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A revolutionary technological development of the late twentieth century, photonics embraces lasers, fiber optics, imaging devices, and optical applications to computing. It affects the fortunes of numerous industries and, other than conventional microelectronics, may now be the leading arena for worldwide technological rivalry. While Japan has seen its photonic industries grow faster than any other high technology sector, the United States, where much of photonics originated, has experienced a declining industrial capability in world markets. Why is the U.S. floundering in this critical new technology? Are market solutions adequate as a national response to such massive technological change? After describing the history and economic implications of photonics, this book places these questions in the context of industrial policy debates about the proper role of government in response to strategic industrial sectors. The author then assesses the U.S. public policy response by examining various government programs directed at photonics. These programs add up to an implicit government photonics policy, but one that is shortsighted, incoherent, and unplanned. Sternberg concludes that it is this failure to plan that explains United States' retrogression in a critical technology.
Most entrepreneurs have expertise in one or more of the critical areas of commercialization, but may lack key elements necessary for success. Commercialization Basics for the Photonics Industry serves as a roadmap for the commercialization process, helping identify and address roadblocks on the path to commercialization. Evaluation techniques will help determine the strength of a business opportunity and guide its development toward the best chance of success.
This engineering tool provides over 200 time and cost saving rules of thumb--short cuts, tricks, and methods that optical communications veterans have developed through long years of trial and error. * DWDM (Dense Wavelength Division Multiplexing) and SONET (Synchronous Optical NETwork) rules * Information Transmission, fiber optics, and systems rules
The 1970s and 1980s witnessed growing concern in the United States regarding the relative decline of the American economy and, for defense planners, the military's growing dependence on foreign production of weapons' parts and subcomponents—the guts of many critical weapons systems. The period also witnessed growing interest in industrial policy as a tool for promoting U.S. international competitiveness, defense sectors proving to be particularly attractive candidates for government economic intervention. This study traces the evolution of defense dependence and the U.S. government's response to this dilemma by examining policy ideas and experiments in four defense industries—machine tools, semiconductor manufacturing, ball bearings, and high-definition television technologies—explaining successes and failures, and reviewing prospects for expansion.
Development and Modern Industrial Policy in Practice provides an up-to-date analysis of industrial policy. Modern industrial policy refers to the set of actions and strategies used to favor the more dynamic sectors of the economy. A key aspect of moder
This hands-on introduction to silicon photonics engineering equips students with everything they need to begin creating foundry-ready designs.
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. - Captures the latest research assessing silicon photonics development and prospects - Demonstrates how silicon photonics addresses the challenges of managing bandwidth over distance and within systems - Explores potential applications of SiP, including servers, datacenters, and Internet of Things
Industrial policy, once relegated to resource allocation, technological improvements, and the modernization of industries, should be treated as a serious component of sustainability and developmental economics. A rich set of complimentary institutions, shared behavioral norms, and public policies have sustained economic growth from Britain's industrial revolution onwards. This volume revisits the role of industrial policy in the success of these strategies and what it can offer developed and developing economies today. Featuring essays from experts invested in the expansion of industrial policies, topics discussed include the most effective use of industrial policies in learning economies, development finance, and promoting investment in regional and global contexts. Also included are in-depth case studies of Japan and India's experience with industrial policy in the banking and private sector. One essay revisits the theoretical and conceptual foundations of industrial policy from a structural economics perspective and another describes the models, packages, and transformation cycles that constitute a variety of approaches to implementation. The collection concludes with industrial strategies for facilitating quality growth, realizing more sustainable manufacturing development, and encouraging countries to industrialize around their natural resources.