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• The R
2
values are excellent (greater than 0.95).
• The mean levels and standard deviations returned by the Q-factor calculations
differ from the measured values.
The
QBER vs. Threshold
graph may look as shown below:
If you increase the
BER Threshold
to include more points, you will find:
• The mean levels and standard deviations returned by the Q-factor calculations
approach the measured values.
• The Q-factor decreases.
• The R
2
values deteriorate.
The latter is caused by increasing nonlinearity. This can be inspected in the
QBER
vs. Threshold
graph.
N O T E
The Q-factor calculations are disabled and flagged as "not applicable" if the R
2
value
falls below 0.75.
The R
2
value can also be seen as an indicator of how well the noise distribution
fits to Gaussian shape. It will not fit, for example, if the received signal is dominated
by cross-talk or modal noise.
6
Advanced Analysis
286
Agilent J-BERT N4903B High-Performance Serial BERT
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 ...