Device for securing a smart watch to a charger
View Patent ↗The device for securing a smart watch to a charger is a mechanical structure. The device for securing a smart watch to a charger comprises a binding structure, a watch structure, and a wireless power circuit. The binding structure contains the wireless power circuit and the watch structure. The watch structure is an electrically powered instrument. The wireless power circuit is an inductive charging device. The wireless power circuit provides the watch structure with the electric energy necessary for the operation of the watch structure. The binding structure binds the watch structure to the wireless power circuit with a tight fit.
1 . A device for securing a smart watch to a charger comprising a binding structure, a watch structure, and a wireless power circuit;
wherein the binding structure contains the wireless power circuit and the watch structure such that the watch structure does not become disengaged from the wireless power circuit;
wherein the binding structure comprises an elastic disk, an elastic loop, and a post structure;
wherein the elastic loop and the post structure attach to the elastic disk;
wherein the elastic disk is a foldable structure such that the elastic disk folds around the watch structure and the wireless power circuit such that the watch structure and the wireless power circuit are sandwiched within the elastic disk thereby securing the watch structure to the wireless power circuit;
wherein the elastic disk further comprises a first congruent end, a second congruent end, and a lateral face structure;
wherein the first congruent end is a congruent end of the disk structure of the elastic disk;
wherein the first congruent end is the face of the elastic disk with a greatest surface area;
wherein the elastic disk folds onto itself such that the watch structure and the wireless power circuit is sandwiched within the first congruent end of the elastic disk;
wherein the second congruent end is a congruent end of the disk structure of the elastic disk;
wherein the second congruent end is the face of the elastic disk that is distal from the first congruent end;
wherein the second congruent end forms the exterior surface of the binding structure when the watch structure and the wireless power circuit are sandwiched within the binding structure;
wherein the lateral face structure forms the lateral face of the disk structure of the binding structure.
2 . The device for securing a smart watch to a charger according to claim 1 wherein the watch structure is an electrically powered instrument;
wherein the wireless power circuit is an inductive charging device;
wherein the wireless power circuit provides the watch structure with the electric energy necessary for the operation of the watch structure.
3 . The device for securing a smart watch to a charger according to claim 2 wherein the binding structure binds the watch structure to the wireless power circuit.
4 . The device for securing a smart watch to a charger according to claim 3 wherein the watch structure is a measurement device;
wherein the watch structure measures the passage of time.
5 . The device for securing a smart watch to a charger according to claim 4 wherein the wireless power circuit is an electrical circuit;
wherein the wireless power circuit powers the operation of the watch structure;
wherein the wireless power circuit: a) draws ac electrical energy from a national electric grid; and, b) wirelessly broadcasts the ac electrical energy received from the national electric grid to the watch structure.
6 . The device for securing a smart watch to a charger according to claim 5 wherein the binding structure is an elastic structure;
wherein the binding structure contains the watch structure and the wireless power circuit;
wherein the binding structure holds the watch structure in a fixed position relative to the wireless power circuit.
7 . The device for securing a smart watch to a charger according to claim 6 wherein the binding structure folds around the watch structure and the wireless power circuit.
8 . The device for securing a smart watch to a charger according to claim 7 wherein the binding structure is an elastic structure;
wherein the binding structure is a fastening device;
wherein the binding structure binds the watch structure to the wireless power circuit;
wherein the binding structure secures the watch structure to the wireless power circuit such that the position of the watch structure relative to the wireless power circuit is fixed.
9 . The device for securing a smart watch to a charger according to claim 8 wherein the binding structure has the primary shape of a disk;
wherein the elastic nature of the binding structure allows the binding structure to be folded onto itself;
wherein the binding structure folds around the watch structure and the wireless power circuit such that the watch structure and the wireless power circuit are sandwiched within the binding structure.
10 . The device for securing a smart watch to a charger according to claim 9
wherein the elastic disk is a disk shaped structure;
wherein the elastic disk is an elastic structure.
11 . The device for securing a smart watch to a charger according to claim 10
wherein the elastic disk further comprises a cord aperture;
wherein the cord aperture is a negative space that is formed through the first congruent end and the second congruent end of the disk structure of the elastic disk;
wherein the cord aperture is sized such that the power cord of the wireless power circuit inserts through the cord aperture when the wireless power circuit is contained within the elastic disk.
12 . The device for securing a smart watch to a charger according to claim 11 wherein the elastic loop is an elastic cord;
wherein the free ends of the elastic cord that forms the elastic loop attach to the lateral face structure to form a loop structure.
13 . The device for securing a smart watch to a charger according to claim 12 wherein the post structure is a prism shaped structure;
wherein the post structure is a rigid structure;
wherein the post structure attaches to the second congruent end of the binding structure;
wherein the post structure attaches to the second congruent end such that the center axis of the prism structure of the post structure projects perpendicularly away from the second congruent end;
wherein the post structure forms an anchor that the elastic loop loops around;
wherein the post structure is positioned relative to the elastic loop such that the elastic loop is deformed as the elastic loop loops around the post structure.