If the Signal Type is Data. The application calculates Data TIE measurement using the following equation:
Where:
TIEData is the data time interval error.
TData is the Mid reference crossing time in either direction.
T'Data is the corresponding edge time for the specified reference clock.
The subscript k is used to indicate that there is one measurement per actual edge.
T/nT Ratio measurement algorithm
T/nT Ratio is the ratio in dB of the midpoint level of the 1st bit after each transition to the midpoints of the 2nd and subsequent
non-transition bit levels prior to the next transition. This measurement is made for each non-transition bit in the record.
DCD
Duty Cycle Distortion (DCD) is the peak-to-peak amplitude for that portion of the deterministic jitter directly correlated with signal
polarity, that is the difference between the mean positive edge displacement versus that on negative edges. A single DCD value
is determined for each acquisition, by means of RJ-DJ separation analysis.
DDJ
Data-Dependent Jitter (DDJ) is the peak-to-peak amplitude for that portion of the deterministic jitter directly correlated with the
data pattern in the waveform. A single DDJ value is determined for each acquisition, by means of RJ-DJ separation analysis.
DJ
Deterministic Jitter (DJ) is the peak-to-peak amplitude for all timing errors that follow deterministic behavior. A single DJ value is
determined for each acquisition, by means of RJ-DJ separation analysis.
Dual Dirac deterministic jitter
Dual Dirac Deterministic Jitter (DJ–δδ) the peak-to-peak magnitude for all timing errors exhibiting deterministic behavior,
calculated based on a simplifying assumption that the histogram of all deterministic jitter can be modeled as a pair of equal
magnitude dirac functions (impulses). A single DJ–δδ value is determined for each acquisition, by means of RJ-DJ separation
analysis.
Measurement algorithms
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MSO54, MSO56, MSO58, MSO58LP, MSO64 Help
Содержание 6 series
Страница 24: ...Product documents and support 4 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 42: ...Options 22 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 54: ...Install your instrument 34 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 63: ...9 FlexChannel probe connectors Getting acquainted with your instrument MSO54 MSO56 MSO58 MSO58LP MSO64 Help 43 ...
Страница 84: ...Getting acquainted with your instrument 64 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 102: ...Configure the instrument 82 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 148: ...Advanced triggering 128 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 154: ...Zooming on waveforms 134 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 438: ...Waveform acquisition concepts 418 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 448: ...Waveform display concepts 428 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...
Страница 483: ...Where σ is the Phase Angle Degree Measurement algorithms MSO54 MSO56 MSO58 MSO58LP MSO64 Help 463 ...
Страница 518: ...Index 498 MSO54 MSO56 MSO58 MSO58LP MSO64 Help ...