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Digital integrated circuit technology trends: microprocessors for avionic application

机译:数字集成电路技术趋势:微处理器用于航空电子应用

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The technology treadmill is evolving the microprocessor at a phenomenal rate. Today's microprocessors have millions of transistors, operate at frequencies greater than 100 MHz, use process technologies with feature sizes less than 0.5 microns, and utilize sophisticated architecture techniques to maximize performance. This paper surveys the current technology trends in microprocessors. Topics include advanced architecture techniques such as superscalar, branch prediction, on-chip cache memory and also process technology improvements. Within advanced architecture and process technology there are several possible improvement techniques. Superscalar and branch prediction work in concert to reduce the time that the processor is waiting. Separating data and instruction cache, along with a larger bus size, can reduce the number of required accesses to slower system memory. Functional redundancy check reduces error rates in multiprocessor systems through redundancy. Finally, the steady improvement in process technology reduces chip size, operating voltage and power while simultaneously increasing the computation rate.
机译:技术跑步机正在以惊人的速度发展微处理器。今天的微处理器有数百万个晶体管,在大于100 MHz的频率下操作,使用具有小于0.5微米的特征尺寸的过程技术,并利用复杂的架构技术来最大化性能。本文调查了微处理器的当前技术趋势。主题包括高级架构技术,如超卡,分支预测,片上缓存存储器,也是处理技术的改进。在先进的架构和过程技术中,有几种可能的改进技术。 Superscalar和分支预测协同工作,以减少处理器正在等待的时间。分离数据和指令高速缓存,以及较大的总线大小,可以减少所需访问的数量较慢的系统内存。功能冗余校验通过冗余降低多处理器系统中的错误率。最后,过程技术的稳步改善可降低芯片尺寸,工作电压和功率,同时增加计算速率。

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