IP Library › Granted Patent US 12,514,448
Granted Patent B2
US 12,514,448 · App. 17/464,551 · Granted Jan 6, 2026

Embedded systems in medical monitoring systems

Inventors: Xuandong Hua (Mountain View, CA); Theodore J. Kunich (Pleasanton, CA); Jean-Pierre J. Cole (Tracy, CA); Nelson Y. Zhang (Fremont, CA); JunLe Zhang (Concord, CA); Danny Chan (Daly City, CA); Kurt E. Leno (San Leandro, CA); Ping-Kuen Lam (Milpitas, CA); Victor Paishi Huang (Union City, CA); Yee-Huan Ng (Alameda, CA)
Assignee: ABBOTT DIABETES CARE INC.
A61B5/002A61B5/01A61B5/024A61B5/11A61B5/14532A61B5/6846A61B5/742A61B2562/08
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Quick Facts
Patent No.
US 12,514,448
App. No.
17/464,551
Granted
Jan 6, 2026
Kind
B2
Abstract

A medical sensor includes an application-specific integrated circuit (ASIC), medical hardware, and a communication module. The ASIC is communicatively coupled to the medical hardware and communication module. The ASIC is configured to receive measurement signals from the medical hardware and provide the measurement signals to the communication module. The communication module is configured to process the measurement signal into measurement results and transmit the measurement results to a remove device. The communication module includes an application layer for processing the measurement signals and a link layer for transmitting the measurement results. The ASIC is configured to detect that a voltage supplied to the ASIC is below a threshold level and determine an amount of time that the voltage has been below the threshold level. The ASIC is further configured to respond to the voltage supplied to the ASIC being below a threshold level based on the determined amount of time.

Claims (29)

1 . A medical sensor comprising an application-specific integrated circuit (ASIC), medical hardware, and a communication module; wherein:

the ASIC is communicatively coupled to the medical hardware and communication module;

the ASIC comprises an analog front end that receives measurement signals from the medical hardware and further comprises a serial-peripheral interface that provides the measurement signals to the communication module;

the communication module is configured to process the measurement signal into measurement results;

the ASIC is further configured to detect an activation request received by the communication module from a computing device via a first communication channel, wherein the ASIC, in response to detecting the activation request received via the first communication channel, causes the communication module to enable a radio that is associated with a second communication channel;

the communication module further is configured to send an authentication request to the computing device via the second communication channel;

one of the first communication channel or the second communication channel corresponds to a Bluetooth Low-Energy protocol that is compliant with an application layer encryption; and

the ASIC is further configured to determine that the medical sensor is operating outside a predetermined temperature range and disable the communication module from transmitting data.

2 . The medical sensor of claim 1 , wherein the communication module operates an application layer and a link layer.

3 . The medical sensor of claim 1 , wherein the communication module is physically separated from the ASIC.

4 . The medical sensor of claim 1 , wherein the communication module is further configured to provide the measurement results to a receiving device for display via wireless communication.

5 . The medical sensor of claim 4 , wherein the communication module is further configured to:

detect a change in temperature of the medical sensor; and

adjust a transmission power associated with the wireless communication in response to the change in temperature.

6 . The medical sensor of claim 1 , wherein the medical hardware is configured to be partially inserted into a body of a patient.

7 . The medical sensor of claim 1 , wherein the Bluetooth Low-Energy protocol is a non-standard variation of the Bluetooth Low-Energy protocol.

8 . The medical sensor of claim 1 , wherein the ASIC is further configured, when detecting the activation request from the computing device, to receive wireless power and use the wireless power to cause activation of the communication module.

9 . The medical sensor of claim 1 , wherein the communication module is further configured to send communication parameters for facilitating communication between the medical sensor and the computing device via the second communication channel to the computing device.

10 . The medical sensor of claim 1 , wherein the first communication channel is compliant with a near-field communication protocol and the second communication channel is compliant with the Bluetooth Low-Energy protocol.

11 . The medical sensor of claim 1 , wherein the communication module comprises a memory storing device-specific data uniquely associated with the ASIC; and wherein the communication module is further configured to, upon activation of the medical sensor:

read device-specific data from a memory of the ASIC;

compare the device-specific data read from the memory of the ASIC to the device-specific data stored in the memory of the communication module to verify an integrity of the device-specific data.

12 . The medical sensor of claim 1 , wherein the ASIC or communication module is configured to detect a communication request from a computing device, the communication request comprising a manufacturer code corresponding to the computing device; and

wherein the ASIC is configured to, in response to the communication request, compare the manufacturer code to a set of manufacturer codes stored in a memory of the ASIC, wherein a response to the communication request is based on the result of the comparison.

13 . The medical sensor of claim 1 , wherein the ASIC or communication module is configured to detect a communication request from a computing device, the communication request comprising a manufacturer code corresponding to the computing device; and

wherein the communication module is configured to, in response to the communication request, compare the manufacturer code to a set of manufacturer codes stored in a memory of the communication module, wherein a response to the communication request is based on the result of the comparison.

14 . The medical sensor of claim 1 , wherein the medical hardware is configured to detect body temperature, heart rate, blood glucose levels, or motion readings.

15 . The medical sensor of claim 1 , wherein the medical hardware is configured for continuous glucose monitoring.

16 . The medical sensor of claim 1 , wherein the medical hardware is configured to be partially inserted into a body of a patient.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2021
From: HUA, XUANDONG; KUNICH, THEODORE J.; COLE, JEAN-PIERRE J.; ZHANG, NELSON Y.; ZHANG, JUNLE; CHAN, DANNY; LENO, KURT E.; LAM, PING-KUEN; HUANG, VICTOR PAISHI; NG, YEE-HUAN
To: ABBOTT DIABETES CARE INC.
Reel/Frame 057565/0940 →
Continuity (3)
Continuation PCTUS2021048521 · Aug 31, 2021
Provisional Application 63132631 · Dec 31, 2020
Related Publication 20220202290A1 · Jun 30, 2022
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