Brief Analysis of Overclocking Screening Production Capacity and Printing Performance

Overclocking screening technology can complete a 180-line/inch network cable reproduction with a resolution of 1270dpi. When the maximum dot-line number is 340 lines/inch, the required resolution is only 2400dpi. The printing press is a part of the image reproduction system. The overclocking screening technology is used as a guideline. In fact, there are platesetters, plates, chemicals, printers, blankets, inks, and paper that need to be considered. In the prepress process, it is necessary to create the tone curve required for each production network cable. The commonly used production line number is 210 lines/inch, 240 lines/inch, 280 lines/inch and 340 lines/inch.

The traditional AM outlets are better than FM outlets, and the printing process is more stable and more tolerant. Because overclocking screens are similar to AM screens, prepress operators can move, adjust, and preserve color as they would with traditional AM booths. However, with the increase of resolution, the stability of the modulation sites in the bright tone and dark tone areas will decrease, and the performance of the FM tone points will be reversed. Overclocking screening technology combines the advantages of both and extends the range of on-board stability.

When the number of lines is 340 lines/inch, the minimum screen point for over-screening is not less than 2% of the screen points with 175 lines/inch, so the detail and smooth transition can be easily reproduced during printing. No matter how fine and complex the image is, it can be easily completed, and it can avoid the appearance of typical defects such as moire when imaging AM sites. Even if the distribution of the dots is so fine, mixed color dots will not appear on the color image and the flat screen surface, and they will be created with C, M, Y, and K primary colors. The overclocking screening technology utilizes AM outlets to overcome the shortcomings of non-responsive color changes in the FM network, maintain gray balance, overcome the limitations of the ink sequence, and the effects of changes in speed and temperature.

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