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首页> 外文期刊>Journal of Low Power Electronics >Look-Up Table Based Low Power Rotary Traveling Wave Oscillator Design Considering the Skin Effect
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Look-Up Table Based Low Power Rotary Traveling Wave Oscillator Design Considering the Skin Effect

机译:考虑趋肤效应的基于查找表的低功率旋转行波振荡器设计

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摘要

Rotary clocking is a low-power technology alternative for multi-GHz clock generation and distribution. In this paper, the power efficiency of the rotary traveling wave oscillator is analyzed at the predicted multi-GHz frequencies, where the skin effect becomes dominant. The filament model is applied to investigate the transmission line resistance and inductance with the skin effect for analyzing the transmission line power consumption in the rotary traveling wave oscillator (RTWO). A 3D full-wave simulation model is implemented, the result of which shows good agreement with the calculation results from the filament model. A lumped RLC transmission line model is built to facilitate the HSPICE simulation in order to predict the power consumption of a RTWO transmission line in high frequencies. The design parameters of RTWO perimeter and inverter size are analyzed for optimizing the power consumption of the transmission line. Simulation results show that the transmission line power consumption at 20 GHz can be as low as 29.6% of the power consumption at 3 GHz by selectively choosing the design parameters (though the driving capability of the RTWO is a trade-off for power consumption). Based on the simulation results, a low power design table for the RTWO is provided. Finally, an RTWO array is built using the optimized design parameters. It is shown that when the skin effect is considered (increasing the accuracy of the simulation results), the RTWO array still saves up to 68.6% power compared to a traditional clock tree.
机译:旋转时钟是一种低功耗技术,可用于生成和分配GHz时钟。在本文中,分析了在预期的多GHz频率下旋转行波振荡器的功率效率,其中趋肤效应占主导地位。应用细丝模型来研究传输线的电阻和电感以及趋肤效应,以分析旋转行波振荡器(RTWO)中的传输线功耗。建立了3D全波仿真模型,其结果与灯丝模型的计算结果吻合良好。建立集总的RLC传输线模型以促进HSPICE仿真,以便预测RTWO传输线在高频下的功耗。分析了RTWO周长和逆变器尺寸的设计参数,以优化传输线的功耗。仿真结果表明,通过有选择地选择设计参数,尽管20 GHz时的传输线功耗可以低至3 GHz时的功耗的29.6%(尽管RTWO的驱动能力是功耗的折衷方案)。根据仿真结果,提供了RTWO的低功耗设计表。最后,使用优化的设计参数构建RTWO阵列。结果表明,考虑趋肤效应(提高仿真结果的准确性)后,与传统时钟树相比,RTWO阵列仍可节省高达68.6%的功耗。

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