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Titlebook: Asynchronous Sequential Machine Design and Analysis; A Comprehensive Deve Richard F. Tinder Book 2009 Springer Nature Switzerland AG 2009

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Marc-Olivier Coppens,Benoit B. Mandelbrot, it is the function of an arbiter to arbitrate and grant first access to only one of the competing inputs. This is especially important in Huffman circuits that operate in the fundamental mode. It is for this reason that we opt to design quasi-Muller circuits by using C-elements in the design of mo
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Fractal Zeta Functions and Fractal Drums Conversion between these models will require an extension of the mapping algorithm given in Section 1.6. The reader will find that conversion between these models is, in effect, a quasi-conversion between Huffman and Muller designs—a powerful tool for use by a knowledgeable designer.
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Marc-Olivier Coppens,Benoit B. MandelbrotBefore continuing, the reader should review Chapter 5, which provides the necessary background to understand one-hot asynchronous sequencers. In particular, Eqs. (5.1) and the characteristics of the one-hot method outlined in Section 5.2 should be thoroughly understood before moving on to the more complex subject matter in this chapter.
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Design of Single Transition Time Machinesd timing defects, namely, critical races and output race glitches (ORGs). This class of fundamental mode FSMs are commonly called . Here, state code assignments must be found that will eliminate critical races and ORGs while at the same time producing next state (NS) functions that represent the fas
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Design of One-Hot Asynchronous FSMsur-state state code assignment would be 0001, 0010, 0100, 1000, where a transition between any two states represents a Hamming distance of 2. Thus, . states each require . state variables. In a one-hot circuit, each state-to-state transition requires that the active “1” of the origin state remain ac
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Design of Pulse Mode FSMsin timing defects that could cause the asynchronous finite state machine (FSM) to malfunction. Asynchronous state machines that are designed to operate with nonoverlapping pulsed inputs and that operate with “data triggered” memory elements are called . sequential machines. The pulse mode approach o
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