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A notebook arrangement in aspect of throughput increase

机译:在吞吐量方面的笔记本布置

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摘要

This article presents a simple and effective approach of high performance microprocessor's throughput enhancement. It aims at introducing of the notion of Reaction Time (RT). RT is a value that describes the time in which the TΔT control system is fed about the change in ambient cooling condition. Utilization of an additional temperature sensor enables to find out the information about dynamic change of cooling condition. The RT is used for approximating how fast TΔT system can react to the dynamic changes in surrounding environment. Using R-C thermal model in Spice environment, the Reaction Time is analyzed as a variable which is dependent on the convection coefficient and heat generated inside chip. Furthermore, RT values were evaluated versus the placement of additional temperature sensor on the body of a laptop. As results, better location of additional temperature sensor leads a rapid detection of change in surrounding condition in other words short Reaction Time. The advantage of this technique is that the changes of cooling condition can be quickly discovered. Consequently, the control system can react much faster in order to deliver the maximum processor's throughput while guarantee the thermal safety.
机译:本文提出了一种简单有效的方法来提高高性能微处理器的吞吐量。它旨在介绍反应时间(RT)的概念。 RT是一个值,它描述了向TΔT控制系统输送有关环境冷却条件变化的时间。利用附加的温度传感器可以找到有关冷却条件动态变化的信息。 RT用于估算TΔT系统对周围环境动态变化的反应速度。在Spice环境中使用R-C热模型,将反应时间作为变量进行分析,该变量取决于对流系数和芯片内部产生的热量。此外,相对于笔记本电脑机身上附加温度传感器的放置,评估了RT值。结果,附加温度传感器的位置更好,可以快速检测到周围环境的变化,换句话说,就是反应时间短。该技术的优点是可以迅速发现冷却条件的变化。因此,控制系统可以做出更快的反应,以在保证热安全性的同时提供最大的处理器吞吐量。

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