IP Library › Granted Patent US 12,633,665
Granted Patent B2
US 12,633,665 · App. 18/557,604 · Granted May 19, 2026

Wireless communication device comprising a plurality of antennas, associated facility and communication method

Inventor: Jean-Claude Mongrenier (Aix en Provence, FR)
Assignee: BIOLOG-ID
H01Q7/00H01Q21/24
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Quick Facts
Patent No.
US 12,633,665
App. No.
18/557,604
Granted
May 19, 2026
Kind
B2
Abstract

The invention relates to a wireless communication device ( 30 ) comprising a plurality of antennas ( 42 ), each antenna ( 42 ) having a single loop ( 44 ), the antennas ( 42 ) of the plurality of antennas being arranged in groups ( 46 ) of four antennas ( 42 ), the position of each antenna ( 42 ) of the same group being deduced by translation from the position of another antenna ( 42 ) of the same group ( 46 ), each group ( 46 ) of four antennas ( 42 ) including only five zones of overlap of antennas of the same group ( 46 ): a common zone of overlap (ZC) of the four antennas ( 42 ) and four zones of overlap (Z 1 , Z 2 , Z 3 , Z 4 ) of two antennas ( 42 ).

Claims (30)

1 . A wireless communication device comprising a plurality of antennas, each antenna having a single loop, the antennas of the plurality of antennas being arranged in groups of four antennas, the position of each antenna of the same group being deduced by translation from the position of another antenna of the same group, each group of four antennas including only five zones of overlap with antennas of the same group: a common zone of overlap with the four antennas and four zones of overlap with two antennas,

wherein each superimposing zone of two antennas comprises a first dimension along the first direction and a second dimension along a second direction perpendicular to the first direction and wherein each antenna of the plurality of antennas has a first dimension along the first direction and a second dimension along the second direction (Y), the ratio between the first dimension of each antenna and the first dimension of each zone of overlap of two antennas being comprised between 1.1 and 1.5 or between 4 and 10 and the ratio between the second dimension of each antenna and the second dimension of each zone of overlap of two antennas being comprised between 1.1 and 8.

2 . The wireless communication device according to claim 1 , wherein each antenna of the plurality of antennas has a loop surface and wherein the common zone of overlap of each group has a surface, the ratio between the surface area of the loop surface of each antenna and the surface area of the surface of the common zone of overlap of each group being comprised between 20 and 35.

3 . The wireless communication device according to claim 1 , wherein each antenna of the plurality of antennas has a first dimension along a first direction and a second dimension along a second direction perpendicular to the first direction, wherein the common zone of overlap of each group comprises a first dimension along the first direction and a second dimension along the second direction, and wherein the ratio between the first dimension of each antenna and the first dimension of the zone of overlap common to each group is comprised between 4 and 10 and the ratio between the second dimension of each antenna and the second dimension of the common zone of overlap is comprised between 1.5 and 6.

4 . The wireless communication device according to claim 1 , wherein each group includes a first antenna, a second antenna, a third antenna and a fourth antenna and wherein the position of each antenna of a group is deduced by translation along a first direction of another antenna of the group.

5 . The wireless communication device according to claim 1 , wherein the antennas of the plurality of antennas are identical, the device comprising at least fifteen antennas.

6 . The wireless communication device according to claim 1 , wherein the wireless communication device is a radio identification label reader.

7 . The wireless communication device according to claim 1 , comprising an electric power generator configured for simultaneously supplying an electric current to the plurality of antennas of the communication device.

8 . The wireless communication device according to claim 1 ,

wherein the antennas of the plurality of antennas of the communication device are arranged in a plurality of groups of four antennas.

9 . An installation for storing elements, each element supporting a first communication unit, the installation comprising:

a chamber comprising an internal compartment, and

a storage device for elements comprising a wireless communication device according to claim 1 , forming a second wireless communication unit apt to communicate with the first communication units,

wherein the storage device for elements is arranged in the internal compartment.

10 . The installation for storing elements according to claim 9 , wherein the elements of the plurality of elements are containers of biological substances, medicines or therapeutic preparations and wherein each first wireless communication unit is a radio identification label comprising a memory suitable for storing data relating to the element supporting the first wireless communication unit.

11 . A communication method implemented in an installation for storing elements according to claim 9 between at least a first wireless communication unit and a second wireless communication unit, wherein the communication method comprises a step of emitting waves by means of the second wireless communication unit.

12 . The communication method according to claim 11 , comprising supplying simultaneously, an electric current to the plurality of antennas of the second wireless communication unit.

13 . The wireless communication device according to claim 1 , wherein each superimposing zone of two antennas comprises a first dimension along the first direction and a second dimension along a second direction perpendicular to the first direction and wherein each antenna of the plurality of antennas has a first dimension along the first direction and a second dimension along the second direction, the ratio between the first dimension of each antenna and the first dimension of each zone of overlap of two antennas being comprised between 4 and 10 and the ratio between the second dimension of each antenna and the second dimension of each zone of overlap of two antennas being comprised between 1.1 and 8.

14 . The wireless communication device according to claim 1 , wherein each group includes a first antenna, a second antenna, a third antenna and a fourth antenna and wherein the position of each antenna of a group is deduced by translation along a second direction of the position of another antenna of the group, the second direction being perpendicular to a first direction.

15 . The installation for storing elements according to claim 9 , wherein the chamber is a refrigerating chamber.

16 . An installation for storing elements, each element supporting a first communication unit, the installation comprising:

a chamber comprising an internal compartment, and

a storage device for elements comprising a wireless communication device comprising a plurality of antennas, each antenna having a single loop, the antennas of the plurality of antennas being arranged in groups of four antennas, the position of each antenna of the same group being deduced by translation from the position of another antenna of the same group, each group of four antennas including only five zones of overlap with antennas of the same group: a common zone of overlap with the four antennas and four zones of overlap with two antennas, forming a second wireless communication unit apt to communicate with the first communication units,

wherein the storage device for elements is arranged in the internal compartment.

17 . The installation for storing elements according to claim 16 , wherein the elements of the plurality of elements are containers of biological substances, medicines or therapeutic preparations and wherein each first wireless communication unit is a radio identification label comprising a memory suitable for storing data relating to the element supporting the first wireless communication unit.

18 . A communication method implemented in an installation for storing elements according to claim 16 between at least a first wireless communication unit and a second wireless communication unit, wherein the communication method comprises a step of emitting waves by means of the second wireless communication unit.

19 . The communication method according to claim 18 , comprising supplying simultaneously, an electric current to the plurality of antennas of the second wireless communication unit.

20 . The installation for storing elements according to claim 16 , wherein the chamber is a refrigerating chamber.

21 . A wireless communication device comprising a plurality of antennas, each antenna having a single loop, the antennas of the plurality of antennas being arranged in groups of four antennas, the position of each antenna of the same group being deduced by translation from the position of another antenna of the same group, each group of four antennas including only five zones of overlap with antennas of the same group: a common zone of overlap with the four antennas and four zones of overlap with two antennas,

wherein each superimposing zone of two antennas comprises a first dimension along the first direction and a second dimension along a second direction perpendicular to the first direction and wherein each antenna of the plurality of antennas has a first dimension along the first direction and a second dimension along the second direction, the ratio between the first dimension of each antenna and the first dimension of each zone of overlap of two antennas being comprised between 4 and 10 and the ratio between the second dimension of each antenna and the second dimension of each zone of overlap of two antennas being comprised between 1.1 and 8.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2026
From: MONGRENIER, JEAN-CLAUDE
To: BIOLOG-ID
Reel/Frame 073956/0044 →
Priority Claims (1)
FR 21 04354 · Apr 27, 2021 · national
Continuity (1)
Related Publication 20240213676A1 · Jun 27, 2024
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