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Minis and mainframes: Superminicomputers push mainframe performance, mainframes operate at supercomputer speeds, and supercomputers reach 400 million operations per second

机译:小型机和大型机:超级小型机提高了主机性能,大型机以超级计算机的速度运行,超级计算机每秒达到4亿次操作

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摘要

The continuing trend in 1984 toward bigger, faster, and more powerful minis and mainframes is examined. It is noted that the advances in superminis have generally been typified not by major breakthroughs, but rather by designs that push existing technology to its limits. Such designs have capitalized on packaging advances, along with denser integrated circuits, to let computer designers cram more high-speed circuits into the same space. In addition to the performance gains made by general-purpose mainframes, special-purpose machines called array processors have made significant advances in handling large amounts of numeric data. In some cases such array processors can now perform almost as well as full-fledged supercomputers, but they cost much less. Progress was also made during the year in specialized computer architectures, owing to the increasing availability of tools for system design based on very large-scale integration.
机译:考察了1984年朝着更大,更快,功能更强大的小型机和大型机的持续趋势。值得注意的是,超小型发动机的进步通常不是以重大突破为代表,而是以将现有技术推向极限的设计为代表。这样的设计利用了封装技术的进步以及更密集的集成电路,从而使计算机设计师可以将更多的高速电路塞入同一空间。除了通过通用大型机获得的性能提升外,称为阵列处理器的专用机器在处理大量数字数据方面也取得了显着进步。在某些情况下,这种阵列处理器现在的性能几乎可以与成熟的超级计算机一样好,但是它们的成本要低得多。在这一年中,由于基于大规模集成的系统设计工具的可用性越来越高,专用计算机体系结构也取得了进展。

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    《IEEE Spectrum》 |1985年第1期|42-44|共3页
  • 作者

    Wallich P.;

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