Showing posts with label pcb. Show all posts
Showing posts with label pcb. Show all posts

PCB Design for Real-World EMI Control (The Springer International Series in Engineering and Computer Science) Review

PCB Design for Real-World EMI Control (The Springer International Series in Engineering and Computer Science)
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Electronic products, or more broadly any product with electronic parts, need to reduce their EM interference to some minimum amount. Where this depends on the type of product and the country in which it will be sold. A problem is that in university electrical engineering courses, controlling EMI is typically only briefly taught.
In contrast, this book gives detailed prescriptions on how to lay out your printed circuit board elements, to minimise EMI. Vital subjects like understanding the role of a ground plane and how to incorporate it into your PCB are covered.
All the book's material should be understandable to anyone with an undergrad background in engineering or physics.

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This book emphasizes understanding basic concepts of controlling the currents on printed circuit boards (pcb's), and provides a wealth of insightful information detailing the possible sources of emissions. Numerous design strategies are presented to help readers understand how to produce, control and eliminate emission sources.Additional highlights include the following: -Information explaining how to design pcb's to pass EMC Requirements the first time! -Controlling intentional and unintentional currents at their source; -Decoupling strategies explained and myths exposed; -Proper I/O filter design and connection strategy explained; -Not simply a list of do's and don't's....but an explanation of "why" things work as they do; -"Ground is a place where potatoes and carrots grow!" -Basic shielding design considerations for PCBs included, and more.This 'hands-on' book will help designers understand "why" or "why not" to implement a specific design practice.

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Advanced Signal Integrity for High-Speed Digital Designs Review

Advanced Signal Integrity for High-Speed Digital Designs
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Heck and Hall have done a fantastic job in summarizing both the theory and practice of solving today's SI issues. The math behind topics such as linear network theory, frequency-dependent dielectric effects and filter design for equalization is rigorous, yet ample space is set aside for practical guidance as well. Of particular note is their thorough treatment of hot PCB SI topics as dielectric loss and surface roughness modeling, and preservation of causality in transmission line models. Transmitter and receiver equalization (DFE and CTLE) are well-described, as are analysis techniques such as peak distortion and bit-error rate. Finally, their summary of response surface modeling (RSM) approaches to desgn of experiments (DOE) is perhaps the first and certainly the most comprehensive overview of those methods as applied to PCB SI design available today. A book well worth purchasing if you are involved in SI modeling, SI simulation or PCB design.

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Semiconductor Modeling:: For Simulating Signal, Power, and Electromagnetic Integrity Review

Semiconductor Modeling:: For Simulating Signal, Power, and Electromagnetic Integrity
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This book provides a very readable and excellent resource for several modeling approaches needed in advanced design. It includes the broadest coverage to date of all aspects of the IBIS Standard, now well-established in industry. Formal syntactical topics are included along with important practical concerns of model quality and proper usage.
Connecting IBIS with other modeling formats and methods works well and preserves continuity in addressing multiple design issues. So this book is very valuable addition to one's library.

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Discusses process variation, model accuracy, design flow and many other practical engineering, reliability and manufacturing issuesGives a good overview fora person who is not an expert in modeling and simulation, enabling them to extract the necessary information to competently use modeling and simulation programsWritten for engineering students and product design engineers

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