EP2269408A2

Packaging and details of a wireless power device

Abstract

This record has no abstract on file.

EP2269408A2, drawing sheet 1
Sheet 1 of 19

Term

2.4 yearsto projected expiry

Projected expiry 5 March 2029, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

40 claims: 7 independent, 33 dependent

  1. 1
    Claims of equivalent WO 2009111597 A2 What is claimed is:1. A wireless power system, comprising: a magnetically resonant antenna including an inductor having a variable inductance and a capacitor,having a variable capacitance;a power conversion circuit, coupled to said magnetically resonant antenna, and connecting with a magnetically resonant wireless power via said antenna, said circuit determining a measure of wireless power transfer, and producing a control signal indicative of said measure about how well information from said wireless power is being coupled, and provides a control signal to said magnetically resonant antenna, and wherein said magnetically resonant antenna adjusts at least one of said inductor and said capacitor value based on said signal.
  2. 11
    A wireless power system, comprising:a magnetically resonant antenna tuned for wireless power, said antenna including an inductor and a capacitor, wherein said inductor is a variable inductor that includes a ferrite core that is moved relative to another part of the inductor, and wherein a movement of said ferrite core changes an amount of inductance in the antenna;and a power circuit that processes electric power, connected to said magnetically resonant antenna.
  3. 17
    A wireless power system, comprising:an antenna coil;a capacitor, in series with said antenna coil, said antenna coil and capacitor tuned to receive wireless transmission of power;a power converting circuit, coupled to said antenna coil, and receiving power therefrom, and converting said power;a tunable load impedance, in series with said coil and capacitor, said tunable load impedance having a variable impedance;and a circuit which varies said tunable load impedance, in order to improve matching with said capacitor and said coil.
  4. 18
    A method of coupling wireless power, comprising:varying both a capacitance and an inductance of a magnetically resonant antenna that is formed of a coil part forming an inductor, and a variable capacitance;coupling power via said magnetically resonant antenna to or from a remote source, to transmit power wirelessly or to receive power wirelessly using said magnetically resonant antenna, determining a measure of wireless power transfer being carried out by said transmit or said receive, and producing a control signal indicative of said measure about how well information from said wireless power is being coupled;and providing a control signal to said magnetically resonant antenna, and wherein said magnetically resonant antenna causes one of said capacitance or said inductance to be varied based on said signal.
  5. 20
    A method as in claiml9, wherein said varying comprises selecting one of multiple different switchable parts, each said part changing a total capacitance.
  6. 25
    A method, comprising:transmitting power wirelessly from a transmitter to a receiver;detecting, in the transmitter, a change in coupling factor between said transmitter and said receiver;based on said detecting, adapting the transmitter by changing a polarization of said transmitting.
  7. 34
    A method, comprising:transmitting power wirelessly from a transmitter to a receiver;detecting, in the transmitter, tuning information for said transmitter that depends on loading by said receiver;and based on said detecting, adapting the transmitter by tuning said transmitter in a way that improves a coupling to said receiver as a function of said loading.