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Clock skew optimization

IEEE Transactions on Computers · 1990 · Vol. 39(7) · pp. 945–951
J.P. Fishburn

Abstract

Improving the performance of a synchronous digital system by adjusting the path delays of the clock signal from the central clock source to individual flip-flops is investigated. Using a model to detect clocking hazards, two linear programs are investigated: (1) minimizing the clock period, while avoiding clock hazards, and (2) for a given period, maximizing the minimum safety margin against clock hazard. These programs are solved for a simple example, and circuit simulation is used to contrast the operation of a resulting circuit with the conventionally clocked version. The method is extended to account for clock skew caused by relative variations in the drive capabilities of N-channel versus P-channel transistors in CMOS.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Low-power high-performance VLSI designVLSI and Analog Circuit TestingRadiation Effects in ElectronicsClock skewDigital clock managerClock domain crossingSynchronous circuitComputer scienceClock gatingSkewFLOPSClock signalCMOS
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References
Practical optimization
European Journal of Operational Research · 1982 · 4,170 citations
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