MAXIMIZING POWER YIELD FROM WIRELESS POWER MAGNETIC RESONATORS
Described herein are embodiments of a wireless power transmitter device for transmitting power to at least one high-Q resonator that includes a first portion, formed of a high-Q magnetic resonator, and a high frequency generation system, having a number of components, wherein at least one of said components is formed using a process which creates nanoscale features.
1 . A wireless power transmitter device for transmitting power to at least one high-Q resonator, comprising:
a first portion, formed of a high-Q magnetic resonator, and a high frequency generation system, having a number of components, wherein at least one of said components is formed using a process which creates nanoscale features.
2 . A device as in claim 1 , wherein said features include an inductor.
3 . A device as in claim 1 , wherein said features include a capacitor.
4 . A wireless power receiver device for receiving power from at least one high-Q resonator, comprising:
a receiver portion, formed of plural electrical components, a high-Q magnetic receiving resonator, and a power output part,
wherein at least one of said electrical components is formed using a process which creates mechanical nanoscale features forming said plural electrical components.
5 . A receiver as in claim 4 , wherein said feature includes an inductor.
6 . A receiver as in claim 4 , wherein said feature includes a capacitor.
7 . A wireless power transmitting device for transmitting power to at least one high-Q resonator, comprising:
a first portion, formed of a high-Q magnetic resonator, and a high frequency generation system, having a number of components, wherein at least one of said components is formed using a mechanical process.
8 . A device as in claim 7 , wherein said components include an inductor.
9 . A device as in claim 7 , wherein said components include a capacitor.
10 . A wireless power receiving device for receiving power from at least one high-Q resonator, comprising:
a receiver portion, formed of plural electrical components, a high-Q magnetic receiving resonator, and a power output,
wherein at least one of said electrical components is formed using a mechanical process which creates mechanical features forming said plural electrical components.
11 . A receiver as in claim 10 , wherein said feature includes an inductor.
12 . A receiver as in claim 10 , wherein said feature includes a capacitor.