Innovation

During the 20th century electricity spread from tiny islands of experimental service to become the world's most important energy carrier. The fraction of energy converted to electrons before consumption has risen inexorably and approaches 40% worldwide. Few would argue with the judgment of the U.S. National Academy of Engineering that electricity was the most important innovation of the past century. Electricity transformed homes, factories, and offices, the work we do, our health and comfort, and how we spend our time. How will electricity transform the 21st century?

More flexible and cleaner for the end-user than the coal, gas, and other sources of energy services that it replaced, electricity will likely be the form that 55%-60% of energy takes in four to five decades as more and new electrical machines appear in the market. How might life change as this imperial technology conquers new domains?

And what about the 1.6 billion people who today lack access to electricity? Will global electrification be achieved in the coming half century or even sooner? If some regions defy electrification, what are the reasons? How might electrification change occupations and lifestyles of the poor?

During a two-day workshop on the implications of global electrification, we aim to assemble a fresh picture of visions for electrification, its trends in time and space, and selected implications for health, environment, and social and economic organization. We are inviting diverse experts to comment on these issues from the vantage of their disciplines, practice, and research. We are asking each to talk about their current work, ideas, and speculations rather than commission new studies. The novelty of the meeting lies in the diversity of perspectives and the chance to contrast and integrate them. Global electrification is far advanced and may be nearly complete in the coming decades. What will it take, and what may result?

Oksenberg Conference Room

Conferences
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Hosted by the Stanford Project on Regions of Innovation and Entrepreneurship (SPRIE) as part of their Greater China Forum which meets first Tuesday of each month.

Joseph Y. Liu

President, CEO, and member, Board of Directors, Oplink Communications, Inc.

Oplink designs, manufactures, and markets fiber optic products and services that increase the performance of optical networks, including its photonic foundry with manufacturing activities in Zhuhai and design and engineering in San Jose.

Sam T. Wang, Ph.D.

President, SMIC Americas, the US operations of Semiconductor Manufacturing International Corporation (SMIC)

With an IPO in March 2004 (and current market cap of $3.6 billion), SMIC is China's most advanced pure play IC foundry company, with wafer fabs located in Shanghai, Beijing and Tianjin, including its Fab 1 named "Top Fab of the Year for 2003" by Semiconductor International.

Tien Wu, Ph.D.

President, ASE Americas, Europe and Japan, Board of Directors and Corporate Vice President, Worldwide Marketing and Strategy, ASE Inc., and Chief Executive Officer, ISE Labs Inc (An ASE Test Company)

The ASE Group is the world's largest provider of independent semiconductor manufacturing services in assembly and test with $2.9 billion sales revenue in 2003, 29,000 employees worldwide, and facilities across Asia, including Taiwan, Hong Kong, and Singapore.

Philippines Conference Room

Joseph Y. Liu President, CEO, and Member, Board of Directors Oplink Communications, Inc.
Sam T. Wang President, SMIC Americas the US operations of Semiconductor Manufacturing International Corporation
Tien Wu President, ASE Americas, Europe, and Japan, Board of Directors and Corporate Vice President, Worldwide Marketing and Strategy, ASE Inc., and Chief Executive Officer, ISE Labs Inc (An ASE Test Company)
William F. Miller Co-director Moderator SPRIE
Seminars
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