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5965-7009E


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8 Hints for
Better Spectrum Analysis
Application Note 1286-1
    The Spectrum Analyzer

    The spectrum analyzer, like an            When digital technology first became                        To get better spectrum analyzer
    oscilloscope, is a basic tool used for    viable, it was used to digitize the                         measurements the input signal must
    observing signals. Where the oscil-       video signal, as shown in Figure 2.                         be undistorted, the spectrum ana-
    loscope provides a window into the        As digital technology has advanced                          lyzer settings must be wisely set for
    time domain, the spectrum analyzer        over the years, the spectrum analyzer                       application-specific measurements,
    provides a window into the frequency      has evolved to incorporate digital                          and the measurement procedure
    domain, as depicted in Figure 1.          signal processing (DSP), after the final                    optimized to take best advantage of
                                              IF filter as shown by the dotted box,                       the specifications. More details on
    Figure 2 depicts a simplified block       to be able to measure signal formats                        these steps will be addressed in the
    diagram of a swept-tuned super-           that are becoming increasingly                              hints.
    heterodyne spectrum analyzer.             complex. DSP is performed to pro-
    Superheterodyne means to mix or           vide improved dynamic range, faster
    to translate in a frequency above         sweep speed and better accuracy.
    audio frequencies. In the analyzer,
    a signal at the input travels through
    an attenuator to limit the amplitude
    of the signal at the mixer, and then
    through a low-pass input filter to
    eliminate undesirable frequencies.
    Past the input filter, the signal gets
    mixed with a signal generated by the
    local oscillator (LO) whose frequency              Time domain                            Frequency domain
    is controlled by a sweep generator.                measurements                           measurements

    As the frequency of the LO changes,
                                               Figure 1. Measurement domain
    the signals at the output of the mixer,
    (which include the two original
    signals, their sums and differences
    and their harmonics), get filtered by                                                                 Digital signal processor
    the resolution bandwidth filter (IF                    Preselector           Resolution
                                              Input        or input              bandwidth                       Log         Envelope
    filter), and amplified or compressed      attenuator   filter      Mixer     filter        IF gain           amp         detector
    in the logarithmic scale. A detec-
    tor then rectifies the signal passing
    through the IF filter, producing a
    DC voltage that drives the vertical                                                                                                 Video
                                                                                                                                        filter
    portion of the display. As the sweep
    generator sweeps through its                                               Local
                                                                               oscillator
    frequency range, a trace is drawn
                                                                                                                               A/D
    across the screen. This trace shows
                                                           Sweep
    the spectral content of the input                      generator
    signal within the selected frequency                                                                                                Display
    range.

                                               Figure 2. Block diagram of a superheterodyne spectrum analyzer




2
Hint 1. Selecting the Best Resolution Bandwidth (RBW)

The resolution bandwidth (RBW)               However, the narrowest RBW setting
setting must be considered when              is not always ideal. For modulated
concerned with separating spectral           signals, it is important to set the RBW
components, setting an appropriate           wide enough to include the sidebands
noise floor and demodulating a               of the signal. Neglecting to do so
signal.                                      will make the measurement very
                                             inaccurate.
When making demanding spectrum
measurements, spectrum analyzers             Also, a serious drawback of narrow
must be accurate, fast and have              RBW settings is in sweep speed. A
high dynamic range. In most cases,           wider RBW setting allows a faster
emphasis on one of these parameters          sweep across a given span compared
adversely impacts the others. Often-         to a narrower RBW setting. Figures
times, these tradeoffs involve the           4 and 5 compare the sweep times                  Figure 5. Sweep time of 84.73 s for 3 kHz RBW
RBW setting.                                 between a 10 kHz and 3 kHz RBW
                                             when measuring a 200 MHz span                    It is important to know the funda-
One advantage of using a narrow              using sample detector.                           mental tradeoffs that are involved
RBW is seen when making measure-                                                              in RBW selection, for cases where
ments of low-level signals. When                                                              the user knows which measurement
using a narrow RBW, the displayed                                                             parameter is most important to
average noise level (DANL) of the                                                             optimize. But in cases where mea-
spectrum analyzer is lowered, increas-                                                        surement parameter tradeoffs
ing the dynamic range and improving                                                           cannot be avoided, the modern
the sensitivity of the spectrum ana-                                                          spectrum analyzer provides ways to
lyzer. In Figure 3, a 



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