An obvious solution is to use a processor with a faster clock rate, but for any given technology there exists a physical limit where the clock simply can't go any faster.
一个明显的解决方案是使用具有更快时钟频率的处理器,但是对于任何特定技术来讲都存在一个物理极限,时钟频率也有这样的极限。
In deep submicron era, IC design in physical design has more and more challenge, with the increasing design scale, faster clock frequency and minimizing process dimension.
在深亚微米时代,随着设计规模变大,时钟频率越来越高以及工艺尺寸的减小,IC物理设计面临着诸多困难。
For years, processor makers consistently delivered increases in clock rates and instruction-level parallelism, so that single-threaded code executed faster on newer processors with no modification.
多年来,处理器制造厂商在不断提高时钟速度和指令级并行性,因此单线程代码不需要修改就可在新的处理器上更快运行。
Gallium arsenide switches ten times faster than silicon All of a sudden,I've got a clock speed ten times faster with no change in design.
砷化镓启动的速度是硅的10倍,突然,我得到了10倍快的时钟速度,但是设计没有发生任何改变。
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