Rationale and challenges for optical interconnects to electronic chips

The work

AuthorsD. A. B. Miller
Editors
Typearticle
Year2000
Citekeymiller2000rationale

Where it appeared

Published inProceedings of the IEEE
PublisherIEEE
Volume88
Issue6
Pages728--749

Identifiers

DOI10.1109/5.867687

Abstract

The various arguments for introducing optical interconnections to silicon CMOS chips are summarized, and the challenges for optical, optoelectronic, and integration technologies are discussed. Optics could solve many physical problems of interconnects, including precise clock distribution, system synchronization (allowing larger synchronous zones, both on-chip and between chips), bandwidth and density of long interconnections, and reduction of power dissipation. Optics may relieve a broad range of design problems, such as crosstalk, voltage isolation, wave reflection, impedence matching, and pin inductance. It may allow continued scaling of existing architectures and enable novel highly interconnected or high-bandwidth architectures. No physical breakthrough is required to implement dense optical interconnects to silicon chips, though substantial technological work remains. Cost is a significant barrier to practical introduction, though revolutionary approaches exist that might achieve economies of scale. An Appendix analyzes scaling of on-chop global electrical interconnects, including line inductance and the skin effect, both of which impose significant additional constraints on future interconnects.

How it got here

How it got hereimport via drheap-computer-chips
Added2026-08-24 00:00 UTC
Approved bya person 2026-08-24 14:56 UTC

Cite it as

@article{miller2000rationale,
  title        = {Rationale and challenges for optical interconnects to electronic chips},
  author       = {D. A. B. Miller},
  year         = {2000},
  journal      = {Proceedings of the IEEE},
  publisher    = {IEEE},
  volume       = {88},
  number       = {6},
  pages        = {728--749},
  doi          = {10.1109/5.867687},
}

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