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83496B - Keysight (Agilent) Optical
- Model: 83496B
- Manufactured by: Keysight / Agilent Technologies
Keysight Agilent 83496B Optical / Electrical Clock Recovery Module with Phase Noise Analysis
Electrical clock recovery (option 100 only)
Inputs: single-ended or differential, 3.5 mm (m) connectors
Outputs (option 100 only): single-ended or differential, 3.5 mm (m) connectors
Minimum electrical input level: 75 mVpp
Continuous unbanded tuning from 50 Mb/s up to 14.2 Gb/s
Golden PLL operation (option 300) with a tunable loop bandwidth from 15 KHz to 10 MHz
Ultra low residual jitter: < 300 fs rms (characteristic at 10 Gb/s)
High gain for tracking spread-spectrum signals
Phase noise analysis of clock or data signals
Description
The 83496B Clock Recovery Module with Phase Noise Analysis provides increased eye-mask and jitter measurement accuracy with breakthrough performance in clock recovery circuitry. It provides ideal performance for waveform analysis with the 86100C Digital Communications Analyzer and can derive a clock from signals with rates as low as 50 Mb/s-14.2 GB/s*, and any rate in between. At under 300 femtoseconds rms, the residual jitter of the output clock is virtually negligible, allowing accurate measurements of very low levels of signal jitter. Jitter spectrum and phase noise analysis on clock and data signals is available through a downloadable external application
Electrical clock recovery (option 100 only)
Inputs: single-ended or differential, 3.5 mm (m) connectors
Outputs (option 100 only): single-ended or differential, 3.5 mm (m) connectors
Minimum electrical input level: 75 mVpp
Continuous unbanded tuning from 50 Mb/s up to 14.2 Gb/s
Golden PLL operation (option 300) with a tunable loop bandwidth from 15 KHz to 10 MHz
Ultra low residual jitter: < 300 fs rms (characteristic at 10 Gb/s)
High gain for tracking spread-spectrum signals
Phase noise analysis of clock or data signals
Description
The 83496B Clock Recovery Module with Phase Noise Analysis provides increased eye-mask and jitter measurement accuracy with breakthrough performance in clock recovery circuitry. It provides ideal performance for waveform analysis with the 86100C Digital Communications Analyzer and can derive a clock from signals with rates as low as 50 Mb/s-14.2 GB/s*, and any rate in between. At under 300 femtoseconds rms, the residual jitter of the output clock is virtually negligible, allowing accurate measurements of very low levels of signal jitter. Jitter spectrum and phase noise analysis on clock and data signals is available through a downloadable external application
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