IP Library › Granted Patent US 11,031,687
Granted Patent B2
US 11,031,687 · App. 16/795,574 · Granted Jun 8, 2021

Antenna, wireless communication module, and wireless communication device

Inventor: Hiroshi Uchimura (Kagoshima, JP)
Assignee: KYOCERA CORPORATION
H01Q1/528H01Q1/24H01Q5/307H01Q9/0421H01Q9/0457
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Quick Facts
Patent No.
US 11,031,687
App. No.
16/795,574
Granted
Jun 8, 2021
Kind
B2
Abstract

A resonant structure includes a conducting portion extending along a first plane and including first conductors, a ground conductor located away from the conducting portion and extending along the first plane, and a first predetermined number of connecting conductors extending from the ground conductor towards the conducting portion. At least two first conductors are connected to different connecting conductors. A first connecting pair of two of the connecting conductors is aligned along a first direction in the first plane and a second connecting pair of two of the connecting conductors is aligned along a second direction, in the first plane, intersecting the first direction. The resonant structure resonates at a first frequency along a first current path including the ground conductor, conducting portion, and first connecting pair and at a second frequency along a second current path including the ground conductor, conducting portion, and second connecting pair.

Claims (68)

1. An antenna comprising:

a resonant structure; and

a first feeding line;

wherein the resonant structure comprises:

a conducting portion extending in a first plane, and the conducting portion comprising a plurality of first conductors;

a ground conductor separated from the conducting portion in a third direction intersecting the first plane and extending in the first plane; and

a first number of connecting conductors extending from the ground conductor toward the conducting portion, the first number being three or more;

wherein at least two conductors of the plurality of first conductors are connected to different connecting conductors;

wherein two connecting conductors of the first number of connecting conductors are part of a first connecting pair aligned in a first direction in the first plane;

wherein two connecting conductors of the first number of connecting conductors are part of a second connecting pair aligned in a second direction in the first plane and intersecting the first direction;

wherein the resonant structure is configured to resonate at a first frequency in a first current path;

wherein the resonant structure is configured to resonate at a second frequency in a second current path;

wherein the first current path comprises the ground conductor, the conducting portion, and the first connecting pair;

wherein the second current path comprises the ground conductor, the conducting portion, and the second connecting pair;

wherein the first feeding line is configured to electromagnetically connect to the conducting portion; and

wherein at least one of the first conductors of the plurality of first conductors includes a first edge extending in the first direction, a second edge extending in the second direction, and a first connector at a corner of the at least one of the first conductors of the plurality of first conductors, and the first connector is connected to a connecting conductor of the first number of connecting conductors,

wherein the corner couples the first edge and the second edge.

2. The antenna of claim 1 , wherein the first frequency is equal to the second frequency.

3. The antenna of claim 1 , wherein the first frequency is different from the second frequency.

4. The antenna of claim 1 ,

wherein the conducting portion further comprises a second number of first conductors, the second number being greater than the first number; and

each of at least the first number of first conductors of the second number of first conductors are configured to be connected to a different connecting conductor of the connecting conductors.

5. The antenna of claim 1 , wherein at least a portion of the plurality of first conductors is configured to be capacitively connected facing each other in the third direction.

6. The antenna of claim 1 ,

wherein the conducting portion further comprises at least one second conductor not connected to the connecting conductors; and

wherein at least a portion of the plurality of first conductors is configured to be capacitively connected by the at least one second conductor.

7. The antenna of claim 1 , wherein at least a portion of the plurality of first conductors is configured to be capacitively connected by one or more capacitive elements.

8. The antenna of claim 1 , wherein a length of the conducting portion in the first direction is different from a length of the conducting portion in the second direction.

9. The antenna of claim 1 , wherein the first feeding line is configured to induce a first current in the first current path in the first direction.

10. The antenna of claim 1 , further comprising a second feeding line configured to be electromagnetically connected to the conducting portion at a different position from where the first feeding line is configured to electromagnetically connect to the conducting portion.

11. The antenna of claim 10 , wherein the second feeding line is configured to induce a second current in the second current path in the second direction.

12. A wireless communication module comprising:

an antenna comprising a resonant structure and a first feeding line; and

a radio frequency (RF) module configured to be electrically connected to the first feeding line,

wherein the resonant structure comprises:

a conducting portion extending in a first plane, and the conducting portion comprising a plurality of first conductors;

a ground conductor located from the conducting portion in a third direction intersecting the first plane and extending in the first plane; and

a first number of connecting conductors extending from the ground conductor toward the conducting portion, the first number being three or more;

wherein at least two conductors of the plurality of first conductors are connected to different connecting conductors;

wherein two connecting conductors of the first number of connecting conductors are part of a first connecting pair aligned in a first direction in the first plane;

wherein two connecting conductors of the first number of connecting conductors are part of a second connecting pair aligned in a second direction in the first plane and intersecting the first direction;

wherein the resonant structure is configured to resonate at a first frequency in a first current path;

wherein the resonant structure is configured to resonate at a second frequency in a second current path;

wherein the first current path comprises the ground conductor, the conducting portion, and the first connecting pair;

wherein the second current path comprises the ground conductor, the conducting portion, and the second connecting pair;

wherein the first feeding line is configured to electromagnetically connect to the conducting portion; and

wherein at least one of the first conductors of the plurality of first conductors includes a first edge extending in the first direction, a second edge extending in the second direction, and a first connector at a corner of the at least one of the first conductors of the plurality of first conductors, and the first connector is connected to a connecting conductor of the first number of connecting conductors,

wherein the corner couples the first edge and the second edge.

13. A wireless communication device comprising:

a wireless communication module; and

a battery configured to supply power to the wireless communication module,

wherein the wireless communication module comprising:

an antenna comprising a resonant structure and a first feeding line; and

a radio frequency (RF) module configured to be electrically connected to the first feeding line,

wherein the resonant structure comprises:

a conducting portion extending in a first plane, and the conducting portion comprising a plurality of first conductors;

a ground conductor located from the conducting portion in a third direction intersecting the first plane and extending in the first plane; and

a first number of connecting conductors extending from the ground conductor toward the conducting portion, the first number being three or more;

wherein at least two conductors of the plurality of first conductors are connected to different connecting conductors;

wherein two connecting conductors of the first number of connecting conductors are part of a first connecting pair aligned in a first direction in the first plane;

wherein two connecting conductors of the first number of connecting conductors are part of a second connecting pair aligned in a second direction in the first plane and intersecting the first direction;

wherein the resonant structure is configured to resonate at a first frequency in a first current path;

wherein the resonant structure is configured to resonate at a second frequency in a second current path;

wherein the first current path comprises the ground conductor, the conducting portion, and the first connecting pair;

wherein the second current path comprises the ground conductor, the conducting portion, and the second connecting pair;

wherein the first feeding line is configured to electromagnetically connect to the conducting portion; and

wherein at least one of the first conductors of the plurality of first conductors includes a first edge extending in the first direction, a second edge extending in the second direction, and a first connector at a corner of the at least one of the first conductors of the plurality of first conductors, and the first connector is connected to a connecting conductor of the first number of connecting conductors,

wherein the corner couples the first edge and the second edge.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2020
From: UCHIMURA, HIROSHI
To: KYOCERA CORPORATION
Reel/Frame 051865/0331 →
Priority Claims (1)
JP JP2018-158793 · Aug 27, 2018 · national
Continuity (2)
Continuation PCTJP2019032876 · Aug 22, 2019
Related Publication 20200235470A1 · Jul 23, 2020