are performed at constant frequency and stimulus
power. The measurement is repeated over a specified period of
time at constant time intervals.
Using Power Sensors

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