IP Library Patent Application 17413243
Patent Application
App. No. 17/413,243

SYSTEM TO IMPROVE SAFETY AND RELIABILITY OF A LITHIUM-ION (LI-ION) BATTERY PACK

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Quick Facts
Patent No.
US None
App. No.
17/413,243
Abstract

A battery pack ( 12 ) includes one or more electrical battery cells ( 18 ). A battery management system ( 20 ) includes at least one electronic processor ( 24 ) configured to monitor parameters of the battery pack. At least one fault detection sensor includes at least one of: at least one gas sensor ( 36 ) configured to measure a gas evolving from the plurality of electrical battery cells; and a shock sensor ( 30 ) configured to measure an impact on the battery pack. A housing ( 16 ) encloses the plurality of electrical battery cells, the battery management system, and the at least one fault detection sensor. The battery management system is configured to perform a remediation action responsive to detection of a fault by the at least one fault detection sensor.

Claims (59)

1 . A battery pack, comprising:

one or more electrical battery cells;

a battery management system including at least one electronic processor configured to monitor parameters of the battery pack;

at least one fault detection sensor including at least one of:

at least one gas sensor configured to measure a gas evolving from the plurality of electrical battery cells; and

a shock sensor configured to measure an impact on the battery pack; and

a housing enclosing the plurality of electrical battery cells, the battery management system, and the at least one fault detection sensor;

wherein the battery management system is configured to perform a remediation action responsive to detection of a fault by the at least one fault detection sensor.

2 . The battery pack of claim 1 , wherein the at least one fault detection sensor includes a shock sensor configured to detect a fault comprising an impact to the battery pack.

3 . The battery pack of claim 2 , wherein the remediation action performed by the battery management system responsive to detection of an impact by the shock sensor includes at least one of:

shutting off the plurality of battery cells when the impact thereon exceeds a predetermined impact threshold;

storing an occurrence of the impact in a memory when the impact on the plurality of battery cells is below the predetermined impact threshold;

generating a visual or audio message indicating that the plurality of battery cells needs to be replaced; and

generating a visual or audio message indicating that a medical device powered by the battery pack should be replaced with a new medical device.

4 . The battery pack of claim 2 , wherein the shock sensor is a passive shock sensor comprising at least one spring contact configured to vibrate to generate one or more electric current pulses in response to an impact to the plurality of battery cells.

5 . The battery pack of claim 4 , wherein the passive shock sensor includes a plurality of spring contacts having different stiffness levels, and

the at least one electronic processor is programmed to determine a magnitude of the impact to the plurality of battery cells depending on which of the spring contact or contacts are triggered.

6 . The battery pack claim 4 , further including an accelerometer operatively connected with the shock sensor, the shock sensor configured to activate the accelerometer to measure a magnitude of the impact on the plurality of battery cells.

7 . The battery pack of claim 1 , wherein the at least one fault detection sensor includes at least one gas sensor configured to detect a fault comprising a gas evolving from the plurality of battery cells.

8 . The battery pack of claim 7 , wherein the at least one gas sensor includes:

a first gas sensor configured to measure hydrogen gas; and

a second gas sensor configured to measure at least one of hydrogen gas, benzene, methane, and propylene.

9 . The battery pack of claim 7 , wherein the remediation action performed by the battery management system responsive to detection by the at least one gas sensor of a gas evolving from the plurality of battery cells includes shutting off the plurality of battery cells.

10 . The battery pack of claim 7 , wherein the housing includes at least one vent and the at least one gas sensor is disposed adjacent the at least one vent.

11 . The battery pack of claim 1 , wherein the battery management system includes at least one wireless transmitter or transceiver and the battery management system is programmed to wirelessly transmit:

data measured by the at least one fault detection sensor; and

an identification of the battery pack.

12 . The battery pack of claim 1 , wherein the battery management system further includes:

a temperature sensor operatively connected with the battery management system and configured to measure a temperature of the plurality of battery cells, the housing further enclosing the temperature sensor; and

a memory configured to store data measured by at least one of the temperature sensor and by the at least one fault detection sensor.

13 . An apparatus comprising:

a medical device; and

a battery pack as set forth in claim 12 connected with the medical device to electrically power the medical device;

wherein the medical device is configured to read the data stored in the memory when the battery pack is connected with the medical device.

14 . A battery pack, comprising:

a plurality of electrical battery cells;

a battery management system including at least one electronic processor configured to monitor parameters of the plurality of battery cells;

a shock sensor configured to detect a fault comprising an impact to the battery pack; and

a housing enclosing the plurality of electrical battery cells, the battery management system, and the shock sensor;

wherein the battery management system is configured to perform a remediation action responsive to detection of a fault by the shock sensor.

15 . The battery pack of claim 14 , wherein the remediation action performed by the battery management system responsive to detection of an impact by the shock sensor includes at least one of:

shutting off the plurality of battery cells when the impact thereon exceeds a predetermined impact threshold;

storing an occurrence of the impact in a memory when the impact on the plurality of battery cells is below the predetermined impact threshold;

generating a visual or audio message indicating that the plurality of battery cells needs to be replaced; and

generating a visual or audio message indicating that a medical device powered by the battery pack should be replaced with a new medical device.

16 . The battery pack of claim 14 , wherein:

the shock sensor is a passive shock sensor comprising a plurality of spring contacts having different stiffness levels and configured to vibrate to generate one or more electric current pulses upon an impact to the plurality of battery cells; and

the at least one electronic processor is programmed to determine a magnitude of the impact to the plurality of battery cells depending on which of the spring contact or contacts are triggered.

17 . The battery pack of either claim 16 , further including an accelerometer operatively connected with the shock sensor, the shock sensor configured to activate the accelerometer to measure a magnitude of the impact on the plurality of battery cells.

18 . A battery pack, comprising:

a plurality of electrical battery cells;

a battery management system including at least one electronic processor configured to monitor parameters of the plurality of battery cells;

at least one gas sensor configured to detect a fault comprising a gas evolving from the plurality of battery cells;

a housing enclosing the plurality of electrical battery cells, the battery management system, and the at least one gas sensor;

wherein the battery management system is configured to perform a remediation action responsive to detection of a fault by the at least one gas sensor.

19 . The battery pack of claim 18 , wherein the at least one gas sensor includes:

a first gas sensor configured to measure hydrogen gas; and

a second gas sensor configured to measure at least one of hydrogen gas, benzene, methane, and propylene.

20 . The battery pack of claim 18 , wherein the remediation action performed by the battery management system responsive to detection by the at least one gas sensor of a gas evolving from the plurality of battery cells includes shutting off the plurality of battery cells.

Assignments (3)
SECURITY INTEREST Recorded Jan 27, 2026
From: EVEREST ACQUISITION ENTITY, LLC; HEARTSTREAM HOLDING COMPANY LLC; HEARTSTREAM US LLC; REMOTE DIAGNOSTIC TECHNOLOGIES LTD.; HEARTSTREAM (SHENZHEN) MEDICAL TECHNOLOGY CO., LTD.; HEARTSTREAM INDIA PRIVATE LIMITED; HEARTSTREAM JAPAN G.K.; HEARTSTREAM SINGAPORE PTE. LTD.; HEARTSTREAM NETHERLANDS B.V.; HEARTSTREAM AUSTRALIA PTY LIMITED
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 073600/0537 →
SECURITY INTEREST Recorded Jan 27, 2026
From: EVEREST ACQUISITION ENTITY, LLC; HEARTSTREAM HOLDING COMPANY LLC; HEARTSTREAM US LLC; REMOTE DIAGNOSTIC TECHNOLOGIES LTD.; HEARTSTREAM (SHENZHEN) MEDICAL TECHNOLOGY CO., LTD.; HEARTSTREAM INDIA PRIVATE LIMITED; HEARTSTREAM INDIA PRIVATE LIMITED; HEARTSTREAM JAPAN G.K.; HEARTSTREAM SINGAPORE PTE. LTD.; HEARTSTREAM NETHERLANDS B.V.; HEARTSTREAM AUSTRALIA PTY LIMITED
To: PHILIPS NORTH AMERICA LLC
Reel/Frame 073601/0625 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2023
From: LEYVI, EVGENIY; AIYAWAR, VIJAYA KUMAR; ZHAO, MELINDA; DEMORE, JOE; GUO, JACK JIANHONG; SINGH, RAHUL; REDDY, UDAY
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 062342/0527 →