IP Library › Granted Patent US 11,831,362
Granted Patent B2
US 11,831,362 · App. 18/068,427 · Granted Nov 28, 2023

Wireless communication system

Inventor: Hiroto Tamaki (Misato, JP)
Assignee: Canon Kabushiki Kaisha
H04B5/0075H04B5/0031
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Quick Facts
Patent No.
US 11,831,362
App. No.
18/068,427
Granted
Nov 28, 2023
Kind
B2
Abstract

A wireless communication system includes a first coupler having a first pair of electrodes and second coupler having a second pair of electrodes that at least partially oppose the first pair of electrodes. A transmission circuit applies a differential signal to the first coupler. A reception circuit receives a differential signal output from the second coupler based on electromagnetic coupling between the first coupler and the second coupler. A distance between centroids of the first pair of electrodes differs from a distance between centroids of the second pair of electrodes.

Claims (35)

1. A wireless communication system comprising:

a first coupler having a first pair of electrodes;

a second coupler having a second pair of electrodes that at least partially oppose the first pair of electrodes;

a transmission circuit configured to transmit a differential signal to the first coupler; and

a reception circuit configured to receive a differential signal output from the second coupler based on electromagnetic coupling between the first coupler and the second coupler,

wherein

the first pair of electrodes have a first electrode and a second electrode,

the second pair of electrodes have a third electrode corresponding to the first electrode and a fourth electrode corresponding to the second electrode, and

the first coupler and the second coupler are formed so that a degree of coupling between the first electrode and the third electrode increases in a case where the first coupler or the second coupler moves in a predetermined direction in which a degree of coupling between the second electrode and the fourth electrode decreases.

2. The system according to claim 1 , wherein a first direction in which the first and second electrodes of the first pair of electrodes are aligned substantially coincides with a second direction in which the third and fourth electrodes of the second pair of electrodes are aligned.

3. The system according to claim 2 , wherein a width of each of the first pair of electrodes in the first direction differs from a width of each of the second pair of electrodes in the second direction.

4. The system according to claim 2 , wherein the predetermined direction is substantially identical to the first direction.

5. The system according to claim 1 , wherein a length of each of the first pair of electrodes in a perpendicular direction to the predetermined direction differs from a length of each of the second pair of electrodes in a perpendicular direction to the predetermined direction.

6. The system according to claim 1 , wherein a first sum of widths of the first pair of electrodes and a distance there between differs from a second sum of widths of the second pair of electrodes and a distance there between.

7. The system according to claim 6 , wherein a smaller one of the first sum and the second sum is half or more the other one of the first sum and the second sum.

8. The system according to claim 1 , wherein the reception circuit is connected to each of the second pair of electrodes at a position closer to other electrode than a center of width of one electrode.

9. The system according to claim 1 , wherein the reception circuit is connected to the second pair of electrodes through respective vias.

10. The system according to claim 1 , further comprising a third coupler having a pair of third electrodes that at least partially oppose the second pair of electrodes.

11. The system according to claim 1 ,

wherein a first sum of widths of the first pair of electrodes and a distance there between is substantially equal to a second sum of widths of the second pair of electrodes and a distance there between,

the width of each of the first pair of electrodes is narrower than the width of each of the second pair of electrodes, and

the distance between the first pair of electrodes is longer than the distance between the second pair of electrodes.

12. The system according to claim 1 ,

wherein a second sum of widths of the second pair of electrodes and a distance there between is larger than a first sum of widths of the first pair of electrodes and a distance there between,

the width of each of the first pair of electrodes is narrower than the width of each of the second pair of electrodes, and

the distance between the first pair of electrodes is longer than the distance between the second pair of electrodes.

13. The system according to claim 1 , wherein the first pair of electrodes have substantially the same size and shape, and the second pair of electrodes have substantially the same size and shape.

14. The system according to claim 1 , wherein a distance between the first pair of electrodes differs from a distance between the second pair of electrodes.

15. A method for controlling a wireless communication system that has a first coupler having a first pair of electrodes, and a second coupler having a second pair of electrodes that at least partially oppose the first pair of electrodes, the method comprising:

transmitting a differential signal to the first coupler; and

receiving the differential signal output from the second coupler based on electromagnetic coupling between the first coupler and the second coupler,

wherein

the first pair of electrodes have a first electrode and a second electrode,

the second pair of electrodes have a third electrode and a fourth electrode, and

the first coupler and the second coupler are formed so that a degree of coupling between the first electrode and the third electrode increases in a case where the first coupler or the second coupler moves in a predetermined direction in which a degree of coupling between the second electrode and the fourth electrode decreases.

Priority Claims (2)
JP 2019-097070 · May 23, 2019 · national
JP 2020-037160 · Mar 4, 2020 · national
Continuity (3)
Continuation 17336023 · Jun 1, 2021
Continuation 16879267 · May 20, 2020
Related Publication 20230121661A1 · Apr 20, 2023