IP Library › Granted Patent US 10,178,954
Granted Patent B2
US 10,178,954 · App. 15/591,073 · Granted Jan 15, 2019

Analyte monitoring system and methods

Inventors: Martin J. Fennell (Concord, CA); Lei He (Moraga, CA); Mark Kent Sloan (Redwood City, CA)
Assignee: Abbott Diabetes Care Inc.
A61B5/0026A61B5/0002A61B5/0031A61B5/01A61B5/1468A61B5/1473A61B5/14532A61B5/14546A61B5/14865A61B5/72A61B5/7278A61B5/742A61B2560/0223
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Quick Facts
Patent No.
US 10,178,954
App. No.
15/591,073
Granted
Jan 15, 2019
Kind
B2
Abstract

Methods and systems for providing data communication in medical systems are disclosed.

Claims (27)

1. An analyte monitoring device, comprising:

an analyte sensor for positioning in fluid contact with bodily fluid under a skin surface to monitor an analyte level in the bodily fluid; and

sensor electronics operatively coupled to the analyte sensor and configured to:

detect one or more predefined commands received from a remote location each having an associated signal strength, communicate an identification information to the remote location in response to the one or more predefined commands received from the remote location when the predefined commands from the remote location have a signal strength greater than a predetermined threshold, the sensor electronics further configured to communicate a response data packet to the remote location based on the received one or more predefined commands.

2. The device of claim 1 , wherein the sensor electronics further includes a memory, and is configured to update a memory location in the memory with each communication to the remote location.

3. The device of claim 2 , wherein the identification information communicated by the sensor electronics to the remote location include one or more of sensor electronics information and analyte sensor parameter information.

4. The device of claim 3 , wherein the analyte sensor parameter information includes a sensor calibration parameter stored in the memory of the sensor electronics.

5. The device of claim 1 , wherein the remote location and the sensor electronics are in wireless communication using a radio frequency communication protocol.

6. The device of claim 1 , wherein the sensor electronics includes a current to frequency conversion unit operatively coupled to the analyte sensor, the current to frequency conversion unit configured to receive current signals from the analyte sensor which are representative of the monitored analyte level, and to convert the received current signals to respective counts.

7. The device of claim 1 , wherein the remote location includes a display configured to output data related to the response data packet communicated from the sensor electronics.

8. The device of claim 1 , wherein the analyte sensor includes a plurality of electrodes comprising at least one working electrode having an analyte-responsive enzyme bonded to a polymer disposed on the working electrode.

9. The device of claim 8 , wherein the working electrode comprises a mediator.

10. The device of claim 9 , wherein the mediator is crosslinked with the polymer disposed on the working electrode.

11. A system, comprising:

an analyte sensor for positioning in fluid contact with bodily fluid under a skin surface to monitor an analyte level in the bodily fluid;

a remote location to provide predefined commands; and

sensor electronics operatively coupled to the analyte sensor and configured to:

detect one or more predefined commands received from the remote location each having an associated signal strength, communicate an identification information to the remote location in response to the one or more predefined commands received from the remote location when the predefined commands from the remote location have a signal strength greater than a predetermined threshold, and to communicate a response data packet to the remote location based on the received one or more predefined commands.

12. The system of claim 11 , wherein the sensor electronics further includes a memory, and is configured to update a memory location in the memory with each communication to the remote location.

13. The system of claim 12 , wherein the identification information communicated by the sensor electronics to the remote location include one or more of sensor electronics information and analyte sensor parameter information.

14. The system of claim 13 , wherein the analyte sensor parameter information includes a sensor calibration parameter stored in the memory of the sensor electronics.

15. The system of claim 11 , wherein the remote location and the sensor electronics are in wireless communication using a radio frequency communication protocol.

16. The system of claim 11 , wherein the sensor electronics includes a current to frequency conversion unit operatively coupled to the analyte sensor, the current to frequency conversion unit configured to receive current signals from the analyte sensor which are representative of the monitored analyte level, and to convert the received current signals to respective counts.

17. The system of claim 11 , wherein the remote location includes a display configured to output data related to the response data packet communicated from the sensor electronics.

18. The system of claim 11 , wherein the analyte sensor includes a plurality of electrodes comprising at least one working electrode having an analyte-responsive enzyme bonded to a polymer disposed on the working electrode.

19. The system of claim 18 , wherein the working electrode comprises a mediator.

20. The system of claim 19 , wherein the mediator is crosslinked with the polymer disposed on the working electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2017
From: FENNELL, MARTIN J.; HE, LEI; SLOAN, MARK KENT
To: ABBOTT DIABETES CARE INC.
Reel/Frame 042417/0102 →
Continuity (5)
Continuation 14709392 · May 11, 2015
Continuation 13906288 · May 30, 2013
Continuation 12117698 · May 8, 2008
Provisional Application 60916776 · May 8, 2007
Related Publication 20170245760A1 · Aug 31, 2017