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The bounded uncorrelated jitter source is equipped with three low-pass filters with
cut-off frequencies at 50, 100, and 200 MHz. One of these filters is always active.
Random Jitter Parameters
Random Jitter is characterized by:
• Amplitude
• Filter Settings
The graph shows the possible and the current jitter spectrum, which is defined by
filter settings.
The random jitter
Amplitude
must be entered as an rms (root mean square) value.
The rms value corresponds to the sigma factor σ of the bell-shaped Gauss
“The Gaussian Marker” on page 237
To modify the value, click inside the text field and enter the desired value directly
with the numeric keyboard, or use the knob close to the numeric keyboard to fine-
tune the value.
The peak-to-peak amplitude is calculated by multiplying the rms value with the
crest factor (which is currently fixed to 14). The
Amplitude p-p
box shows how much of delay line capacity the setting consumes.
Jitter Tolerance Tests
8
Agilent J-BERT N4903B High-Performance Serial BERT
427
Filter
Amplitude
Amplitude p-p
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 ...