PCB Design for Real-World EMI Control

PCB Design for Real-World EMI Control PDF

Author: Bruce R. Archambeault

Publisher: Springer Science & Business Media

Published: 2013-06-29

Total Pages: 251

ISBN-13: 1475736401

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Proper design of printed circuit boards can make the difference between a product passing emissions requirements during the first cycle or not. Traditional EMC design practices have been simply rule-based, that is, a list of rules-of-thumb are presented to the board designers to implement. When a particular rule-of-thumb is difficult to implement, it is often ignored. After the product is built, it will often fail emission requirements and various time consuming and costly add-ons are then required. Proper EMC design does not require advanced degrees from universities, nor does it require strenuous mathematics. It does require a basic understanding of the underlying principles of the potential causes of EMC emissions. With this basic understanding, circuit board designers can make trade-off decisions during the design phase to ensure optimum EMC design. Consideration of these potential sources will allow the design to pass the emissions requirements the first time in the test laboratory. A number of other books have been published on EMC. Most are general books on EMC and do not focus on printed circuit board is intended to help EMC engineers and design design. This book engineers understand the potential sources of emissions and how to reduce, control, or eliminate these sources. This book is intended to be a 'hands-on' book, that is, designers should be able to apply the concepts in this book directly to their designs in the real-world.

Printed Circuit Board Design Using AutoCAD

Printed Circuit Board Design Using AutoCAD PDF

Author: Chris Schroeder

Publisher: Newnes

Published: 1998

Total Pages: 342

ISBN-13: 9780750698344

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Introduction to PCB Design * Schematic Drafting * Single-Sided PCB Design * Double-Sided PCB Design * Surface Mount PCB Design * Importing Gerber Files for Manufacturing Documentation * Importing HPGL Files for Manufacturing Documentation * Importing Gerber Artwork Files for Viewing * Importing Excellon Format NC Drill Data * Converting HPGL to Gerber Format * Appendix A: Gerber Format * Appendix B: Excellon Format * Appendix C: HPGL Format * Appendix D: Information about the Disk Supplied with the Book * Index.

EMC and the Printed Circuit Board

EMC and the Printed Circuit Board PDF

Author: Mark I. Montrose

Publisher: John Wiley & Sons

Published: 2004-04-05

Total Pages: 344

ISBN-13: 0471660906

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This accessible, new reference work shows how and why RF energy iscreated within a printed circuit board and the manner in whichpropagation occurs. With lucid explanations, this book enablesengineers to grasp both the fundamentals of EMC theory and signalintegrity and the mitigation process needed to prevent an EMCevent. Author Montrose also shows the relationship between time andfrequency domains to help you meet mandatory compliancerequirements placed on printed circuit boards. Using real-world examples the book features: Clear discussions, without complex mathematical analysis, offlux minimization concepts Extensive analysis of capacitor usage for variousapplications Detailed examination of components characteristics with variousgrounding methodologies, including implementation techniques An in-depth study of transmission line theory A careful look at signal integrity, crosstalk, andtermination

Fast Circuit Boards

Fast Circuit Boards PDF

Author: Ralph Morrison

Publisher: John Wiley & Sons

Published: 2018-01-31

Total Pages: 211

ISBN-13: 1119413907

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An essential guide to modern circuit board design based on simple physics and practical applications The fundamentals taught in circuit theory were never intended to work above a few megahertz, let alone at a gigahertz. While electronics is grounded in physics, most engineers’ education in this area is too general and mathematical to be easily applied to the problem of high speed circuits. Left to their own devices, many engineers produce layouts that require expensive revisions in order to finally meet specifications. Fast Circuit Boards fills the gap in knowledge by providing clear, down-to-earth guidance on designing digital circuit boards that function at high clock rates. By making the direct connection between physics and fast circuits, this book instills the fundamental universal principles of information transfer to give engineers a solid basis for hardware design. Using simple tools, simple physics, and simple language, this invaluable resource walks through basic electrostatics, magnetics, wave mechanics, and more to bring the right technology down to the working level. Designed to be directly relevant and immediately useful to circuit board designers, this book: Properly explains the problems of fast logic and the appropriate tools Applies basic principles of physics to the art of laying out circuit boards Simplifies essential concepts scaled up to the gigahertz level, saving time, money, and the need for revisions Goes beyond circuit theory to provide a deep, intuitive understanding of the mechanisms at work Demonstrates energy management’s role in board design through step function-focused transmission line techniques Engineers and technicians seeking a more systematic approach to board design and a deeper understanding of the fundamental principles at work will find tremendous value in this highly practical, long-awaited text.

The Circuit Designer’s Companion

The Circuit Designer’s Companion PDF

Author: Tim Williams

Publisher: Elsevier

Published: 2013-10-22

Total Pages: 313

ISBN-13: 1483102505

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The Circuit Designer’s Companion covers the theoretical aspects and practices in analogue and digital circuit design. Electronic circuit design involves designing a circuit that will fulfill its specified function and designing the same circuit so that every production model of it will fulfill its specified function, and no other undesired and unspecified function. This book is composed of nine chapters and starts with a review of the concept of grounding, wiring, and printed circuits. The subsequent chapters deal with the passive and active components of circuitry design. These topics are followed by discussions of the principles of other design components, including linear integrated circuits, digital circuits, and power supplies. The remaining chapters consider the vital role of electromagnetic compatibility in circuit design. These chapters also look into safety, design of production, testability, reliability, and thermal management of the designed circuit. This book is of great value to electrical and design engineers.

Printed Circuit Board Design Techniques for EMC Compliance

Printed Circuit Board Design Techniques for EMC Compliance PDF

Author: Mark I. Montrose

Publisher: Wiley-IEEE Press

Published: 2000-07-04

Total Pages: 336

ISBN-13: 9780780353763

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"Electromagnetic compatibility (EMC) is an engineering discipline often identified as "black magic." This belief exists because the fundamental mechanisms on how radio frequency (RF) energy is developed within a printed circuit board (PCB) is not well understood by practicing engineers. Rigorous mathematical analysis is not required to design a PCB. Using basic EMC theory and converting complex concepts into simple analogies helps engineers understand the mitigation process that deters EMC events from occurring. This user-friendly reference covers a broad spectrum of information never before published, and is as fluid and comprehensive as the first edition. The simplified approach to PCB design and layout is based on real-life experience, training, and knowledge. Printed Circuit Board Techniques for EMC Compliance, Second Edition will help prevent the emission or reception of unwanted RF energy generated by components and interconnects, thus achieving acceptable levels of EMC for electrical equipment. It prepares one for complying with stringent domestic and international regulatory requirements. Also, it teaches how to solve complex problems with a minimal amount of theory and math. Essential topics discussed include: * Introduction to EMC * Interconnects and I/O * PCB basics * Electrostatic discharge protection * Bypassing and decoupling * Backplanes-Ribbon Cables-Daughter Cards * Clock Circuits-Trace Routing-Terminations * Miscellaneous design techniques This rules-driven book-formatted for quick access and cross-reference-is ideal for electrical and EMC engineers, consultants, technicians, and PCB designers regardless of experience or educational background." Sponsored by: IEEE Electromagnetic Compatibility Society

Plantwide Dynamic Simulators in Chemical Processing and Control

Plantwide Dynamic Simulators in Chemical Processing and Control PDF

Author: William Luyben

Publisher: CRC Press

Published: 2002-05-29

Total Pages: 448

ISBN-13: 1482275805

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Presenting efficient and effective methods for developing dynamic simulations of chemical processes, this reference illustrates the techniques and fundamentals to develop, design, and test plantwide regulatory control schemes with commercial dynamic simulation packages. It provides case studies analyzing a wide variety of systems-ranging from simpl

Power IC Design - From the Ground up

Power IC Design - From the Ground up PDF

Author: Gabriel Alfonso Rincón-Mora

Publisher: Lulu.com

Published: 2015-04-12

Total Pages: 264

ISBN-13: 1312146176

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This slide book introduces the demands of emerging power-supply integrated circuits (ICs) and discusses up-to-date circuit-design techniques aimed at addressing them, especially within the context of portable microelectronics. The presentation reflects the "top-down design" systems-to-circuits approach that industry adopts when developing power-supply systems. Within this framework, concepts evolve organically "from the ground up" with an educational mindset, rigorously surveying, analyzing, and evaluating basic theory and the state of the art. In this way, the material presents, explains, and shows how to understand, develop, and use semiconductor devices to model, analyze, and design ICs that supply and sustain microelectronic loads. The ultimate objective is to cultivate and develop insight and intuition. Some of the topics covered include power consumption, frequency response, feedback control, and power supply rejection.