Timing

Specificaties
Gebonden, 294 blz. | Engels
Springer US | 2004e druk, 2004
ISBN13: 9781402076718
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Springer US 2004e druk, 2004 9781402076718
€ 216,99
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Samenvatting

Statistical timing analysis is an area of growing importance in nanometer te- nologies‚ as the uncertainties associated with process and environmental var- tions increase‚ and this chapter has captured some of the major efforts in this area. This remains a very active field of research‚ and there is likely to be a great deal of new research to be found in conferences and journals after this book is published. In addition to the statistical analysis of combinational circuits‚ a good deal of work has been carried out in analyzing the effect of variations on clock skew. Although we will not treat this subject in this book‚ the reader is referred to [LNPS00‚ HN01‚ JH01‚ ABZ03a] for details. 7 TIMING ANALYSIS FOR SEQUENTIAL CIRCUITS 7.1 INTRODUCTION A general sequential circuit is a network of computational nodes (gates) and memory elements (registers). The computational nodes may be conceptualized as being clustered together in an acyclic network of gates that forms a c- binational logic circuit. A cyclic path in the direction of signal propagation 1 is permitted in the sequential circuit only if it contains at least one register . In general, it is possible to represent any sequential circuit in terms of the schematic shown in Figure 7.1, which has I inputs, O outputs and M registers. The registers outputs feed into the combinational logic which, in turn, feeds the register inputs. Thus, the combinational logic has I + M inputs and O + M outputs.

Specificaties

ISBN13:9781402076718
Taal:Engels
Bindwijze:gebonden
Aantal pagina's:294
Uitgever:Springer US
Druk:2004

Inhoudsopgave

Preduction/Introface.- A Quick Overview of Circuit Simulation.- Frequency-Domain Analysis of Linear Systems.- Timing Analysis for a Combinational Stage.- Timing Analysis for Combinational Circuits.- Statistical Static Timing Analysis.- Timing Analysis for Sequential Circuits.- Transistor-Level Combinational Timing Optimization.- Clocking and Clock Skew Optimization.- Retiming.- Conclusion.
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