IP Library Granted Patent US 9,697,457
Granted Patent B2
US 9,697,457 · App. 15/241,639 · Granted Jul 4, 2017

RFID tag

Inventor: Geoffrey Morris (Buxted, GB)
Assignee: Cryogatt Systems Limited
G06K19/07758B01L3/00B01L3/5082B01L3/545B01L3/5453G06K19/041G06K19/06037G06K19/0772G06K19/07749G06K19/07775G06K19/08B01L2300/022B01L2300/0832B01L2300/0851Y10T29/4902
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Quick Facts
Patent No.
US 9,697,457
App. No.
15/241,639
Granted
Jul 4, 2017
Kind
B2
Abstract

An RFID tag for location inside a tubular base portion of a freestanding cryogenic vial, the RFID tag comprising: an RFID chip; an antenna connected to the chip; a support medium configured to support the chip and connected antenna; and a plug at least partially surrounding the chip, the antenna and the support medium, the plug being shaped to engage the tubular base portion of the vial. The RFID tag may be used to retrofit vials already stored at cryogenic temperatures.

Claims (44)

1. An RFID tag comprising:

an RFID chip;

an antenna connected to the RFID chip;

a support medium configured to support the RFID chip and antenna; and

a plug at least partially surrounding the RFID chip, antenna and support medium, the plug being shaped to engage a tubular base portion of a freestanding cryogenic vial, wherein an external surface of the plug is comparable in circumference to an internal dimensions of the tubular base portion such that the external surface of the plug forms a direct contact with an internal surface of the tubular base portion to prevent free movement therebetween.

2. The RFID tag according to claim 1 , wherein the external surface of the plug is smooth.

3. The RFID tag according to claim 1 , wherein the support medium encapsulates the RFID chip and antenna.

4. The RFID tag according to claim 1 , wherein the support medium is an epoxy resin.

5. The RFID tag according to claim 4 , wherein the epoxy resin has a coefficient of expansion of less than 105 ppm/° C. (below Tg).

6. The RFID tag according to claim 1 , wherein the plug comprises a cylindrical wall extending from a circular base.

7. The RFID tag according to claim 6 , wherein the cylindrical wall has the external surface of the plug and a second internal surface; and wherein the external surface of the cylindrical wall includes at least one groove.

8. The RFID tag according to claim 7 , wherein, when the plug is located inside the tubular base portion, the at least one groove forms a channel to allow cryogenic gas to escape from the tubular base portion.

9. The RFID tag according to claim 8 , wherein the external surface of the plug lies flush against the internal surface of the tubular base portion around an entire circumference of the external surface of the plug with an exception of a location of each of the at least one groove when the plug is fitted within said tubular base portion.

10. The RFID tag according to claim 8 , wherein each of the at least one groove lies along a direction which is parallel to a longitudinal axis of the freestanding cryogenic vial.

11. The RFID tag according to claim 10 , wherein the at least one groove includes a plurality of grooves that are equidistant from one another, positioned at 0°, 90°, 180°, and 270° around an circumference of the internal surface.

12. The RFID tag according to claim 7 , wherein each of the at least one groove extends around a circumference of the external surface of the cylindrical wall of the plug.

13. The RFID tag according to claim 1 , wherein the plug includes polypropylene.

14. The RFID tag according to claim 1 , wherein the plug is black.

15. The RFID tag according to claim 1 , wherein the plug includes a 2D barcode.

16. The RFID tag according to claim 1 , wherein the tubular base portion of the freestanding cryogenic vial is part of a single body that makes up the freestanding cryogenic vial; and

wherein the plug is shaped to engage the tubular base portion of the single body.

17. The RFID tag according to claim 1 , wherein the tubular base portion of the freestanding cryogenic vial is located on an intermediate structure of the freestanding cryogenic vial; and

wherein the plug is shaped to engage the tubular base portion on the intermediate structure.

18. The RFID tag according to claim 17 , wherein the intermediate structure is a jacket.

19. A system comprising:

a freestanding cryogenic vial; and

a RFID tag comprising:

an RFID chip;

an antenna connected to the RFID chip;

a support medium configured to support the RFID chip and antenna; and

a plug at least partially surrounding the RFID chip, antenna and support medium, the plug being shaped to engage a tubular base portion of a freestanding cryogenic vial, wherein an external surface of the plug is comparable in circumference to an internal dimensions of the tubular base portion such that the external surface of the plug forms a direct contact with an internal surface of the tubular base portion to prevent free movement therebetween,

wherein the RFID tag is located within the tubular base portion of the freestanding cryogenic vial.

20. A method comprising:

providing a supported structure, the supported structure comprising:

an RFID chip; and

an antenna connected to the RFID chip; and

a support medium that supports the RFID chip and the antenna;

attaching the supported structure to a plug, the plug being shaped to engage a tubular base portion of a freestanding vial, wherein an external surface of the plug is comparable in circumference to an internal dimensions of the tubular base portion; and

pushing the plug into the tubular base portion of the freestanding vial such that the external surface of the plug forms a direct contact with an internal surface of the tubular base portion to prevent free movement therebetween.

21. The method of claim 20 , further comprising:

laser welding the plug to the tubular base portion.

22. The method of claim 20 , further comprising:

attaching an intermediate structure to the freestanding vial, the intermediate structure including an intermediate-structure tubular base portion which forms the tubular base portion into which the plug is fitted.

23. The method of claim 20 , wherein the freestanding vial with the tubular base portion into which the plug is pushed includes a cryogenic vial containing a sample, such that the cryogenic vial is retrofitted with the RFID chip.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2025
From: CRYOGATT SYSTEMS LIMITED
To: TMRW LIFE SCIENCES, INC.
Reel/Frame 073127/0755 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2025
From: MORRIS, GEOFFREY
To: CRYOGATT SYSTEMS LIMITED
Reel/Frame 073120/0582 →
CHANGE OF ADDRESS OF ASSIGNEE Recorded Jun 11, 2019
From: CRYOGATT SYSTEMS LIMITED
To: CRYOGATT SYSTEMS LIMITED
Reel/Frame 049434/0177 →
Priority Claims (1)
GB 1301188.7 · Jan 23, 2013 · national
Continuity (2)
Continuation 14762672
Related Publication 20160358062A1 · Dec 8, 2016