Signal Integrity Characterization Techniques 1st Edition by Eric Bogatin, Mike Resso – Ebook PDF Instant Download/Delivery: 1732567026, 9781732567023
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Product details:
ISBN 10: 1732567026
ISBN 13: 9781732567023
Author: Eric Bogatin, Mike Resso
Signal Integrity Characterization Techniques 1st Table of contents:
- Introduction to Signal Integrity
- Overview of Signal Integrity (SI)
- Importance of Signal Integrity in Modern Electronic Design
- Challenges in Signal Integrity Characterization
- Scope and Structure of the Book
Part I: Fundamentals of Signal Integrity
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Basic Concepts in Signal Integrity
- What is Signal Integrity?
- Electrical Noise and Interference
- Signal Distortion: Causes and Effects
- Key Metrics in Signal Integrity
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Transmission Lines and Waveguides
- Transmission Line Theory
- Propagation of Signals in Different Media
- Impedance Matching and Reflection
- Losses in Transmission Lines
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Noise in Signal Transmission
- Sources of Noise: Crosstalk, Power Supply Noise, EMI
- Noise Coupling Mechanisms
- Signal-to-Noise Ratio (SNR) and its Impact
- Mitigation Techniques
Part II: Signal Integrity Measurement Techniques
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Time Domain Characterization
- Oscilloscope Measurements
- Rise Time, Fall Time, and Pulse Response
- Jitter and its Impact on Signal Quality
- Timing Analysis in High-Speed Circuits
-
Frequency Domain Analysis
- Spectrum Analysis and Frequency Response
- Measuring Frequency-Dependent Effects
- Using Network Analyzers for Signal Integrity Characterization
- S-Parameters in SI Measurement
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Time-Resolved and Frequency-Resolved Imaging
- Scanning Techniques for High-Speed Signals
- Near-Field and Far-Field Probing
- Electrical Field Imaging for SI
- Microscopic Analysis and Nanotechnology in SI Measurements
Part III: Modeling and Simulation for Signal Integrity
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Signal Integrity Simulation Basics
- Overview of SI Simulation Tools
- Finite Element Method (FEM) and Boundary Element Method (BEM)
- Signal Integrity Simulations in PCB Design
- Using Software for Modeling High-Speed Interconnects
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Modeling of Transmission Lines
- Lumped Element Models vs. Distributed Models
- Time Domain vs. Frequency Domain Modeling
- Extracting Electrical Models for SI
- Simulation and Validation of Models
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Power Integrity Modeling and Interaction
- Power Delivery Network (PDN) and Signal Integrity
- Voltage Droop and its Effect on Signals
- Simulating Power and Signal Coupling in Complex Systems
Part IV: Advanced Signal Integrity Characterization
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High-Speed Digital Design Challenges
- Signal Integrity in High-Speed Circuits
- Challenges with Multi-Gigabit Data Rates
- Simulation and Design Guidelines for High-Speed Systems
- Effects of Material Properties on SI at High Frequencies
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Advanced Measurement Techniques
- High-Precision Probing and TDR (Time Domain Reflectometry)
- High-Frequency S-Parameter Measurement
- Advanced Time and Frequency Domain Characterization Tools
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Characterization in 3D Interconnects and Packaging
- SI Challenges in 3D IC and Package Design
- Through-Silicon Vias (TSVs) and Their Impact on Signal Integrity
- Modeling and Characterizing 3D Interconnects
Part V: Case Studies and Applications
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Signal Integrity in PCB Design
- Practical Guidelines for PCB Layout to Minimize SI Issues
- Case Study: Troubleshooting SI Issues in High-Speed PCBs
- Tools and Techniques for Design Verification
-
SI Analysis in High-Performance Communication Systems
- Signal Integrity in Serial Data Communication Links
- Case Study: Characterizing and Correcting SI in High-Speed Networks
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Case Study: SI in Consumer Electronics
- Managing Signal Integrity in Mobile Devices, TVs, and Wearables
- Practical Solutions and Design Practices for Consumer Electronics
Part VI: Signal Integrity Management and Troubleshooting
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Signal Integrity Testing and Troubleshooting
- Common SI Problems and Diagnostic Approaches
- Use of TDR, TDT (Time Domain Transmission), and Network Analyzers for Troubleshooting
- Real-World Troubleshooting Scenarios
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Future Trends in Signal Integrity Characterization
- Emerging Technologies in SI Measurement
- Impact of AI and Machine Learning on Signal Integrity Design
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