DocumentCode
32893
Title
DArT: A Component-Based DRAM Area, Power, and Timing Modeling Tool
Author
Hsiu-Chuan Shih ; Pei-Wen Luo ; Jen-Chieh Yeh ; Shu-Yen Lin ; Ding-Ming Kwai ; Shih-Lien Lu ; Schaefer, Anna ; Cheng-Wen Wu
Author_Institution
Nat. Tsing Hua Univ., Hsinchu, Taiwan
Volume
33
Issue
9
fYear
2014
fDate
Sept. 2014
Firstpage
1356
Lastpage
1369
Abstract
DRAM renovation calls for a holistic architecture exploration to cope with bandwidth growth and latency reduction need. In this paper, we present DRAM area power timing (DArT), a DRAM area, power, and timing modeling tool, for array assembly and interface customization. Through proper design abstraction, our component-based modeling approach provides increased flexibility and higher accuracy, making DArT suitable for DRAM architecture exploration and performance estimation. We validate the accuracy of DArT with respect to the physical layout and circuit simulation of an industrial 68 nm commodity DRAM device as a reference. The experiment results show that the maximum deviations from the reference design, in terms of area, timing, and power, are 3.2%, 4.92%, and 1.73%, respectively. For an architectural projection by porting it to a 45 nm process, the maximum deviations are 3.4%, 3.42%, and 8.57%, respectively. The combination of modeling performance, flexibility, and accuracy of DArT allows us to easily explore new DRAM architectures in the future, including 3-D stacked DRAM.
Keywords
DRAM chips; flexible electronics; integrated circuit modelling; timing circuits; 3D stacked DRAM; DRAM architecture exploration; DRAM area power timing; array assembly; component-based modeling approach; interface customization; performance estimation; timing modeling tool; Arrays; Delays; Integrated circuit modeling; Random access memory; Wires; 3-D DRAM; DRAM; architecture exploration; modeling and simulation; performance estimation;
fLanguage
English
Journal_Title
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0278-0070
Type
jour
DOI
10.1109/TCAD.2014.2323203
Filename
6879579
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