90nm FPGA上基于热耐受Wi-Fi使能32位ALU的频率缩放设计

Madhavika Agarwal, Shivangni Singh, Neha Agrawal, Anjan Kumar, B. Pandey
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引用次数: 2

摘要

本文从热缩放和频率缩放两方面分析了基于90nm Virtex-4 FPGA的Wi-Fi Enable ALU。它是Wi-Fi启用,因为我们正在使用不同的IEEE 802.11 Wi-Fi频道频率操作我们的ALU。频率缩放和温度缩放导致了功耗的变化,最终实现了节能。时钟功率,逻辑功率,信号功率,IOs功率,泄漏功率都取决于频率和温度。分析了ALU在Wi-Fi信道ah下的工作效率,频率约为0.9GHz。使用频率缩放和热缩放,我们还实现了泄漏功率减少30-60%的范围。为了进一步降低高频范围内的功耗,我们还使用了不同的时钟门控技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency scaling based thermally tolerable Wi-Fi Enable 32-bit ALU design on 90nm FPGA
In this paper, Wi-Fi Enable ALU on 90nm based Virtex-4 FPGA is analyzed using thermal scaling and frequency scaling. It is Wi-Fi enable because we are operating our ALU with frequencies of different IEEE 802.11 Wi-Fi Channel. Frequency scaling and temperature scaling results in power consumption variation and finally saving of energy. Clock power, logic power, signal power, IOs power, leakage power all are dependent on frequency and temperature. The ALU is analyzed to work efficiently at Wi-Fi channel ah, having frequency around 0.9GHz. We are also achieving reduction in range of 30-60% for leakage power using frequency scaling and thermal scaling. For further reduction of power dissipation at high frequency range, we are also using different Clock Gating techniques.
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