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The Spectrum Application (RF Measurements)
R&S
®
FPL1000
368
User Manual 1178.3370.02 ─ 11
CALCulate<n>:MARKer<m>:COUNt:RESolution
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Signal Count Marker State
Activates or deactivates the special signal count marker function.
When activated, the sweep stops at the reference marker until the signal counter has
delivered a result.
Remote command:
CALCulate<n>:MARKer<m>:COUNt:FREQuency?
Resolution
Defines the resolution with which the signal is analyzed around the reference marker 1.
Remote command:
CALCulate<n>:MARKer<m>:COUNt:RESolution
6.9.4.2
Measuring Noise Density (Noise Meas Marker)
Access
: "Overview" > "Analysis" > "Marker Functions" > "Select Marker Function" >
"Noise Measurement" > "Noise Meas Config"
Or
: [MKR] > "Select Marker Function" > "Noise Measurement" > "Noise Meas Config"
Using the noise measurement marker function, the noise power density is measured at
the position of the marker. In the time domain mode, all points of the trace are used to
determine the noise power density. When measurements are performed in the fre-
quency domain, eight points to the right and left of the marker (if available) are used for
the measurement to obtain a stable result.
Result display
Noise density is the noise referred to a bandwidth of 1
Hz. With logarithmic amplitude
units (dBm, dBmV, dBmµV, dBµA), the noise power density is output in dBm/Hz, i.e. as
the level in 1
Hz bandwidth with reference to 1
mW. With linear amplitude units (V, A,
W), the noise voltage density is analyzed in µV/
√
Hz; the noise current density in µA/
√
Hz; the noise power density in µW/
√
Hz.
The result is indicated as the
function result in the Marker Table
.
Prerequisite settings
The following settings are required to obtain correct values:
●
Detector: Sample or RMS
●
Video bandwidth:
≤ 0.1 resolution bandwidth with sample detector
≥ 3 x resolution bandwidth with RMS detector
●
Trace averaging:
Marker Usage