DocumentCode
3276123
Title
Practical completion detection for 2-of-N delay-insensitive codes
Author
Cannizzaro, Marco ; Jiang, Weiwei ; Nowick, Steven M.
Author_Institution
Politec. di Torino, Turin, Italy
fYear
2010
fDate
3-6 Oct. 2010
Firstpage
151
Lastpage
158
Abstract
There is increasing interest in using m-of-n delay-insensitive codes for robust asynchronous global communication, to support the design of coding-efficient and low-power channels. However, a fundamental obstacle in using these codes has been complex and expensive hardware support. This paper addresses this issue, introducing and evaluating practical completion detector units for 2-of-n codes. Designs are proposed for both return-to-zero (RZ) and non-return-to-zero (NRZ) codes. The RZ designs build on prior work of Piestrak [14]; this paper proposes a small modification to their work to provide a fully timing-robust (i.e. quasi-delay insensitive, or QDI) version. The main contribution of the paper is an efficient completion for NRZ 2-of-n codes. Both detector architectures are modular and simple, composed of basic cells in a binary tree. Initial simulation results were performed on several implementations of a 2-of-9 detector using Cadence´s Spectre environment, after mapping to a 90nm standard cell library. The new RZ detector has 35% area reduction and comparable delays and energy to the earlier Piestrak design, but unlike the latter, ensures robust QDI operation. The new NRZ detector is shown to have negligible stabilization time between successive codewords (0.05-0.19 ns) when compared to a recent alternative approach.
Keywords
circuit analysis computing; codes; 2-of-N delay-insensitive codes; Cadence spectre environment; low-power channels; non-return-to-zero codes; practical completion detection; retum-to-zero codes; robust asynchronous global communication; Detectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Design (ICCD), 2010 IEEE International Conference on
Conference_Location
Amsterdam
ISSN
1063-6404
Print_ISBN
978-1-4244-8936-7
Type
conf
DOI
10.1109/ICCD.2010.5647809
Filename
5647809
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