IP Library Granted Patent US 12,251,187
Granted Patent B1
US 12,251,187 · App. 17/895,578 · Granted Mar 18, 2025

NFC beacons for bidirectional communication between an electrochemical sensor and a reader device

Inventors: William James Biederman (Fox Island, WA); Robert Francis Wiser (San Francisco, CA); Brian Otis (Saratoga, CA)
Assignees: Dexcom, Inc.; Verily Life Sciences LLC
A61B5/002A61B5/14532A61B5/1495A61B5/6801A61B5/6847H04B5/72H04W4/80H04W12/02H04W12/04H04W48/10
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 12,251,187
App. No.
17/895,578
Granted
Mar 18, 2025
Kind
B1
Abstract

The present disclosure is related to a sensing device. The sensing device includes a sensor, a memory, a processor, and two radio units. A first radio unit of the two radio units is configured for bidirectional communication with an external device using a first radio communication protocol. The bidirectional communication comprises receiving configuration data from the external device via a first radio signal from the external device. The second radio unit of the two radio units is configured for unidirectional communication with the external device using a second radio communication protocol. The unidirectional communication comprises the second radio unit transmitting a second radio signal to the external device. The second radio signal communicates data including one or more measurements obtained by the sensor.

Claims (53)

1. A sensing device comprising:

an analyte sensor;

a memory;

a processor; and

a transceiver comprising:

a first radio unit configured for bidirectional communication with an external device using a first radio communication protocol, wherein the bidirectional communication comprises receiving configuration data from the external device; and

a second radio unit configured by the configuration data for unidirectional communication with the external device using a second radio communication protocol different from the first radio communication protocol, wherein the unidirectional communication comprises the second radio unit transmitting a second radio signal to the external device, wherein the second radio signal communicates data based on a plurality of measurements obtained by the analyte sensor; and

wherein the first radio communication protocol has a shorter range than the second radio communication protocol.

2. The sensing device of claim 1 , wherein:

the configuration data comprises an encryption key;

the processor is configured to store the encryption key in the memory in response to receiving the configuration data; and

the second radio unit is configured to encrypt the data using the encryption key prior to transmitting the unidirectional communication.

3. The sensing device of claim 1 , wherein:

the configuration data comprises a pairing key;

the pairing key is stored in the memory by the processor; and

the second radio unit communicates with the external device based on the pairing key.

4. The sensing device of claim 1 , wherein the configuration data comprises calibration data for the analyte sensor, and wherein the processor is configured to calibrate the analyte sensor in response to receiving the configuration data.

5. The sensing device of claim 1 , wherein the analyte sensor is configured to measure glucose levels in a bodily fluid.

6. The sensing device of claim 1 , wherein the processor is configured to store measurements from the analyte sensor in the memory, wherein the bidirectional communication further comprises sending the measurements stored in the memory to the external device via the first radio unit, and wherein the unidirectional communication further comprises sending data based on a single measurement to the external device via the second radio unit.

7. The sensing device of claim 1 , further comprising a power component configured to collect/draw radio frequency energy from the external device to supply power to the memory, the processor, the first radio unit, the second radio unit, or any combination thereof.

8. The sensing device of claim 1 , wherein the first radio communication protocol is a near field communication (NFC) protocol and wherein the second radio communication protocol is a Bluetooth Low Energy (BLE) protocol.

9. The sensing device of claim 1 , wherein the sensing device is a body-mountable device, a wearable device, an implantable device, or any combination thereof.

10. A method comprising:

receiving radio frequency energy from an external device by a transceiver of a sensing device, wherein the sensing device comprises:

an analyte sensor,

a memory,

a processor, and

a first radio unit configured for bidirectional communication with the external device using a first radio communication protocol, and

a second radio unit configured for unidirectional communication with the external device using a second radio communication protocol different from the first radio communication protocol, wherein the first radio communication protocol has a shorter range than the second radio communication protocol;

obtaining, by the first radio unit, configuration data from the radio frequency energy and storing the configuration data in the memory;

obtaining one or more measurements using the analyte sensor; and

transmitting, by the second radio unit, data based on the one or more measurements.

11. The method of claim 10 , further comprising:

storing the one or more measurements in the memory;

receiving, by the first radio unit, an instruction from the external device; and

transmitting, by the first radio unit, the one or more stored measurements to the external device in response to the instruction.

12. The method of claim 10 , wherein the configuration data comprises calibration data for the analyte sensor; and further comprising calibrating the analyte sensor based on the configuration data in response to receiving the configuration data.

13. The method of claim 10 , wherein the configuration data comprises an encryption key, and wherein the data transmitted by the second radio unit is encrypted using the encryption key.

14. The method of claim 10 , further comprising powering the sensing device using the radio frequency energy.

15. The method of claim 10 , wherein the first radio communication protocol is a near field communication (NFC) protocol and wherein the second radio communication protocol is a Bluetooth Low Energy (BLE) protocol.

16. A sensing device comprising:

an analyte sensor configured to obtain a plurality of measurements;

a memory configured to store data related to the plurality of measurements;

a first radio unit configured for bidirectional communication with an external device using a first radio communication protocol;

a second radio unit configured for unidirectional communication using a second radio communication protocol different from the first radio communication protocol,

wherein the first radio communication protocol has a shorter range than the second radio communication protocol.

17. The sensing device of claim 16 , wherein the bidirectional communication comprises a data request from the external device and communication of at least a subset of the data related to the plurality of measurements from the memory.

18. The sensing device of claim 16 , wherein

the unidirectional communication comprises an advertisement packet containing data related to a most recent measurement of the plurality of measurements,

the bidirectional communication comprises a data request from the external device,

the advertisement packet is transmitted by the second radio unit before the data request is received.

19. The sensing device of claim 16 , wherein the sensing device is a body-mountable device, a wearable device, an implantable device, or any combination thereof.

20. The sensing device of claim 16 , wherein the first radio communication protocol is a near field communication (NFC) protocol and wherein the second radio communication protocol is a Bluetooth Low Energy (BLE) protocol.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2024
From: BIEDERMAN, WILLIAM JAMES; WISER, ROBERT FRANCIS; OTIS, BRIAN
To: VERILY LIFE SCIENCES LLC
Reel/Frame 069572/0377 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2023
From: VERILY LIFE SCIENCES LLC
To: DEXCOM, INC.
Reel/Frame 062887/0119 →