Logo image
Skew minimization with low power for wide-voltage-range multipower-mode designs
期刊文章   同儕審查

Skew minimization with low power for wide-voltage-range multipower-mode designs

Chung-Han Chou, Hua-Hsin Yeh, Shih-Hsu Huang, Yow-Tyng Nieh, Shih-Chieh ChangYung-Tai Chang
IEEE Transactions on Very Large Scale Integration (VLSI) Systems, 卷.24(3), 頁碼.1189-1192
03/2016

摘要

Clocks Design methodology Power dissipation Sequential circuits Timing Software Hardware and Architecture Electrical and Electronic Engineering
In a multipower-mode design, as the range of the supply voltage becomes wide, a large clock skew may occur among different power domains. To remove this clock skew, conventional power-modeaware buffers (PMABs) require a large overhead on power consumption. In this brief, we propose a new PMAB architecture for wide-voltage-range multipower-mode designs. The proposed PMAB architecture is composed of two serially connected sub-PMABs at two different voltage levels, respectively. In the front sub-PMAB, the low voltage level is used for coarse-grained clock skew minimization. In the back sub-PMAB, the high voltage level is used for fine-grained clock skew minimization. Benchmark data show that the proposed approach can effectively eliminate the clock skew with small power consumption.

相關連結

指標

1 檢視次數

詳細資料

Logo image