IP Library Granted Patent US 10,720,626
Granted Patent B2
US 10,720,626 · App. 15/857,949 · Granted Jul 21, 2020

Systems and methods for battery structure, interconnects, sensing, and balancing

Inventors: W. Porter Harris (Pasadena, CA); Kenneth Kawanishi (Whittier, CA); W. Hunter Greene (Madison, GA); Robert Wesley Thibault (Santa Monica, CA); Arun Gunasekaran (Los Angeles, CA)
Assignee: Romeo Systems, Inc.
H01M2/206H01M10/482H01M10/486
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Quick Facts
Patent No.
US 10,720,626
App. No.
15/857,949
Granted
Jul 21, 2020
Kind
B2
Abstract

Exemplary systems and methods enable efficient and reliable positioning, assembly, retention, interconnection, and management of battery cells in battery packs, for example battery packs utilized in electric vehicles.

Claims (52)

1. A battery interconnect assembly for electrically connecting a plurality of cells of a battery pack, the battery interconnect assembly comprising:

a first plate comprising:

a first window;

a first tab associated with the first window, the first tab configured to connect the first plate to a first terminal of a cell of the plurality of cells of the battery pack; and

a second plate parallel to and at least partially overlapping the first plate, the second plate comprising:

a second window aligned with the first window, wherein the first tab extends through the second window;

a second tab associated with the second window, the second tab configured to connect the second plate to a second terminal of the cell;

wherein the first plate is physically separated from the second plate, wherein the first plate is electrically connected to the second plate through the cell, wherein the first terminal has a first polarity, and wherein the second terminal has a second polarity.

2. The battery interconnect assembly of claim 1 , wherein the first plate comprises a stack formed from a first conductive plate and a second conductive plate.

3. The battery interconnect assembly of claim 2 , wherein the first tab is disposed on the first conductive plate, and wherein the second conductive plate comprises an empty window associated with the first tab.

4. The battery interconnect assembly of claim 1 , further comprising a sensing layer overmolded in the battery interconnect assembly, the sensing layer comprising a trace for communicating sensed signals to a communications connector, wherein the sensed signals represent at least one of a sensed voltage associated with the battery pack attached to the battery interconnect assembly, and a temperature associated with a thermistor sensing the temperature at a location in the battery pack.

5. The battery interconnect assembly of claim 1 , wherein the first plate comprises a first segment and a second segment, and wherein the second plate comprises a third segment and a fourth segment; wherein the third segment aligns with the first segment and a portion of the second segment, and wherein the second segment aligns with a portion of the third segment and a portion of the fourth segment.

6. The battery interconnect assembly of claim 1 , wherein the first plate comprises a first segment and a second segment, and wherein the second plate comprises a third segment and a fourth segment;

wherein the third segment aligns with the first segment and a portion of the second segment, and wherein the second segment aligns with a portion of the third segment and a portion of the fourth segment;

wherein the first segment and a portion of the third segment, when connected to the battery pack, are configured to align with a first group of cells, wherein the first segment is configured to connect to terminals of the first polarity of the first group of cells, and wherein a portion of the third segment is configured to connect to terminals of a second polarity of the first group of cells; and

wherein a portion of the second segment and a portion of the third segment, when connected to the battery pack, are configured to align with a second group of cells, wherein a portion of the second segment is configured to connect to terminals of the second polarity of the first group of cells, and where a portion of the third segment is configured to connect to terminals of the first polarity of the first group of cells.

7. The battery interconnect assembly of claim 1 , wherein the first plate comprises a first segment and a second segment, wherein the second plate comprises a third segment and a fourth segment, and wherein an electrical flow path from the most negative to most positive proceeds from first segment to third segment, from third segment to second segment, and from second segment to fourth segment through attached cells of the plurality of cells comprising the battery pack.

8. The battery interconnect assembly of claim 1 , wherein the first tab comprises a fuse structure isolating the cell, from the rest of the plurality of cells, in the event that current through the first tab exceeds a threshold for a predetermined amount of time.

9. An interconnect assembly for electrically connecting a plurality of cells of a battery pack, the plurality of cells comprising a first group of cells, a second group of cells, and a third group of cells, the interconnect assembly comprising:

a first plate, comprising:

a first window;

a first tab associated with the first window, the first tab configured to connect the first plate to a first cell first terminal of the first group of cells;

a second window; and

a second tab associated with the second window, the second tab configured to connect the first plate to a second cell first terminal of the second group of cells; and

a second plate, comprising:

a third window; and

a third tab associated with the third window, the third tab configured to connect the second plate to a second cell second terminal of the second group of cells; and

a fourth window; and

a fourth tab associated with the fourth window, the fourth tab configured to connect the second plate to a third cell first terminal of the third group of cells;

wherein the first plate forms a series connection between the first group of cells and the second group of cells,

wherein the second plate forms a series connection between the second group of cells and the third group of cells,

wherein the first plate and the second plate are electrically connected to the plurality of cells via tabs extending into windows in the respective plates,

wherein the first plate and the second plate comprise a single layer, and

wherein the first plate and the second plate are coplanar.

10. The interconnect assembly of claim 9 , wherein the first plate and the second plate comprise a first layer, and wherein a third plate and a fourth plate comprise a second layer.

11. The interconnect assembly of claim 10 , further comprising a separator disposed between the first layer and the second layer to electrically insulate the first layer from the second layer.

12. The interconnect assembly of claim 11 , wherein the first layer is electrically connected to the second layer through at least one of the plurality of cells, and wherein the first layer is parallel to and at least partially overlapping the second layer.

13. The interconnect assembly of claim 9 , wherein the tabs on the interconnect assembly serve as the only mechanical connection between the interconnect assembly and the battery pack.

14. The interconnect assembly of claim 9 , wherein the first window is configured as a vision window shaped to expose at least ⅙th of the circumference of the first cell to facilitate alignment of a laser welding beam with the first tab and a terminal of the first cell.

15. An interconnect assembly for electrically connecting a plurality of cells of a battery pack, the plurality of cells comprising a first group of cells, a second group of cells, and a third group of cells, the interconnect assembly comprising:

a first plate; and

a second plate;

wherein the first plate forms a series connection between the first group of cells and the second group of cells,

wherein the second plate forms a series connection between the second group of cells and the third group of cells,

wherein the first plate and the second plate are electrically connected to the plurality of cells via tabs extending into windows in the respective plates,

wherein the first plate comprises three sub-plates stacked together,

wherein the first sub-plate couples one-third of the first group of cells to one-third of the second group of cells,

wherein the second sub-plate couples one-third of the first group of cells to one-third of the second group of cells, and

wherein the third sub-plate couples one-third of the first group of cells to one-third of the second group of cells.

16. The interconnect assembly of claim 15 , wherein the first sub-plate comprises a plurality of windows configured with tabs therein,

wherein the second sub-plate comprises a plurality of empty windows, and

wherein the third sub-plate comprises a plurality of empty windows, such that when the first sub-plate, the second sub-plate, and the third sub-plate are stacked atop one another, the plurality of windows configured with tabs therein are aligned with the empty windows of the second sub-plate and the empty windows of the third sub-plate.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2024
From: ROMEO SYSTEMS TECHNOLOGY, LLC; ROMEO SYSTEMS, INC.; ROMEO POWER, INC.
To: SG SERVICE CO., LLC, AS ASSIGNEE FOR ROMEO POWER, INC.
Reel/Frame 066178/0777 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2023
From: SG SERVICE CO., LLC, AS ASSIGNEE FOR ROMEO POWER, INC.
To: MULLEN AUTOMOTIVE, INC.
Reel/Frame 064849/0948 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2020
From: ROMEO SYSTEMS, INC.
To: ROMEO SYSTEMS TECHNOLOGY, LLC
Reel/Frame 053541/0961 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2018
From: HARRIS, W. PORTER; KAWANISHI, KENNETH; GREENE, W. HUNTER; THIBAULT, ROBERT WESLEY; GUNASEKARAN, ARUN
To: ROMEO SYSTEMS, INC.
Reel/Frame 044743/0878 →
Continuity (2)
Provisional Application 62440102 · Dec 29, 2016
Related Publication 20180190960A1 · Jul 5, 2018
Cited By (5)
US 12,218,382 US 12,394,869 US 12,548,857 US 12,567,606 US 12,700,649