IP Library Granted Patent US 11,888,333
Granted Patent B2
US 11,888,333 · App. 17/945,340 · Granted Jan 30, 2024

Battery monitor system and method

Inventors: David W Baarman (Fennville, MI); Henry W. Sybesma (Holland, MI); Jennifer S. Sierra (Holland, MI); Cathy L. Wiler (Zeeland, MI); Ellington L. Ellis (Byron Center, MI); Kristine A. Hunter (West Olive, MI); Lynne A. Sybesma (Holland, MI)
Assignee: Global Battery Solutions LLC
H02J7/00036G01R31/371G01R31/382H02J7/005H02J7/007H02J7/00032H02J7/00045H02J7/00047H02J7/0047H02J7/00712H02J50/20H04B5/0031H01M10/4257H02J7/0048
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Quick Facts
Patent No.
US 11,888,333
App. No.
17/945,340
Granted
Jan 30, 2024
Kind
B2
Abstract

A remote controlled battery cell monitoring and control system that utilizes empirical and theoretical data to compare performance, sensor data, stored patterns, historical usage, use intensity indexes over time and tracking information to provide a sophisticated data collection system for batteries. This tracking is designed to better the specifications, designs, training, preventative maintenance, and replacement and recycling of batteries.

Claims (40)

1. A battery cell monitoring system for a battery having a plurality of electrically interconnected battery cells, the battery cell monitoring system comprising:

at least one battery cell monitor chipset configured to electrically connect to a respective battery cell of the plurality of battery cells, each battery cell monitor chipset including:

one or more sensors each configured to sense at least one parameter of the respective battery cell;

a memory configured to store a battery cell ID associated with the battery cell and configured to receive and store battery cell data based on the sensed parameters of the respective battery cell; and

a communication interface configured to:

transmit the battery cell ID over a wireless network,

receive first authentication information over the wireless network, the first authentication information being associated with a first access level of a plurality of access levels,

receive second authentication information over the wireless network, the second authentication information being associated with a second access level of the plurality of access levels,

receive third authentication information over the wireless network, the third authentication information being associated with a third access level of the plurality of access levels; and

transmit a first set of battery cell data in response to receipt of the first authentication information; and

transmit a second set of battery cell data in response to receipt of the second authentication information;

transmit a third set of battery cell data in response to receipt of the third authentication information;

wherein the first set of battery cell data and the second set of battery cell data are different.

2. The battery cell monitoring system of claim 1 , wherein the second set of battery cell information includes the information in the first set of battery cell information.

3. The battery cell monitoring system of claim 1 , wherein the first authentication information includes a first password and the second authentication information includes a second password.

4. The battery cell monitoring system of claim 1 , wherein the battery cell monitor chipset modifies battery cell functionality in response to receipt of authentication information associated with one of the plurality of access levels.

5. The battery cell monitoring system of claim 4 , wherein the at least one battery cell monitor chipset disables the battery cell in response to instructions associated with at least one of the plurality of access levels.

6. The battery cell monitoring system of claim 1 , wherein the at least one battery cell monitor chipset is configured to collect and store the battery cell data over a battery cell lifecycle of the respective battery cell.

7. The battery cell monitoring system of claim 6 , wherein the first access level corresponds to a first time period associated with the battery cell lifecycle, and wherein the second access level corresponds to a second time period associated with the battery cell lifecycle.

8. The battery cell monitoring system of claim 1 , wherein the first access level corresponds to an original equipment manufacturer (OEM) and the second access level corresponds to a recycler.

9. The battery cell monitoring system of claim 1 , wherein the first access level provides access to security information associated with the respective battery cell.

10. The battery cell monitoring system of claim 1 , wherein the first access level provides access to battery cell manufacturing information associated with the respective battery cell.

11. The battery cell monitoring system of claim 1 , wherein the first access level provides access to transportation information associated with the respective battery cell.

12. A battery cell monitoring system for a battery having a plurality of electrically interconnected battery cells, the battery cell monitoring system comprising:

at least one battery cell monitor chipset configured to electrically connect to a respective battery cell of the plurality of battery cells, each battery cell monitor chipset including:

one or more sensors each configured to sense at least one parameter of the respective battery cell;

a memory configured to store a battery cell ID, a cryptographic code associated with the battery cell, and an access registry, and to receive and store battery cell data based on the sensed parameters of the respective battery cell, wherein the access registry includes a plurality of access levels, wherein the plurality of access levels includes a first access level, second access level, and a third access level; and

a communication interface configured to:

transmit the battery cell ID and cryptographic code over a wireless network,

receive a modified cryptographic code associated with one of the plurality of access levels over the wireless network, and

transmit specific battery cell data over the wireless network depending on the access level associated with the modified cryptographic code, wherein a first set of battery cell data is transmit in response to receipt of a modified cryptographic code associated with the first access level, wherein a second set of battery cell data is transmit in response to receipt of a modified cryptographic code associated with the second access level, wherein a third set of battery cell data is transmit in response to receipt of a modified cryptographic code associated with the third access level.

13. The battery cell monitoring system of claim 12 , wherein the first access level corresponds to a manufacturer user, the second access level corresponds to an original equipment manufacturer (OEM) user, and the third access level corresponds to a recycler user.

14. The battery cell monitoring system of claim 12 , wherein the first access level corresponds to a first time period associated with a battery cell lifecycle, the second access level corresponds to a second time period associated with the battery cell lifecycle, and the third access level corresponds to a third time period associated with the battery cell lifecycle.

15. The battery cell monitoring system of claim 12 , wherein the battery cell monitor chipset is configured to provide:

specific access to a first set of the battery cell data in response to receipt of the modified cryptographic code associated with the first access level; and

specific access to a second set of the battery cell data in response to receipt of the modified cryptographic code associated with the second access level.

16. The battery cell monitoring system of claim 12 , wherein the battery cell monitor chipset is configured to provide access to security information associated with the respective battery cell in response to receipt of the modified cryptographic code associated with the first access level.

17. The battery cell monitoring system of claim 12 , wherein the battery cell monitor chipset is configured to provide access to battery cell manufacturing information associated with the respective battery cell in response to receipt of the modified cryptographic code associated with the first access level.

18. The battery cell monitoring system of claim 12 , wherein the battery cell monitor chipset is configured to provide access to battery cell transportation information associated with the respective battery cell in response to receipt of the modified cryptographic code associated with the first access level.

19. The battery cell monitoring system of claim 12 , wherein the battery cell monitor chipset is configured to modify battery cell functionality in response to instructions associated with the modified cryptographic code.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNMENT AND RE-RECORD ASSIGNMENT PREVIOUSLY RECORDED UNDER REEL AND FRAME 071457/0102 TO CORRECT THE APPLICATION NO. FROM 11888333 TO PATENT NO. 11888333. PREVIOUSLY RECORDED ON REEL 71457 FRAME 102. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECTIVE ASSIGNMENT. Recorded Jul 2, 2025
From: GLOBAL BATTERY SOLUTIONS LLC
To: ATC HOLLAND, LLC
Reel/Frame 071831/0411 →
CHANGE OF NAME Recorded Jun 19, 2025
From: GLOBAL BATTERY SOLUTIONS LLC
To: ATC HOLLAND, LLC
Reel/Frame 071457/0102 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2022
From: BAARMAN, DAVE; SYBESMA, HENRY W.; SIERRA, JENNIFER S.; WILER, CATHY L.; ELLIS, ELLINGTON L.; HUNTER, KRISTINE A.; SYBESMA, LYNNE A.
To: GLOBAL BATTERY SOLUTIONS LLC
Reel/Frame 061117/0222 →
Continuity (4)
Continuation 17843131 · Jun 17, 2022
Continuation 16636582
Provisional Application 62541291 · Aug 4, 2017
Related Publication 20230019408A1 · Jan 19, 2023