SURFACE-MOUNTED RESONATORS FOR WIRELESS POWER
20170350136 · 2017-12-07
Inventors
- Norman R. Byrne (Ada, MI, US)
- Peter J. Maher (Grand Rapids, MI, US)
- Timothy J. Warwick (Sparta, MI, US)
- Gerald N. Vander Till (Grandville, MI, US)
- Nickolas J. Morrow (Ada, MI, US)
Cpc classification
E04F2290/02
FIXED CONSTRUCTIONS
E04F15/04
FIXED CONSTRUCTIONS
International classification
E04F13/074
FIXED CONSTRUCTIONS
E04F15/04
FIXED CONSTRUCTIONS
E04F15/06
FIXED CONSTRUCTIONS
Abstract
A wireless electrical power transmission system includes a panel having a recessed area for receiving a wireless power transmitter, such as an electric field resonant transmitter. The panel has a first outer surface and a second outer surface opposite the first outer surface, with a thickness defined between the first and second outer surfaces. The recessed area is formed in the first outer surface, and the recessed area has a depth that is less than the thickness of the panel. Electrical wiring is coupled to the wireless power transmitter and passes through an opening formed in the panel, which opening is accessible from the recessed area, and the electrical wiring is in communication with an electrical power source.
Claims
1. A wireless electrical power transmission system comprising: a panel having a first outer surface and a second outer surface opposite said first outer surface, with a panel thickness defined between the first and second outer surfaces; a recessed area formed in said first outer surface, wherein said recessed area has a depth that is less than said panel thickness; a wireless power transmitter positioned in said recessed area; and electrical wiring coupled to said wireless power transmitter and passing through an opening formed in said panel and accessible from said recessed area, wherein said electrical wiring is in communication with an electrical power source.
2. The wireless electrical power transmission system of claim 1, wherein said panel comprises a ferrous material.
3. The wireless electrical power transmission system of claim 1, wherein said panel comprises a ceramic or composite concrete material.
4. The wireless electrical power transmission system of claim 1, wherein said recessed area is circular, square, or rectangular in shape.
5. The wireless electrical power transmission system of claim 4, wherein said recessed area comprises at least two concentric circles or at least two squares having a common center.
6. The wireless electrical power transmission system of claim 5, wherein said recessed area comprises a recessed pass-through disposed between said at least two concentric circles or between said at least two squares.
7. The wireless electrical power transmission system of claim 6, wherein said opening formed in said panel is a bore located in said recessed pass-through and extending through said second outer surface.
8. The wireless electrical power transmission system of claim 1, wherein said panel comprises a structural floor panel of a raised floor system.
9. The wireless electrical power transmission system of claim 8, wherein said panel is supported by a structural framework that cooperates with said panel to define a hollow chamber below said panel.
10. The wireless electrical power transmission system of claim 9, further comprising a power driver circuit positioned in said hollow chamber and in electrical communication with said wiring and the electrical power source, wherein said power driver circuit is operable to receive high voltage AC power from the electrical power source and to convert the high voltage AC power to a voltage and type for use by said wireless power transmitter.
11. The wireless electrical power transmission system of claim 1, wherein said wireless power transmitter is an electric field transmitter configured to establish an electric field resonant capacitive coupling with an electric field receiver spaced from said first outer surface.
12. The wireless electrical power transmission system of claim 1, wherein said wireless power transmitter has a transmitter thickness that is equal to or less than said depth of said recessed area.
13. The wireless electrical power transmission system of claim 1, further comprising an aesthetic cover positioned along said first outer surface of said panel and said wireless power transmitter.
14. The wireless electrical power transmission system of claim 13, further comprising an adhesive layer for adhering said aesthetic cover to at least said first outer surface of said panel.
15. The wireless electrical power transmission system of claim 13, wherein said aesthetic cover comprises at least one chosen from (i) a vinyl or synthetic tile, (ii) gypsum board, (iii) a wood or composite wood panel or tile, and (iv) a concrete or ceramic or composite concrete panel or tile.
16. The wireless electrical power transmission system of claim 1, wherein said panel comprises a floor panel, a wall or room divider panel, or a ceiling panel in a work area.
17. A wireless electrical power transmission system comprising: a panel comprising ferrous metal and having a first outer surface and a second outer surface opposite said first outer surface, with a panel thickness defined between the first and second outer surfaces; a recessed area formed in said first outer surface, wherein said recessed area has a depth that is less than said panel thickness; a wireless power transmitter positioned in said recessed area; electrical wiring coupled to said wireless power transmitter and passing through an opening formed in said panel and accessible from said recessed area, wherein said electrical wiring is in communication with an electrical power source ; an aesthetic cover positioned along said first outer surface of said panel; an adhesive layer for adhering said aesthetic cover to at least said first outer surface of said panel; and a protective sheet disposed between said wireless power transmitter and said aesthetic cover.
18. The wireless electrical power transmission system of claim 17, wherein said aesthetic cover comprises at least one chosen from (i) a vinyl or synthetic tile, (ii) gypsum board, (iii) a wood or composite wood panel or tile, and (iv) a concrete or ceramic or composite concrete panel or tile.
19. The wireless electrical power transmission system of claim 17, wherein said panel comprises a floor panel, a wall or room divider panel, or a ceiling panel in a work area.
20. The wireless electrical power transmission system of claim 17, wherein said panel comprises a structural floor panel of a raised floor system, said structural floor panel supported by a structural framework that cooperates with said panel to define a hollow chamber below said panel, and further comprising an electrical circuit disposed in said hollow chamber, wherein said electrical wiring is in electrical communication with said electrical power source via said electrical circuit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0025] Referring now to the drawings and the illustrative embodiments depicted therein, a wireless electrical power transmission system 10 includes a panel 12 defining one or more recessed areas 14, such as shown in
[0026] In the illustrated embodiment, panel 12 is a structural substrate that forms the upper structural layer of a raised flooring system, which includes structural support elements or spacers 30 that may form part of a framework resting on a substantially solid base surface 32. For example, it is envisioned that panel 12 and the associated wireless electrical power transmission system 10 may be adapted for use in raised floor systems like those described in commonly-owned U.S. Pat. Nos. 7,878,845 and 7,183,504, which are both hereby incorporated herein by reference in their entireties. Panel 12 may be manufactured by various materials, including ferrous metal, non-ferrous metal such as aluminum, wood or composite wood products (including medium density fiberboard or ‘MDF’), ceramic, concrete or composite concrete products (including concrete mixed with fibrous materials), and the like.
[0027] Recessed areas 14 may be molded directly into panel 12 during manufacturing, or may be formed or established in panel 12 after manufacturing, such as using a stamping or milling process. In the embodiment of
[0028] It will be appreciated that other shapes of recessed areas are envisioned without departing from the spirit and scope of the present invention, such as one or more square recessed areas (
[0029] Optionally, and with further reference to
[0030] Referring once again to
[0031] Thus, the wireless electrical power transmission system of the present invention allows for wireless electrical power transmitters to be used in combination with ferrous metals while limiting or substantially preventing shielding or blocking the wireless transmission of electrical power by ferrous metals. Other components of the system, such as a power driver circuit, may be positioned remotely from the transmitters and connected via wiring that passes through the substrate or panel in which the wireless transmitters are mounted. The system may be incorporated into floor structures, including raised flooring systems, or into walls, ceilings, work surfaces, and the like, while presenting a desired aesthetic appearance and having minimal aesthetic impact in an area, or none at all, as desired. It will be appreciated that the term ‘work surfaces’ is not intended to be limiting, and such surfaces can range from tables or desks to countertops in homes or businesses, cabinets or cabinet shelves, fixed or portable shelves including book shelves, and the like.
[0032] Changes and modifications in the specifically-described embodiments may be carried out without departing from the principles of the present invention, which is intended to be limited only by the scope of the appended claims as interpreted according to the principles of patent law including the doctrine of equivalents.