IP Library Granted Patent US 9,997,960
Granted Patent B2
US 9,997,960 · App. 15/084,836 · Granted Jun 12, 2018

Misalignment insensitive wireless power transfer with cylindrical, spherical and conical transmitter and receiver elements

Inventor: Stavros Georgakopoulos (Miami, FL)
Assignee: The Florida International University Board of Trustees
H02J50/12H01F27/2804H05K1/028
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Quick Facts
Patent No.
US 9,997,960
App. No.
15/084,836
Granted
Jun 12, 2018
Kind
B2
Abstract

Wireless power transfer systems including wireless transmitter and receivers, which are insensitive to misalignment, are provided. A wireless power transfer system can include a first conductive loop that has cylindrical, conical, or spherical symmetry. The wireless power transfer system can further include a second conductive loop that is formed around the first conductive loop, and can also share the same type of symmetry as the first conductive loop. The wireless transfer system can be a wearable device or an implantable device.

Claims (39)

1. A wireless power transfer system, comprising:

a wireless transmitter including a planar source and a planar resonator; and

a wireless receiver coupled with the wireless transmitter,

the wireless receiver comprising:

a flexible substrate;

a first conductive loop that has cylindrical, conical, or spherical symmetry; and

a second conductive loop formed around the first conductive loop and also having a same type of symmetry as the first conductive loop,

the first conductive loop being a load, and the second conductive loop being a resonator,

the second conductive loop comprising a capacitor, and

each of the first conductive loop and the second conductive loop being conformally disposed on the flexible substrate such that the first and second conductive loops flex with the flexible substrate as the flexible substrate is attached to an object.

2. The wireless power transfer system according to claim 1 , wherein the first conductive loop has spherical symmetry.

3. The wireless power transfer system according to claim 1 , wherein the wireless power transfer system is a wearable device.

4. A wireless power transfer system, comprising:

a wireless transmitter including a planar source and a planar resonator; and

a wireless power receiver coupled with the wireless transmitter,

the wireless receiver comprising:

a flexible substrate;

a first conductive loop that has cylindrical symmetry; and

a second conductive loop, which also has cylindrical symmetry, around the first conductive loop,

the first conductive loop being a load and the second conductive loop being a resonator,

the second conductive loop comprising a capacitor, and

each of the first conductive loop and the second conductive loop being conformally disposed on the flexible substrate such that the first and second conductive loops flex with the flexible substrate as the flexible substrate is attached to an object.

5. The wireless power transfer system according to claim 4 , wherein the wireless power receiver is a wearable device.

6. The wireless power transfer system according to claim 4 , wherein an arc of the resonator spans from 90 degrees to 360 degrees of the cylinder.

7. The wireless power transfer system according to claim 4 , wherein an arc of the resonator spans from 330 degrees to 355 degrees.

8. The wireless power transfer system according to claim 6 , wherein an arc of the load spans from 80 percent to 90 percent of the resonator arc.

9. A wireless power transfer system, comprising:

a wireless transmitter including a planar source and a planar resonator; and

a wireless power receiver coupled with the wireless transmitter,

the wireless receiver comprising:

a flexible substrate;

a first conductive loop that has conical symmetry; and

a second conductive loop, which also has conical symmetry, around the first conductive loop,

the first conductive loop being a load and the second conductive loop being a resonator,

the second conductive loop comprising a capacitor, and

each of the first conductive loop and the second conductive loop being conformally disposed on the flexible substrate such that the first and second conductive loops flex with the flexible substrate as the flexible substrate is attached to an object.

10. The wireless power transfer system according to claim 9 , wherein the wireless power receiver is packaged as a wearable device.

11. The wireless power transfer system according to claim 9 , wherein an are of the resonator spans from 330 degrees to 355 degrees of the cone.

12. The wireless power transfer system according to claim 9 , wherein an arc of the resonator spans from 90 degrees to 360 degrees of the cone.

Assignments (2)
CONFIRMATORY LICENSE Recorded Apr 13, 2018
From: FLORIDA INTERNATIONAL UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 045532/0379 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2016
From: GEORGAKOPOULOS, STAVROS
To: THE FLORIDA INTERNATIONAL UNIVERSITY BOARD OF TRUSTEES
Reel/Frame 038581/0814 →
Continuity (1)
Related Publication 20170288459A1 · Oct 5, 2017