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Bit Amplitude measurement algorithm
Bit Amplitude is the difference between the levels of the "1" and "0" bits surrounding each transition, measured over a specified
range at the center of the recovered unit interval. This measurement is made on each transition bit (Mean) or across the entire
record (Mode).
Bit High measurement algorithm
Bit High is the amplitude of a "1" bit. The amplitude is measured over a user-specified portion at the center of the recovered unit
interval. This measurement is made on each high bit in the record (Mean) or across the entire record (Mode).
Bit Low measurement algorithm
Bit Low is the amplitude of a "0" bit. The amplitude is measured over a user-specified portion at the center of the recovered unit
interval. This measurement is made on each low bit in the record (Mean) or across the entire record (Mode).
DC Common Mode measurement algorithm
DC Common Mode is the arithmetic mean of the common mode of two sources. This measurement is made across the entire
record.
Differential Crossover measurement algorithm
Differential Crossover is the voltage level of a differential signal pair at the crossover point(s). This measurement is made at each
crossover point in the record.
SSC Freq Dev measurement algorithm
SSC Freq Dev is the spread spectrum clock frequency deviation from the nominal frequency in ppm (parts per million).
Clock recovery is used on the measurement. The method is constant clock mean.
SSC Modulation Rate measurement algorithm
SSC Modulating Rate is the modulating frequency of a spread spectrum clock. It is the rate that the clock frequency changes.
Clock recovery is used on the measurement. The method is constant clock mean.
TIE
TIE (Time Interval Error) is the difference in time between an edge in the source waveform and the corresponding edge in a
reference clock. The reference clock is usually determined by a clock recovery process performed on the source waveform. For
Explicit-Clock clock recovery, the process is performed on an explicitly identified source.
If the Signal Type is Clock. The application calculates Clock TIE measurement using the following equation:
Where:
TIEClock is the clock time interval error.
TClock is the Mid reference crossing time for the specified clock edge.
T'Clock is the corresponding edge time for the specified reference clock.
Measurement algorithms
MSO54, MSO56, MSO58, MSO58LP, MSO64 Help
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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 ...