IP Library › Granted Patent US 10,985,804
Granted Patent B2
US 10,985,804 · App. 16/925,233 · Granted Apr 20, 2021

Systems and methods for processing and transmitting sensor data

Inventors: Thomas Miller (Valley Center, CA); Mark Dervaes (Carlsbad, CA); Phong Lieu (San Diego, CA); Peter C. Simpson (Cardiff, CA); Shawn Larvenz (Ramona, CA); Jacob S. Leach (San Diego, CA); Sebastian Bohm (San Diego, CA)
Assignee: DexCom, Inc.
H04B5/0031A61B5/1486A61B5/1495A61B5/14532G01N27/3271H04B5/0043H04W4/80H04W12/06H04W12/068H04W52/0229H04W76/14H04B5/02Y02D30/70
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Quick Facts
Patent No.
US 10,985,804
App. No.
16/925,233
Granted
Apr 20, 2021
Kind
B2
Abstract

Systems and methods for processing, transmitting and displaying data received from an analyte sensor, such as a glucose sensor, are disclosed. In an embodiment, a method for transmitting data between a first communication device associated with an analyte sensor and a second communication device configured to provide user access to sensor-related information comprises: activating a transceiver of a first communication device associated with an analyte sensor at a first time; and establishing a two-way communication channel with the second communication device; wherein the activating comprises waking the transceiver from a low power sleep mode using a forced wakeup from the second communication device.

Claims (14)

1. A transcutaneous analyte sensor system, the system comprising:

a transcutaneous analyte sensor comprising an in vivo portion wherein the in vivo portion comprises an electrochemical sensor, wherein the electrochemical sensor comprises at least a membrane and one or more electrodes, wherein at least one electrode of the one or more electrodes is configured as a working electrode;

sensor electronics operably connected to the transcutaneous analyte sensor, wherein the sensor electronics comprises circuitry associated with measuring and processing sensor data received from the transcutaneous analyte sensor, wherein the sensor electronics comprises a first Bluetooth transceiver module and a first Near Field Communication (NFC) module; and

a display device operably connected to the sensor electronics, wherein the display device is configured to display an estimated analyte concentration value in a host, wherein the display device comprises a second Bluetooth transceiver module and a second Near Field Communication (NFC) module;

wherein the sensor electronics is configured to send sensor related information to the display device during periodic Bluetooth transmission windows, wherein the Bluetooth transmission windows have a duration of less than or equal to one minute and a time between each transmission window of 30 minutes or less;

wherein the display device is configured to send forced wake-up commands to the sensor electronics via NFC, and wherein the sensor electronics is configured to respond to at least some of the forced wake-up commands by immediately sending sensor related information to the display device.

2. The system of claim 1 , wherein the first NFC module is configured to be powered by the second NFC module during transmission of at least one forced wake-up command.

3. The system of claim 1 , wherein the display device comprises a mobile phone hosting software for controlling the second NFC module.

4. The system of claim 1 , wherein the first Bluetooth module is activated at the start of one or more of the transmission windows and is deactivated at the end of one or more of the transmission windows.

5. The system of claim 4 , wherein the sensor electronics is configured to enter a low power sleep mode between transmission windows.

6. The system of claim 1 , wherein the display device is configured to wake up the sensor electronics from a first low power sleep mode at the start of a sensor session with a first forced wake up command from the second NFC module.

7. The system of claim 6 , wherein the first low power sleep mode is a storage mode.

8. The system of claim 6 , wherein the sensor electronics is configured to respond to the first forced wake-up command by entering a sensor initialization process and establishing a two-way communication channel with the display device using the first Bluetooth transceiver module.

9. The system of claim 8 , wherein the first low power sleep mode is a storage mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2020
From: MILLER, THOMAS; DERVAES, MARK; LIEU, PHONG; SIMPSON, PETER C.; LARVENZ, SHAWN; LEACH, JACOB S.; BOHM, SEBASTIAN
To: DEXCOM, INC.
Reel/Frame 053528/0717 →
Continuity (5)
Continuation 16546099 · Aug 20, 2019
Continuation 15413206 · Jan 23, 2017
Continuation 13830330 · Mar 14, 2013
Continuation 13827577 · Mar 14, 2013
Related Publication 20200343941A1 · Oct 29, 2020
Cited By (3)
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