IP Library Granted Patent US 10,095,972
Granted Patent B2
US 10,095,972 · App. 15/445,363 · Granted Oct 9, 2018

Switchable RFID antennas responsive to an environmental sensor

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,095,972
App. No.
15/445,363
Granted
Oct 9, 2018
Kind
B2
Abstract

Systems for switchable RFID tags responsive to an environmental sensor are provided. In one embodiment, the system includes a primary RFID tag and a secondary RFID tag, and a switch being associated with the primary RFID tag and the secondary RFID tag in a manner that the primary RFID tag and the secondary RFID tag are not activated at the same time. Each RFID tag may include an integrated circuit and an antenna. The system may also include at least two first electrical terminals electrically connecting the primary RFID tag to the switch, and at least two second electrical terminals electrically connecting the secondary RFID tag to the switch.

Claims (69)

1. A sensor system comprising:

a primary RFID tag and a secondary RFID tag, each RFID tag comprising an antenna and an integrated circuit electrically connected to the antenna;

a switch being electrically connected to the antenna of the primary RFID tag and the antenna of the secondary RFID tag and being electrically connected with the primary RFID tag and the secondary RFID tag in a manner that the primary RFID tag and the secondary RFID tag are not activated at the same time;

at least two first electrical terminals electrically connecting the primary RFID tag to the switch; and

at least two second electrical terminals electrically connecting the secondary RFID tag to the switch,

wherein the switch has a conductive state and a non-conductive state, and when the switch is in the conductive state, the switch completes an electrical connection from the antenna of the primary RFID tag with the integrated circuit of the primary RFID tag such that the primary RFID tag is activated and an electrical connection from the antenna of the secondary RFID tag with the integrated circuit of the secondary RFID tag is shorted such that the secondary RFID tag is deactivated, and

wherein when the switch is in the non-conductive state, the switch opens the electrical connection from the antenna of the primary RFID tag with the integrated circuit of the primary RFID tag such that the primary RFID tag is deactivated and a short of the electrical connection from the antenna of the secondary RFID tag with the integrated circuit of the secondary RFID tag is removed such that the secondary RFID tag is activated.

2. The sensor system of claim 1 , wherein a change in the state of the switch is permanent, providing an irreversible indication of a temperature event.

3. The sensor system of claim 1 , wherein the switch comprises a sensor device selected from the group consisting of a thermal history sensor, a high-temperature threshold sensor, a low-temperature threshold sensor, a freeze sensor, a melt sensor, a time temperature sensor, and a combination of the sensors thereof.

4. The sensor system of claim 1 , wherein the primary RFID tag or the secondary RFID tag comprises a passive tag.

5. The sensor system of claim 1 , wherein the system is attached to or supported by a host product.

6. A sensor system comprising:

a primary RFID tag and a secondary RFID tag, each RFID tag comprising an antenna and an integrated circuit electrically connected to the antenna;

a switch being electrically connected to the antenna of the primary RFID tag and the antenna of the secondary RFID tag and being electrically connected with the primary RFID tag and the secondary RFID tag in a manner that the primary RFID tag and the secondary RFID tag are not activated at the same time;

at least two first electrical terminals electrically connecting the primary RFID tag to the switch;

at least two second electrical terminals electrically connecting the secondary RFID tag to the switch,

an additional secondary RFID tag having an antenna and an integrated circuit electrically connected to the antenna;

an additional switch being electrically connected to the antenna of the primary RFID tag and the antenna of the additional secondary RFID tag and being electrically connected with the primary RFID tag and the additional secondary RFID tag in a manner that the primary RFID tag and the additional secondary RFID tag are not activated at the same time;

at least two third electrical terminals electrically connecting the primary RFID tag to the additional switch; and

at least two fourth electrical terminals electrically connecting the additional secondary RFID tag to the additional switch.

7. A sensor system comprising:

a primary RFID tag and a secondary RFID tag, each RFID tag comprising an antenna and an integrated circuit electrically connected to the antenna;

a switch being electrically connected to the antenna of the primary RFID tag and the antenna of the secondary RFID tag and being electrically connected with the primary RFID tag and the secondary RFID tag in a manner that the primary RFID tag and the secondary RFID tag are not activated at the same time;

at least two first electrical terminals electrically connecting the primary RFID tag to the switch;

at least two second electrical terminals electrically connecting the secondary RFID tag to the switch,

wherein the switch comprises a sensor device having a dopant layer, a conductive polymer, and a permeable membrane located between the dopant layer and the conductive polymer,

wherein when the sensor device reaches a threshold temperature, the dopant layer diffuses through the permeable membrane into the conductive polymer to increase the conductivity of the conductive polymer, and

wherein the at least two first electrical terminals and the at least two second electrical terminals are electrically connected to the conductive polymer.

8. The sensor system of claim 7 , wherein the dopant layer comprises a waterbased acrylic adhesive layer containing a microencapsulated dopant.

9. A sensor system comprising:

a primary RFID tag and a secondary RFID tag, each RFID tag comprising an antenna and an integrated circuit electrically connected to the antenna;

a switch being electrically connected to the antenna of the primary RFID tag and the antenna of the secondary RFID tag and being electrically connected with the primary RFID tag and the secondary RFID tag in a manner that the primary RFID tag and the secondary RFID tag are not activated at the same time;

at least two first electrical terminals electrically connecting the primary RFID tag to the switch;

at least two second electrical terminals electrically connecting the secondary RFID tag to the switch,

wherein the switch comprises a sensor device having a chemical etchant layer, a conductive metal layer, and a permeable membrane located between the chemical etchant layer and the conductive metal layer, and

wherein when the sensor device reaches a threshold temperature, the chemical etchant layer diffuses through the membrane into the conductive metal layer to degrade the conductivity of the conductive metal layer.

10. The sensor system of claim 9 , wherein the at least two first electrical terminals and the at least two second electrical terminals are electrically connected to the conductive metal layer.

11. The sensor system of claim 9 , wherein the chemical etchant layer comprises a water-based acrylic adhesive layer containing a microencapsulated etchant.

12. A sensor system comprising:

a primary RFID tag and a secondary RFID tag, each RFID tag comprising an antenna and an integrated circuit electrically connected to the antenna;

a switch being electrically connected to the antenna of the primary RFID tag and the antenna of the secondary RFID tag and being electrically connected with the primary RFID tag and the secondary RFID tag in a manner that the primary RFID tag and the secondary RFID tag are not activated at the same time;

at least two first electrical terminals electrically connecting the primary RFID tag to the switch;

at least two second electrical terminals electrically connecting the secondary RFID tag to the switch,

wherein the switch comprises a sensor device having a first chamber with a conductive liquid, a second chamber, and a permeable membrane located between the first chamber and the second chamber, and

wherein when the sensor device reaches a threshold temperature, the conductive liquid diffuses through the membrane into the second chamber.

13. The sensor system of claim 12 , wherein the at least two first electrical terminals and the at least two second electrical terminals are electrically connected to the first chamber.

14. A sensor system comprising:

a primary RFID tag and a secondary RFID tag, each RFID tag comprising an antenna and an integrated circuit electrically connected to the antenna;

a switch being electrically connected to the antenna of the primary RFID tag and the antenna of the secondary RFID tag and being electrically connected with the primary RFID tag and the secondary RFID tag in a manner that the primary RFID tag and the secondary RFID tag are not activated at the same time;

at least two first electrical terminals electrically connecting the primary RFID tag to the switch;

at least two second electrical terminals electrically connecting the secondary RFID tag to the switch,

wherein the switch comprises a sensor device having a first chamber with a gel, a second chamber, and a permeable membrane located between the first chamber and the second chamber, and

wherein when the sensor device reaches a threshold temperature, the gel passes through the permeable membrane into the second chamber.

15. The sensor system of claim 14 , wherein the at least two first electrical terminals and the at least two second electrical terminals are electrically connected to the first chamber.

16. A sensor system comprising:

a primary RFID tag and a secondary RFID tag, each RFID tag comprising an antenna and an integrated circuit electrically connected to the antenna;

a switch being electrically connected to the antenna of the primary RFID tag and the antenna of the secondary RFID tag and being electrically connected with the primary RFID tag and the secondary RFID tag in a manner that the primary RFID tag and the secondary RFID tag are not activated at the same time;

at least two first electrical terminals electrically connecting the primary RFID tag to the switch;

at least two second electrical terminals electrically connecting the secondary RFID tag to the switch,

wherein the switch comprises a sensor device having a first chamber with a pH modifying liquid, a second chamber with a pH sensitive gel, a third chamber, a first membrane located between the first chamber and the second chamber, and a second membrane located between the second chamber and the third chamber, and

wherein when the sensor device reaches a threshold temperature, the pH modifying liquid diffuses through the first membrane into the second chamber and turns the pH sensitive gel to liquid, causing the pH sensitive gel to pass through the second membrane.

17. The sensor system of claim 16 , wherein the at least two first electrical terminals and the at least two second electrical terminals are electrically connected to the third chamber.

18. A temperature-sensitive product, comprising:

a host product;

a container containing the host product; and

the sensor system of claim 1 ,

wherein the sensor system is attached to the container.

19. The temperature-sensitive product of claim 18 , wherein the host product is selected from the group consisting of a vaccine, a drug, a medication, a pharmaceutical, a cosmeceutical, a nutricosmetic, a nutritional supplement, a biological material, a food stuff, a medical device, a prophylactic, a cosmetic, a beauty aid, and a perishable munition and ordnance.

20. The temperature-sensitive product of claim 19 , wherein the product is a vaccine.

Assignments (5)
MERGER Recorded May 29, 2025
From: TEMPTIME CORPORATION
To: ZEBRA TECHNOLOGIES CORPORATION
Reel/Frame 071548/0054 →
RELEASE OF SECURITY INTEREST - 364 - DAY Recorded Mar 5, 2021
From: JPMORGAN CHASE BANK, N.A.
To: ZEBRA TECHNOLOGIES CORPORATION; LASER BAND, LLC; TEMPTIME CORPORATION
Reel/Frame 056036/0590 →
SECURITY INTEREST Recorded Sep 1, 2020
From: ZEBRA TECHNOLOGIES CORPORATION; LASER BAND, LLC; TEMPTIME CORPORATION
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 053841/0212 →
SECURITY INTEREST Recorded Apr 25, 2019
From: TEMPTIME CORPORATION
To: JPMORGAN CHASE BANK, N.A, AS COLLATERAL AGENT
Reel/Frame 048995/0241 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2017
From: BHATIA, RAVI; ABDO, MOHANNAD
To: TEMPTIME CORPORATION
Reel/Frame 041696/0314 →