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Agilent 86038B Photonic Dispersion and Loss Analyzer, Second Edition
87
Measurement Tips
The tips for transmission fiber also apply here. But the high
dispersion of many of the devices will require either smaller
wavelength increment or lower modulation frequency.
Considering the higher insertion loss often associated with
these devices, it may be best to maintain the higher modulation
frequency like 2 GHz to minimize noise. In this case a smaller
increment is needed, but since the wavelength resolution is not
required, the data can be smoothed to an effectively wider
resolution. To keep the measurement time low, with the high
number of points, swept measurement mode is usually
recommended. The IF bandwidth should be chosen to achieve
both acceptable noise and measurement time.
Often these devices are designed for use in a particular
wavelength range, like the C-band.
However for PMD measurement of devices with low PMD, it is
advised to measure over a wider range to improve the average
value.
If stepped measurements are used, the following tips also apply:
• For higher loss fibers, improve signal-to-noise by using a
narrower IF bandwidth and a larger number of samples.
• Especially when measuring in step mode select a modulation
frequency and wavelength step appropriate to the expected
level of dispersion to eliminate the possibility of RF phase
wrap errors.
• When measuring high dispersion fibers in step mode with
manual modulation frequency selection, the use of 2000 MHz
modulation frequency may require the selection of a low
wavelength increment to avoid aliasing. This increases test
time. To reduce test time, lower the modulation frequency
and increase the wavelength increment.
Fiber Bragg Grating Dispersion Compensators (or other channel
compensators)
Characteristics
• High dispersion (steep change in group delay versus
wavelength)
• Often a narrow wavelength range or set of narrow channels
to be measured
• Group delay ripple (fine structure in the group delay curve)
Содержание 86038B
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