Inniss / Rubenstein | Silicon Photonics | Buch | 978-0-12-802975-6 | www.sack.de

Buch, Englisch, 226 Seiten, Format (B × H): 151 mm x 228 mm, Gewicht: 392 g

Inniss / Rubenstein

Silicon Photonics


Erscheinungsjahr 2016
ISBN: 978-0-12-802975-6
Verlag: Morgan Kaufmann

Buch, Englisch, 226 Seiten, Format (B × H): 151 mm x 228 mm, Gewicht: 392 g

ISBN: 978-0-12-802975-6
Verlag: Morgan Kaufmann


Silicon photonics uses chip-making techniques to fabricate photonic circuits. The emerging technology is coming to market at a time of momentous change. The need of the Internet content providers to keep scaling their data centers is becoming increasing challenging, the chip industry is facing a future without Moore's law, while telcos must contend with a looming capacity crunch due to continual traffic growth.

Each of these developments is significant in its own right. Collectively, they require new thinking in the design of chips, optical components, and systems. Such change also signals new business opportunities and disruption.

Notwithstanding challenges, silicon photonics' emergence is timely because it is the future of several industries. For the optical industry, the technology will allow designs to be tackled in new ways. For the chip industry, silicon photonics will become the way of scaling post-Moore's law. New system architectures enabled by silicon photonics will improve large-scale computing and optical communications.

Silicon Photonics: Fueling the Next Information Revolution outlines the history and status of silicon photonics. The book discusses the trends driving the datacom and telecom industries, the main but not the only markets for silicon photonics. In particular, developments in optical transport and the data center are discussed as are the challenges. The book details the many roles silicon photonics will play, from wide area networks down to the chip level. Silicon photonics is set to change the optical components and chip industries; this book explains how.

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Zielgruppe


<p>Data center, networking, ICT, semiconductor, optical component and cloud service providers, as well as academia, scientists and students.</p>

Weitere Infos & Material


1. Silicon Photonics: Disruptive and Ready for Prime Time2. Layers and the Evolution of Communications Networks3. The Long March to a Silicon-Photonics Union4. The Route to Market for Silicon Photonics5. Metro and Long-Haul Network Growth Demands Exponential Progress6. The Data Center: A Central Cog in the Digital Economy7. Data Center Architectures and Opportunities for Silicon Photonics8. The Likely Course of Silicon Photonics


Rubenstein, Roy
Roy Rubenstein has been researching and writing about telecom, datacom, and the semiconductor industries for over 30 years. He is the editor of industry publication Gazettabyte and has been a consultant for LightCounting Market Research for 20 years. Previously, he was a senior analyst at RHK Inc covering optical components and communication semiconductors. Rubenstein has a BSc in Electronic Engineering, a masters in DSP and computing architectures, and a PhD in digital communications from the University of Manchester.

Inniss, Daryl
Daryl Inniss is a consultant at Omdia's telecommunications practice. His market research is on emerging technologies for the transport network, optical components, and optical fiber, and his focus areas include new business development, strategy, market, and competitive analyses. Previously, he was Director of New Business Development at OFS Fitel LLC, a fiber optics and telecommunications manufacturer. He holds a PhD in Chemistry from UCLA and an AB from Princeton University and has been in the optical communications industry for over 35 years.



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