IP Library Granted Patent US 10,910,716
Granted Patent B2
US 10,910,716 · App. 15/547,233 · Granted Feb 2, 2021

RFID infinity antenna

Inventor: Tai Wai Pong (St Peters, AU)
Assignee: SATO HOLDINGS CORPORATION
H01Q7/005H01Q1/2216H01Q1/243H01Q7/00H01Q21/245H01Q21/30
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Quick Facts
Patent No.
US 10,910,716
App. No.
15/547,233
Granted
Feb 2, 2021
Kind
B2
Abstract

An RFID antenna comprises two or more electroconductive sheets of uniform planar size, being parallel and aligned, with a space therein between. Each electroconductive sheet comprises: a feed connection point, which receives an electrical current from a feed to supply current to the electroconductive sheet; and a return connection point, opposite and parallel to the feed connection point of the electroconductive sheet, which acquires current from the electroconductive sheet and transfers current to a return. The electrical circuit pathway created from the feed to the return is equal distance for each electroconductive sheet. The two electroconductive sheets are connected together to complete a circuit that causes direction of electrical flow in the one electroconductive sheet to be opposite to direction of electric flow in the other electroconductive sheet.

Claims (42)

1. An RFID tag reading antenna, comprising:

at least two planar electroconductive sheets spaced apart to form a space therein between defining an antenna read volume in which RFID tags to be read are receivable, each electroconductive sheet comprising:

a feed connection point, which receives an electrical current from a feed that supplies current to the electroconductive sheet;

a return connection point, which acquires the electrical current from the electroconductive sheet and transfers the electrical current to a return,

wherein the at least two planar electroconductive sheets are conductively connected together to form an electrical circuit that includes the feed connection points and the return connection points of two of the planar electroconductive sheets when the two planar electroconductive sheets are connected to an electrical feed and such that a substantially uniform magnetic field is configured to be generated within the antenna read volume between the planar electroconductive sheets, the substantially uniform magnetic field extending substantially parallel to the planar electroconductive sheets.

2. The RFID antenna of claim 1 , wherein the at least two planar electroconductive sheets are of uniform size and are positioned to be parallel and aligned with respect to one another.

3. The RFID antenna of claim 1 , wherein the feed connection point and the return connection point of each electroconductive sheet are positioned at opposite edges of the sheet.

4. The RFID antenna of claim 1 , wherein the electroconductive sheets are made with an aluminum-based metal.

5. An electrical current supplier that provides current to a feed of the RFID antenna of claim 1 .

6. An RFID antenna, comprising:

at least two planar electroconductive sheets of uniform size spaced apart to form a space therein between defining an antenna read volume, wherein said electroconductive sheets are parallel and aligned with respect to one another, each electroconductive sheet comprising:

a first edge set and a second edge set of parallel edges, wherein the second edge set is orthogonal to the first edge set, each of the first edge set and second edge set including:

a feed connection point, which receives an electrical current from a feed that supplies current to the electroconductive sheet, the feed connection point connecting to one edge of the electroconductive sheet;

a return connection point, which acquires the electrical current from the electroconductive sheet and transfers the electrical current to a return, the return connection point connecting to another edge of the electroconductive sheet, opposite and parallel to the one edge of the electroconductive sheet to which the feed connection point is connected,

wherein the electrical pathway of a circuit created from the feed to the return via a respective feed connection point and a respective return connection point is equal distance for each electroconductive sheet,

wherein the at least two electroconductive sheets are connected together to complete a circuit that causes direction of electrical flow in the one electroconductive sheet to be opposite to direction of electric flow in the other electroconductive sheet,

wherein the feed of electrical current is alternately switched between the feed connection point of the first edge set and the feed connection point of the second edge set in a periodic manner, and the electrical current is switched in a uniform manner between the electroconductive sheets.

7. The RFID antenna of claim 6 , wherein a magnetic field is generated between the electroconductive sheets and said magnetic field is uniform in the space therein between.

8. The RFID antenna of claim 7 , wherein the magnetic field changes direction in an orthogonal manner when the electrical current is switched between the feed connection points of the first edge set and the second edge set, respectively.

9. The RFID antenna of claim 8 , wherein the first edge set and the second edge set each have a plurality of feed connection points and an equal number of respective return connection points, respectively.

10. The RFID antenna of claim 9 , wherein the feed connection points and respective return connection points are evenly spaced, in each of the first edge set and the second edge set, with equal distance between each feed connection point and a respective return connection point, in parallel.

11. The RFID antenna of claim 6 , wherein the electroconductive sheets are made with an aluminum-based metal.

12. A switch, which switches in a periodic manner the feed of electrical current to the feed connection points of the first edge set and second edge set of the electroconductive sheets of claim 6 .

13. A method of producing an alternating magnetic field in an RFID antenna, the RFID antenna comprising:

at least two planar electroconductive sheets of uniform size spaced apart to form a space therein between defining an antenna read volume, wherein said electroconductive sheets are parallel and aligned with respect to one another, each electroconductive sheet comprising:

a first edge set and a second edge set of parallel edges, wherein the second edge set is orthogonal to the first edge set, each of the first edge set and second edge set including:

a feed connection point, which receives an electrical current from a feed that supplies current to the electroconductive sheet, the feed connection point connecting to one edge of the electroconductive sheet;

a return connection point, which acquires the electrical current from the electroconductive sheet and transfers the electrical current to a return, the return connection point connecting to another edge of the electroconductive sheet, opposite and parallel to the one edge of the electroconductive sheet to which the feed connection point is connected,

wherein the electrical pathway of a circuit created from the feed to the return via a respective feed connection point and a respective return connection point is equal distance for each conductive sheet,

the method comprising:

connecting the at least two electroconductive sheets together to complete a circuit that causes direction of electrical flow in the one electroconductive sheet to be opposite to direction of electric flow in the other electroconductive sheet, and

switching the feed of electrical current between the feed connection point of the first edge set and the feed connection point of the second edge set in a periodic manner, the switching being uniform between the electroconductive sheets.

14. An RFID antenna, comprising:

at least two planar electroconductive sheets each electroconductive sheet comprising:

a feed connection point, which receives an electrical current from a feed that supplies current to the electroconductive sheet;

a return connection point, which acquires the electrical current from the electroconductive sheet and transfers the electrical current to a return;

wherein the at least two planar electroconductive sheets are conductively connected together to form an electrical circuit that includes the feed connection points and the return connection points of two of the planar electroconductive sheets when the two planar electroconductive sheets are connected to an electrical feed;

wherein the at least two planar electroconductive sheets are spaced apart to define an antenna read volume,

wherein the feed connection point is spaced apart from the return connection point in a first direction, and

wherein each electroconductive sheet further comprises:

a second feed connection point and a second return connection point, the second feed connection point spaced apart from the second return connection point in a second direction, different from the first direction; and

a switch configured to alternately switch the electrical current between the feed connection point and the second feed connection point.

Assignments (2)
CHANGE OF NAME Recorded Mar 5, 2026
From: SATO HOLDINGS CORPORATION
To: SATO CORPORATION
Reel/Frame 075019/0917 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2020
From: PONG, TAI WAI
To: SATO HOLDINGS CORPORATION
Reel/Frame 053585/0838 →
Continuity (1)
Related Publication 20180013201A1 · Jan 11, 2018