TOTE BAG AND METHOD OF FORMING A SIDEWALL THEREOF

    公开(公告)号:EP4434388A1

    公开(公告)日:2024-09-25

    申请号:EP23163069.0

    申请日:2023-03-21

    发明人: SCHINASI, Piero

    IPC分类号: A45C3/04 A45C5/14 A45C7/00

    摘要: There is described a tote bag (B) comprising a collapsible container body (10) made of a foldable assembly of fabric panels that are joined together to form a bottom side (15) and a sidewall (11-14) including four lateral sides (11, 12, 13, 14) that jointly define an inner storage volume when the collapsible container body (10) takes an expanded state. The sidewall (11-14) is formed of at least one side panel (10A) joined at extremities along at least one vertical connection line (STa). The four lateral sides (11, 12, 13, 14) are defined by pinching the at least one side panel (10A) to form four vertical ridges that shape the sidewall (11-14) into the four lateral sides (11, 12, 13, 14), each vertical ridge being formed by pinching of the at least one side panel (10A) along a pinching line (STCR) that does not extend fully to the bottom side (15) and stops at a distance (de) from the bottom side (15). Furthermore, each vertical connection line (STA) is positioned along the sidewall (11-14) at a location that does not coincide with any one of the vertical ridges.

    METHOD OF DETECTING AND PROCESSING SPATIALLY-DISTRIBUTED TWO-DIMENSIONAL MARKERS AND OPTICAL PEN OR STYLUS DEVICE EMBODYING THE SAME

    公开(公告)号:EP4425439A1

    公开(公告)日:2024-09-04

    申请号:EP23159950.7

    申请日:2023-03-03

    申请人: Freshape SA

    摘要: There is described a method of detecting and processing spaced-apart two-dimensional markers (C) that are distributed over a surface (S) to be imaged by means of an image acquisition sensor (10). The method comprises the following steps, namely, (a) acquiring an image (I) of at least a portion of the surface (S) by means of the image acquisition sensor (10), which image (I) includes multiple ones of said two-dimensional markers (C), (b) segmenting the image (I) acquired at step (a) into multiple sub-areas each containing a single two-dimensional marker (C), and (c) subjecting one or more of the sub-areas that contain a two-dimensional marker (C) to further processing. Segmenting the image (I) at step (b) includes (b1) sampling the image (I) at a coarse sampling resolution lower than a resolution of the image (I) to retrieve statistical data indicative of a distribution of the two-dimensional markers (C) in the image (I) acquired at step (a). Segmenting (b) also includes (b2) processing the statistical data retrieved at step (b1) to identify expected intermediate areas (AB) separating the two-dimensional markers (C) and expected marker areas (AC) containing the two-dimensional markers (C). Segmenting (b) further includes (b3) generating a segmentation mask (MSEG) based on the identification of the expected intermediate areas (AB) and marker areas (AC) at step (b2). Lastly, segmenting (b) includes (b4) segmenting the image (I) acquired at step (a) into the multiple sub-areas based on the segmentation mask (MSEG) generated at step (b3).