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•
Low Level
The Low Level is the mean of the lower dBER/dTh distribution. It is calculated
as:
•
Mean Level
The Mean Level is the middle between the High and Low Levels, calculated as:
•
Amplitude
The Amplitude is the difference between its High and Low Levels.
•
Threshold Margin
The Threshold Margin is the distance between the upper and the lower BER
curves at the position given by the BER Threshold setting.
The noise result parameters are summarized in the following table:
Table 28
Parameter Name
Pass/Fail
High Level Std. Dev
Low Level Std. Dev
Peak Peak Noise
max
Signal/Noise Ratio (RMS)
min
Signal/Noise Ratio (Peak Peak)
min
For some of these parameters, pass/fail limits can be set, as indicated in the table.
The noise parameters are defined as follows:
•
High Level Std. Dev.
The standard deviations are derived from the dBER/dTh histogram.
The High Level Standard Deviation is calculated as:
6
Advanced Analysis
278
Agilent J-BERT N4903B High-Performance Serial BERT
Noise Results
Summary of Contents for J-BERT N4903B
Page 1: ...S Agilent J BERT N4903B High Performance Serial BERT User Guide s Agilent Technologies ...
Page 10: ...10 Agilent J BERT N4903B High Performance Serial BERT ...
Page 36: ...1 Planning the Test 36 Agilent J BERT N4903B High Performance Serial BERT ...
Page 60: ...2 Setting up External Instrument s 60 Agilent J BERT N4903B High Performance Serial BERT ...
Page 120: ...3 Setting up Patterns 120 Agilent J BERT N4903B High Performance Serial BERT ...
Page 360: ...6 Advanced Analysis 360 Agilent J BERT N4903B High Performance Serial BERT ...
Page 468: ...8 Jitter Tolerance Tests 468 Agilent J BERT N4903B High Performance Serial BERT ...
Page 524: ...9 Solving Problems 524 Agilent J BERT N4903B High Performance Serial BERT ...
Page 566: ...10 Customizing the Instrument 566 Agilent J BERT N4903B High Performance Serial BERT ...