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Asynchronous switching for low-power CLICHE netwok-on-chip

机译:低功耗CLICHE片上网络的异步切换

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Asynchronous switching is proposed to achieve low power Network on Chip. Asynchronous switching reduces the power dissipation of the network if the activity factor of the data transfer between two ports αd is less than A αc + B αclk. Closed form expressions for power dissipation of CLICHE topology are provided for both synchronous and asynchronous switching. The area of the asynchronous switch is 50% greater than the area of the synchronous switch. However, the power dissipation of asynchronous switching could be decreased by up to 75.7%. Asynchronous switching becomes more efficient as technology advances and network density increases. A reduction in power dissipation reaches 82.3% for 256 IPs with the same chip size. Even with clock gating, asyn-choronous switching achieves significant power reduction of 77.7% for 75% clock activity factor.
机译:提出了异步开关以实现低功耗片上网络。如果两个端口之间的数据传输活动因子α d 小于Aα c + Bα clk < / inf>。为同步和异步切换提供了CLICHE拓扑功耗的封闭式表达式。异步开关的面积比同步开关的面积大50%。但是,异步开关的功耗可以降低多达75.7%。随着技术的进步和网络密度的增加,异步交换变得更加高效。对于相同芯片大小的256个IP,功耗降低达到82.3%。即使采用时钟门控,异步时钟切换也可在75%的时钟活动因数下实现77.7%的显着功耗降低。

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