A System-level Design Approach to the Evaluation of Self-assembled Computer Architectures
نویسنده
چکیده
Advances in materials science, chemistry, and self-assembly are anticipated to enable the fabrication of massively parallel computer systems. An important aspect of this development is the design and evaluation of system-level interactions and performance based on the fundamental properties of emerging nanoscale devices on real computer applications. This paper will present the design, evaluation, and fabrication theory for an emerging DNA self-assembly process as applied to a parallel computer architecture that is uniquely enabled by self-assembly. A brief evaluation of the architecture (a decoupled array multiprocessor or DAMP) will be presented in terms of peak runtime performance and power consumption.
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