Science and Technology
Authors
News Type
News
Date
Paragraphs

In light of the rise of Asia in research and development (R&D) and the challenge it poses on American supremacy, SPRIE invited industry and academic R&D leaders for a panel discussion entitled "The Globalization of R&D" on February 10, 2005. The panel included Dr. John Seely Brown, visiting scholar, Annenberg Center, USC; Dr. Kris Halvorsen, vice president and director, Solutions and Services Research Center, Hewlett-Packard; and Dr. Yoshio Nishi, director of research at the Center for Integrated Systems, director of Stanford Nanofabrication Facility, National Nanotechnology Infrastructure Network. Participants discussed a wide array of issues, including the economic rationale for new models of R&D, national/regional comparative advantage in R&D, and the coordination of global R&D.

The Economic Rationale for New Models of R&D

Dr. Nishi highlighted the economic rationale behind the quest for new models of R&D. While back in the early 1990s, a $200 million investment in R&D would grant a semiconductor company a one-year lead in technology, by the early 2000s, a one-year lag would transpire with the same investment level. Such an escalation of R&D cost points to the mounting importance of the efficiency of R&D--or as Dr. Nishi put it, the importance of generating "the right technology at the right time for the right cost." The economic forces will not only alter how R&D activities are organized and distributed within and across firms, markets, regions, and countries but also influence the breadth and depth of knowledge searches. For example, R&D alliance might become a viable and lucrative scheme for cost/risk sharing in R&D. The search for non-silicon-based devices might rise in importance as silicon fabrication reaches its limits. By the same token, the division of innovative labor across nations/regions might deepen to further exploit respective comparative advantages.

Regional Comparative Advantage in R&D

One strand of development is the globalization of R&D, which necessitates comparative advantages across regions. Dr. Brown maintained, "I'm moving my analysis from individual firms to [regional] 'niches.' What I see happening is that thousands of [regional] niches are developing all over the place. What's interesting is how dynamic these niches are in building their unique capabilities." The availability of innovative talents, for example, varies significantly across regions. Invoking "the law of large numbers," Dr. Brown pointed out that given its enormous population size, Asia could produce a large number of engineers, even if they are only a tiny fraction of the total population. Currently, the U.S. produces 50,000 engineers every year; the number is 500,000 for Asia--and it is rapidly growing. Meanwhile, more and more immigrant talents choose to return to their home countries after receiving higher education and some work experience in the U.S. Few U.S. companies can afford to ignore such alarming trends. "We need to move with the market for talent," commented Dr. Halvorsen who overseas HP's global R&D activities. Take HP's R&D effort in Bangalore, India as an example. The effort had a humble start in the mid-1980s. Yet, within ten years, the number of local technical staff grew to 3,000. Today, the number is approaching 10,000.

Market-specific demand also pushes R&D to relocate. As Dr. Halvorsen put it, "when success depends on [geographical] closeness, … you need to do design in close loop with the rest of the activities." Furthermore, overseas R&D might well find its way back into the U.S. As explained by Dr. Brown, "The rise of the middle class in China and India at 1/10 of the price point [of the U.S.]" could spur innovations at 1/10 of the price point. Innovations taking place in China or India might be totally unheard of in the U.S. and eventually finds its way into the U.S. market.

The Coordination of Global R&D

While the globalization of R&D brings many promises, it also poses acute challenges to firms that need to coordinate R&D efforts across national boundaries. As Professor William Miller pointed out, "Increase in R&D cost forces specialization. Then you have to put together an assembly of specialists. The problem is that they are everywhere. Therefore, being able to pull them together becomes the differentiator." The story of Li & Fung serves as a perfect example. Li & Fung is a global leader in the apparel business. In 2002, the company contracted with 7,500 factories in 37 countries and generated a revenue of $5 billion. In an industry with thin margins of a few percent, the company continues to uphold a return-on-equity of 30-50%. Yet, Li & Fung owns no factories. Its competitive advantage lies entirely in its expertise in assessing and orchestrating the unique capabilities of each of the 7,500 suppliers. As Dr. Brown summed up, "Making money will depend less on what you own than on what you can mobilize--[i.e. the ability to] orchestrate."

In a parallel argument, Dr. Halvorsen proposed the new model of "meta-national" R&D. Different from the traditional multinational setup, where R&D is orchestrated from the center and diffused to the peripheral, in a meta-national setup, innovation for different parts of the system are consciously placed in different parts of the world. Advances are made in parallel and feedbacks flow bi-directionally.

An even more decentralized model was advanced by Dr. Brown. Dubbed a "swarm ecosystem," such a system is characterized by one (or more) assemblers and hyper-competition among a constellation of component suppliers. The assembler merely provides the focal model with no detailed design, and leaves it to the component suppliers to compete for coming up with the best fit. In this model, the assembler does not orchestrate the development process from top-down; rather, progress is made from the bottom-up. Yet, at the end of the day, only the fittest component suppliers survive and the result is a highly efficient and competitive system that best exploits its own niches.

Other Issues

Panelists and the audience also engaged in lively discussions about intellectual property rights, organizational learning, institutional innovations, the role of public policy, and the impact of culture on innovation. The globalization of R&D--particularly rising competencies in Greater China and their network of relations to Silicon Valley and their worldwide implications--is a new priority area of research for SPRIE.

All News button
1
-

Alexander H. Montgomery is a joint International Security Program/Managing the Atom Project Research Fellow at the Belfer Center for Science and International Affairs in the Kennedy School of Government at Harvard University and a Political Science PhD candidate at Stanford University. He has a BA in Physics from the University of Chicago, an MA in Energy and Resources from the University of California, Berkeley, and an MA in Sociology from Stanford University. He has worked as a research associate in high energy physics on the BaBar experiment at Lawrence Berkeley National Laboratory and as a graduate research assistant at the Center for International Security Affairs at Los Alamos National Laboratory. His research interests include political organizations, weapons of mass disruption and destruction, social studies of technology, and interstate social relations. His dissertation asks the question, "What US post-Cold War counterproliferation strategies towards potential nuclear states have been successful and why?"

Reuben W. Hills Conference
Room, East 207, Encina Hall

Alex Montgomery
Seminars
-

Greater China is the most rapidly growing region in both production and market share in the semiconductor industry, and Chinese professionals play increasingly important roles for the development in the region. SPRIE/ITRI cooperated with CASPA in conducting a study to assess the perspectives of Chinese professionals on the rise of the IC industry in Greater China, and exploring the factors influencing their movement decisions. This panel will present a preview of data from the 2005 web-based survey and interviews--preliminary results, insights from the interviews, and potential implications for professionals, corporate managers, and policymakers.

CASPA: Chinese American Semiconductor Professional Association. With more than 3500 members and 10 chapters distributed across US and Asia, CASPA is the largest Chinese American semiconductor professional organization worldwide.

ITRI: Industrial Technology Research Institute. ITRI is a major industrial technology research institute in Taiwan, with more than 6,000 employees and annual budget around $US 5 billion. Many major Taiwanese semiconductor companies, such as TSMC and UMC, are ITRI spin-offs.

Philippines Conference Room

Hsing-Hsiung Chen Visiting Scholar of SPRIE and Director of Integrated Research Division Industrial Technology Research Institute
Jian-hung Chen Visiting scholar of SPRIE and researcher Industrial Technology Research Institute
David Wang Vice President, Fibra Inc. and President of CASPA 2003-2004
Seminars

This two-day research workshop at Stanford University aims to bring together experts to explore the nature of the connections between universities/research institutes and industry in the United States , Taiwan , and Mainland China . Within this national and international context, the workshop will focus on several leading cases, including Stanford University , Tsinghua University in Beijing , and the Industrial Technology Research Institute in Hsinchu Science-based Park. The workshop will facilitate exchange of data and ideas among leading scholars and practitioners from several disciplines, institutions, and countries. Workshop proceedings will be published and distributed by SPRIE as part of its Greater China Networks program.

In recent years, the rise of the Knowledge Economy has underscored the essential role technological innovation has played in economic development. As key institutions in the innovation process, universities and public research institutes have become the center of many theoretical and empirical studies, most of which have focused on the various roles of academia in national innovation systems and their linkages with industry in fulfilling these roles.

Okimoto Conference Room

Symposiums
-

Major Reid Sawyer, a career military intelligence officer, is an instructor of political science at the United States Military Academy. As an intelligence officer, Major Sawyer served in counternarcotics and special operations assignments. Major Sawyer earned his undergraduate degree from the United States Military Academy and holds a master's degree from Columbia University. Major Sawyer has lectured on terrorism to various groups and is currently working on a research project for the Institute of National Security Studies on the efficacy of counterterrorism measures. Major Sawyer is the current director of terrorism studies at West Point.

Reuben W. Hills Conference Room, East 207, Encina Hall

Reid Sawyer Instructor of Political Science US Military Academy, West Point
Seminars
-

On November 15, 2005, the Canadian Nuclear Waste Management Organization (NWMO) is required by law to submit a recommendation to the parliament on how Canada should manage its spent nuclear reactor fuel. NWMO, which came into existence on November 15, 2002, is undertaking a creative and iterative process engaging the technical, political, and public communities in arriving at their recommendation. As an integral part of the process, NWMO established an assessment team to develop an analytical framework and a systematic method for evaluating and comparing options. Isaacs, one of two non-Canadian members of the team, will describe the ongoing work with emphasis on the multi-attribute utility analysis that was developed to evaluate the options against a range of technical, economic, and social issues.

Tom Isaacs directs the policy and planning activities of the Lawrence Livermore National Laboratory. He is a member of advisory committees for Oregon State University and Texas A&M University nuclear engineering departments.

Isaacs was a member of the National Research Council committee that produced "One Step at a Time: The Staged Development of Geologic Repositories for High-Level Radioactive Waste," and was a member of the NRC Committee on Building a Long-Term Environmental Quality Research and Development Program in the U.S. Department of Energy.

He was chairman of the Expert Group on Nuclear Education and Training, a 17-nation evaluation sponsored by the Nuclear Energy Agency in Paris. He served on the DOE Science Advisory Committee for Environmental Management. He was a member of the "Blue-Ribbon Panel" on the Future of University Nuclear Engineering Programs and University Research and Training Reactors for the Department of Energy.

Previously, Isaacs was the Executive Director of the advisory committee to the Secretary of Energy and the White House which made recommendations on the need for nuclear regulatory reform in the DOE. He also held several management positions in the High-Level Radioactive Waste Program of the DOE, including Director of Strategic Planning and International Programs, Director of Policy and External Relations, and Deputy Director of the Office of Geologic Repositories. He managed the multi-attribute utility analysis that underpinned the selection of Yucca Mountain as the U.S. repository site.

Isaacs also managed the international technical cooperative program with several European nations and Canada. He was the lead U.S. delegate to the Nuclear Energy Agency's Radioactive Waste Management Committee in Paris and represented the Department with the National Academy of Sciences.

Earlier, Isaacs was Deputy Director of the DOE Office of Safeguards and Security with responsibility for national policy formulation and technical leadership in federal actions to minimize prospects of nuclear proliferation, including establishing the program of technical assistance to the International Atomic Energy Agency for safeguarding nuclear facilities worldwide. He began his career with the U.S. Atomic Energy Commission where he helped oversee the design of the reactor core of the Fast Flux Test Facility (FFTF).

Isaacs graduated with a BS degree in chemical engineering from the University of Pennsylvania, and was a member of the Tau Beta Pi National Engineering Honor Society. He received an MS in engineering and applied physics from Harvard University.

Reuben W. Hills Conference Room, East 207, Encina Hall

Thomas Isaacs Director of Policy and Planning Lawrence Livermore National Laboratory
Seminars
-

Ambassador Dobbins will review the American and United Nation's experience with nation building over the past sixty years and explore lessons for Iraq, Afghanistan and beyond. He will draw upon the just completed RAND History of Nation Building, the first volume of which deals with U.S. led missions from Germany to Iraq. The newly released second volume covers U.N.-led operations beginning with the Belgian Congo in the early 1960's. Dobbins will compare the U.S. and U.N. approaches to nation building, and evaluate their respective success rates.

Ambassador Dobbins directs RAND's International Security and Defense Policy Center. He has held State Department and White House posts including Assistant Secretary of State for Europe, Special Assistant to the President for the Western Hemisphere, Special Adviser to the President and Secretary of State for the Balkans, and Ambassador to the European Community. He has handled a variety of crisis management assignments as the Clinton Administration's special envoy for Somalia, Haiti, Bosnia, and Kosovo, and the Bush Administration's first special envoy for Afghanistan. He is principal author of the two-volume RAND History of Nation Building.

In the wake of Sept 11, 2001, Dobbins was designated as the Bush Administration's representative to the Afghan opposition. Dobbins helped organize and then represented the U.S. at the Bonn Conference where a new Afghan government was formed. On Dec. 16, 2001, he raised the flag over the newly reopened U.S. Embassy.

Earlier in his State Department career Dobbins served twice as Deputy Assistant Secretary of State for Europe, as Deputy Chief of Mission in Germany, and as Acting Assistant Secretary for Europe.

Dobbins graduated from the Georgetown School of Foreign Service and served 3 years in the Navy. He is married to Toril Kleivdal, and has two sons.

Reuben W. Hills Conference Room, East 207, Encina Hall

James Dobbins Director of the International Security and Defense Policy Center RAND
Seminars
-

Despite an interesting prehistory, the field of information security we know today dates from the introduction of radio at the beginning of the 20th century. Cryptography dominated information security in its first hundred years and is now the best understood part of the field. In the last thirty years, cryptography was joined by the broad subject of secure computing, which remains much less well developed but shows signs of substantial improvement in the near future. The growth of networking promises a world in which typical computations are collaborations among many computers in a fashion suggestive of commercial subcontracting. In this environment, negotiation and configuration control will become the dominant information security problems.

Whitfield Diffie, Chief Security Officer of Sun Microsystems, is Vice President and Sun Fellow and has been at Sun since 1991. As Chief Security Officer, Diffie is the chief exponent of Sun's security vision and responsible for developing Sun's strategy to achieve that vision. Best known for his 1975 discovery of the concept of public key cryptography, Diffie spent the 1990s working primarily on the public policy aspects of cryptography and has testified several times in the Senate and House of Representatives. His position - in opposition to limitations on the business and personal use of cryptography - is the subject of the book, Crypto, by Steven Levy of Newsweek. Diffie and Susan Landau are joint authors of the book Privacy on the Line, which examines the politics of wiretapping and encryption and won the Donald McGannon Award for Social and Ethical Relevance in Communications Policy Research and the IEEE-USA award for Distinguished Literary Contributions Furthering Public Understanding of the Profession.

Diffie is a fellow of the Marconi Foundation and the International Association for Cryptologic Research and is the recipient of awards from a number of organizations, including IEEE, The Electronic Frontiers Foundation, NIST, NSA, the Franklin Institute and ACM. Prior to assuming his present position in 1991, Diffie was Manager of Secure Systems Research for Northern Telecom, where he designed the key management architecture for NT's PDSO security system for X.25 packet networks. Diffie received a BS in mathematics from the Massachusetts Institute of Technology in 1965, and was awarded a Doctorate in Technical Sciences (Honoris Causa) by the Swiss Federal Institute of Technology in 1992.

Reuben W. Hills Conference Room

0
Affiliate
Diffie_Whit.jpg

Whitfield Diffie is a consulting scholar at CISAC. He was a visiting scholar in 2009-2010 and an affiliate from 2010-2012. He is best known for the discovery of the concept of public key cryptography, in 1975, which he developed along with Stanford University Electrical Engineering Professor Martin Hellman. Public key cryptography, which revolutionized not only cryptography but also the cryptographic community, now underlies the security of internet commerce.

During the 1980s, Diffie served as manager of secure systems research at Northern Telecom. In 1991, he joined Sun Microsystems as distinguished engineer and remained as Sun fellow and chief security officer until the spring of 2009.

Diffie spent the 1990s working to protect the individual and business right to use encryption, for which he argues in the book Privacy on the Line, the Politics of Wiretapping and Encryption, which he wrote jointly with Susan Landau. Diffie is a Marconi fellow and the recipient of a number of awards including the National Computer Systems Security Award (given jointly by NIST and NSA) and the Franklin Institute's Levy Prize.

Whitfield Diffie Speaker Sun Microsystems, Inc.
Seminars
-

Dr. Brumberg is an Associate Professor in the Department of Government at Georgetown University. He received his BA in French and Political Science from Indiana University, and his Ph.D. from the University of Chicago. From 1991 to 1993 he was a Visiting Professor in the Department of Political Science at Emory University, and a Visiting Fellow in the Middle East Program in the Jimmy Carter Center.

He lived and studied in Egypt for three years, and has also conducted field research in Iran, Indonesia and Kuwait. The author of many articles on political and social change in the Middle East and wider Islamic World, his Reinventing Khomeini: The Struggle for Reform in Iran was published in April 2001 by The University of Chicago Press.

A member of the Editorial Board of the Journal of Democracy and the Advisory Board of the International Forum on Democratic Studies, Dr. Brumberg is also Chairman of the non-profit Foundation on Democratization and Political Change in the Middle East. In 1998-1999 he was a Randolph Peace Fellow at the United States Institute of Peace, where he pursued a study of power sharing in the Middle East and South East Asia.

Drawing from this research, Dr. Brumberg is now writing a comparative study of successful and failed power sharing experiments in Algeria, Kuwait and Indonesia.

Encina Hall
Downstairs Conference Room

Daniel Brumberg Associate Professor of Government Georgetown University
Conferences
Subscribe to Science and Technology