Smart wirelessly charging battery
A wireless charging system includes, in part, a first board, a multitude of rectenna boards, and a second board. The first board is adapted to receive a bottom portion of a rechargeable battery, and includes, in part, a ground plane, a first multitude of receptacles positioned along a perimeter of the first board, and circuitry adapted to convert a received RF signal to a DC voltage for delivery to the rechargeable battery. Each rectenna board is associated with and adapted to be inserted into a different one of the first multitude of receptacles. Each rectenna board includes, in part, a multitude of receive antennas for receiving the RF signal. The rectenna boards are adapted to enclose the rechargeable battery when the rechargeable battery is positioned over the first board. The second board is adapted to engage with the rectenna boards to cover a top portion of the rechargeable battery.
1 . A wireless charging system comprising:
a first board adapted to receive a bottom portion of a rechargeable battery, said first board comprising:
a ground plane;
a first plurality of receptacles positioned along a perimeter of the first board; and
circuitry adapted to convert a received RF signal to a DC voltage for delivery to the rechargeable battery when the rechargeable battery is positioned over the first board;
a plurality of rectenna boards each associated with and adapted to be inserted into a different one of the first plurality of receptacles, each rectenna board comprising a plurality of receive antennas for receiving the RF signal, wherein the plurality of rectenna boards are adapted to enclose the rechargeable battery when the rechargeable battery is positioned over the first board; and
a second board adapted to engage with the plurality of rectenna boards and cover a top portion of the rechargeable battery when the rechargeable battery is positioned over the first board.
2 . The wireless charging system of claim 1 further comprising the rechargeable battery.
3 . The wireless charging system of claim 1 further comprising:
a third board adapted to be inserted in a second receptacle positioned on the first board, the third board being further adapted to be connected to a positive terminal of the rechargeable battery when the rechargeable battery is positioned over the first board.
4 . The wireless charging system of claim 1 wherein the circuitry comprises an RF-to-DC converter, a DC-to-DC converter, a power management circuit, a wireless communication circuit, and a controller.
5 . A method of charging a rechargeable battery using RF signals, the method comprising:
placing a bottom portion of a rechargeable battery on a first board comprising:
a ground plane coupled to a negative terminal of the battery;
a first plurality of receptacles positioned along a perimeter of the first board; and
circuitry adapted to convert the RF signal to a DC voltage for delivery and charging the rechargeable battery;
inserting a plurality of rectenna boards into the first plurality of receptacles, each rectenna board comprising a plurality of receive antennas for receiving the RF signal, wherein the plurality of rectenna boards are adapted to enclose the perimeter of the rechargeable battery along a height of the rechargeable battery; and
covering a top portion of the rechargeable battery with a second board adapted to engage with the plurality of rectenna boards.
6 . The method of claim 5 further comprising:
inserting a third board in a second receptacle positioned on the first board, the third board being further adapted to be connected to a positive terminal of the rechargeable battery.
7 . The method of claim 6 wherein the second board engages with the plurality of rectennas using a plurality of protrusions and cavities.
8 . The method of claim 5 wherein the circuitry comprises an RF-to-DC converter, a DC-to-DC converter, a power management circuit, a wireless communication circuit, and a controller.