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Compact, multichannel vector signal generator capable of signal generation up to 8.5 GHz with 1 GHz of modulation bandwidth per channel.
50+ GHz 프로브는 802.3ck 및 PCIe®️ 6.0 설계 시 보다 빠르고 유연한 테스트를 가능하게 해줍니다.
엔지니어가 작성한 콘텐츠와 교육 과정, 앱노트, 동영상 등 최신 기술에 대한 다양한 리소스를 제공합니다.
Keysight Learn은 솔루션, 블로그, 이벤트 등을 포함하여 관심 주제에 대한 몰입형 콘텐츠를 제공합니다.
가장 빈번하게 발생하는 작업 관련 셀프 도움말에 빠르게 액세스할 수 있습니다
제품 요구 사항을 지원하는 추가 콘텐츠
혁신의 모든 단계를 가속화할 수 있는 서비스를 살펴보세요.
In this course, learn about how to measure signal integrity and perform network analysis of your high-speed communication products.
Learn:
Lesson 1 - Introduction - Signal Integrity and Network Analysis
Resso provides an overview of signal integrity and network analysis. He discusses the importance of signal integrity in high-speed electronic systems, and the challenges that engineers face in ensuring that their designs meet signal integrity requirements.
Lesson 2 - Internet Infrastructure
Garbouz provides an overview of the internet infrastructure and how signal integrity plays a role in its performance. He discusses the different types of networks that make up the internet, and the challenges that engineers face in ensuring that these networks can reliably transmit data at high speeds.
Lesson 3 - Transmission Lines, Impedance, S-Parameters
Resso discusses the basics of transmission lines, impedance, and S-parameters. He explains how these concepts are related to signal integrity, and how they can be used to design, analyze, and test high-speed electronic systems.
Lesson 4 - Measurement Metrics, Single Ended vs. Differential S-Parameters
Garbouz discusses the different measurement metrics that can be used to characterize signal integrity. He begins by discussing single-ended measurements, which are typically used for low-speed signals. Single-ended measurements are made on a single trace, and they can be used to measure parameters such as amplitude, rise/fall time, and jitter.
Lesson 5 - TDR and VNA Measurement Setups
Discuss the different measurement setups that can be used with time domain reflectometry (TDR) and vector network analyzers (VNAs) to measure signal integrity.
Lesson 6 - Eye Diagram Analysis
The eye diagram, a graphical representation of a digital signal that can be used to diagnose signal integrity problems. The video covers how to interpret an eye diagram, common eye diagram anomalies, and how to use eye diagrams to troubleshoot signal integrity problems.
Lesson 7 - Typical PCB SI Issues
Discusses the common manufacturing issues that can affect signal integrity on printed circuit boards (PCBs). The lesson covers defects in the PCB material, layout, and manufacturing process, and how to prevent and detect these defects.
Lesson 8 - Real World Measurements - Backplane Design
The real-world challenges of measuring signal integrity on backplanes. The lesson covers the different measurement setups that can be used, the challenges of de-embedding, and the importance of using calibrated equipment.
Lesson 9 - Error Correction Techniques
The error correction techniques that can be used to improve the reliability of digital signals. The lesson covers the different types of error correction codes, how they work, and how to choose the right error correction code for a particular application.
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RF Products
Keysight Technologies provides a comprehensive suite of RF test and design solutions for developing and testing modern wireless communication systems.
hardware
N9020B MXA 신호 분석기, 10 Hz ~ 50 GHz
차세대 디바이스를 시장에 출시하고자 한다면 무선 분야를 위한 최적의 선택인 N9020B MXA로 진화하는 테스트 요건에 빠르게 대응하십시오.
How to Analyze PCB Signal Integrity
Analyze signal integrity with an oscilloscope and signal integrity analysis software
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