IP Library Granted Patent US 9,130,318
Granted Patent B2
US 9,130,318 · App. 14/080,535 · Granted Sep 8, 2015

Localized reading of RFID tags located on multiple sides of a port from a single side using RFID coupling circuit and portable RFID reader

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Quick Facts
Patent No.
US 9,130,318
App. No.
14/080,535
Granted
Sep 8, 2015
Kind
B2
Abstract

One embodiment is directed to an adapter comprising a coupling circuit configured so that a portable RFID reader can be positioned near a first part of the coupling circuit associated with a first side of the adapter in order to perform a localized read of both an RFID tag attached to a first connector inserted into a first jack of the adapter and an RFID tag attached to a second connector inserted into a second jack of the adapter, wherein the coupling circuit is used to enhance a read range of the portable RFID reader when performing the localized read. These embodiments can be used in the outside plant of a telecommunications network. Other embodiments are disclosed.

Claims (28)

1. An adapter comprising:

a first jack associated with a first side of the adapter and configured so that a first connector can be inserted into the first jack at the first side of the adapter;

a second jack associated with a second side of the adapter and configured so that a second connector can be inserted into the second jack at the second side of the adapter, wherein the adapter is configured to communicatively couple the first connector to the second connector; and

a coupling circuit configured so that a portable RFID reader can be positioned near a first part of the coupling circuit associated with the first side of the adapter in order to perform a localized read of both an RFID tag attached to the first connector inserted into the first jack of the adapter and an RFID tag attached to the second connector inserted into the second jack of the adapter, wherein the coupling circuit is used to enhance a read range of the portable RFID reader when performing the localized read.

2. The adapter of claim 1 , wherein the coupling circuit comprises a first pickup coil, a second pickup coil, and a reader coil;

wherein the first coupling coil is configured so that an RFID tag attached to the first connector, when inserted into the first jack, will be positioned near the first pickup coupling structure;

wherein the second coupling coil is configured so that an RFID tag attached to the second connector, when inserted into the second jack, will be positioned near the second pickup coupling structure; and

wherein the first part of the coupling circuit includes the reader pickup coil.

3. The adapter of claim 1 , further comprising at least one clip to hold the adapter in a patch panel.

4. The adapter of claim 1 , wherein the adapter comprises a fiber optic adapter, wherein the first and second connectors comprises fiber optic connectors.

5. The adapter of claim 1 , wherein the adapter is configured to be field removable.

6. A patch panel system comprising: a panel in which openings are formed; and a plurality of adapters of claim 1 that are inserted into the openings in the panel.

7. The patch panel system of claim 6 , wherein the patch panel system is configured to be used in the outside plant of a telecommunications network.

8. The patch panel system of claim 6 , further comprising an enclosure that is at least one of tamper-resistant and weather-resistant.

9. A method comprising:

inserting a first connector into the first jack at a first side of an adapter;

inserting a second connector into the second jack at a second side of an adapter, wherein the adapter is configured to communicatively couple the first connector to the second connector;

positioning a portable RFID reader near a first part of a coupling circuit, the first part of the coupling circuit associated with the first side of the adapter; and

performing a localized read of both an RFID tag attached to the first connector inserted into the first jack of the adapter and an RFID tag attached to the second connector inserted into the second jack of the adapter while the portable RFID reader is positioned near the first part of the coupling circuit and using the coupling circuit to enhance a read range of the portable RFID reader when performing the localized read.

10. The method of claim 9 , wherein the coupling circuit comprises a first pickup coil, a second pickup coil, and a reader coil;

wherein the first coupling coil is configured so that an RFID tag attached to the first connector, when inserted into the first jack, will be positioned near the first pickup coupling structure;

wherein the second coupling coil is configured so that an RFID tag attached to the second connector, when inserted into the second jack, will be positioned near the second pickup coupling structure; and

wherein the first part of the coupling circuit includes the reader pickup coil.

11. The method of claim 9 , wherein the adapter further comprises at least one clip to hold the adapter in a patch panel.

12. The method of claim 9 , wherein the adapter comprises a fiber optic adapter, wherein the first and second connectors comprises fiber optic connectors.

13. The method of claim 9 , wherein the adapter is configured to be field removable.

14. The method of claim 9 , wherein the adapter is inserted into an opening in a panel included in a patch panel system.

15. The method of claim 9 , wherein the method is used in an outside plant of a telecommunications network.

Assignments (3)
CHANGE OF NAME Recorded May 23, 2022
From: TYCO ELECTRONICS UK INFRASTRUCTURE LIMITED
To: COMMSCOPE CONNECTIVITY UK LIMITED
Reel/Frame 060163/0847 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2015
From: TYCO ELECTRONICS UK LTD
To: TYCO ELECTRONICS UK INFRASTRUCTURE LIMITED
Reel/Frame 036619/0774 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2015
From: STANDISH, IAN MILES; LAMBOURN, STEPHEN; MATHER, DAVID
To: TYCO ELECTRONICS UK LTD.
Reel/Frame 036157/0016 →