Title :
Tier Adaptive Body Biasing: A Post-Silicon Tuning Method to Minimize Clock Skew Variations in 3-D ICs
Author :
Kwanyeob Chae ; Xin Zhao ; Sung Kyu Lim ; Mukhopadhyay, Saibal
Author_Institution :
Sch. of ECE, Georgia Inst. of Technol., Atlanta, GA, USA
Abstract :
In this paper, we analyze the variability in a 3-D clock network designed with single and multiple through-silicon vias and present a post-silicon tuning methodology, called tier adaptive body biasing (TABB), to reduce skew and data path variability in 3-D clock trees. TABB uses specialized on-die sensors to independently detect the process corners of n-channel metal-oxide-semiconductor (nMOS) and p-channel metal-oxide-semiconductor (pMOS) devices and accordingly tune the body biases of nMOS/pMOS devices to reduce the clock skew variability. We also present the system architecture of TABB and circuit techniques for the on-die sensors. Circuit-level simulation and statistical analysis of the TABB architecture in a predictive 45-nm technology demonstrate the effectiveness of TABB in reducing the clock skew variability considering the data path variability in 3-D ICs.
Keywords :
MIS devices; elemental semiconductors; silicon; statistical analysis; three-dimensional integrated circuits; 3D IC; 3D clock network variability; 3D clock trees; TABB system architecture; circuit technique; circuit-level simulation; clock skew variability reduction; clock skew variation minimization; data path variability reduction; multiple-through-silicon vias; n-channel metal-oxide-semiconductor devices; nMOS devices; on-die sensors; p-channel metal-oxide-semiconductor devices; pMOS devices; post-silicon tuning methodology; process corner detection; single-through-silicon vias; size 45 nm; statistical analysis; tier adaptive body biasing; Clocks; Correlation; Delay; MOSFETs; Sensors; Tuning; 3-D integration; adaptive body bias; clock skew; process variation;
Journal_Title :
Components, Packaging and Manufacturing Technology, IEEE Transactions on
DOI :
10.1109/TCPMT.2013.2238581