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Asynchronous paradigm is another option for the project of digital systems. Several design styles can be used, where the micropipeline style is the most suitable one for FPGA platforms because it has a simpler control. It is proposed new pipeline architecture to implement asynchronous systems, in bundled-data micropipeline style, having FPGAs as target devices. One drawback of the bundled-data design...
Complex synchronous digital systems can be implemented on FPGAs (Field Programmable Gate Arrays), but due to the global clock, might have problems with clock skew, performance degradation and increased of power consumed. An alternative to these designs is the asynchronous paradigm that solves the problems related to the clock. However it is difficult to design asynchronous circuits, especially in...
FPGAs have been mainly used for designing of synchronous controllers. However, it is difficult to design asynchronous controllers on them because the circuit may suffer from hazard problems. This paper presents a method that implements a class of asynchronous controllers on FPGAs which are based on Look-Up Table (LUT) architectures. Asynchronous controllers specification used in heterogeneous (synchronous...
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