IP Library Granted Patent US 9,689,832
Granted Patent B2
US 9,689,832 · App. 14/882,419 · Granted Jun 27, 2017

Temperature sensing analyte sensors, systems, and methods of manufacturing and using same

Inventors: Hoi-Cheong Steve Sun (Tampa, FL); John P. Creaven (Pearl River, NY); Mu Wu (Hopewell Junction, NY); Paul M. Ripley (Nanuet, NY); Steven C. Charlton (Osceola, IN)
Assignee: Ascensia Diabetes Care Holdings AG
G01N27/3274A61B5/1486A61B5/14532G01K7/02G01K13/00G01N25/00A61B2560/0252A61B2560/0285A61B2562/12Y10T29/49117
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Quick Facts
Patent No.
US 9,689,832
App. No.
14/882,419
Granted
Jun 27, 2017
Kind
B2
Abstract

In some aspects, an analyte sensor is provided for detecting an analyte concentration level in a bio-fluid sample. The analyte sensor has a base, a first electrode and a second electrode wherein a thermocouple portion is provided integral with the second electrode thereby enabling on-sensor temperature measurement capability. In some embodiments, two and only two electrical contact engagement portions are provided thereby simplifying electrical contact. Manufacturing methods and systems utilizing the analyte sensors are provided, as are numerous other aspects.

Claims (16)

1. An analyte sensor, comprising:

a first electrode having a contact engagement portion and a sensing portion;

a second electrode having a contact engagement portion and a sensing portion;

an active region provided in contact with, and extending between, the sensing portions of the first electrode and the second electrode; and

a thermocouple portion comprising at least part of a conducting path from the active region to the contact engagement portion of the second electrode.

2. The analyte sensor of claim 1 , wherein the first electrode comprises a working electrode, and the second electrode comprises a counter or reference electrode.

3. The analyte sensor of claim 1 , wherein the contact engagement portions are the only two contact engagement portions of the analyte sensor.

4. The analyte sensor of claim 1 , further comprising a base, the first electrode and the second electrode extending along the base.

5. The analyte sensor of claim 1 , wherein the first electrode comprises a different conductive material than the thermocouple portion of the second electrode.

6. The analyte sensor of claim 1 , wherein the thermocouple portion comprises a carbon-based material.

7. The analyte sensor of claim 4 , wherein the first electrode comprises a noble metal and the thermocouple portion comprises a carbon-based material.

8. The analyte sensor of claim 1 , further comprising a fuse member extending between the first electrode and the second electrode.

9. The analyte sensor of claim 8 , wherein the fuse member is manufactured from the same material as the first electrode.

10. The analyte sensor of claim 8 , wherein the fuse member has a burn value that is less than 250 mV.

11. The analyte sensor of claim 8 , wherein the fuse member has a burn value that is less than a constant voltage bias adapted to be received across the active region during an analyte measurement test.

12. The analyte sensor of claim 8 , wherein the thermocouple portion comprises a carbon trace extending from a reference junction at the contact engagement portion of the second electrode and a sensing junction adjacent to the fuse member.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2022
From: SUN, HOI-CHEONG STEVE; CREAVEN, JOHN P.; WU, MU; RIPLEY, PAUL M.; CHARLTON, STEVEN C.
To: BAYER HEALTHCARE LLC
Reel/Frame 060956/0766 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2016
From: BAYER HEALTHCARE LLC
To: ASCENSIA DIABETES CARE HOLDINGS AG
Reel/Frame 038009/0227 →
Continuity (3)
Continuation 13884694
Provisional Application 61413365 · Nov 12, 2010
Related Publication 20160033442A1 · Feb 4, 2016