If you compare the
Low Level
result with the limit we have set on the
Pass/Fail
tab, you will find that the measured result fails the upper pass/
fail limit for this parameter.
View Tab
The graph shows either the
BER vs. Threshold
, the
dBER vs. Threshold
, or
the
QBER vs. Threshold
.
This graph shows the relationship between the analyzer decision
threshold and the measured BER.
The BER considers all errors. It is calculated as:
This graph shows the relationship between the analyzer decision
threshold and the absolute values of the derivative of the bit error rate
(dBER/dTh).
It is recommended to view this graph with a linear scale because a linear
scale reveals the distribution more clearly:
This distribution can often be approximated by a Gaussian normal
distribution. With a Gaussian marker you can measure the mean and
standard deviation of the normal distribution (see also
and
).
Advanced Analysis
5
Agilent J-BERT N4903 High-Performance Serial BERT
207
BER vs. Threshold Graph
dBER vs. Threshold Graph
Summary of Contents for J-BERT N4903
Page 1: ...S Agilent J BERT N4903 High Performance Serial BERT User Guide s Agilent Technologies...
Page 68: ...2 Setting up Patterns 68 Agilent J BERT N4903 High Performance Serial BERT...
Page 158: ...4 Setting up the Error Detector 158 Agilent J BERT N4903 High Performance Serial BERT...
Page 314: ...6 Evaluating Results 314 Agilent J BERT N4903 High Performance Serial BERT...
Page 374: ...7 Jitter Tolerance Tests 374 Agilent J BERT N4903 High Performance Serial BERT...
Page 394: ...8 Solving Problems 394 Agilent J BERT N4903 High Performance Serial BERT...
Page 434: ...Index 434 Agilent J BERT N4903 High Performance Serial BERT...