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High Speed Digital Measurement Insights

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High Speed Digital Measurement Insights - Agenda
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Welcome and Opening – Keysight
High Speed Digital Fundamentals
Networking and Refreshment Break
Advanced Jitter Measurements
Break and Demonstrations
Crosstalk Analyses

Paper & Abstracts

Welcome and Opening: High Speed Digital Measurement Insights

“Enabling Insight into High Speed Digital Test challenges”

The continued increase in consumers using more data drives a wider adoption of high speed digital signals in electronic products, which increases the complexity of your design, including how to test and debug your product. Making the right decisions early in the process will enable you to avoid prototype re-spins and bring your product to market before the competition.
Keysight's High Speed Digital Insights Hotspots Seminar addresses the challenges facing designers and developers at component, circuit and system levels.

Three focused papers will give you deeper insight from High Speed Digital Oscilloscope fundamentals to more advanced Signal Integrity aspects such as Jitter and Crosstalk.

Keysight’s leading-edge instruments & solutions will also be available throughout the seminar to provide you the opportunity to interact one-on-one with Keysight experts & products.

High Speed Digital Fundamentals

“Gain Insight on the fundamentals of making High Speed Digital Measurements”

Understanding the key fundamentals of measuring High Speed Digital signals enables you to test your design faster and gives you confidence in the product you bring to market. In this paper we will discuss aspects of Oscilloscope measurements & architecture like time vs frequency domain, bandwidth, sample rate, update rate, memory, triggering, advanced tools & probing.

Advanced Jitter Measurements

“Gain Insight on Jitter Measurements from TJ, RJ, BUJ to Spectral or Tail Fit”

To characterize high-speed serial buses, jitter measurements are key to determine the quality of the signal being transmitted and provide a quick view of the bit error ratio (BER) that the links support. The measurement of jitter is a sophisticated process taking into account receiver clock recovery, knowledge of phase locked loops (PLLs), jitter decomposition techniques, effects of crosstalk and waveform statistics in order to produce a fairly accurate jitter decomposition model for the real-world designs. This paper will review the details and considerations for making advanced jitter measurements to increase your confidence level in your jitter separation results.

Crosstalk Analyses

“Identify and Eliminate Crosstalk from Your Designs Using Oscilloscopes"

Crosstalk is a huge challenge in today's high-speed serial design because it can corrupt the data transmission, closes the eye-opening as well as adding jitter into your design. Crosstalk can come from various aggressor sources such as adjacent high-speed bus, power supply, phase lock loop and reference clock. Debugging crosstalk issues can be really challenging starting with identifying the aggressors and quantifying how much crosstalk each aggressor is contributing to your signal. In this paper, you will learn how to debug crosstalk issues with a real-time oscilloscope.


Register for one of the events by clicking on the appropriate link in the table below.

Alternatively, receive notifications of future High Speed Digital Measurement Insights HOTSPOTS Seminars as they become available by clicking ‘Notify me’.

Where & When

Data Luogo Lingua di presentazione Per maggiori informazioni/Scopri di più
2019-09-25 Nuremberg, Germany Inglese Registrati qui
2019-10-23 Hannover, Germany Inglese Registrati qui
2019-10-24 Boblingen, Germany Tedesco Registrati qui