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- W2886641103 abstract "The need for long life battery powered devices has grown drastically in the last decade, and the power consumption has become a factor of equal importance as speed in measuring a circuit performance. To satisfy the demand of such increasing market, many technologies have emerged. And new Electronic Design Automation tools are developed to help the Integrated Circuits (IC) developers building devices with those new technologies in a reasonable time to reduce time to market of the product. But since the design complexity, size and density continue to increase, new power saving techniques need to be developed to compete in such challenging market. The 7 nm technological node which is currently the most advanced node has presented many difficulties, especially in physical design and verification phases. But also it gives a very good opportunity for power optimization due to the big electrical differences between its metal layers and the reduction of the overall parasitic capacitances. This paper presents the new implementation challenges faced after scaling to the 7 nm node and treats the Power-Performance relation chip in such advanced node to extract the best trade-off or the best Figure of Merit that define or describe the overall performance and efficiency of 7 nm SoCs. Characterization experiments were run on a 7 nm SoC and the results show that the best Power-Performance trade-off is achieved when the operating frequency is between 400 MHz and 1.5 GHz. Going for frequency greater than the optimal one scale the power consumption exponentially. And scale the frequency lesser than the optimal frequency impacts the circuit speed without benefiting that much the power consumption of the design." @default.
- W2886641103 created "2018-08-22" @default.
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- W2886641103 date "2018-08-02" @default.
- W2886641103 modified "2023-10-16" @default.
- W2886641103 title "Power-Performance Trade-Off in 7 nm Designs" @default.
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- W2886641103 doi "https://doi.org/10.1007/978-981-13-1405-6_35" @default.
- W2886641103 hasPublicationYear "2018" @default.
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