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From a strong pool of applicants, including masters and Ph.D. students with backgrounds from law and sociology to computer science and engineering, SPRIE directors selected Ming Gu and Victoria Wu. They will work with SPRIE faculty and senior researchers at Stanford, conduct field research and data analysis in Beijing and Shanghai during summer 2005, and contribute to SPRIE research forums and publications. As part of an expanding initiative on innovation and entrepreneurship in Greater China, SPRIE is pleased to announce the selection of two outstanding Stanford students as inaugural SPRIE Graduate Research Fellows.

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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.

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Wena Rosario
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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.

To date, most studies have been based on the experience of industrialized countries such as U.S. and Japan . Few scholars have examined these issues in newly industrialized or developing economies, such as Taiwan and Mainland China . Linkages between universities and commerce vary greatly among countries, among universities within countries, among academic fields within universities, and among industries. American universities have a long history of involvement with commerce and many Chinese ones have been actively engaged with it since economic liberalizing began 25 years ago. In Taiwan , universities have played a less direct role by comparison with its research institutes.

The nature of the linkages varies greatly. How? Why? With what impact? In broad terms, American universities (including often their faculty members) make money from licensing ideas created in them but, with few exceptions, these universities do not directly own companies. The practice is very different in Mainland China . Its leading universities, including Tsinghua, own and operate many companies. (Its Academy of Sciences has also been a major source of high tech companies.) In Taiwan , the pattern has been mainly for research institutes to spin out companies.

That these institutions can make large economic contributions to society is not in doubt, nor that linkages with commerce can be financially rewarding to them. The focus of this workshop is in the policies and methods they use for generating ideas that have potential commercial and technological value, and how these policies and methods balance commercial-related activities with the teaching and research missions of universities. More detailed analysis and greater understanding of the policies, institutions, and practices on university-research institute-industry relations in the U.S. , Taiwan , and Mainland China is.

As the trend of globalization of science and technology continues, academic communities (including public research institutes and universities) in Greater China will increasingly become important partners in a global innovation system. Therefore, the academia-market interface in these economies not only can shed new light on the ongoing debate, but also because the evolution of such relationships will impact the global innovation system. In addition, university-research institute-industry linkages in Taiwan and Mainland China offer unique cases to study the evolving institutional relationships between academia and industry, such as the roles of ITRI or Chinese universities have played in the growth of high-tech industries in Taiwan and Mainland China . A careful examination of these cases and a comparison of them with leading cases in the U.S. , such as Stanford University , will offer insights into the driving factors and implications of the interactions of these institutions in the process of technological development.

Some of the questions addressed in the workshop:

  • What is the current state of linkages between universities/research institutes and industry in the selected regions? What factors are responsible for the observed patterns?
  • What have been the benefits and costs of these linkages to the universities/research institutes? How are they seen from the industry side?
  • What is the evidence that such linkages create more commercially useful ideas and/or speed them to market? What mechanisms or institutional relationships have worked, failed or yet to be judged?
  • What are the rules under which universities and research institutes operate? What are the pitfalls to avoid in fostering such linkages? Is there agreement on best practices in each region?
  • Where are these relationships heading? Will the boundaries between academic and research institutions and companies become further blurred in the 21 st century or will actions be taken to strengthen the boundaries between them?
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The Stanford Project on Regions of Innovation and Entrepreneurship (SPRIE) is a multidisciplinary research program of the Asia-Pacific Research Center (APARC) at Stanford University which focuses on innovation and entrepreneurship in leading high technology regions in the United States and Asia. SPRIE has an active community of scholars at Stanford as well as research affiliates in the United States, China, Taiwan, Japan, Korea, Singapore, and India.

New Fellowships

As part of a new initiative on Greater China, SPRIE will select two outstanding post-docs or young scholars as the inaugural SPRIE Fellows at Stanford for the academic year 2005-2006 for research and writing on Greater China and its role in the global knowledge economy. The primary focus of the program is the intersection of innovation and entrepreneurship and underlying contemporary political, economic, technological, and/or business factors in Greater China (including Taiwan, Mainland China, Singapore). Topics of particular interest include, but are not limited to, university-industry linkages, globalization of R&D, venture capital industry development, networks and flows of managerial and technical leaders, and leading high technology clusters in Greater China. Industries of ongoing research at SPRIE include semiconductors, wireless, and software.

SPRIE Fellows at Stanford will be expected to be in residence for at least three academic quarters, beginning the Fall quarter of 2005. Fellows take part in Center activities, including research forums, seminars, and workshops throughout the academic year, and are required to present their research findings in SPRIE seminars. They will also participate as members of SPRIE's team in its public and invitation-only seminars and workshops with academic, business, and government leaders. Fellows will also participate in the publication programs of SPRIE and APARC. The Fellowship carries a stipend of $40,000.

How To Apply

Applicants should submit

  1. A statement of purpose not to exceed five single-spaced pages which describes the research and writing to be undertaken during the fellowship period, as well as the projected product(s) that will be published;
  2. a curriculum vitae (with research ability in Chinese preferred); and
  3. 2 letters of recommendation from faculty advisors or other scholars. All applicants must have Ph.D. degrees conferred by August 30, 2005.

Address all applications to:

Stanford Project on Regions of Innovation and Entrepreneurship,
Asia-Pacific Research Center,
Encina Hall -East 301,
Stanford University,
Stanford, California
USA 94305-6055

Questions? Please contact Rowena Rosario, Administrative Associate

Deadline for receipt of all materials: January 14, 2005

Applicants will be notified of fellowship decisions in March 2005

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Focus on Innovation and Entrepreneurship in Greater China

SPRIE is a multidisciplinary research program at Stanford University which focuses on innovation and entrepreneurship in leading high technology regions in the United States and Asia. SPRIE has an active community of scholars at Stanford as well as research affiliates in the United States, Mainland China, Taiwan, Japan, Korea, Singapore, and India. During 2005, SPRIE is expanding a new initiative on the rise of leading high technology regions in Greater China and their impact on the global knowledge economy. Specific research topics include university-industry linkages for commercialization of technology, globalization of R&D, venture capital industry development and its impact on new venture formation, and networks and flows of managerial and technical leaders. In addition, industries of ongoing research at SPRIE include semiconductors, wireless, and software.

New SPRIE Research Fellows: Research Assistantships with Support for International Field Research

As part of this new initiative on innovation and entrepreneurship in Greater China, SPRIE will select outstanding Stanford students as the inaugural SPRIE Research Scholars. SPRIE Research Scholars will work with SPRIE faculty and senior researchers at Stanford for two (or more) academic quarters in 2005 to gather and analyze data, conduct interviews in Silicon Valley, contribute to publications, and advance progress on the overall project agenda. During summer 2005, they will conduct SPRIE field research through interviews or surveys with business and government leaders in Beijing, Shanghai, or Hsinchu. As part of SPRIE's international research team, they will have the opportunity to interact closely with project leaders and visiting scholars at Stanford as well as partners in Asia, such as the Ministry of Science and Technology, Tsinghua University, or Zhongguancun Science Park in Mainland China or the Industrial Technology Research Institute (ITRI) in Taiwan. They will also participate in SPRIE's public and invitation-only seminars and workshops with academic, business, and government leaders. The financial award will include RA support at 15-20 hours/week (or equivalent) plus summer stipend to cover travel, living expenses, and research.

How To Apply (limited to current Stanford graduate students and exceptional seniors and juniors)

Successful candidates will have demonstrated a track record of superior analytical ability, strong oral and written communication skills (including full fluency in English and Chinese), knowledge of high technology and entrepreneurship, high motivation, and willingness to be part of a dynamic international research team.

Applicants should submit

1) A brief statement (not to exceed one single-spaced page) which describes the candidate's interests and skills,

2) a curriculum vitae, and

3) contact information for 2 references, preferably recent professors, advisors, or employers

Send applications to

SPRIE

Encina Hall East 301

Stanford University

Stanford, CA 94305-6055

Questions? Please contact Wena Rosario, Administrative Associate.

Deadline for receipt of all materials: December 31, 2005

Applicants will be notified of decisions in January 2005.

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Tex Abe, President and CEO of Sumisho Electronics Co., Ltd., has lead the Company since June 2002. During his tenure, he carried out management reforms including several M&As and board structure change. Prior to joining the Company, he was president and CEO of Presidio Venture Partners, LLC, a leading corporate venture capital firm in Silicon Valley, where he made his mark in new-venture funding and management. Presidio is a vehicle for early to mid stage IT investment, backed by a major Japanese trading company, Sumitomo Corporation.

Abe has more than 20 years of experience in Sumitomo, where he developed his career on the information technology, utility, and independent power industries. Through assignments in New York City, San Francisco, Los Angels, Houston, and Tokyo, he has gained expertise in project development and management, project finance, corporate management, full turnkey contracting, and major equipment sales and marketing.

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Yasuyuki "Tex" Abe President and CEO Sumisho Electronics, a subsidiary of Sumitomo Corp.
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Daron Acemoglu is Charles P. Kindleberger Professor of Applied Economics in the Department of Economics at the Massachusetts Institute of Technology and a member of the Economic Growth program of the Canadian Institute of Advanced Research. He is also affiliated with the National Bureau Economic Research, Center for Economic Performance, and Center for Economic Policy Research.

His work has been published in leading scholarly journals, including the American Economic Review, Journal of Political Economy, Quarterly Journal Economics and Review of Economic Studies to name a few. Daron Acemoglu's research covers a wide range of areas within economics, including political economy, economic development and growth, human capital theory, growth theory, technical change, and search theory. Acemoglu is also the editor of the Review of Economics and Statistics, and associate editor of the Journal of Economic Growth.

Abstract of paper presented in this research seminar

This paper develops a model where there is a trade-off between the enforcement of the property rights of different groups. An "oligarchic" society, where political power is in the hands of major producers, protects their property rights, but also tends to erect significant entry barriers, violating the property rights of future producers. Democracy, where political power is more widely diffused, imposes redistributive taxes on the producers, but tends to avoid entry barriers. When taxes in democracy are high and the distortions caused by entry barriers are low, an oligarchic society achieves greater efficiency. Nevertheless, because comparative advantage in entrepreneurship shifts away from the incumbents, the inefficiency created by entry barriers in oligarchy deteriorates over time. The typical pattern is therefore one of the rise and decline of oligarchic societies: of two otherwise identical societies, the one with an oligarchic organization will first become richer, but later fall behind the democratic society. I also discuss how democratic societies may be better able to take advantage of new technologies, how an oligarchic society might transition to democracy because of within-elite conflict, and how the unequal distribution of income in oligarchy supports the oligarchic institutions and may keep them in place even when they become significantly costly to society.

Encina Basement Conference Room

Daron Acemoglu Professor of Economics MIT
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During the past 11 months, 9 VC-backed firms from China have successfully brought their IPOs to NASDAQ. Now that the VC industry in China is heating up, Dr. Zhang will address the following topics: What is the evolving structure and system of the venture capital industry in China? What is the investment process and how do international VC firms make decisions when investing in China? Why have several VC firms outperformed others? What challenges lie ahead?

About the Speaker

Dr. Zhang is an Assistant Professor at the School of Economics & Management, Tsinghua University. During Fall 2004, he is a Visiting Fellow at Stanford's Graduate School of Business. Professor Zhang's research interests focus on venture capital and entrepreneurship in China. He received his B.A. and M.S. degrees in engineering and Ph.D. in Management from Tsinghua University.

CISAC Conference Room, Encina Hall, second floor, central

Wei Zhang Assistant Professor of Economics and Management Tsinghua University
Seminars
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