資料介紹
Abstract
Jitter is increasingly analyzed by separating a signal’s
timing noise into its random and deterministic
components, yet there is no reference standard for
measurement verification. We introduce a precisely
calibrated jitter source capable of applying a wide
variety of jitter signals - Gaussian random jitter, periodic
jitter (including, but not limited to, sinusoidal jitter),
inter-symbol interference, and duty cycle distortion –
in different combinations at adjustable amplitudes.
In most cases the calibration of the jitter sources is
traceable to accepted standards with uncertainties
close to 1%. We describe the system, the calibration
techniques, and give examples of its utility.
Jitter is increasingly analyzed by separating a signal’s
timing noise into its random and deterministic
components, yet there is no reference standard for
measurement verification. We introduce a precisely
calibrated jitter source capable of applying a wide
variety of jitter signals - Gaussian random jitter, periodic
jitter (including, but not limited to, sinusoidal jitter),
inter-symbol interference, and duty cycle distortion –
in different combinations at adjustable amplitudes.
In most cases the calibration of the jitter sources is
traceable to accepted standards with uncertainties
close to 1%. We describe the system, the calibration
techniques, and give examples of its utility.
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