Abstract:
The present invention provides stereoscopic prints with reduced image coarseness. A stereoscopic print comprises a lenticular lens sheet and a dot image print that is glued to the back surface of the lenticular lens sheet. Multiple image strips that form the dot image print each include a smallest unit that enables tone representation, and for each color plate, multiple reference positions are set in each of the smallest units. In forming the dot image print, amplitude-modulated screening is employed to print dots in longitudinal directions of the multiple image strips from each of the reference positions.
Abstract:
본 발명의 일 예에 따른 전자 장치의 그룹 리코딩 방법은, 다른 전자 장치와 무선 통신으로 연결을 수립하는 과정과; 촬영 대상 피사체의 촬영에 의해 생성되는 제1 이미지를 획득하는 과정과; 상기 다른 전자 장치에서부터 상기 피사체의 촬영에 의해 생성되는 제2 이미지를 획득하는 과정과; 상기 제1 이미지 및 상기 제2 이미지를 리코딩(recording)하고, 상기 제1 이미지 및 상기 제2 이미지를 디스플레이 화면에 함께 표시하는 과정을 포함하고, 상기 제2 이미지에 대응되는 제2 뷰 포인트(viewpoint)는 상기 제1 이미지에 대응되는 제1 뷰 포인트와 다르다.
Abstract:
A method for a production of a lenticular image. The method comprises feeding a lenticular printing substrate having a corrugated side and a printing side into a digital printing press, feeding at least one nontransparent ink to set a substantially nontransparent layer on a printing blanket of the printing press, feeding a plurality of colored inks to set an interlaced color image layer on top of the substantially nontransparent layer on the printing blanket, and printing with the printing blanket onto the printing side.
Abstract:
Disclosed herein is a method for determining a lenticular lens resolution for use in digital press printing. The method comprises determining a digital press machine resolution d, setting a master interlaced image resolution m for a master interlaced image such that the master interlaced image resolution is equal to the machine resolution, setting a number of frames f to be included in the master interlaced image, and determining a lenticular lens resolution L according to the relationship L = d/f. The result is a digitally output lenticular image that can be have many applications, including use in products such as containers, packages, labels, and the like. The selection process accounts for variations in digital press machine resolutions, lenticular lens resolution variations, various screening algorithms, to yield a high quality, commercial-grade digitally output lenticular image.
Abstract translation:本文公开了一种用于确定用于数字印刷中的双凸透镜分辨率的方法。 该方法包括确定数字印刷机分辨率d,为主隔行图像设置主隔行图像分辨率m,使得主隔行扫描图像分辨率等于机器分辨率,设置要包括在主隔行扫描中的帧数f 图像,并根据关系L = d / f确定双凸透镜分辨率L. 结果是可以有许多应用的数字输出透镜图像,包括用于诸如容器,包装,标签等的产品。 选择过程考虑到数字印刷机分辨率,双凸透镜分辨率变化,各种筛选算法的变化,以产生高质量的商业级数字输出透镜图像。