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Titlebook: Analog VHDL; Andrzej T. Rosinski,Alain Vachoux Book 1998 Springer Science+Business Media New York 1998 VHDL.analog.circuit.modeling.networ

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https://doi.org/10.1007/978-0-387-09560-8This Special Issue of Analog Integrated Circuits and Signal Processing is dedicated to the application of the VHDL hardware description language to the design of analog and mixed-signal circuits and systems.
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EditorialThis Special Issue of Analog Integrated Circuits and Signal Processing is dedicated to the application of the VHDL hardware description language to the design of analog and mixed-signal circuits and systems.
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Discrete Approach to PWL Analog Modeling in VHDL Environmentnvironment. Since the models are based on some explicit formulas, fully behavioral architectural bodies have been proposed for them. Their most distinguishing features are discussed in detail. The models of practical circuits are illustrated with simulation results.
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Biological Control of Pestilencenvironment. Since the models are based on some explicit formulas, fully behavioral architectural bodies have been proposed for them. Their most distinguishing features are discussed in detail. The models of practical circuits are illustrated with simulation results.
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Biological Control of Pestilence formed of three levels in order to satisfy the different requirements of the CAD tools which may incorporate the models. The presented models include all the nonidealities present in the actual circuit in addition to being flexible and consuming shorter simulation time. This improvement in simulati
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Dynamic Modeling of Diseases and Pestssuch techniques must now be extended. Analog simulation is slow and fault simulation can be prohibitively expensive because of the large number of potential faults. We describe how the number of faults to be simulated in an analog circuit can be reduced by fault collapsing, and how the simulation ti
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