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    • 2. 发明申请
    • SMART MAGIC CUBE CONTROLLER
    • US20220260969A1
    • 2022-08-18
    • US17624640
    • 2019-12-25
    • Gree Electric Appliances, Inc. of Zhuhai
    • Xiaomin WuZehan TanShengjie LinShaobin LiYanyu ChenShengshi YeRu Li
    • G05B19/418G05B15/02A63F9/08
    • Disclosed is a smart magic cube controller. The smart magic cube controller includes: a controller body (1), the controller body (1) has a plurality of surfaces, and at least one surface of the controller body (1) is configured to be a display module (2); an posture sensing module (3); and a control module (4) in signal connection with the posture sensing module (3), wherein the control module (4) is configured to determine a current top surface of the controller body (1) according to placement state information collected by the posture sensing module (3), and transmits, according to the determined current top surface, a scene mode control instruction corresponding to the current top surface, and when the display module (2) is located on a surface, other than the current top surface and the bottom surface of the controller body (1), the control module (4) is configured to control a display picture of the display module (2) to be displayed upright. The smart magic cube controller is simple to operate and convenient to use; the display module (2) is arranged on a surface of the controller body (1), such that scene mode content of corresponding surfaces can be displayed; and a display picture of the display module (2) can always be displayed upright, thereby facilitating viewing and identifying.
    • 4. 发明授权
    • Smart cube
    • US11311795B1
    • 2022-04-26
    • US17152497
    • 2021-01-19
    • OPTOLOGICS CO., LTD.
    • Unha LeeChangsu JungSangmin Lee
    • A63F9/08A63F9/06
    • A smart cube is disclosed. An embodiment of the present disclosure may provide a smart cube, comprising: a main frame; and a plurality of unit blocks coupled to the main frame and constituting six faces of a regular hexahedron, wherein the unit block comprises: a display unit disposed on a surface of the unit block that is exposed to an outside; and a plurality of terminals disposed on a facing surface of the unit block facing another unit block for transferring electric power and data for the display unit, wherein the terminal is retrievably disposed in an insertion hole formed on the facing surface of the unit block, and wherein the terminal includes a permanent magnet for allowing a polarity of a retrieved end of the terminal to be opposite to a polarity of a retrieved end of a terminal of the other unit block such that the terminal is retrieved from the insertion hole and adhered to the terminal of the other unit block by a magnetic force.
    • 6. 发明申请
    • MEANINGFUL COMBINATION GENERATING LOGIC CUBE
    • US20220032171A1
    • 2022-02-03
    • US16944114
    • 2020-07-30
    • Harshad Bhavsar
    • Harshad Bhavsar
    • A63F9/08A63F3/04
    • A logic cube for teaching, learning, entertainment and motivation is presented. The logic cube has indicia arranged in well-defined orientations including radial symmetry, pairing pattern and triple logic. The pairing pattern helps to generate meaningful combinations for applications involving sets of two (2). The triple logic helps to generate meaningful combinations for applications involving sets of three (3). Radial symmetry helps generate meaningful combinations involving a greater number of indicia. Applying the exclusion logic helps to avoid meaningless or undesirable combinations and ambigrams help to include indicia which can be read in multiple orientations. The invention of logic cube provides a new function which can be applied to numerous areas such as science, arts, food, fashion, motivation and general education and it provides a novel experience as compared to prior art. The invention of logic cube could be applied to other geometric shapes such as tetrahedron (Pyraminx®) and dodecahedron (Megaminx®) and sizes other than 3×3×3.
    • 7. 发明申请
    • 3-DIMENSIONAL LOGIC GAME
    • US20210339118A1
    • 2021-11-04
    • US17262322
    • 2019-07-22
    • LavosBall Kft.
    • János SZABOLCS
    • A63F9/08A63F9/34
    • The invention relates to a 3-dimensional logic game comprising a support structure (20, 70), an actuating structure (30, 80) attached to the support structure (20, 70) and game elements attached to the actuating structure (30, 80), characterised by that the game elements are formed as carriages (60) provided with first and second marking surfaces (62a, 62b) and being slidably mounted on rails (40) attached to the actuating structure (30, 80); the actuating structure (30, 80) is movable between a first and a second rest position, in the first rest position first groups of three rails (40) form first rail rings (48) around vertices (104) of a first tetrahedron (100) wherein the first marking surfaces (62a) of the carriages (60) are facing outwardly, in a direction away from a geometric centre (S) of the first tetrahedron (100) while the second marking surfaces (62b) are facing inwardly, and the first ring rails (48) allow for sliding the carriages (60) on the neighbouring rails (40); and in the second rest position of the actuating structure (30, 80) second groups of three rails (40) form second rail rings (48) around vertices (204) of a second tetrahedron (200) being the point reflection of the first tetrahedron (100) reflected over the geometric centre (S) thereof, wherein each rail (40) forms one of the second rail rings (48′) around one of the vertices (204) of the second tetrahedron (200) together with the two rails (40) that are positioned closest to it around neighbouring vertices (104) of the first tetrahedron (100) in the first rest position, and on the second rail rings (48) the second marking surfaces (62b) of the carriages (60) are facing outwardly, in a direction away from a geometric centre (S) of the second tetrahedron (200) while the first marking surfaces (62a) are facing inwardly, and the second ring rails (48′) allow for sliding the carriages (60) on the neighbouring rails (40); the support structure (20) comprises pushing bars (22) having skew axis with respect to each other that are arranged along medians (102, 202) of the first and second tetrahedrons (100, 200), and the actuating structure (30) comprises double-armed actuating elements (32) the arms (34) of which are each attached to one of the pushing bars (22).
    • 8. 发明申请
    • IMPROVED YOSHIMOTO CUBE AND POLYHEDRON
    • US20210275904A1
    • 2021-09-09
    • US17258612
    • 2020-01-30
    • R.E.F. GUENZANI S.R.L.
    • Filippo Guenzani
    • A63F9/12A63F9/08
    • A polyhedron (100) configured to be removably coupled by shape with another polyhedron (200) to form a Yoshimoto cube (1), such polyhedron (100) comprising: eight half-cubes (101, 102) equal to each other, each of which being delimited by three outer faces (1011, 1012, 1013), having a substantially square configuration, arranged orthogonally to each other whereby each outer face (1011, 1012, 1013) is delimited by two edges (10111, 10112) in common with the other outer faces (1012, 1013) and two free edges (10113, 10114), and by 6 inner faces (1014, 1015, 1016, 1017, 1018, 1019), having a substantially triangular configuration, wherein each inner face (1014, 1015, 1016, 1017, 1018, 1019) extends between a vertex (V), in common with the other inner faces of the half-cube (101), substantially coinciding with the geometric centre of a cube delimited by said three outer faces (1011, 1012, 1013), and a respective base, corresponding to a free edge (10113) between two free edges of one of said outer faces (1011, 1012, 1013); and eight hinge members (300), each configured to connect a free edge (10113, 10113′) of each half-cube (101, 101′) with a free edge (10113′, 10113) of another half-cube (101′, 101) adjacent thereto, wherein each hinge member (300) comprises at least one axis of rotation (301) around which the two half-cubes (101,101′) connected by such hinge member (300) may mutually move; characterized in that each hinge member (300) of such polyhedron (100): extends along each of the two free edges (10113, 10113′) of the two respective adjacent half-cubes (101, 101′) connected by the hinge member (300), starting from a same end of each free edge (10113, 10113′) of the two free edges and for an overall length lower than the length of each free edge (10113, 10113′), optionally substantially other than or equal to half the length of each free edge (10113, 10113′), defines an axis of rotation (301) parallel to each free edge (10113, 10113′), and allows a mutual angular movement between the two respective adjacent half-cubes (101, 101′) connected by it, comprised between a first configuration, wherein the outer faces delimited by the respective free edges (10113, 10113′), at which the connection with the hinge member (300) is made, match, and the corresponding portions of the respective free edges (10113, 10113′) which are not connected by the hinge member (300) delimit a first housing seat (3021), configured to support a possible corresponding hinge member (400) of the other polyhedron (200); and a second configuration, wherein the outer faces delimited by the respective free edges at which the connection is made are thereby arranged along a same plane, spaced apart from each other, and thus delimit, between the respective free edges at which the connection with the hinge member (300) is made, a second housing seat (3022) configured to house, substantially to size, a possible corresponding hinge member (400) of the other polyhedron (200).
    • 9. 发明授权
    • Apparatus, system and method for sensing a state of a cubic puzzle
    • US11077359B1
    • 2021-08-03
    • US16983569
    • 2020-08-03
    • Bryght Labs, Inc.
    • Jeffrey Bowman Wigh
    • A63F9/08A63F9/24
    • According to another aspect, a method of determining a current state of a cubic puzzle independent of information concerning a prior state of the cubic puzzle using at least one RGB sensor. With the cubic puzzle maintained in a first state, (a) illuminating a first colored surface selected from the plurality of colored surfaces with a single source of light selected from the plurality of sources of light because of an association with the first colored surface and sensing a color of the first colored surface with the RGB sensor when the first colored surface is illuminated. Repeating act (a) by separately illuminating each of the plurality of colored surfaces with a respective single source of light selected from the plurality of sources of light because of an association between the respective single source of light and the respective colored surface that is being illuminated, and act of processing the colors sensed by the RGB sensor at each of the preceding acts to determine a location and orientation of each of the plurality of tiles with the cubic puzzle in the first state.