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A new RLC crosstalk noise expression, based on an RLC transmission line model propagating each propagation mode, has recently been proposed and has been validated in previous works. From this expression, we propose in this paper to calculate the noise characteristics such as the maximum amplitude and the noise pulsewidth. Generally, it is better to use closed form expressions instead of simulation...
In this paper, from a new crosstalk noise expression based on an RLC transmission line model associated to each propagation mode, analytical expressions to predict noise amplitude and pulsewidth with a good level of accuracy are proposed. These simplified analytical expressions are sufficiently accurate to be effectively incorporated in noise calculators.
To analyze at which rise/fall times the inductance effect appears in DSM interconnects, the author develops a methodology versus the input line transition time to be technology-independent. These lines are modeled as RC and RLC distributed lines, and the two models are compared to define the effects caused by neglecting inductance. The goal of this study is, based upon the discrepancy between RC and...
Constant evolution in integrated circuit technology has led to an increase in the switching speed of the digital chip. As a result, there is a growing interest in the inductance associated with signal lines. Inductive coupling effects on interconnects is an emerging concern in high performance digital integrated circuits. Based on an RLC transmission line model, associated to each propagation mode,...
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