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Single-chip computers with microelectromechanical systems-based magnetic memory (invited)
Journal article   Peer reviewed

Single-chip computers with microelectromechanical systems-based magnetic memory (invited)

L. Richard Carley, James A. Bain, Gary K. Fedder, David W. Greve, David F. Guillou, Michael S. C. Lu, Tamal Mukherjee, Suresh Santhanam, Leon Abelmann and Seungook Min
Journal of Applied Physics, Vol.87(9 III), pp.6680-6685
01/05/2000

Abstract

This article describes an approach for implementing a complete computer system (CPU, RAM, I/O, and nonvolatile mass memory) on a single integrated-circuit substrate (a chip) - hence, the name "single-chip computer." The approach presented combines advances in the field of microelectromechanical systems (MEMS) and micromagnetics with traditional low-cost very-large-scale integrated circuit style parallel lithographic manufacturing. The primary barrier to the creation of a computer on a chip is the incorporation of a high-capacity [many gigabytes (GB)] re-writable nonvolatile memory (in today's terminology, a disk drive) into an integrated circuit (IC) manufacturing process. This article presents the following design example: a MEMS-based magnetic memory that can store over 2 GB of data in 2 cm 2 of die area and whose fabrication is compatible with a standard IC manufacturing process. © 2000 American Institute of Physics.

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