Abstract:
An illuminative ball contains: an opening defined on the illuminative ball; and a fixing mount connected with the illuminative ball and corresponding to the opening to fix an illuming unit. The fixing mount is made of flexible plastic or rubber, and the illuming unit has at least one cell, a LED light, and a sensing switch, wherein a fitting sleeve is fitted with an outer wall of the illuming unit and is made of flexible plastic or rubber to fix the at least one cell tightly, and a flexible cap is fitted into the opening of the illuminative ball and positions the illuming unit. The fixing mount has a retaining groove defined adjacent to a top end of the fixing mount, and the flexible cap has a locking rib extending outwardly from a bottom end thereof to retain with the retaining groove of the fixing mount.
Abstract:
A method and system for providing a three-dimensional (3D) display. A variable length z-axis is added to each of plural (x,y) cells in a two-dimensional (2D) Cartesian plane creating plural three-dimensional (3D) cells each with a x, y and z axis. The z-axis includes a variable length light source for each of the plural x-y cells. The z-axis also includes a space vector including time and space information. A 3rd dimension is created by changing a length of the light source. A 2D image cell at (x, y) is moved along the 3D z-axis (x, y, zα) with viewing angle (α) to create a converted 3D image. An original 2D image adding z-axis with a space vector can be viewed as a 3D image on any network device (e.g., smart phone, tablet, wearable device, TV, etc.) without additional devices such as 3D glasses, 3D set-top boxes, etc.