In order to obtain an automatically generated and realistic natural high-resolution network cable, it is necessary to integrate different technologies.

The overclocking screening technology uses FM mesh points to capture details in the bright and dark tone areas, and uses amplitude-modulated mesh points to achieve a smooth gradient in the middle tone area.

In addition, to achieve a smooth transition at the point of transition, we must also take into account the printing limit of the printing press.

In fact, the overclocking screening technology uses the FM outlets in the bright and dark tone areas, and uses the AM outlets in the middle tone to achieve a smooth transition at the outlets. Accurately calculating the image is no longer limited to switching between the AM and FM mesh points. For example, when reproducing a highlight zone, the AM dots will gradually become smaller to the minimum size that can be copied on the fly, and then fade out to replace the FM dots. In the same way, the dark tone area is also a smooth transition from one type of point to another, leaving no trace at the junction. The dots in the highlights and shadows may appear to be random, but not truly random. The FM network area uses a small dot network under the control of the FM mode. It is arranged in a certain angle line shape, which becomes the extension of the AM channel line to determine the angle of the AM cable. As a result, a brand new dot arrangement emerges, so it is named overclocking and screening.

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