DocumentCode :
157543
Title :
Synthesis of QDI FSMs from Synchronous Specifications
Author :
Fu-Chiung Cheng ; Yuan-Feng Chen ; Shu-Chuan Huang ; Ching Yang Huang
Author_Institution :
Dept. of Comput. Sci. & Eng., Tatung Univ., Taipei, Taiwan
fYear :
2014
fDate :
12-14 May 2014
Firstpage :
61
Lastpage :
68
Abstract :
Quasi-Delay insensitive (QDI) circuits are the most robust and practical that can be built and are resilient to process, temperature and voltage (PVT) variations. Although there are many research papers that can translate synchronous designs into asynchronous sequential designs, to the best of our knowledge, there is neither QDI finite state machine (FSM) models proposed nor algorithms or tools designed. Three QDI FSM (QFSM) designs (i.e. NCLD, NCLX and ROC QFSMs) are proposed and an algorithm to automatically synthesize QFSMs from synchronous FSM specifications in Verilog is designed and implemented in Java. One of the distinguish feature is that the behaviors of our QFSMs are the same as those of the corresponding synchronous FSMs in terms of functionality. This greatly simplifies the verification complexity and reduces verification cost. Two sets of FSM circuits (i.e. verifiable benchmark circuits and ISCAS89) are exploited to carry out verification and performance evaluation. The experimental results show that ROCopt QFSMs use the least hardware cost and consume lowest energy in average.
Keywords :
asynchronous circuits; cost reduction; delay circuits; finite state machines; logic design; sequential circuits; Java; PVT variations; QDI FSM synthesis; ROCopt QFSMs; Verilog; asynchronous circuits; asynchronous sequential designs; energy consumption; finite state machine model; performance evaluation; process temperature and voltage variations; quasidelay insensitive circuits; synchronous FSM specifications; synchronous circuits; synchronous designs; verification complexity; verification cost reduction; Combinational circuits; Integrated circuit modeling; Latches; Logic gates; Registers; Robustness; Wires; C-element; Dual-rail signals; QDI Combinational Logic; QDI FSMs;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Asynchronous Circuits and Systems (ASYNC), 2014 20th IEEE International Symposium on
Conference_Location :
Potsdam
ISSN :
1522-8681
Type :
conf
DOI :
10.1109/ASYNC.2014.16
Filename :
6835812
Link To Document :
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