Inductive wireless power transfer systems
A wireless power transfer system has a coil assembly including a ferrite pad and a pair of spaced apart inductive coils on the ferrite pad, and a switching network that, in response to an indication of a corresponding inductive coil assembly configuration, controls a direction of current flow through each of the coils to selectively operate the coils in a two-pole mode or a three-pole mode.
1. A power transfer system comprising:
a ferrite pad;
a pair of spaced apart inductive coils positioned exclusively on a same single side of the ferrite pad; and
a controller configured to, in response to a message indicating a pole configuration of a corresponding inductive coil assembly, arrange a switching network to control a direction of current flow through each of the coils to selectively operate the coils in a two-pole mode or a three-pole mode.
2. The system of claim 1 , wherein the directions of current flow through the coils are same in the three-pole mode.
3. The system of claim 1 , wherein the directions of current flow through the coils are opposite in the two-pole mode.
4. The system of claim 1 , wherein the coils are primary coils.
5. The system of claim 1 , wherein the coils are secondary coils.
6. A wireless power transfer system comprising:
an inductive coil assembly including a ferrite pad and no more than two spaced apart inductive coils on the ferrite pad; and
a switching network configured to control a direction of current flow through each of the coils such that the coils generate a magnetic flux distribution having three poles, and in response to an indication of coil misalignment, to short one of the coils, wherein the directions of the current flow through the coils are opposite.
7. The system of claim 6 , wherein the coils are wrapped around the pad.
8. The system of claim 6 , wherein the coils are primary coils.
9. A wireless power transfer system comprising:
an inductive coil assembly including a ferrite pad and no more than two spaced apart inductive coils on the ferrite pad, wherein the coils are wrapped around the pad; and
a switching network configured to control a direction of current flow through each of the coils such that the coils generate a magnetic flux distribution having three poles, and in response to an indication of coil misalignment, to short one of the coils.
10. The system of claim 9 , wherein the directions of the current flow through the coils are opposite.
11. The system of claim 9 , wherein the coils are primary coils.