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Hochgeschwindigkeitssignalausbreitung: Advanced Black Magic: HIGH SPEED SIG PROPAGTN_c1-
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Standort: Fairfield, Ohio, USA
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eBay-Artikelnr.:365069213110
Artikelmerkmale
- Artikelzustand
- ISBN-13
- 9780130844088
- Book Title
- High Speed Signal Propagation: Advanced Black Magic
- ISBN
- 9780130844088
Über dieses Produkt
Product Identifiers
Publisher
Pearson Education
ISBN-10
013084408X
ISBN-13
9780130844088
eBay Product ID (ePID)
22038258996
Product Key Features
Number of Pages
808 Pages
Publication Name
High Speed Signal Propagation : Advanced Black Magic
Language
English
Publication Year
2003
Subject
Image Processing, Electronics / General
Type
Textbook
Subject Area
Computers, Technology & Engineering
Format
Hardcover
Dimensions
Item Height
2 in
Item Weight
50.5 Oz
Item Length
9.4 in
Item Width
7.5 in
Additional Product Features
Intended Audience
Scholarly & Professional
LCCN
2002-041041
Dewey Edition
21
Illustrated
Yes
Dewey Decimal
621.382/2
Table Of Content
Preface. Glossary of Symbols. 1. Fundamentals. Impedance of Linear, Time-Invariant, Lumped-Element Circuits. Power Ratios. Rules of Scaling. The Concept of Resonance. Extra for Experts: Maximal Linear System Response to a Digital Input. 2. Transmission Line Parameters. Telegrapher''s Equations. Derivation of Telegrapher''s Equations. Ideal Transmission Line. DC Resistance. DC Conductance. Skin Effect. Skin-Effect Inductance. Modeling Internal Impedance. Concentric-Ring Skin-Effect Model. Proximity Effect. Surface Roughness. Dielectric Effects. Impedance in Series with the Return Path. Slow-Wave Mode On-Chip. 3. Performance Regions. Signal Propagation Model. Hierarchy of Regions. Necessary Mathematics: Input Impedance and Transfer Function. Lumped-Element Region. RC Region. LC Region (Constant-Loss Region). Skin-Effect Region. Dielectric Loss Region. Waveguide Dispersion Region. Summary of Breakpoints Between Regions. Equivalence Principle for Transmission Media. Scaling Copper Transmission Media. Scaling Multimode Fiber-Optic Cables. Linear Equalization: Long Backplane Trace Example. Adaptive Equalization: Accelerant Networks Transceiver. 4. Frequency-Domain Modeling. Going Nonlinear. Approximations to the Fourier Transform. Discrete Time Mapping. Other Limitations of the FFT. Normalizing the Output of an FFT Routine. Useful Fourier Transform-Pairs. Effect of Inadequate Sampling Rate. Implementation of Frequency-Domain Simulation. Embellishments. Checking the Output of Your FFT Routine. 5. Pcb (printed-circuit board) Traces. Pcb Signal Propagation. Limits to Attainable Distance. Pcb Noise and Interference. Pcb Connectors. Modeling Vias. The Future of On-Chip Interconnections. 6. Differential Signaling. Single-Ended Circuits. Two-Wire Circuits. Differential Signaling. Differential and Common-Mode Voltages and Currents. Differential and Common-Mode velocity. Common-Mode Balance. Common-Mode Range. Differential to Common-Mode Conversion. Differential Impedance. Pcb Configurations. Pcb Applications. Intercabinet Applications. LVDS Signaling. 7. Generic Building-Cabling Standards. Generic Cabling Architecture. SNR Budgeting. Glossary of Cabling Terms. Preferred Cable Combinations. FAQ: Building-Cabling Practices. Crossover Wiring. Plenum-Rated Cables. Laying cables in an Uncooled Attic Space. FAQ: Older Cable Types. 8. 100-Ohm Balanced Twisted-Pair Cabling. UTP Signal Propagation. UTP Transmission Example: 10BASE-T. UTP Noise and Interference. UTP Connectors. Issues with Screening. Category-3 UTP at Elevated Temperature. 9. 150-Ohm STP-A Cabling. 150-( STP-A Signal Propagation. 150-( STP-A Noise and Interference. 150-( STP-A: Skew. 150-( STP-A: Radiation and Safety. 150-( STP-A: Comparison with UTP. 150-( STP-A Connectors. 10. Coaxial Cabling. Coaxial Signal Propagation. Coaxial Cable Noise and Interference. Coaxial Cable Connectors. 11. Fiber-Optic Cabling. Making Glass Fiber. Finished Core Specifications. Cabling the Fiber. Wavelengths of Operation. Multimode Glass Fiber-Optic Cabling. Single-Mode Fiber-Optic Cabling. 12. Clock Distribution. Extra Fries, Please. Arithmetic of Clock Skew. Clock Repeaters. Stripline vs. Microstrip Delay. Importance of Terminating Clock Lines. Effect of Clock Receiver Thresholds. Effect of Split Termination. Intentional Delay Adjustments. Driving Multiple Loads with Source Termination. Daisy-Chain Clock Distribution. The Jitters. Power Supply Filtering for Clock Sources, Repeaters, and PLL Circuits. Intentional Clock Modulation. Reduced-Voltage Signaling. Controlling Crosstalk on Clock Lines. Reducing Emissions. 13. Time-Domain Simulation Tools and Methods. Ringing in a New Era. Signal Integrity Simulation Process. The Underlying Simulation Engi
Synopsis
High-Speed Signal Propagation: Advanced Black Magic brings together state-of-the-art techniques for building digital devices that can transmit faster and farther than ever before. Dr. Howard Johnson presents brand-new examples and design guidance, and a complete, unified theory of signal propagation for all metallic media. Coverage includes: understanding signal impairments; managing speed/distance tradeoffs; differential signaling; inter-cabinet connections; clock distribution; simulation, and much more., This advanced-level reference presents a complete and unified theory of signal propagation for all metallic media from cables to pcb traces to chips. It includes numerous examples, pictures, tables and wide-ranging discussion of the high-speed properties of transmission lines., This book is a companion to the original book by Johnson and Graham, High-Speed Digital Design: A Handbook of Black Magic , Prentice-Hall, 1993. The two books may be used separately, or together. They cover different material. KEY TOPICS: High-Speed Signal Propagation delves into the issues relevant to signal transmission at the upper limits of speed and distance. This book shows you how to transmit faster and further than ever before, considering today's digital networks and wireless devices. You'll find it packed with practical advice, including material never before published on the subject of high-speed design. Johnson also presents a complete and unified theory of signal propagation for all metallic media from cables to pcb traces to chips. It includes numerous examples, pictures, tables, and wide-ranging discussion of the high-speed properties of transmission lines. This is not yet another book on the subject of ringing and crosstalk. It's about long, high-speed channels operating at the upper limits of speed and distance. EDN Magazine will feature and 1- 1/2 page excerpt from Johnson's book each month, for seven months leading up to the book's publication. MARKET: The reader should know what a transmission line is, and have some general understanding of the relationship between the time domain and the frequency domain. Digital logic designers, system architects, EMC specialists, technicians, and printed wiring layout professionals. Anyone who works with long, high-speed signal channels fighting tradeoffs between speed and distance.
LC Classification Number
TK5103.15.J64 2002
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