System and method for providing inductive power at multiple power levels
US-11349353-B2 · May 31, 2022 · US
US11626760B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11626760-B2 |
| Application number | US-202217825248-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 26, 2022 |
| Priority date | Jul 5, 2012 |
| Publication date | Apr 11, 2023 |
| Grant date | Apr 11, 2023 |
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A system and method for inductively providing electrical power at a plurality of power levels to electrical devices. The system may include an inductive power outlet unit conductively coupled to a power supply and an inductive power receiver unit associated with the electrical device. The inductive power outlet unit includes a driver device operable to generate power at a plurality of power levels and electrical power is transferred to the electrical device at a power level selected from the plurality of power levels, in accordance with electrical power requirements of the electrical device. The power receiver may be operable in a plurality of modes having a secondary inductor configured to operate selectively with a plurality of inductance values.
Opening claim text (preview).
What is claimed: 1. An inductive power outlet for inductively powering a receiver, the inductive power outlet cornprising: at least one inductor inductively coupled to a coil of the receiver having together a resonant frequency; and a driver comprising at least one switch, the driver being configured to: generate power in accordance with the at least one switch by converting a DC voltage supplied by a power supply to an AC voltage, a frequency of the AC voltage being different from the resonant frequency, and vary the frequency of the AC voltage to apply the AC voltage within a range of AC voltages across the at least one inductor. 2. The inductive power outlet of claim 1 , wherein the driver is configured to regulate energy transmitted by the at least one inductor by adjusting a duty cycle of the AC voltage. 3. The inductive power outlet of claim 1 , wherein the frequency of the AC voltage is either lower or higher than the resonant frequency. 4. The inductive power outlet of claim 1 , wherein the at least one switch comprises at least two switches configured to collectively operate as a half-bridge rectifier to apply the AC voltage across the at least one inductor. 5. The inductive power outlet of claim 1 , wherein the at least one switch comprises at least four switches configured to collectively operate as a full-bridge rectifier to apply the AC voltage across the at least one inductor. 6. The inductive power outlet of claim 5 , wherein two of the four switches are set in a fixed off state while the remaining two of the four switches are set in an on to collectively operate as a half-bridge rectifier to apply the AC voltage across the at least one inductor. 7. The inductive power outlet of claim 1 , wherein the inductive power outlet comprises a signal receiver configured to demodulate, and process a feedback signal received from the receiver. 8. The inductive power outlet of claim 7 , wherein if a transferred power does not comply with power requirements of an electrical device, the signal receiver forwards an adjustment signal to the driver. 9. The inductive power outlet of claim 8 , wherein the driver adjusts the frequency of the AC voltage in accordance with the adjustment signal. 10. The inductive power outlet of claim 1 , wherein the inductive power outlet is configured to regulate the energy transmitted by the at least one inductor according to power requirements of the receiver. 11. The inductive power outlet of claim 1 , wherein the driver is configured to select one of a plurality of power levels. 12. The inductive power outlet of claim 1 , wherein the driver is configured to selectively activate a first switch combination of the at least one switch in accordance with a first power mode of the plurality of power levels.
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