Electronic device
US-2024146077-A1 · May 2, 2024 · US
US10742076B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10742076-B2 |
| Application number | US-201615167313-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 27, 2016 |
| Priority date | Mar 22, 2007 |
| Publication date | Aug 11, 2020 |
| Grant date | Aug 11, 2020 |
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A locator for locating power outlets and power receivers. A sensor is provided in a power receiver for detecting a detection signal emitted by a remote power outlet. A processor uses the detected signal to compute location coordinates of the power outlet.
Opening claim text (preview).
What is claimed is: 1. A power outlet locator incorporated into an electrical device for locating a wireless power outlet concealed behind a surface, the power outlet locator comprising: a plurality of sensors for detecting electromagnetic radiation emitted by the wireless power outlet, wherein each sensor of the plurality of sensors yields a signal; a processor configured to receive a plurality of signals from the plurality of sensors and computing at least one coordinate indicating a location of the wireless power outlet; and a display, coupled with the processor, that is capable of presenting information indicating the location of the wireless power outlet, wherein the processor is further configured to calculate a distance between the power outlet locator and the wireless power outlet by comparing the values of the plurality of signals with a reference value. 2. The power outlet locator of claim 1 , wherein each signal of the plurality of signals has a value that corresponds to the electromagnetic radiation detected by each sensor of the plurality of sensors. 3. The power outlet locator of claim 1 , wherein the processor is further configured to calculate at least one component of a vector indicating direction towards the wireless power outlet. 4. The power outlet locator of claim 1 , wherein at least one sensor of the plurality of sensors comprises a radio receiver. 5. A power outlet locating system for locating a wireless power outlet concealed behind an outer layer of a surface, the system comprising: at least one wireless power outlet configured to transmit an encoded location signal; and the power outlet locator of claim 1 , wherein the power outlet locator is situated on an opposite side of the outer layer of the surface, and wherein the encoded location signal comprises information about a location of the wireless power outlet. 6. The system of claim 5 , wherein the power outlet locator is further provided with a secondary coil, and wherein the power outlet locator is incorporated into an electrical device that comprises the secondary coil. 7. The system of claim 5 , wherein the information comprises graphics pointing to the direction of said location of the wireless power outlet, text indicating a distance to the wireless power outlet, graphics representing at least a section of a target symbol comprising concentric rings centered on a point indicating the location of the power outlet, or any combination thereof. 8. The power outlet locator of claim 1 , wherein the power outlet locator is further provided with a secondary coil, and wherein the power outlet locator is incorporated into an electrical device that comprises the secondary coil. 9. The power outlet locator of claim 1 , wherein the information comprises graphics pointing to the direction of said location of the wireless power outlet, text indicating a distance to the wireless power outlet, graphics representing at least a section of a target symbol comprising concentric rings centered on a point indicating the location of the power outlet, or any combination thereof. 10. A wireless power outlet having a primary coil capable of inductively powering a load connected to a secondary coil, wherein the primary coil and the secondary coil are inductively coupled when brought into proximity, the wireless power outlet comprising: a reception circuit configured to monitor the primary coil for control signals transmitted by a transmitting circuit associated with the secondary coil and the power outlet locator of claim 1 ; and a driver configured to vary an input voltage of the primary coil, wherein the driver is regulated by a duty cycle determined in the reception circuit based on the control signals.
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