DocumentCode
1805779
Title
Fine-Grain Cell Design for Multiple-Valued Reconfigurable VLSI Using a Single Differential-Pair Circuit
Author
Munirul, Haque Mohammad ; Kameyama, Michitaka
Author_Institution
Tohoku University, Japan
fYear
2006
fDate
17-20 May 2006
Firstpage
13
Lastpage
13
Abstract
This paper presents a fine-grain cell design for a Multiple-Valued (MV) reconfigurable VLSI using a single Differential-Pair Circuit (DPC). The VLSI involves a bitserial localized data transfer architecture. The cell consists of a Multiple-Valued Source-Coupled Logic (MVSCL)- based threshold logic gate, a dynamic latch and a switch block. The threshold logic gate consists of only one universal comparator. A single DPC is used as a component of the universal comparator. By using programmable current sources for the DPC, the driving capability of the cell and the weight of the output can be changed according to the reconfigured information. The DPC compares a multiplevalued (MV) input with a threshold which is provided by a programmable threshold voltage generator. This leads to the high utilization of the cell because almost all the universal comparators in the VLSI chip can be utilized effectively without idle states. Furthermore, fine-grain pipelining increases the throughput of the VLSI. The VLSI is designed using 0.18ìm CMOS standard design rule. HSPICE simulation results show that, the throughput and the power consumption are greatly improved in comparison with the equivalent VLSI reported until now.
Keywords
Circuits; Energy consumption; Latches; Logic gates; Pipeline processing; Reconfigurable logic; Switches; Threshold voltage; Throughput; Very large scale integration;
fLanguage
English
Publisher
ieee
Conference_Titel
Multiple-Valued Logic, 2006. ISMVL 2006. 36th International Symposium on
ISSN
0195-623X
Print_ISBN
0-7695-2532-6
Type
conf
DOI
10.1109/ISMVL.2006.22
Filename
1623965
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