DocumentCode :
629111
Title :
Scalable 3D-FPGA using wafer-to-wafer TSV interconnect of 15 Tbps/W, 3.3 Tbps/mm2
Author :
Furuta, F. ; Matsumura, Takeshi ; Osada, K. ; Aoki, Masaki ; Hozawa, K. ; Takeda, Kenji ; Miyamoto, Naoyuki
Author_Institution :
3D-Integration Technol. Res. Dept., Assoc. of Super-Adv. Electron. Technol. (ASET), Tokyo, Japan
fYear :
2013
fDate :
11-13 June 2013
Abstract :
A “scalable 3D-FPGA” using TSV interconnects is proposed. This FPGA was designed on the basis of homogeneous 3D-stacking to extend the logic scale in proportion to the number of stacked layers. To improve Z-axis transmission performance, a wafer-to-wafer stacking process for lowering the capacitance of TSV was developed. An “embedded TSV“ design for the shorter on-chip wirings was also devised. Moreover, to reduce the clock skew between the stacked layers arising from global process variations, a 3D clock-synchronization scheme using a reference clock via TSVs was developed. To check connectivity between layers and improves its reliability, test and redundant circuits were embedded into the FPGA. We present the first demonstration of two stacked FPGA layers by using wafer-to-wafer via-last Cu-TSV process. Z-axis transmission performance was the highest, namely, 15 Tbps/W and 3.3 Tbps/mm2. The clock skew between two layers was reduced by 60% using the new clock scheme.
Keywords :
field programmable gate arrays; logic design; three-dimensional integrated circuits; 3D clock-synchronization; Cu-TSV process; Z-axis transmission; clock skew; embedded TSV design; homogeneous 3D-stacking; logic scale; on-chip wiring; scalable 3D-FPGA; wafer-to-wafer TSV interconnect; wafer-to-wafer stacking process; Clocks; Delays; Field programmable gate arrays; Integrated circuit interconnections; Stacking; Through-silicon vias; Tiles; 3D; FPGA; Homogeneous; TSV;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
VLSI Technology (VLSIT), 2013 Symposium on
Conference_Location :
Kyoto
ISSN :
0743-1562
Print_ISBN :
978-1-4673-5226-0
Type :
conf
Filename :
6576609
Link To Document :
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