Download Switch-Level Timing Simulation of MOS VLSI Circuits (The by Vasant B. Rao, David V. Overhauser, Timothy N. Trick, Visit PDF

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Merely twenty years in the past so much digital circuits have been designed with a slide-rule, and the designs have been established utilizing breadboard suggestions. Simulation instruments have been a learn interest and normally have been mistrusted through such a lot designers and attempt engineers. In these days the courses weren't person pleasant, types have been insufficient, and the algorithms weren't very strong. The call for for simulation instruments has been pushed via the expanding complexity of built-in circuits and platforms, and it's been aided through the fast reduce within the expense of com­ puting that has happened during the last numerous many years. this day a variety of instruments exist for research, layout, and verification, and specialist structures and synthesis instruments are quickly rising. during this ebook just one element of the research and layout approach is tested. however it is an important element that has got a lot consciousness through the years. it's the challenge of exact circuit and timing simulation.

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Additional resources for Switch-Level Timing Simulation of MOS VLSI Circuits (The Springer International Series in Engineering and Computer Science)

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Vedremo comunque, con qualche esempio che la loro presenza non comporta particolari difficolt` a nello studio di un circuito. A conclusione di questo paragrafo val la pena sottolineare che nella realt` a fisica non esistono generatori ideali, n´e di tensione n´e di corrente. Tuttavia, i generatori, intesi come dispositivi fisici, sono progettati in modo tale che, se operano in condizioni di funzionamento “nominali” (ad esempio, l’intensit` a di corrente, in valore assoluto, di un generatore di tensione non supera un valore fissato, caratteristico del generatore o la potenza effettivamente erogata non supera un valore fissato anch’esso caratteristico del generatore) si comportano, con eccellente approssimazione, come se fossero generatori ideali.

Evidente allora che per ogni circuito fisico esiste una frequenza caratteristica E al di sopra della quale il modello circuitale non `e pi` u valido. 6 Bipoli a-dinamici fondamentali Gli elementi circuitali a due terminali, cio`e i bipoli, rivestono un ruolo fondamentale nella teoria dei circuiti. 6 Bipoli a-dinamici fondamentali 25 fondamentali e le loro principali propriet` a. Prima di cominciare ad introdurli, per` o, `e opportuno premettere alcuni concetti importanti per la loro classificazione, che come vedremo si estendono poi ad elementi pi` u complessi.

Naturalmente per consentire ad un resistore di dissipare una maggiore potenza, mantenendo la sua temperatura entro limiti accettabili, il modo pi` u semplice `e quello di aumentare la superficie di scambio termico con l’ambiente circostante, di modo che aumenti la quantit` a di calore ceduta nell’unit` a di tempo. D’altra parte superfici pi` u grandi comportano volumi maggiori e quindi, in generale, la dimensione del resistore `e indice della sua capacit` a di dissipare potenza. 40) dove e(t) `e una funzione assegnata, indipendente dall’intensit` a di corrente del generatore.

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