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R&S FSQ Signal Analyzer - Rohde & Schwarz

R&S FSQ Signal Analyzer - Rohde & Schwarz

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R&S <strong>FSQ</strong> Instrument Functions<br />

ADJUST REF<br />

LVL<br />

ADJUST<br />

SETTINGS<br />

<strong>Analyzer</strong> Mode<br />

The ADJUST REF LVL softkey adjusts the reference level of the R&S <strong>FSQ</strong> to the<br />

measured total power of the signal. The softkey is activated after the first sweep with<br />

the measurement of the occupied bandwidth has been completed and the total<br />

power of the signal is thus known.<br />

Adjusting the reference level ensures that the signal path of the R&S <strong>FSQ</strong> will not be<br />

overloaded and the dynamic range not limited by too low a reference level.<br />

Since the measurement bandwidth for channel power measurements is significantly<br />

lower than the signal bandwidth, the signal path may be overloaded although the<br />

trace is distinctly below the reference level. If the measured channel power is equal<br />

to the reference level, the signal path cannot be overloaded.<br />

Remote command: SENS:POW:ACH:PRES:RLEV<br />

The ADJUST SETTINGS softkey optimizes the instrument settings for the measurement<br />

of the occupied bandwidth according to the specified channel bandwidth.<br />

All instrument settings relevant for power measurement within a specific frequency<br />

range are optimized:<br />

• frequency span: 3 × channel bandwidth<br />

• resolution bandwidth: RBW ≤ 1/40 of channel bandwidth<br />

• video bandwidth: VBW ≥ 3 × RBW<br />

• detector: RMS<br />

The reference level is not influenced by ADJUST SETTINGS. For an optimum<br />

dynamic range it should be selected in a way that the signal maximum is close to the<br />

reference level. The adjustment is carried out only once; if necessary, the instrument<br />

settings may be changed later.<br />

Remote command: SENS:POW:PRES OBW<br />

Measurement principle<br />

For example, the bandwidth containing 99% of the signal power is to be determined.<br />

The routine first calculates the total power of all displayed points of the trace. In the<br />

next step, the points from the right edge of the trace are summed up until 0.5% of<br />

the total power is reached. Auxiliary marker 1 is positioned at the corresponding frequency.<br />

Then the R&S <strong>FSQ</strong> sums up the points from the left edge of the trace until<br />

0.5% of the power is reached. Auxiliary marker 2 is positioned at this point. 99% of<br />

the power is now between the two markers. The distance between the two frequency<br />

markers is the occupied bandwidth which is displayed in the marker info<br />

field.<br />

A prerequisite for correct measurement is that only the signal to be measured is visible<br />

on the screen of the R&S <strong>FSQ</strong>. An additional signal would invalidate the measurement.<br />

To ensure correct power measurement especially for noise signals and to obtain the<br />

correct occupied bandwidth, the following settings should be selected:<br />

RBW

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