Several approaches for the hardware–software co-design of finite state machines complete this chapter. In all these cases non-deterministic finite state machines are utilized that contribute to the synthesis of optimized sequential circuits. For the synthesis of synchronous sequential circuits, we explain a very efficient approach that avoids the explicit calculation of the memory-functions but directly computes the controlling functions of the flip-flops. English Deutsch Français Español Português Italiano Român Nederlands Latina Dansk Svenska Norsk Magyar Bahasa Indonesia Türkçe Suomi Latvian Lithuanian esk. The common synthesis task can be realized by the solution of the system-equation with regard to memory-variables and output-variables. Sequential Model 700 Programmer Operations Manual - Lojinx. The synthesis task must take these peculiarities also into account hence, we explain synthesis methods separately for asynchronous and synchronous sequential circuits. Therefore, we describe the analysis of asynchronous and synchronous sequential circuits in separate sections. The behavior of these two types of sequential circuits can be calculated using the same basic approach however, there are peculiarities that must be considered. We introduce models that can be used to describe either the behavior or the structure of several realizations of both asynchronous and synchronous sequential circuits. Sequential circuits are technical realizations of finite state machines. The behavior of finite state machines is determined not only by the input-values but also by the internal states.
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