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For the conventional SONOS memory, erase saturation and vertical stored charge migration [79, 80] are the two major drawbacks; the most challenging tasks are how to maintain an acceptable charge capability of the discrete storage nodes and how to fabricate nanocrystals with constant size, high density, and uniform distributions [81].
We continued to find no effect of memory on saturation of matches.
The previous analyses showed no systematic relationship between the fidelity of memory and the saturation or hue of cubes.
First, we examined whether memory increased the saturation of color matches (Bartleson, 1960; de Fez et al., 2001; Newhall et al., 1957; Siple & Springer, 1983).
At low tunnel oxide thickness, the issues that impact SONOS-type memories include erase saturation and vertical charge migration, which seriously degrade the retention capability of the memory [75].
In each panel, the solid line represents increasing saturation: if memory were saturated compared to perception, then the average memory match (solid green symbol) would fall somewhere along this line.
We discuss whether these differences are dependent on working memory limitations or idea saturation during conceptual designing.
The chapter discusses different types of nonlinearities sneaky nonlinearities, nonlinearities with memory, surface nonlinearities, actuator saturation, friction, and hysteresis through illustrative examples.
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